|
|
Homology
BLAST of mRNA_P-fluviatile_contig11.1288.1 vs. uniprot
Match: D8LU33_ECTSI (Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D8LU33_ECTSI) HSP 1 Score: 1400 bits (3624), Expect = 0.000e+0 Identity = 869/1344 (64.66%), Postives = 973/1344 (72.40%), Query Frame = 2
Query: 248 EGKPSNPAFDKFMQGFWDLASVDVPVRLGAAAMIVRHVSSPVGGGDAEYAIKRLVRGMCSGRECARQGFASCLTQALAVLSRDAPATATSTVLEQILKVTQTTAAMKGADERDLALGRLVGVSALALSGRLGPDPQSAEGALKAVSELYTKRKWIGQAAGEAALLVTSKAFEGDGEFFRTVLPLLAPLLKGKDGSILQVSDLSPDQLLLSLGLRSIMRERGLDPQEDAALKEALPPFLRYASVVRAGKTQELVSPLKQSASAFPKVHAVWGRLWDDLGLSPAGQRPRASLSAKRLKKLGEVWSAVVDGALTTTTLNNKGTAILLLKQVLQRVPAAGVWRILSPGIVRLVLNHTQGEDNYLFSLVRMTLRQLPTIVEDDQEVQAQVAACLLRRGTIRFDNRAGVPVVSALVRAMGQEALETHVEFLKGVVQGKPGWADSKDLLPNGASXXXXXXXXXXXXXXXVDDGNEQCADTATDGSVAERLQAVEALYSLARSSGGDRGGSSGGKGDARSLAIAASSGGGLDVQGRRLTRTAEFFLEVGFFAPEDGAGVLPLPLKLAELCRSKFFSLVADIAAKPLFWQ--SGTPAAAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXWGALEALWGLHEAWQGLEGAGRKLVEGVSVGQDEREACSVALAVVGRIRAAAAAARGGDKLGSAFAGILLMVSLHLLEGSNADGRGEE--RCEHITDLVETYGRMSSGKRDGKGGDDYDDXXXXXXXXXXXXNNDPEPLAMLADVLVAVVAEPSTHSVRGLRDTARRVWGMICGARPLTRSALDTLLSAVCGEDEGQGXXXXXXXXXXXXXXXXXXXXXXXXXXXANGKAKASKTGDDRSDSDDSQGAVNGDEDG------------DEVMVDPSDVAALLGGNVDDSDDDGEGGRALQHHAGADKALGALLGLKKSGRKRGALEAQRQGYQIRLRALDLLEVVCSRRPDSPYLLAALLPVLRAIKRLEGAAGVGLRSGGEATALSTRLTTLYKNRLCKCKPRTLSPSEGDRKGRAAPAAEGHDNDEEEDIPGKTAKDFSELMGLCRSWEKKRDAPLASLALEGALCCLRSLKTLPAKGKGEGGAXXXXXXXXXXXALEGALKSLSTAVGTFFRTKRGAGLTPLQVEEVVKRFPGALSPVLVEAAEGAAASDYLRTESFRLLAGVLQRRPSMDPSSRKALLAHCPAIFKALGDVISDTAGDAAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXMLKAKRLKPLLACLSAXXXXXXXXTGAGSTGSAGSILLSRPGAASEVRALKAALETLAQASASLAMQLQCGQAARELDAL 4231
E K +NP F KFMQGFWDLASVDVPVR+GAAAMIVRHVS+P GG DAEYA+KRLVRGMCS RECARQGFASCL Q LAVL +DAP T VLEQILK TQTTAAMKGADER+LALGRL+GVSALA+SGRL +P+SAEGALKAVSELYTKRKWIGQAAGEAALLVTSKAFEG+GEF R VLPL+ PLLKGKDGS LQ++DLS DQLLLSLGLRSIMRERGLDPQEDAALK+ALP FLR+ASVVR GK Q+LVSPLKQSA FPKVH++WGRLWDDLGLSPAGQ PRA LSAKRLKKLGEVWS VVDGALT T+LNNKGTA+LLLKQVLQRVPAAGVW +LSPGIVRL+LNHT+GE+NYLFSLV MTL+QLP I++DDQEVQAQVAACLLRRGTIRFDNR GV VVS+LV+ MGQEAL+ HVEFLKGVVQGKPGW S+D + NG + DG+ A GS AERLQAVEALYSLARSSG GL++QG+RLT+TAEFFLE GFFAP DGA + K ELCRSKFFSLVADIAAKPLFWQ SGT WGALEALWGLHE WQGLEG GRKLV+G+SVG DEREACSVALAVVGRIRA AA DKLGSAFAGILLMVSLH+LEGS + RG E R +HITDLVETYGRMS +D XXXXXXXXXXX ++P+PLAMLADVLVAVVAEPSTHSVRGLRDTARRVWGM+ G+ PLTRSAL+TL++AVCG+ + G XXXXXXXXXXXXXXXX AK K+G + DEVMVDPSD+ ALL G + D+ GE G QHHAGADKALGAL+GLKK GRK+GA EA+RQGYQIRLRALDLLEVVCSRR DS +LL LLPVL++I++L G A +GGE AL+ RL +LYKNRLCKCKPR S + R + D+ +D +TA+ FSEL+GLCR+WEK ++PLASLALEGALCCLRSLK+ PAKG XXXXXXXXXX ALEGALK+L+ AVG FF KRG G T +QVEEVVKRFP LSPVLV+AA+GAAASD+LRTE+F LLAGVLQRR SM+P+SR+ LLA CPAIFKAL DV+S A +AA MLKAKRLKP+L CLSA G G+ + ASE R+LKA+L + +ASASLAMQLQCGQ A+ LDA+
Sbjct: 50 EEKAANPEFSKFMQGFWDLASVDVPVRVGAAAMIVRHVSNPEGG-DAEYAVKRLVRGMCSSRECARQGFASCLAQVLAVLPKDAPTT--PAVLEQILKTTQTTAAMKGADERELALGRLLGVSALAMSGRLRSEPESAEGALKAVSELYTKRKWIGQAAGEAALLVTSKAFEGEGEFVRVVLPLMVPLLKGKDGSTLQLADLSSDQLLLSLGLRSIMRERGLDPQEDAALKQALPAFLRHASVVRVGKAQDLVSPLKQSAGVFPKVHSLWGRLWDDLGLSPAGQ-PRAPLSAKRLKKLGEVWSCVVDGALTNTSLNNKGTAVLLLKQVLQRVPAAGVWHVLSPGIVRLILNHTKGEENYLFSLVHMTLKQLPKIIKDDQEVQAQVAACLLRRGTIRFDNRTGVNVVSSLVKGMGQEALDAHVEFLKGVVQGKPGWTGSEDPVANGVATSEEPI-----------DGSGSDA-----GSAAERLQAVEALYSLARSSGXXXXXXXXXXXXXXXXXXXXXXXXGLEIQGKRLTKTAEFFLEAGFFAPADGAAATAMLPKTLELCRSKFFSLVADIAAKPLFWQANSGTNKGESKSKSSKSPSKKKPTDEGGSAG-------------WGALEALWGLHETWQGLEGGGRKLVKGLSVGVDEREACSVALAVVGRIRAGAAR---DDKLGSAFAGILLMVSLHMLEGSKEEARGREMERSQHITDLVETYGRMSGSAKD---------EXXXXXXXXXXXRDEPDPLAMLADVLVAVVAEPSTHSVRGLRDTARRVWGMVSGSTPLTRSALNTLVAAVCGDQDEGGNESSXXXXXXXXXXXXXXXXM----------AKNGKSGSEXXXXXXXXXXXXXXXXXXXXXXXXXXXXKDEVMVDPSDMEALLAGE--EEDEGGEEG--FQHHAGADKALGALIGLKKLGRKKGAQEAERQGYQIRLRALDLLEVVCSRRSDSQHLLTVLLPVLKSIEKLSGVA-----AGGEGAALNIRLQSLYKNRLCKCKPRASSXXXXXXEERGSKPG-----DDTDDTRAQTAEAFSELIGLCRAWEK--NSPLASLALEGALCCLRSLKSSPAKGX-----XXXXXXXXXXDALEGALKALAAAVGDFFGKKRGGGFTVVQVEEVVKRFPDVLSPVLVKAAQGAAASDFLRTEAFSLLAGVLQRRGSMNPASRETLLAQCPAIFKALSDVMSIAAKEAALSASTKATGDAAETGDKKPAKANAASSSA-------MLKAKRLKPILGCLSAAVSADE---GVGALSAL----------ASEARSLKASLAAVGEASASLAMQLQCGQVAQALDAI 1297
BLAST of mRNA_P-fluviatile_contig11.1288.1 vs. uniprot
Match: A0A836CR26_9STRA (Uncharacterized protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836CR26_9STRA) HSP 1 Score: 294 bits (753), Expect = 7.270e-84 Identity = 182/442 (41.18%), Postives = 263/442 (59.50%), Query Frame = 2
Query: 263 NPAFDKFMQGFWDLASVDVPVRLGAAAMIVRHVSSP-VGGGDAEYAIKRLVRGMCSGRECARQGFASCLTQALAVLSRDAPATATSTVLEQILKVTQTTAAMKGADERDLALGRLVGVSALALSGRLGPDPQSAEGA---LKAVSELYTKRKWIGQAAGEAALLVTSKAFEGDGEFFRTVLPLLAPLLK------------GKDGSILQVSDLSPDQLLLSLGLRSIMRERGLDPQEDAALKEALPPFLRYASVVRAGKTQELVSPLKQSASAFPKVHAVWGRLWDDLGLSPAGQRPRASLSAKRLKKLGEVWSAVVDGALTTTTLNNKGTAILLLKQVLQRVPAAGVWRILSPGIVRLVLNHTQGEDNYLFSLVRMTLRQLPTIVEDDQEVQAQVAACLLRRGTIRFDNRAGVPVVSALVRAMGQEALETHVEFLKGVVQG 1540
+PAF KFM+GFWDLA+ + P R GAA +V+H+S P V D +YA+ RL+RG+CS RE ARQGFA+CL +AL LS + +TA + +++ + T+ ++KG +ERD GRL G +A+A SGRLG +A+ A L+AV EL+ R W+ Q EAAL + + D +PLL +L+ G+D S + D+ DQL L+ GL +++RER L + AL +++ R ++ AG+ L+ LKQS AFP++H+VWGR+WDDLGL+ RP A +S KRL+ L + W+ VVD L T KG+A+LL+ QVL+R P A V ++S GI+RL+LNH E L ++ R L + D +VQ +AA LL++G RFD R G V+ L+ + ++ HVEFLK V +G
Sbjct: 40 SPAFTKFMRGFWDLATSNSPARQGAAFAVVQHLSDPNVPQKDVDYAVVRLLRGICSSREAARQGFATCLAEALLCLSEEQISTAD--MRDRLFEATKYNGSLKGQEERDACFGRLFGCAAIARSGRLGNSDANADVAVQLLQAVVELHRMRHWLRQVTVEAALDIAKEL--PDALLLSKGVPLLQQMLRPAATVSDGDAAAGEDASTPPLEDMQADQLSLAFGLHALLRERDLLESDSMALHKSM----RRRHLITAGRGAALLEALKQSTRAFPRLHSVWGRIWDDLGLTLP--RPDA-ISDKRLRYLKDFWTTVVDEGLADGTHTTKGSALLLVSQVLRRAPPAAVPVVISGGIIRLLLNHAGKEGATLHAMARSLLAGVSAATTDSADVQVALAASLLQKGGPRFDARTGTRTVAELLEYLDAASVLKHVEFLKAVARG 470
BLAST of mRNA_P-fluviatile_contig11.1288.1 vs. uniprot
Match: W7U3B2_9STRA (Dna polymerase v n=3 Tax=Monodopsidaceae TaxID=425072 RepID=W7U3B2_9STRA) HSP 1 Score: 240 bits (613), Expect = 1.180e-60 Identity = 305/1063 (28.69%), Postives = 441/1063 (41.49%), Query Frame = 2
Query: 284 MQGFWDLASVDVPVRLGAAAMIVRHVS------------SPVGGGDAEYAIKRLVRGMCSGRECARQGFASCLTQALAVLSRDAPATATSTVLEQILKVTQTTAAMKGADERDLALGRLVGVSALALSGRLGP-----DPQSAEGALKAVSELYTKRKWIGQAAGEAALLVTSKAFEGDGEFFRTVLPLLAPL---------LKGKDGSI---LQVSDLSPDQLLLSLGLRSIMRERGLDPQEDAALKEALPPFLRYAS-VVRAGKTQELVSPLKQSASAFPKVHAVWGRLWDDLGLSPAGQRPRASLSAKRL-----KKLGEVWSAVVDGALTTTTLNNKGTAILLLKQVLQRVPAAGVWRILSPGIVRLVLNH--TQGE-DNYLFSLVRMTLRQLPTIVEDDQEVQAQVAACLLRRGTIRFDNRAGVPVVSALVRAMGQEALETHVEFLKGVVQGKPGWADSKDLLPNGASXXXXXXXXXXXXXXXVDDGNEQCADTATDGSVAERLQAVEALYSLARSSGGDRGGSSGGKGDARSLAIAASSGGGLDVQGRRLTRTAEFFLEVGFFAPEDGAGVLPLPLKLAELC--RSKFFSLVADIAAKPLFWQSGTPAAAXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXWGALEALWGLHEAWQGLEGAGRKLVEGVSVGQDER--EACSVALAVVGRIRAAAAAARGGDKLGSAFAGILLMVSLHLLEGSNADGRGE---ERCEHITDLVETYGRMSSGKRDGKGGDDYDDXXXXXXXXXXXXNNDPEPLAMLADVLVAVVAEPSTH-SVRGLRDTARRVWGMICGARPLTRSALDTLLSAVCG-----EDEGQGXXXXXXXXXXXXXXXXXXXXXXXXXXXANGKAKASKTGDDRSDSDDSQGA--VNGDEDGDEVMVDPSDVAA---LLGGNVDDSDDDGEGGRALQHHAGADKALGALLGLKKSGRKRGALEAQRQGYQIRLRALDLLEVVCSRRPDSPYLLAALLPVLRAIKRLEGAAGVGLRSGGEATALSTRLTTLYKNRLCKCKPRTLSPSEG 3304
++ +W L S D R+ A +V +S SP+ + EYAIKRLVRG+ S E ARQGFASCL + LAV P S V E +L T T +++G DERD+ LGRL A+ SGRL DP + L+ ++ KRK + A EA + + + F L LL L K D + + V L+PDQL L+L L+ +R+ G+ +++ L+ LP +L + +++ + +L+ PLK S+SAFP+VH +W RL D L SP G +W+ +VD L T K A++LL++V R A + LSP +++++L T G D L L + TL L E E + +A LL R + FD + G V+ LV A+ L + F++ VV+ D + VD E A ++++L AV+ALY+L+R A+A G G+ V+ RL + +F G + G K K + VA F AA GAL LW H+ W+ LE G +LV + G E E + ++ RI+ + R K AFA +++ V L+ L G+ + + C DL T S +RD KGG D +A+LAD+ V V++ VR LRD R+ WG++C + P+TR AL+ LL VC +DE G XXXX A K +S D+ D G +VD SD A LLGG DD+ +G L H + AL G K EA+RQ Q RLR LDLLEVV S++P + LL ++ P L A+++L+ AG G + E LS RL+ RL K +PR ++G
Sbjct: 3 LECYWKLVSTDSDKRIQAGYELVESLSKSFRPKEGNRRPSPLPS-EVEYAIKRLVRGLSSSTEAARQGFASCLAEVLAVR----PDVPLSLVHEHMLTSTDVTGSVRGQDERDMLLGRLFTCLAVVRSGRLNVNIKEWDPIGMK-LLETAIGIFRKRKVLRSLAAEAIVAMLECL---PPQRFLDSLDLLTELGESLGAKDTTKHSDEGVREEVDVDALNPDQLGLALVLQDYLRQHGI--RKEKGLEGRLPRWLLSSKRILKCKRIHKLIEPLKASSSAFPQVHPLWDRLLDRLLPSPGGSDGAGGSCEDEEGDDHGASFQALWTLMVDEVLACGTHERKALALMLLQRVAGRASATQLPICLSPNVLKILLMSLSTAGTADEILRPLAKQTLDALVATGEAAPEKRLLIACALLTRCDVNFDQKTGTSVLQDLVGALSTSEL---LLFVRHVVKAY------HDAEAPSIAALSPAKREDCKSKEGVDGSGEMDESDAASTILSQKLWAVDALYALSRMP-----------------AVAKPGGEGVVVKVLRLLFSLAYFDIEGVSRGDKKTGASERVKKGGRRAGKSDKGETKVASWELVRGFVPEEVRRAAAARAHGLLAELGKGDMLPSQVAGAGT----------GALAWLWETHKIWRDLEAEGVELVIPLEAGPREARDEMLGLTEEILARIKKETGS-RTASKTDEAFAILIMQVGLYQLNTEPGGGQEDFLGDLCRCYKDLAGTTKDSRSQRRDVKGGVDA--------------------MAVLADLCVGVLSTSLAGVPVRNLRDNVRKAWGVVCASSPITRPALEVLLGVVCSTSGFEDDEINGVTGDNGSDSESSXXXXDDSGENDAALAALDKVLSSTGMATSGDATDEGGPDXXXXXXXXXXXVVDGSDPEAFRRLLGG-----DDENQG--HLDH-------MLALRQASHQGGKESRTEAERQALQHRLRTLDLLEVVASKQPHAGLLLLSVEPCLTALRKLQAQAGPGRPA--ELLNLSHRLSDFLNKRLAKTRPRLFPVAKG 981
BLAST of mRNA_P-fluviatile_contig11.1288.1 vs. uniprot
Match: A0A6G0XHZ2_9STRA (Uncharacterized protein n=2 Tax=Aphanomyces euteiches TaxID=100861 RepID=A0A6G0XHZ2_9STRA) HSP 1 Score: 164 bits (416), Expect = 2.830e-37 Identity = 113/361 (31.30%), Postives = 185/361 (51.25%), Query Frame = 2
Query: 257 PSNPAFDKFMQGFWDLASVDVPVRLGAAAMIVRHVSSPVGGGDAEYAIKRLVRGMCSGRECARQGFASCLTQALAVLSRDAPATATSTVLEQILKVTQTTAAMKGADERDLALGRLVGVSALALSGRLGPDPQSAEGALKAVSELYTKRKWIGQAAGEAALLVTSKAFEGDGEFFRTVLPLLAPLLKGKDGSILQVSDLSPDQLLLSLGLRSIMRERGLDPQEDAALKEALPPFLRYASVVRAGKTQELVSPLKQSASAFPKVHAVWGRLWDDLGLSPAGQRPRASLSAKRL--KKLGEVWSAVVDGALT--TTTLNNKGTAILLLKQVLQRVPAAGVWRILSPGIVRLVLNHTQGEDNYL 1327
PS+ + + F++ FWDLA ++V R+ A I+ H++ + Y +KRLVRG+ S R+ ARQGF++ LT L P+ + +VL+ +L + +MKG ++R+ GRL G+ A+ SGR+ D L + L +KW +A E L V F TV P + PLL G V+D + DQ+ L++GLR M LD + ++V + Q LV PLK S +++P++H+ W RL D L+ K+L ++ E+WS +V+G L ++T +GTA+ LL+QV+ RV ++ + IL+P +++ + N+ + YL
Sbjct: 29 PSSDSRNAFLKVFWDLAELNVETRVAAVDSIIAHLTQANDSDELSYTLKRLVRGLASSRDAARQGFSTALT----ALLHHFPSLSVESVLDLVLTTMDASNSMKGMEQREHMFGRLFGLLAIFKSGRMTHDDPQLAKLLDELIALSKWKKWFREACYEGLLTVVHAL--PPASFKSTVWPRIEPLLSGN------VADFNADQVALAVGLRQYMVAHNLDKPKGI-----------LTTIVARHQFQHLVEPLKTSTTSYPRLHSAWRRLLDQF------------LTPKKLDEERFQEMWSVLVEGMLVAPSSTHERRGTALKLLEQVVGRVNSSTLRAILTPHVIKCLYNNAVSKKTYL 354
BLAST of mRNA_P-fluviatile_contig11.1288.1 vs. uniprot
Match: A0A7S2BGG2_9STRA (Hypothetical protein (Fragment) n=1 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2BGG2_9STRA) HSP 1 Score: 156 bits (395), Expect = 2.710e-36 Identity = 135/455 (29.67%), Postives = 216/455 (47.47%), Query Frame = 2
Query: 251 GKPSNPAFDKFMQGFWDLASVDVPVRLGAAAMIVRHVSSPVGGGDAEYAIKRLVRGMCSGRECARQGFASCLTQALAVLSRDAPATATSTVLEQILKVTQTTAAMKGADERDLALGRLVGVSALALSGRLGPDP----------------QSAEGALKAVSELYTKRKWIGQAAGEAALLVTSKAFEGDGEFFRTVLPLLA---PLLKGKDGSILQVSDLSPDQLLLSLGL-RSIMRERGLDPQEDAALKEA---LPPFLRYAS------VVRAGKTQELVSPLKQSASAFPKVHAVWGRLWDDLGLSPAGQRPRASLSAKRLKKLGEVWSAVVDGALTTTTLNN-KGTAILLLKQVLQRVPAAGVWRILSPGIVRLVLNHTQGEDNYLFSLVRMTLRQLPTIVEDDQEVQAQVAACLLRRGTIRFDNRAGVPVVSALVRAMGQEALETHVEFLK 1525
G P+ F+ FW LAS D P R A A + H+ D +YA+KRLVRG+CS R+ ARQGF++ LT LA S + +S VL+ +L T+TT+AM+GADERDL LGRL G++ A + D ++ ++ + ELY KRKW+ +A + KA +LP LA P + D + PD L L+L + R + R + D +E +A P ++R + ++RA + LV LK S + +P++H W + L K L + W V+ +L ++ + KGTA+ LL ++ R+PAA R SP +VRL++N T+ ++NYL L+ + D + + +A+ L++ FD + G ++ LV + + A+ ++ L+
Sbjct: 11 GSPTTDDIVPFLDCFWGLASTDGPERAIAGASLTTHILGD--DADRDYAMKRLVRGLCSSRDSARQGFSTGLTMLLAETSEET--LPSSQVLKALLDETETTSAMRGADERDLLLGRLFGLACFARAHATHDDATTTATTPRPTLRTWNVETMSEVIEKLVELYDKRKWMHEAGLNILKELVDKA--PLALLASHILPKLATRAPFSESADDPL----TFQPDDLALALTVERGLRRFQSCDGEEAEMKTDATALFPHWIRPSVDGSLPWLLRAERIGVLVEALKASTATYPRLHMAWELVLQALVEDDEDH-----------KTLLKFWQVAVEESLVASSSHQMKGTALNLLALLVPRLPAAEAARFASPPLVRLLVNSTRKKENYLREAAMGCLKGIADARRTDPDWRLALASELVQSED-NFDAKTGTKTIATLVENLDEAAVARYLTILE 443
BLAST of mRNA_P-fluviatile_contig11.1288.1 vs. uniprot
Match: A0A7R9YAJ5_9STRA (Hypothetical protein (Fragment) n=1 Tax=Pinguiococcus pyrenoidosus TaxID=172671 RepID=A0A7R9YAJ5_9STRA) HSP 1 Score: 157 bits (396), Expect = 8.750e-36 Identity = 139/413 (33.66%), Postives = 198/413 (47.94%), Query Frame = 2
Query: 260 SNPAFDKFMQGFWDLASVDVPVRLGAAAMIVRHV-SSPVGGGDAEYAIKRLVRGMCSGRECARQGFASCLTQALAVLSRDAPATATSTVLEQILKVTQTTAAMKGADERDLALGRLVGVSALALSGRLGPDPQSAEGALKAVSELYTKRKWIGQAAGEAALLVTSKAFEGDGEFFRTVLPLLAPLLKGKD---GSILQVSDLSPDQLLLSLGLRSIMRERGLDPQEDAALKEALPPFLRYASVVRAGKTQELVSPLKQSASAFPKVHAVWGRLWDDLGLSPAGQRPRASLSAKRLKKLGEVWSAVVDGALTTTTLNNKGTAILLLKQVLQRVPAAGVWRILSPGIVRLVLNHTQGEDNYLFSLVRMTLRQLPT-IVEDDQEVQAQVAACLLRRGTIRFDNRAGVPVVSALVRA 1483
SNP F+Q FW L+ D R AA+ IV HV +P G YA+KRLVRG+ S RE ARQGF+ LT +L A +T VLE IL T TT MK ++RD LGRL+G+ AL +GR +P S + A +L+ KRKW+ +AA + L+ KA + L+P L+ D + +++LSP++L +++ LR + ER + AL P+ + PL+ + + FP VHAVW L D++ A Q P A+L W VD AL +T KGTAI++ + +P + + S ++R+VLN NYL SLV+ L L + E + +AA L+ FD R V L A
Sbjct: 12 SNP----FLQDFWSLSEPDAAARSSAASRIVLHVRKTPAERG---YALKRLVRGLQSSRESARQGFSVALTL---LLEDPAQELSTDEVLETILSSTATTNKMKRQEQRDALLGRLMGIGALLRAGRAHENP-SCKKIFDAALQLFAKRKWL-RAAATSILIDAIKAMSKAKGLAALLREGLSPALQEADFFAEDLSNLANLSPEKLAVAISLRRLS-ERTPAASRVQLVDIAL-PWEAKDGAAAVELYHAMREPLRLACNTFPAVHAVWDVLLDEI---LAAQDPTAALV--------NTWGRCVDEALADSTHERKGTAIIVFSRWTTALPDEMLSLVASDKVLRVVLNARAKPGNYLHSLVQHALEHLVEGLAERSLSSRTALAARLVEAANGDFDARTQTKTVKMLTGA 399
BLAST of mRNA_P-fluviatile_contig11.1288.1 vs. uniprot
Match: A0A0L0HLD5_SPIPD (Uncharacterized protein n=2 Tax=Spizellomyces TaxID=4815 RepID=A0A0L0HLD5_SPIPD) HSP 1 Score: 147 bits (370), Expect = 9.350e-32 Identity = 137/459 (29.85%), Postives = 220/459 (47.93%), Query Frame = 2
Query: 281 FMQGFWDLASVDVPVRLGAAAMIVRH---------------VSSPVGGG-------DAEYAIKRLVRGMCSGRECARQGFASCLTQALAVLSRDAPATATSTVLEQILKVTQTTAAMKGADERDLALGRLVGVSALALSGRLGPDPQSAEGALKAVSELY---TKRKWIGQAAGEAALLVTSKAFEG--DGEFFRTVLPLLAPLLKGKDGSILQVSDLSPDQLLLSLGLRSIMRERGLDPQEDAALKEALPPFLRYASVVRAGKTQELVSPLKQSASAFPKVHAVWGRLWDDLGLSPAGQRPRASLSAKRLKKLGEVWSAVVDGALTTTTLNNKGTAILLLKQVLQRVPAAGVWRILSPGIVRLVLNHTQGEDNYLFSLVRMTLRQLPTIVEDDQEVQAQVAACLL-RRGTIRFDNRAGVPVVSALVRAMGQEALETHVEFLKG--VVQGKPGWADSKD 1567
M +W+LASVD VR AA +VR VS+P G D Y IKRL+RG+ S R+ ARQGFA LT+ L L ST L + K+TQT A KG +ERD+ GR+ G+ A+ + L + E + V+ L + + +I + + + + K E + E V+P + L KG +G P++L ++ +M+ R A LP + R SV+ +LV+ LK+S P+VH VW L D + SP P + LS + ++WS V+D AL +++ K +LL +++L R+ A V + +P ++R ++N+ DNYL + + T L T+ + ++V Q+ L+ + G RFD V ++ ++ E +ET++++L+ V QG+PG A D
Sbjct: 5 MMALYWELASVDPTVRQKAADKLVRALYTFQHDLHPTLENAVSTPSGDNLDQLCAQDVSYGIKRLLRGLPSSRDGARQGFAVALTELLKSLEF----LRVSTALSLLAKLTQTEGA-KGQEERDILFGRIFGLMAICQADMLARPHTTIEDVQEMVTRLLKYASSKSYIKETCFKVLITMVEKLHETKLEAEAVEYVIPTV--LSKGIEG---------PEELWFAI----VMQSR----YPKFAWASVLPSW-RDGSVLHTKNKTQLVAILKESTYTIPRVHLVWDALLDAVLTSP----PLSKLSIR------DLWS-VLDDALFSSSYERKFLGLLLFQKILPRLDATEVPFLFTPQLLRTLINNLAKHDNYLHKVAKQTASMLSTVALERKDVALQLVLQLVGKNGHQRFDQVTKTKTVENILGSLEGEGIETYIKYLQDMFVNQGEPGDAGEAD 427
BLAST of mRNA_P-fluviatile_contig11.1288.1 vs. uniprot
Match: A0A024TY58_9STRA (Uncharacterized protein n=2 Tax=Aphanomyces invadans TaxID=157072 RepID=A0A024TY58_9STRA) HSP 1 Score: 142 bits (357), Expect = 3.070e-30 Identity = 105/351 (29.91%), Postives = 166/351 (47.29%), Query Frame = 2
Query: 281 FMQGFWDLASVDVPVRLGAAAMIVRHVSSPVGGGDAEYAIKRLVRGMCSGRECARQGFASCLTQALAVLSRDAPATATSTVLEQILKVTQTTAAMKGADERDLALGRLVGVSALALSGRLGPDPQSAEGALKAVSELYTKRKWIGQAAGEAALLVTSKAFEGDGEFFRTVLPLLAPLLKGKDGSILQVSDLSPDQLLLSLGLRSIMRERGLDPQEDAALKEALPPFLRYASVVRAGKTQELVSPLKQSASAFPKVHAVWGRLWDDLGLSPAGQRPRASLSAKRLKKLGEVWSAVVDGALTT--TTLNNKGTAILLLKQVLQRVPAAGVWRILSPGIVRLVLNHTQGEDNYL 1327
F++ FWDLA ++ R+ A IV+H++ + Y +KRL+RG+ S R+ ARQGF++ LT A+L A + +VL+ + +A+MKG ++RD GRL G+ A+ SGRL D E L V L +KW + E L + F T LP L LL G V+ + DQ+ L++GL + + A+ L + LV PLK S S +P++H+ W R+ S + L +R + E+WS +V+G L ++ +GTA+ L + +L VP + IL+P V+ + N+ + YL
Sbjct: 44 FLKVFWDLAELNPSTRVAAVESIVQHLTQANDAEEMSYTLKRLIRGLASSRDAARQGFSTALT---ALLHHFPTAVSVESVLDLLQSTMDVSASMKGMEQRDHMFGRLFGLLAIHASGRLAGDADLIETVLDEVIVLSKWKKWFREVCFEGLLTIVESLTPAT--FISTALPKLVALLAGP------VAQFNADQVGLAVGLHQYVHTHAIATDASVVAVPAITTILSRHHL------HHLVDPLKSSTSIYPRLHSSWRRVVAHFTSS-------SKLDEERFQ---EMWSVLVEGMLVAQGSSHERRGTALKLFEALLPCVPGPTLRAILTPHFVKCIHNNAVSKKTYL 367
BLAST of mRNA_P-fluviatile_contig11.1288.1 vs. uniprot
Match: K3WSV6_GLOUD (Uncharacterized protein n=1 Tax=Globisporangium ultimum (strain ATCC 200006 / CBS 805.95 / DAOM BR144) TaxID=431595 RepID=K3WSV6_GLOUD) HSP 1 Score: 137 bits (344), Expect = 1.320e-29 Identity = 112/382 (29.32%), Postives = 183/382 (47.91%), Query Frame = 2
Query: 278 KFMQGFWDLASVDVPVRLGAAAMIVRHVSSPVGGGDA------EYAIKRLVRGMCSGRECARQGFASCLTQALAVLSRDAPATATSTVLEQILKVTQTTAAMKGADERDLALGRLVGVSALALSGRLGPDPQS--AEGALKAVSELYTKRKWIGQAAGEAALLVTSKAFEGDGEFFRTVLPLLAPLLKGKDGSILQVSDLSPDQLLLSLGLRSIMRERGLD---PQEDAALKEALPPFLRYASVVRAGKTQELVSPLKQSASAFPKVHAVWGRLWDDLGLSPAGQRPRASLSAKRLKKLGEVWSAVVDGALT---TTTLNNKGTAILLLKQVLQRVPAAGVWRILSPGIVRLVLNHTQGEDNYLFSLVRMTLRQLPTIVEDD 1381
+F++ FW+LA DV VR AAA I+ H+ DA +Y +KRLVRG+ S R+ ARQGF++ ALA L P+ V + + + + ++MKG ++R+ GRL G+ A+ SGRL D A +K + E+ +KW +A EA L V + F ++P L G +V + + +Q+LL+ GL + G++ P ALK FLR ++ L PLK S+S +P+VHA W ++ L + + A + + E W+ +V+ L + T +G A L + V+ +P + + IL+P V+ + + + NYL R TL+ T+ ++
Sbjct: 84 EFLKLFWNLAESDVAVRSSAAAQIIAHLQQKQSSEDATFEDDLQYTLKRLVRGLASSRDAARQGFST----ALAGLLETFPSIKLQEVQDLLREAMEVHSSMKGMEQREHMFGRLFGLLAVQRSGRLSGDANQDVAVQVIKQLLEMSKWKKWFREACFEAVLAVLVEV--NSKTFLSELVPEFTTYLSG------EVGEYNAEQVLLAAGLHHYIHTTGIESKVPSTFPALK-----FLRRKAM------HALAEPLKNSSSCYPRVHAAWYGIFGHLIHTG---KDAAQFDVELFQ---ETWNVLVENVLLNKESATHERRGLAFKLFELVIPSLPRSLLRAILTPHFVKCLYTNAVSKKNYLHEAARHTLKAFATLAPEE 436
BLAST of mRNA_P-fluviatile_contig11.1288.1 vs. uniprot
Match: A0A8K1FMH1_PYTOL (Uncharacterized protein n=1 Tax=Pythium oligandrum TaxID=41045 RepID=A0A8K1FMH1_PYTOL) HSP 1 Score: 139 bits (351), Expect = 1.560e-29 Identity = 119/387 (30.75%), Postives = 184/387 (47.55%), Query Frame = 2
Query: 254 KPSNPAFDK--FMQGFWDLASVDVPVRLGAAAMIVRHV--------SSPVGGGDAEYAIKRLVRGMCSGRECARQGFASCLTQALAVLSRDAPATATSTVLEQILKVTQTTAAMKGADERDLALGRLVGVSALALSGRLGPDPQSAEGALKAVSELYTK---RKWIGQAAGEAALLVTSKAFEGDGEFFRTVLPLLAPLLKGKDGSILQVSDLSPDQLLLSLGLRSIMRERGLDPQEDAALKEALPPFLRYASVVRAGKTQELVSPLKQSASAFPKVHAVWGRLWDDLGLSPAGQRPRASLSAKRLKKLGEVWSAVVDGAL---TTTTLNNKGTAILLLKQVLQRVPAAGVWRILSPGIVRLVLNHTQGEDNYLFSLVRMTLRQLPT 1366
K PA D+ F++ FW LA DV R AAA ++ + S+P D +Y +KRLVRG+ S R+ ARQGF++ L+ LA A + + L+ +L+ + A MKG ++R+ GRL G+ AL SGRL D + + + V EL +KW+ ++ E L V S F + ++ + LL G VS + +Q+ L++G++ ++E L DA P L +VR L PLK S S +P+VH+ W ++ L S A + E W+ +V+ AL T T KG A+ L + VL +P+A + IL+P V+ +LN+T + L R L+ T
Sbjct: 6 KQEAPAMDRNDFLKLFWTLAESDVAARTTAAAQLIAQLQHLQQQKDSTPFDD-DVQYTLKRLVRGLASSRDAARQGFSAALSALLAAFPE---AISLQSTLDVLLEAMEVHANMKGMEQREHMFGRLFGLLALHRSGRLTQDEDAQKITVAIVKELLEMSKWKKWLRESCVEGVLTVLSSV--SPKLFVKELVSECSALLTG------DVSAFNAEQVALAVGIQHYIQEHKLKELSDAKY-----PALH---LVRRKHIHSLAEPLKLSTSCYPRVHSAWFGIFGHL----------VSREAIDAELFQEAWNVLVENALLAPATATHERKGLALKLFELVLPSLPSAVLRAILTPHFVKCLLNNTSSKKTILQEAARHCLKVFAT 362
The following BLAST results are available for this feature:
Alignments
The following features are aligned
Analyses
This mRNA is derived from or has results from the following analyses
Properties
| Property Name | Value |
| Taxonomic scope | Eukaryota |
| Seed ortholog score | 1413.3 |
| Seed ortholog evalue | 0.0 |
| Seed eggNOG ortholog | 2880.D8LU33 |
| Preferred name | MYBBP1A |
| KEGG ko | ko:K02331,ko:K11836 |
| GOs | GO:0000182,GO:0000976,GO:0000977,GO:0000978,GO:0000987,GO:0001012,GO:0001067,GO:0003674,GO:0003676,GO:0003677,GO:0003690,GO:0003712,GO:0003714,GO:0003824,GO:0003887,GO:0005488,GO:0005515,GO:0005575,GO:0005622,GO:0005623,GO:0005634,GO:0005654,GO:0005730,GO:0005737,GO:0006091,GO:0006139,GO:0006259,GO:0006351,GO:0006355,GO:0006356,GO:0006360,GO:0006725,GO:0006807,GO:0006915,GO:0006950,GO:0007154,GO:0007165,GO:0007623,GO:0008134,GO:0008150,GO:0008152,GO:0008219,GO:0008270,GO:0009058,GO:0009059,GO:0009267,GO:0009303,GO:0009605,GO:0009889,GO:0009890,GO:0009891,GO:0009892,GO:0009893,GO:0009987,GO:0009991,GO:0010467,GO:0010468,GO:0010556,GO:0010557,GO:0010558,GO:0010564,GO:0010604,GO:0010605,GO:0010628,GO:0010629,GO:0010941,GO:0010942,GO:0012501,GO:0015980,GO:0016070,GO:0016072,GO:0016740,GO:0016772,GO:0016779,GO:0018130,GO:0019219,GO:0019222,GO:0019438,GO:0022900,GO:0022904,GO:0023052,GO:0031074,GO:0031323,GO:0031324,GO:0031325,GO:0031326,GO:0031327,GO:0031328,GO:0031667,GO:0031668,GO:0031669,GO:0031974,GO:0031981,GO:0032501,GO:0032774,GO:0032922,GO:0032991,GO:0033554,GO:0034061,GO:0034641,GO:0034645,GO:0034654,GO:0034660,GO:0035556,GO:0040029,GO:0042149,GO:0042564,GO:0042594,GO:0042790,GO:0042981,GO:0043065,GO:0043067,GO:0043068,GO:0043167,GO:0043169,GO:0043170,GO:0043226,GO:0043227,GO:0043228,GO:0043229,GO:0043231,GO:0043232,GO:0043233,GO:0043565,GO:0044087,GO:0044089,GO:0044212,GO:0044237,GO:0044238,GO:0044249,GO:0044260,GO:0044271,GO:0044422,GO:0044424,GO:0044428,GO:0044446,GO:0044464,GO:0045333,GO:0045787,GO:0045815,GO:0045892,GO:0045893,GO:0045934,GO:0045935,GO:0045943,GO:0046483,GO:0046872,GO:0046914,GO:0048511,GO:0048518,GO:0048519,GO:0048522,GO:0048523,GO:0050789,GO:0050794,GO:0050896,GO:0051171,GO:0051172,GO:0051173,GO:0051252,GO:0051253,GO:0051254,GO:0051716,GO:0051726,GO:0055114,GO:0060255,GO:0065007,GO:0070013,GO:0070888,GO:0071156,GO:0071158,GO:0071496,GO:0071704,GO:0071897,GO:0072331,GO:0072332,GO:0080090,GO:0090068,GO:0090069,GO:0090070,GO:0090304,GO:0097159,GO:0097190,GO:0097193,GO:0097659,GO:0098781,GO:0140097,GO:0140110,GO:1901360,GO:1901362,GO:1901363,GO:1901576,GO:1901836,GO:1901838,GO:1902679,GO:1902680,GO:1903506,GO:1903507,GO:1903508,GO:1990837,GO:2000112,GO:2000113,GO:2000209,GO:2000210,GO:2001141 |
| EggNOG free text desc. | DNA-directed DNA polymerase activity |
| EggNOG OGs | KOG1926@1,KOG1926@2759 |
| EC | 2.7.7.7,3.4.19.12 |
| COG Functional cat. | S |
| Best tax level | Eukaryota |
| Best eggNOG OG | NA|NA|NA |
| BRITE | ko00000,ko01000,ko01002,ko03036,ko03400,ko04147 |
| Hectar predicted targeting category | other localisation |
| Ec32 ortholog description | Armadillo-type fold |
| Ec32 ortholog | Ec-16_000040.1 |
| Exons | 22 |
| Model size | 4510 |
| Cds size | 4407 |
| Stop | 1 |
| Start | 1 |
Relationships
The following UTR feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815480.234216-UTR-P-fluviatile_contig11:3354572..3354675 | 1622815480.234216-UTR-P-fluviatile_contig11:3354572..3354675 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 3354573..3354675 + |
| 1693562017.7850285-UTR-P-fluviatile_contig11:3354572..3354675 | 1693562017.7850285-UTR-P-fluviatile_contig11:3354572..3354675 | Porterinema fluviatile SAG_2381 | UTR | P-fluviatile_contig11 3354573..3354675 + |
The following CDS feature(s) are a part of this mRNA:
| Feature Name | Unique Name | Species | Type | Position |
| 1622815480.2493503-CDS-P-fluviatile_contig11:3354675..3354899 | 1622815480.2493503-CDS-P-fluviatile_contig11:3354675..3354899 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3354676..3354899 + |
| 1693562017.7985833-CDS-P-fluviatile_contig11:3354675..3354899 | 1693562017.7985833-CDS-P-fluviatile_contig11:3354675..3354899 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3354676..3354899 + |
| 1622815480.260964-CDS-P-fluviatile_contig11:3355838..3356010 | 1622815480.260964-CDS-P-fluviatile_contig11:3355838..3356010 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3355839..3356010 + |
| 1693562017.8142765-CDS-P-fluviatile_contig11:3355838..3356010 | 1693562017.8142765-CDS-P-fluviatile_contig11:3355838..3356010 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3355839..3356010 + |
| 1622815480.2717574-CDS-P-fluviatile_contig11:3356718..3356895 | 1622815480.2717574-CDS-P-fluviatile_contig11:3356718..3356895 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3356719..3356895 + |
| 1693562017.8226128-CDS-P-fluviatile_contig11:3356718..3356895 | 1693562017.8226128-CDS-P-fluviatile_contig11:3356718..3356895 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3356719..3356895 + |
| 1622815480.2823565-CDS-P-fluviatile_contig11:3357809..3357974 | 1622815480.2823565-CDS-P-fluviatile_contig11:3357809..3357974 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3357810..3357974 + |
| 1693562017.8309822-CDS-P-fluviatile_contig11:3357809..3357974 | 1693562017.8309822-CDS-P-fluviatile_contig11:3357809..3357974 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3357810..3357974 + |
| 1622815480.292015-CDS-P-fluviatile_contig11:3358597..3358753 | 1622815480.292015-CDS-P-fluviatile_contig11:3358597..3358753 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3358598..3358753 + |
| 1693562017.8394556-CDS-P-fluviatile_contig11:3358597..3358753 | 1693562017.8394556-CDS-P-fluviatile_contig11:3358597..3358753 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3358598..3358753 + |
| 1622815480.303824-CDS-P-fluviatile_contig11:3359569..3359719 | 1622815480.303824-CDS-P-fluviatile_contig11:3359569..3359719 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3359570..3359719 + |
| 1693562017.8485758-CDS-P-fluviatile_contig11:3359569..3359719 | 1693562017.8485758-CDS-P-fluviatile_contig11:3359569..3359719 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3359570..3359719 + |
| 1622815480.3137524-CDS-P-fluviatile_contig11:3360570..3360651 | 1622815480.3137524-CDS-P-fluviatile_contig11:3360570..3360651 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3360571..3360651 + |
| 1693562017.8586454-CDS-P-fluviatile_contig11:3360570..3360651 | 1693562017.8586454-CDS-P-fluviatile_contig11:3360570..3360651 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3360571..3360651 + |
| 1622815480.325171-CDS-P-fluviatile_contig11:3361681..3361762 | 1622815480.325171-CDS-P-fluviatile_contig11:3361681..3361762 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3361682..3361762 + |
| 1693562017.8679898-CDS-P-fluviatile_contig11:3361681..3361762 | 1693562017.8679898-CDS-P-fluviatile_contig11:3361681..3361762 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3361682..3361762 + |
| 1622815480.337076-CDS-P-fluviatile_contig11:3362499..3362577 | 1622815480.337076-CDS-P-fluviatile_contig11:3362499..3362577 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3362500..3362577 + |
| 1693562017.87686-CDS-P-fluviatile_contig11:3362499..3362577 | 1693562017.87686-CDS-P-fluviatile_contig11:3362499..3362577 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3362500..3362577 + |
| 1622815480.347796-CDS-P-fluviatile_contig11:3363472..3363577 | 1622815480.347796-CDS-P-fluviatile_contig11:3363472..3363577 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3363473..3363577 + |
| 1693562017.8862476-CDS-P-fluviatile_contig11:3363472..3363577 | 1693562017.8862476-CDS-P-fluviatile_contig11:3363472..3363577 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3363473..3363577 + |
| 1622815480.3583012-CDS-P-fluviatile_contig11:3365068..3365141 | 1622815480.3583012-CDS-P-fluviatile_contig11:3365068..3365141 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3365069..3365141 + |
| 1693562017.8969915-CDS-P-fluviatile_contig11:3365068..3365141 | 1693562017.8969915-CDS-P-fluviatile_contig11:3365068..3365141 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3365069..3365141 + |
| 1622815480.3703058-CDS-P-fluviatile_contig11:3365798..3366125 | 1622815480.3703058-CDS-P-fluviatile_contig11:3365798..3366125 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3365799..3366125 + |
| 1693562017.9070394-CDS-P-fluviatile_contig11:3365798..3366125 | 1693562017.9070394-CDS-P-fluviatile_contig11:3365798..3366125 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3365799..3366125 + |
| 1622815480.3799105-CDS-P-fluviatile_contig11:3366479..3366870 | 1622815480.3799105-CDS-P-fluviatile_contig11:3366479..3366870 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3366480..3366870 + |
| 1693562017.9178078-CDS-P-fluviatile_contig11:3366479..3366870 | 1693562017.9178078-CDS-P-fluviatile_contig11:3366479..3366870 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3366480..3366870 + |
| 1622815480.3897257-CDS-P-fluviatile_contig11:3367501..3367731 | 1622815480.3897257-CDS-P-fluviatile_contig11:3367501..3367731 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3367502..3367731 + |
| 1693562017.9264855-CDS-P-fluviatile_contig11:3367501..3367731 | 1693562017.9264855-CDS-P-fluviatile_contig11:3367501..3367731 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3367502..3367731 + |
| 1622815480.3996165-CDS-P-fluviatile_contig11:3368112..3368206 | 1622815480.3996165-CDS-P-fluviatile_contig11:3368112..3368206 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3368113..3368206 + |
| 1693562017.9341996-CDS-P-fluviatile_contig11:3368112..3368206 | 1693562017.9341996-CDS-P-fluviatile_contig11:3368112..3368206 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3368113..3368206 + |
| 1622815480.4157686-CDS-P-fluviatile_contig11:3369047..3369168 | 1622815480.4157686-CDS-P-fluviatile_contig11:3369047..3369168 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3369048..3369168 + |
| 1693562017.9484117-CDS-P-fluviatile_contig11:3369047..3369168 | 1693562017.9484117-CDS-P-fluviatile_contig11:3369047..3369168 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3369048..3369168 + |
| 1622815480.4259367-CDS-P-fluviatile_contig11:3369597..3369750 | 1622815480.4259367-CDS-P-fluviatile_contig11:3369597..3369750 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3369598..3369750 + |
| 1693562017.9575405-CDS-P-fluviatile_contig11:3369597..3369750 | 1693562017.9575405-CDS-P-fluviatile_contig11:3369597..3369750 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3369598..3369750 + |
| 1622815480.4354186-CDS-P-fluviatile_contig11:3370590..3370809 | 1622815480.4354186-CDS-P-fluviatile_contig11:3370590..3370809 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3370591..3370809 + |
| 1693562017.9661403-CDS-P-fluviatile_contig11:3370590..3370809 | 1693562017.9661403-CDS-P-fluviatile_contig11:3370590..3370809 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3370591..3370809 + |
| 1622815480.4448006-CDS-P-fluviatile_contig11:3371484..3371628 | 1622815480.4448006-CDS-P-fluviatile_contig11:3371484..3371628 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3371485..3371628 + |
| 1693562017.9753857-CDS-P-fluviatile_contig11:3371484..3371628 | 1693562017.9753857-CDS-P-fluviatile_contig11:3371484..3371628 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3371485..3371628 + |
| 1622815480.454077-CDS-P-fluviatile_contig11:3372186..3372591 | 1622815480.454077-CDS-P-fluviatile_contig11:3372186..3372591 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3372187..3372591 + |
| 1693562017.9901395-CDS-P-fluviatile_contig11:3372186..3372591 | 1693562017.9901395-CDS-P-fluviatile_contig11:3372186..3372591 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3372187..3372591 + |
| 1622815480.464579-CDS-P-fluviatile_contig11:3373113..3373241 | 1622815480.464579-CDS-P-fluviatile_contig11:3373113..3373241 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3373114..3373241 + |
| 1693562018.0026662-CDS-P-fluviatile_contig11:3373113..3373241 | 1693562018.0026662-CDS-P-fluviatile_contig11:3373113..3373241 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3373114..3373241 + |
| 1622815480.4738836-CDS-P-fluviatile_contig11:3373831..3374564 | 1622815480.4738836-CDS-P-fluviatile_contig11:3373831..3374564 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3373832..3374564 + |
| 1693562018.0113072-CDS-P-fluviatile_contig11:3373831..3374564 | 1693562018.0113072-CDS-P-fluviatile_contig11:3373831..3374564 | Porterinema fluviatile SAG_2381 | CDS | P-fluviatile_contig11 3373832..3374564 + |
The following polypeptide feature(s) derives from this mRNA:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig11.1288.1 >prot_P-fluviatile_contig11.1288.1 ID=prot_P-fluviatile_contig11.1288.1|Name=mRNA_P-fluviatile_contig11.1288.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=1469bp
MTADDAMDVEESPLEQMDDSDTSSSGEGESSGQEDMQHGLDQDQQGREEG KPSNPAFDKFMQGFWDLASVDVPVRLGAAAMIVRHVSSPVGGGDAEYAIK RLVRGMCSGRECARQGFASCLTQALAVLSRDAPATATSTVLEQILKVTQT TAAMKGADERDLALGRLVGVSALALSGRLGPDPQSAEGALKAVSELYTKR KWIGQAAGEAALLVTSKAFEGDGEFFRTVLPLLAPLLKGKDGSILQVSDL SPDQLLLSLGLRSIMRERGLDPQEDAALKEALPPFLRYASVVRAGKTQEL VSPLKQSASAFPKVHAVWGRLWDDLGLSPAGQRPRASLSAKRLKKLGEVW SAVVDGALTTTTLNNKGTAILLLKQVLQRVPAAGVWRILSPGIVRLVLNH TQGEDNYLFSLVRMTLRQLPTIVEDDQEVQAQVAACLLRRGTIRFDNRAG VPVVSALVRAMGQEALETHVEFLKGVVQGKPGWADSKDLLPNGASSSSTA AGTPPPDSAVVDDGNEQCADTATDGSVAERLQAVEALYSLARSSGGDRGG SSGGKGDARSLAIAASSGGGLDVQGRRLTRTAEFFLEVGFFAPEDGAGVL PLPLKLAELCRSKFFSLVADIAAKPLFWQSGTPAAAAQAAETNRSSSGSG KKKSPSKKALLSGTAAAAGGGWGALEALWGLHEAWQGLEGAGRKLVEGVS VGQDEREACSVALAVVGRIRAAAAAARGGDKLGSAFAGILLMVSLHLLEG SNADGRGEERCEHITDLVETYGRMSSGKRDGKGGDDYDDDGSDDEADEDE DNNDPEPLAMLADVLVAVVAEPSTHSVRGLRDTARRVWGMICGARPLTRS ALDTLLSAVCGEDEGQGEDDAQGDREEEEEEETEAEEEEAEEDTANGKAK ASKTGDDRSDSDDSQGAVNGDEDGDEVMVDPSDVAALLGGNVDDSDDDGE GGRALQHHAGADKALGALLGLKKSGRKRGALEAQRQGYQIRLRALDLLEV VCSRRPDSPYLLAALLPVLRAIKRLEGAAGVGLRSGGEATALSTRLTTLY KNRLCKCKPRTLSPSEGDRKGRAAPAAEGHDNDEEEDIPGKTAKDFSELM GLCRSWEKKRDAPLASLALEGALCCLRSLKTLPAKGKGEGGAAGGCGDGG GGGALEGALKSLSTAVGTFFRTKRGAGLTPLQVEEVVKRFPGALSPVLVE AAEGAAASDYLRTESFRLLAGVLQRRPSMDPSSRKALLAHCPAIFKALGD VISDTAGDAAAASAAAAAAVADDVAAVATGVEKKSSKAHNTTSSSTMLKA KRLKPLLACLSAAIAAAGGGTGAGSTGSAGSILLSRPGAASEVRALKAAL ETLAQASASLAMQLQCGQAARELDALEVPEEEAASAAGHDGAGTGGFQSE EKVKKKKKESKARGAGGSPMTQKRKAAADGRADGEADENRGDSSSSSSSS SSSNNNNKKKRRRKSSEG* back to topmRNA from alignment at P-fluviatile_contig11:3354573..3374564+ Legend: UTRpolypeptideCDS Hold the cursor over a type above to highlight its positions in the sequence below. >mRNA_P-fluviatile_contig11.1288.1 ID=mRNA_P-fluviatile_contig11.1288.1|Name=mRNA_P-fluviatile_contig11.1288.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=19992bp|location=Sequence derived from alignment at P-fluviatile_contig11:3354573..3374564+ (Porterinema fluviatile SAG_2381) GGAGGTATACAGCAGCATTCACACACATCGAAGGAGACAAGTCTCTCTCA
TCAACTCGATACCGCTGTCCCCGACTTGCCTCTCGGCGTAGGGCTCTGCA
GCCATGACCGCTGACGATGCAATGGACGTGGAGGAATCTCCTCTGGAGCA
AATGGATGACAGCGACACGAGCAGCTCAGGAGAAGGAGAGAGCAGTGGCC
AGGAGGACATGCAACACGGATTGGACCAGGACCAGCAGGGGAGGGAGGAG
GGGAAGCCCTCCAACCCGGCCTTCGACAAATTCATGCAGGGATTCTGGGA
CTTGGCTAGCGTTGACGTGCCCGTGAGGTGCGTTGCTGTTGGTTGCCGCT
GTCTTGGCGTTGATAGCGTGCGAAGACGGGAAGCGTTCGATTCAAGTTTG
TTGAGATCATTGATGATGGGCCTACCGTTTGCCGAAAATCTGGAGTACGT
CAGCCACAGAGAGGTAATCTTTTCGGGACGGGGTACAATAGGTGTAGCTG
ATTGAAGCCCTCGTGCTTTCCTCGGCGACGTGAGAGGATATGGCTCCAAG
CAGGCCGGCCATCCTACGCCATACGCCTACGCTCGGACGCGCAATCCACA
GTCCCGCCAACAGTCCCGTCGCCGTTGATTGATACTTTCACTTTCAGTCC
ATCTCGATTGAAATCAATTGAAAAACGCTGCGTCCAAAAGTCAGGGAATA
TTTGCCTTGAACCTCCGACGGGTCGAATTATATGCGGCTTTGTATTTGCA
ACGATTTAAGAAGCACCTCAGAGGGCCTGAAGAAGTAGATGCTTGTCCAT
GTGCACGAGACGAGTTCCCGAGAGTTCCGGTGGTGTTTGTGCGCCACATA
CTTGCAAATCCTTACCTTTGCATGTTGCATGCCGCTACTGCAGTCGCAAC
AATCGCTTGAGTCATCGACAACGAGGATATTGTTGAGATTAACAATAGTC
TCCGCCCACCGTTTGTAGCGAAAGTTTGCAGACATGCTTCGTCGCCGCAA
AACAAGCAGATTAGAGCTGTGTGGTCGGACGGTTGGATTATCTCTTGCGA
AGCACACACAAGGCTTCACATGCTGCTTCGCACCATCATAGCACACGAAA
TTTGTATTACCTGTACAATACCATCGCCGAGATTACCTGAAGGCTGATAA
TCCGCTCTCAAAGGCGCGCTCACACGCGCCACACTTCCATCGCTTTCACG
CAAGACGGAGTACGTGCCTGCCTGCCCGCCTGACCTGCCCGCTTGCATGA
CTGCCCCCGACTCCAGGTTGGGAGCGGCGGCCATGATCGTGAGGCATGTG
TCGAGCCCCGTCGGGGGGGGTGACGCGGAGTACGCGATCAAGCGCCTGGT
GCGAGGCATGTGCTCCGGCCGAGAGTGCGCCAGGCAGGGCTTCGCGTCGT
GCTTGACGCAGGCGTTGGCAGTTCTGTCCCGGGATGCGGTAAGACAAAGA
GAGAGAGAGAGAAAGAGAGAGAGAGAGAGAGTAAGCGTCGGCCTGCCGTT
TAGGTCGCAGCCCCGCGCACTCGTCGATGGTGCTTGGTTGCTTGGGCGCT
CGCCCGCTGCTAAGGATTTACTACTTAAATACCGTGCCCGTCGGGGTGTG
GTTTCTCATTACTTCGGATGACGGAGCGAAGGGCCTCGGTTTGCTCTTTA
TCTCTGTTGAGCGTGAAACCGCGAGTCAGAGTTGTTGGACATGAAGTGGA
TCGGTCGGTTACTCGGGTGTACGTAAAGTGACCGTGGCGTCCCAGACAAA
TCTAGTTTTTTTGTAGGTGCTCTCATGTGATTTTGGTAGGACCCCCGTTT
GCGGTTGGCAGCCGTGGTGAGCGGTTGTTTTACGGGGAAGAGCGGTTTGG
TACTGCCTTTCCGTCCCCCTGCCTGCCTGCTGCGGTCGCCCTCTATTTGT
CAGTACGCTAGCCTGAATTGTGTACAAGATACCGTGTCATAACGGCTTCA
ACAAAACACAGATCAACAATTCCTGCCCAGATTGTCGTGAATTTTGTTGA
CAAGAAACGCACACCCATTATGGCGTCCCCCTCCATCCTCGTTGCCCGCT
CACCCGTGTGCCAAGACCCCAACAATGAAGTTCCTCGTGTGTCTGCCCGC
CCCCGCCCCTGCCCCGTTCTGCCTGTACCGCTTCTGTCACTCTAAGCCGG
CCACCGCTACGTCGACTGTGCTGGAGCAAATCTTGAAGGTCACCCAGACC
ACGGCGGCCATGAAGGGGGCCGACGAACGTGACCTGGCCCTCGGGCGACT
TGTGGGAGTCTCTGCCCTTGCCTTGTCGGGCCGCTTGGGACCGGATCCGC
AGAGCGCGGAGGGGGCTTTGAAGGTGCTACGAGGAGAAGGGGGGGGGAGG
ATCGGTGGAGGGGAGGATTGATTGGGGGGTTCTCATACCCTTATACATTA
TCCGTGAGACCGACGACTTCGCACTACTTCGGGCGGGGGAGGTGTAAAAT
CTGTAGAGCTTTTGTCAAGTTTGTCCCTTGAAATCAAGTCGTCAACGGAA
GAAAAGCGACAACTCGACGGCGCGATCGCACTCGCTCGGGTGCTCGGCGC
GGGAGGCGGGGACGCCTCGATATTTTTTAGCGTGCTTCGTGACAAATTTG
GCGCCGCGTCGTGCGGCTGAACCCACACGGGAAGTCGTCTGCTTCGTCGT
GTTGCGTACGCGGTCTTGTTTTGGTTCACATGTGGTCCGTTGATATCAGA
AACGCCAGGAGCAGAAGCATCCTTCCTCGTTTTTTTGCACCTCCTCTGCC
TGTGGCCTTTTGGGCCACGGTTCGTGCTAACGCGTTGCGCGGTGTGGTAT
AGTGCGTTTTTCCGTGGTGAACGACTCGACTCTTGCCGAGAAGGGGCACC
GCCGCTGTGTCCTGGCAGGGTTACTGGGTGGGCGATCTCTTTTCTCTTCC
GCTGTCGTTGCGCTCGCATGCTCGATCACGCGAATGCAGCGCACACTCGT
TCCCCTCACCCTCCGCACGTCACGTACATGACGCCCTGTTATAAGCAAAA
TAAATGTCGAGACAAGGTATTGTTGTCCTAACCCCGCTCATTTCTCAACT
TTTGTTCGGTTTTCGGGAACGACATGTATCTGCACGTGGCGTGTTTTGGC
ATGGATCAGGCTTGTGTACGTCGCCCTCGGACATCCTGGCGCTTTTCCGA
TCAAGCCGCACTTTTCAAATACTACCCCCCCCTCCCCGCTTTCCCGCACC
TCTCGCACCCCCCGGCCCAAATCGTCGCGATCGTCAGGCTGTGTCAGAGC
TGTACACCAAAAGGAAGTGGATCGGACAGGCAGCCGGCGAGGCGGCCCTG
CTGGTCACGTCCAAGGCATTCGAGGGGGACGGGGAGTTCTTCCGGACGGT
CCTCCCGCTGCTGGCGCCGCTGCTCAAGGGGAAAGACGGGAGCATCCTCC
AGGTGCACATGGAAGGGGGGGAATCGATCGACCCTTTTTCTCCGTTTTCA
ACGCCAAAATCATCGAGCGGTGGGGTGGGACGACTGGTGTTCATATTTTT
TTGGCGCTTGCGGCTTCGTCCTTTGCGTGGGGGCTATGACTCAGCTCGAG
AGCCGGGCACTCTTCTTTTTTCGGGGCACTGGAATCAGAAACCAGCGGCC
AGGCATGGATACAAAGCGGCAGGAATTTGTAGGTGTAGTTCGTCCTCAAA
CGTGCGTATTACCGTTTGTTTGATGTGCTCAACGACACAGTGCACACTTC
GACGTCCAGGGGAAGCCCTTCCTGCTTCGCGTGACCGAAGCGAGGGTATC
ATGGCGTCGTCATTTCGGCTGCGATGCCACTGTCCCAAAACGGTGGGATT
GACTCATCGCCGAAAGGAAGAGGATGTGTGTGTGTGGCTTACCCTCTCTC
TCGCCGTCGTCAGATGTTGTCGGGACGCTCTCTTGTTTGGTGTACACCTC
GGCGTTTTGGTTCACCCTTAAACGAAGGTGTGTTGCCCTCGTCCTTGTAA
TTTCCGGGTGCTCATTTTAGTTTACATGTGCGTGCATCGGCATTTTGGTT
CGCCCACACACCTGCACAAAATAAGGTGTCGGACCTGTCCCCCGACCAGC
TGCTGCTCTCGCTGGGACTGCGCTCCATCATGAGGGAGCGAGGCCTTGAC
CCGCAGGAAGACGCCGCCCTGAAGGAGGCCTTGCCCCCGTTCTTGCGGTA
CGCTTCGGTCGTGCGCGCGGGGAAGACACAGGTGTGTAAAAGGGATGGGG
AAGGGGGGGGCAGGGGCGAGGAGCAATTGCAGGGGACACGTTGCGATGAG
TGGCGGGAAGGGTGGCGCGGTGCGTCGATCCACGGGGCCGCACTTTCCTT
GGGGCAAGTCCACGGCCGCGTAGAAGGGGCGAGATAGATTTTTGCGGGAA
ATGAGGCTTGACGTATGGTGTTGTAGGAAAGACGCTTGGGTAGCGTCCAC
CAGAATCGAGGTTTTCCCTGTCGAGTTTAAAACGGAGCAACGCCGATTCG
ACACTGGTGGATGGCCGACATTCGCGTGATCGATTCATTCAAATATTACT
CATAAACCATTCTCTTTCTCCTTCAACTTCCCTGGGGCATGTTCGTACCA
AGCATTGTTGAAATAGTGATGTAACGGCGAGGTACTGACGTAATACATTC
CAATGGCTGTCAATGGGGCGGTACTAAAAAATGTTTTTTCAACTCAGTTG
AGCTGTCATCCGTGTGCAAGATCAGCAAGCCTTTGGCAGAACATTCTTGG
TAGGATTTGCCCACCCGTCATGCGACTTGCCGAATGCATCACGGCGCTTT
CGTGCTTGGTGAATGCAAGAGCCTGGGCCGGTGAAAACCCGGCAAATCGC
TCCATCCCGGCCTAGTAGGGGTGCGAGGTCCACGGCTTGATGGCTACAGC
ATGCGTGAATTGAGTCCGCTCTCCAGCCTCCCCAACCCCCCCCTTCTCCC
CCCCTCCTTCCCTCCCTTTCCACCCTTCACCCCGCGTCGCCATTGGCCCT
CTTCCCGGCCATTCCTTTCCTTCCCTTTCCTCTGACTGCTGTTGCAGGAG
CTAGTCTCGCCGCTAAAGCAGTCGGCGTCGGCCTTCCCGAAGGTCCACGC
GGTGTGGGGCCGCCTGTGGGACGACCTCGGCCTGTCTCCGGCTGGACAAC
GCCCTCGGGCCTCGCTGAGCGCGAAGCGACTGAAAAAGCTCGGAGAGGTG
AACGTGTGTTTAGCAGTAGGCCTTCAAAATTTCCGCCAAAAGGGCCGGCC
CGCAGGATAGCTCGAGAGAGCGGAAATGGAAAATGTTAACTGCTCGTGAA
GCCAGCCCTGAGGGATATGGCAGCGGCAAGTTAGTTCTCCGTTCCATAAT
CATTTTATACCTTTGTTTTTCCGGGGGAAGTTGTTGAAAATCTACGGGCA
ATGCTTAAGCCCAGACGAGGTGCATAACGGTCATGCGTTCTTCGCGCTTG
GCGAGACCCTTATTTGCTCTCCTGTAAGCTCGACACGCCAACGGTCTACC
CAACAAGGCTTGGTGCTCGCCGTGGCGGGGTTGTTGATGAAGGGCTTTCT
TTGCGTGACCAGCTCCGGTTACCTCTGGTGGACTGACACTGGACCGAGGC
AAAAAAAACTCCCAACACGTTCGGGGGCAGGCCATACGTAGAACATCATG
CCGTCGTTTTACAGAACGAGCTCCCTGTTCGTTGGTTGGTGCTTCCATTT
TCCTGGGGTTTGTTGTGCTTTTTTTACCCAAAAACGACACAGCTGTATCG
TCAACCCCGATTCGTTGATCTTCATCATGTCGTTCCGTGGAAGGGACGGT
ATAATGGCGGTGTATGTCGCGAAACTAAAGGTGCAGGCATTGCTGCTGCT
TGCACTGTCGGCACTGCACGGGAATGGTGGTACATGCCAAGGCTTGCCAA
GGCTAAGGAAGTGGTGTGTAGAATATCCGCGCCGAGCGACCTCAACGGCG
TTGAAGCGGCACCGGCATTCTTCGACCGGCATTTTGCGCGGGGCCTCAAC
GTGTGCGCATTGCACAAAATCAATTGCGCTTTTGTTATTCCTGTCCAGGT
ATGGTCGGCCGTGGTGGATGGCGCCCTCACGACCACCACCCTCAACAATA
AAGGGACTGCTATCCTGCTGCTGAAGCAGGTAAGCGAGCGACTTTTCTAA
AAAAATGTCTCGGCTGCTTGCTGCCCGCCTCAAGCATCACCGCAGTGGAA
TTCGGTACCTAAACAGACTGTCGACTTCGGGAAAGTGTCTCGAACCCCTC
GTGTGCGACCTCCCCCCACCACACACACAACCGCACACATACGCGCCCCC
CCTGAGAAGTAGCAGAAAATATATATGTACATCGGTTCCATCGATGAGCT
CTTGCAGGGAGAACAGGGCGACGCCGCCTCTTGAGTAAAACTGAAATGTG
TTCGCGTAGCCCGGAGTAGGCCTTGAGGCGGATTGCATATTCCGTTGTGC
TCACGCTGTCTGTCTGCCAAGCGTGTCGTAGTCGTGGTCTTGTTCTCGGT
TTTGGCCGTGGTTTATTCCGCCTTCAACTTCGGTGCCAGGCGCTTGTGGA
AAGCTCGGCAGGTGTCAGGCCATTTTTCCCGGTCTAGGGCGTTGACTGGA
ACAAGTAGAGGATCCCACCTGTGTGTCGCCTGCCAATGACTTATACTTCG
GATTCCTTTGCTGCGAAAGCAACTATTATACTCCAAGTTTTTTGTTTCAG
GGAGCGGTAGGCGCGGGCGCAGCATGTCGATCAGCGCCGGCTGCAAGAGA
CAACAGTCAACCTACAAGACACCTGGATCAGCAGCACGAAACCTGGTCTT
GGATCAAGACACCTCGTCTCGTCTTGAAACAAGTCACCAAATCGTACACC
TAGGACACACCATCTACAATTTTCACACCGAAGCCTCCCCCGCCGTCGGA
AACATGTGGCGATATCCTTCTTCATAAATGGCCTGCTGAGAATGGCATCG
TGACGGTACTTCGTTTTGTCGACTGGTGAACGTGCTGTGAATTTGTCTGG
CGGGCGCTCTACAGGGTCGCAAAAACAAAGCACACGTGCGTACACAAGAT
GGGTTGTTAGCGTGGCACCCGCTCACCCGCCCGCCGGTCCCGGTGTCGTC
GCGTCCCGTCCCGTCTTTGGCTCACGCCGCACCAAAATCCGATCGCGGCC
CGACCTCAGGTCCTGCAGCGGGTGCCCGCGGCGGGGGTCTGGCGCATCCT
GTCCCCGGGCATCGTTCGACTGGTGCTCAACCACACACAGGTGGGTGAAC
GCGCTATCGCAGCTGTACCGTCCGACCATATTTTCTTACAGGCCGTGGGT
CCTCAGGCATGGTTTACGCACCCGCACCCTGGCTATTTGACCCACAGGTG
GACAGAAAACGGATGCAAAAAGAGGGGACAAGCATCATTCCTCGCCCGTA
GCTTGCGCACACACAGCTTCTGGTTCACGCTTGCTGATATATGTGAAGCG
GGGCTTTCTCAATCGATCCGAGATTTCTTTTTCATTTCGTTTATGCATTC
GCCCGGGCGTGTTTTTGTTGACCACGGCGCGGGAAAAGTGAGGCGCGACG
GCGAACAATCGTGCACACGACGGTTGTGGTACGCGAATTCATGATGGCAG
AAATCGTGCATGTATGACCTCGTGTTTACGTGGTTACCCCCGGAAAAGTC
AGAGCTGTTTCAAGTAATCAAAAGGATTCGCAGCGTCGGTCTTTTATTGC
AGTCCATCGTTTGTTCCTCGTGTTTGTGACCAACCCGGGCCGTGAACGAC
TTACACGTGCACAGTCCGAGACGCGATCAGTGCATCCAAGCAAGCAAACA
AGCAACAAGCACAGAGGATTTTGTCCACAAACACACAATCAAGCTTGTGT
GCCCCTGCCGGTCCATTCGCGCGTGCGTCGAACAATGCCTTATGGTGCGG
GATAAATTACGGTGCGGAATTCCATACCGTTCGGATGGACGCGGTGTCTT
GTGTTTTTTGCTCCGCCGCCGTTCCAGGGGGAGGACAATTACCTCTTCTC
CTTGGTGCGCATGACGCTTAGGCAGCTCCCGACGATCGTAGAAGACGACC
AGGAGGTGCGTGCGAATTGAGGCGCGTCGTGGGCATCTTCAGTGTGAGAA
TGATGTTGTGTTCGTGCTGCATGCCAGTGTTTTTTTTTCTGAGAGATTCA
CGTCGTCACCGGTCCAAAGTAATCTGCATGGCGGGAATCCAGAAGCCTAG
GGTCATGGATCAGTGATATCTCGGGCGGTATGGCGGGCGAGAGTGCTCGA
TGAGCCAGCCATTATCCCTCCATCCGAGTGGTGAGGGGCCCGACGGTCAT
GGCATTGGTAAAAATCTGCTCCATTTTCCGATTCCGATTTCGATTGAAAT
CGGTCCGATCGATCAGATGGTGGATCGGTTCCGATTCCTAACCCTTCAGA
AGCTGAAAGCTTTTCGCAACAACGCCGAGCTCAGATTTTAAAACAAATGT
CCATTACTTAGAACGGAGCAACGCAATTTGATGGGCGGATTCCGACGGAA
GATGAGGCTCCGTTATTGGCCCCATTGGCCCGGCGGAGTATTCTTCCACG
CCGCAGGCAGCAAAGAGAGGACTGCCCTGAATCTGTCTCTACACACGTGC
TGAATCTGCCGCGATGGGTTTTCAGTTCACGCTCACTGCTGCAGGGGCGT
CGAGTTGGTCACATTTCGGCCGGTTCCGACGACCCAGGTGGGATGACGCC
GCCGTGAGCTCCCCCTCCGCACTTTCGCACTTTATTACTGCTCTGGAGGG
TCGGGGGTCGAAGGTCGGTCAGGGAGTTGTAAGTAAACCCATTAGGGCAC
ACCCTCCAGTGCATTCGTTCGCCTGCGTTCGATGGTATCGCCTAGCTTTT
GGTTTCCTCGTTCTCGTCTCTCACCACTGCTGCCCTCTCTCCTTGGGGTT
GTTCGCCACCTCGTCTTGTCTTTTCCGAATACACGCAATCACGCAATCAG
GTGCAGGCCCAGGTGGCTGCGTGCCTGCTCCGCAGGGGCACGATCCGCTT
CGACAACCGCGCCGGGGTTCCCGTGGTGTCCGCCCTAGTCAGGGCGATGG
GACAGGTGCGTTGACTCGGTTGTGCAGAAGAAACACCAAACAGCGCACAT
CTTGTTGTGGCCGTGGATAACCTGGTATTCTCTCCCCACGTGGCCCCCCC
CACACACAAGCAGTAGTGCATCAGCGGCCTTTCGCTCAAACTTCGACAGG
GATCCTACTTACCACTGGCGGGAGTAGAAACGAAGCCGGAAAGTGATTGT
GCCCCTCATCTGTTCGTGATCTACCTGTGATGTGGGTAACGAGAAACAGC
GACAATTTAGTGCCCCCCCCCCGGCCTAACTTTTGCCCGATCCAATCATG
CGGGGTTTCGCTGCCTAGTACCGCGAGGGGCTGCGGCTCCCAGTTTGACC
CGACATCAGTCTCTCCTAAATGACACACGTCCAACGAATCTCGTATTCTC
TCCTCTTGCTCAGTAGCGTCGGTCGCCCCAGCGGTCTAGTGGATAATCTC
GAAAACCCGCTAGCACCAAAGTCGTGAGCTCGAGTCCCGATGCGGGTGAA
CAATTTGCAACTTTGGGGTAGAAAACGAAAAAAAAGTTGAAAATCTCACA
GTATACGACATTCGACTTCACTGTTGATGAGGGGATGGGACGGCTGGACC
CTTCTCGCGATAGAAAATGAAGCGCGCACCGCAGGAGGAAGGCCTCAGTA
CGATGCCCCCCATACCGGGTCTCCGGCACCATGCAGCAAGCTCTCCCGGC
CCTCCGGCTGGTTGTGATTTGTTGTTTCTGTGGTTGTGACCACAGCTCGA
CGTCGGCTTCCCCGCCGCCGCCGCTGGGAAAGCGGCAGAAGGAATCGAAG
AAAATCGGGACTGAATGCATTGGACCGCCACCCACCTTTGTTCCGGGGGC
AGCAGATCGGCCAGAACCCTCGCGGTGGACCTCAAGCTCACTCCGCTCGC
GCTCGAGCTCGAGCTCGAGGGCGGAGCAAAAAACGCAACGAAAAAAAAAA
AAAAGCCCCCTGTGTTTAACCCTCTCCTGTGTGACCCCGGCTGGTTTTAG
TTGTGTAACAAAAATACACTGCACAAGTGAAATACACTACGTACAAGTGA
AGAGTGCAGTTGTACCAAAAAGGGACGAAAACACACACACTCAAGCAGCG
AAGGATCTTTCATTTTTTCCTCAAGTGTTGCAGTTTCGTTTTCGTTTCGA
TGCTGACCGGCGGGCGGGAAGGCAGATGGGCTAGCAGGGAAGCACCCTCG
TCAGCTGGCGTCGGGTGGCCTTCACGGCCTACCTATCCGGGCTCCTCTCT
TGCCGCCTCCTCCCGCCTCCTCTGTCCCTCCTCGTCTCTCGTAAACTGGA
TTTGTATCCTTCTCTCTCCCCCTTGTCACCCTCTCCCCCCTCCTCTCTCC
TCCCTGCCTGCCTGCATGTATGCCTGTGTATCTGGTTGGCGCCCTCCTTC
CCTCCCTCCCTCCTCCATTCCTTGTTCTGTCTGTCTGTCGCTCTTTTTGT
CTATCCGCGTGTTCCCCGTGCTCTTGCGTGTGGTGAAAACTTTCAGGAGG
CGCTGGAAACCCACGTGGAGTTCCTGAAGGGAGTGGTGCAGGGGAAGCCC
GGATGGGCGGACTCAAAAGGTACCCTAGCCTTAGCCTCAGCCGCAGCCTT
AGCCAAAAGCCTTGCCCTTGGTCCGTCGGGTTGGTCTACCGTGGGCCTTC
CCCTTGGTCTACTGTGTCAAACTTGGGCTACAGTGTGAAACTTGGTCTAC
GATGTGCCTTGACCTTGGTCTACGGTGGGAAACCGGCAGTTGGTGTTGTT
GACCACGACGTTCTTTGGTTGCTCCCGTTTGCGTGCCGCCGTCAGGCTCA
CAAGGTAGACATGGCGGACGGAGTCCAGTTGAGATGATGCTGCTGTGCCC
CACGGTCATGGAGCAGCAGAAGAGCGCCTCCGAGATTTCCCTACCTTTGT
GCATTGATCAGGAGGGAGCGGTGCTTGCTGCCGGTGGGGGTGATACGTGA
CCCGAATTTCATCCGCCCCTCTTCGACACGTGTGCGCAAGGCGTGAGGCT
CATCCCTCTTTGGCTGCTTTTCTCGTCAGAGGCACTGCTGCGGTCTCCTG
TCTGAACCATGTTTGGACCGTTTTCCGCCCCCAGGGGTCAAATGCTCGAC
CCTTGTGATCACAACACAATCTTTGAGTTCTGTAACACTTGAGAACCAAA
TTTCTGAAACAGCGGAGCCGCCCCCGCCGCCTGCCCATGTCCTCTCGCCA
CCGCAATCACCGCCGCGGCACCCCAGATCTCCTGCCGAACGGTGCGAGCT
CCTCTTCGACCGCCGCGGGCACGCCTCCTCCTGATTCTGCCGTTGTCGAC
GACGGAAACGAACAATGCGCGGACACCGCCACGGACGGGTCAGTGGCCGA
ACGCCTCCAGGCCGTAGAAGCCCTGTACTCTCTTGCGAGGAGCTCCGGAG
GCGACAGAGGCGGAAGCAGCGGCGGCAAGGGCGACGCTAGGAGCTTGGCC
ATTGCCGCGTCGAGCGGGGGAGGGCTGGATGTTCAGGGCAGGCGGCTGAC
GAGGACGGCCGAGTTTTTCCTCGAGGTCGGCTTCTTCGCGCCGGAAGATG
GAGGTGAGCGACAAGTTTGCCTACGCTCGCGGACGCCGCCGGACGTGCGT
GCGAGTGAGCCCGTGCGAGCGAAACGTTGGTGTGTTTGCTCCTGCGGCCG
CCCCTGCTGCGGCCGCCGCCGCCGCTGCTGCCTTTCTTCACCTGGCGGTG
ACCCCATCCCGCCTCTGCCGTACCCTTTCACCCCTGCCCCCGCTGCGAGC
GCTTTCGTTCCCGCCTCCTCCCCTGTCAGCTTGTTTGGCCATCCTGCAAA
CTATCCCGGCTCCAACTCTCTGTCGTCGACCTGCACACGCCTAATTATCG
ATGGTTTTGGACGTTGCCTGCGCCTTCGCCCTGCCCTTCTCTTGTTTTCG
ACCTCAGCGGGGGTGCTTCCTCTACCCCTGAAGCTAGCGGAGCTCTGCCG
CTCCAAGTTCTTCAGCCTCGTGGCGGACATCGCCGCCAAGCCGCTCTTCT
GGCAATCTGGTACTCCCGCTGCCGCCGCTCAAGCAGCAGAGACCAATAGA
AGCAGCAGCGGCAGCGGCAAGAAGAAGTCGCCCTCGAAGAAGGCGCTTTT
GTCGGGAACGGCGGCGGCGGCGGGTGGCGGGTGGGGCGCGTTGGAGGCCC
TGTGGGGCCTGCACGAGGCCTGGCAGGGGCTCGAGGGCGCGGGAAGAAAG
CTCGTGGAGGGGGTGTCGGTTGGTCAAGACGAGCGGGAGGCGTGCTCGGT
GGCTCTGGCGGTGGTGGGGAGGATCAGGGCGGCGGCAGCAGCGGCCAGGT
ACTTGGATTTCTGAGCGGGGGGAGGGAGAGCAGATATCGTGCGTGGCCGT
GGCCATCCACGAGTTCACGAGTCCACGCATGACTTAGCCGGGACGGAACA
CGTCGTCGTCGTCGTCGTCGTCGTCGTCGTGTCGTCGTCGTCGTTTTGTT
GTTGTTGCTGCTGCAGCTGATATTGCGTTGGTTGTGCTGCTTACTGCTGC
TGTTGATATTGTTGTGAAAGGAACAACATTTTGAAATCTTGATGGCGATG
TTCCATATCCACATAAATTTGCGTTGACAACGCCACCCGCGTTGGCCCGA
CAATCCCCCCTCCCCCGAAAGAAAAAGTGGAGTCCGTGGAGTCCGGTGTG
GGATCATCTAGGCCACCAAGCCCGAGCCAGGGCAATCTGTGATGGCCCAG
TTGTTGCAGTTGTTGCAGTTGTTGCAGTTGATGCTGCTGCTGATGTCGTG
TCCGTCCGTTGAACCTCTACCTGATCCTGTCGACGCCGTTGCCGTTACTC
TCCGCCGTTGTGTTGTTGTCGGTTCTGCTGCGTTTGCCATCCCTTTCACC
CGTGGCCGTTGAACCTTCACCTGAAGTCGACGTTGTCGCCGTTACTCTGT
GGCACCGTGTGGTTCGTTGCCGTTGACAGGGGGGGCGACAAGCTTGGGTC
CGCTTTCGCCGGCATCCTGCTGATGGTGTCGCTGCACCTGTTGGAGGGCT
CCAATGCCGACGGCCGCGGGGAGGAGCGCTGTGAGCACATCACCGATCTC
GTCGAGACGTACGGCCGCATGTCGTCCGGCAAACGGGACGGCAAAGGCGG
AGATGACTATGATGACGATGGGAGCGATGATGAGGCCGACGAGGACGAGG
ATAACAACGGTGAGCGACTGTAGAAAGGAAGCGGGAAAACGGACATTGGG
GAAGGAGGGCTGGGGGCTCTCGGTATCGTACCTGGTGTGGGAGCACAGGA
CAACGGACAAGGACGAATACATGAACCCGTATCCCCTCCCGTCCCCTGTT
GTCTCCGTCTGGATAGGAGATGGAGGAATTCGTGATCTTGGTCTGCAGTG
AGCTGATCAAGCGTGATTTACGCGTCCCCACCCCCGTCGCATCGTATCGA
GGATGGCTCCTAAGCCCCACCCTCCCTCCCTCCTGCACTCGCGACCCCCA
CCCCGCTCCCCTTTCATTTAATTCTTCTGTTCCGTCCCTTTCCGTCGTTA
CGTCGTGATGTCATCACTAATCTCCCTGCCGGGGGCACAGACCCGGAGCC
CCTGGCCATGCTTGCCGACGTGCTCGTTGCGGTCGTCGCCGAGCCATCGA
CCCACTCCGTCAGGGGGCTCCGTGACACCGCGAGGTGAGCGGGGTTTGCT
GATTCAGGGGGTTGTCTGTAGAACCGTGAAGTGAAAAAGCAGTTGACTCC
GTGTTATGTAACACCGCGAGGGAAGCGGGTTGGCTATTTCGTTGTACACC
GTGAGGTGAGGTATGGGTTGACTGCATCAGGGGGGGCTGCGTGACACAGC
GAAGCGAGAGGGGATCTGACTGCTTGTGCGCGCGCGCTGCTCCTCTCGCG
TTTCCGAAAAGCAGTTTCTTTGCCTTCTGTCGGCAGCAGACCCCCTGTGG
CGTCCGTAGAAGAATTGTGCTTTCTTTCGCAAAAATGGTGCGGCGCAAGG
GCGCAGGGCAAAGGCGGGAGAATATTAGAAAGGGGAGAAACAGCGAAAGA
CGAAGTAGCGGAGCGGAGTGGCATGGTGGAGCGATCCACTTCCTTGTCGA
TGAAACCCGACAAAAATTGCTGTTGAGGTCTCCGAGGAGGGACCCAGCAC
CAGCAGTAATGGGAAGGGGAATGAGTTGTTGCAGAGAAGGGTGCCGTGTG
GGGTGGGATGGCATCGCCCAGCGACAGGAGACCCGGGTCGAGAAGTAAAT
ACTGGTGGGAGAGCAGGCCTGCAAATTTCACAAACTCCATCGACAGCATT
TAAAGCACACCTACCACCAATAACAGCAGCAAGGGCAACAACGATAATAA
AAAAGCAATCCATTGCTACAACAAAGAGCAACAACAACGACAACACACCA
GCAGTAGCGACGACGACAACAACAGCAGTAACAATGACATCGGTATCAGC
ACGCGGAAACACGAGGCATCAACAGAAAGCCTTCCTGCGTTTGCACTTCT
CACTTCCGCAACTCGTTTCTCGAAGGCGCGTGTGGGGCATGATCTGCGGC
GCCCGCCCATTGACGCGTTCTGCCCTGGACACCCTCCTGTCGGCCGTGTG
CGGGGAGGACGAGGGCCAGGGCGAAGACGATGCGCAAGGTGACAGGGTAC
CTATTCGGTCAACATTATGTTGAGAGACAACAAGAGAATAGGCACTGAAG
GAGGAACGCCAGTGATTTAGAGGCTAGTCGGTCAATACTGTGATGAGACG
TGAAGAGACCAGGCATCACGAGAGGAACGCCATTGGCGCGTACATCTTGT
AGCAGGGAAGAGCACTTGCCGTGTGTTTGCGAGTGGTTGGCCGCCGCCGC
CGCCGCCGCCGCCTCTCTTGTCGCGTTATCCGAGTGGAGATCCCTTCTCT
TTCAGAGGTTTGGCACGCCGCGTTCGTCTCCTCTCTCTTGTTCAATCCTA
GGTGCTGTTCATATGTTGACCACCCCCCCTCTCTCGCTCCCCTCTCTCTG
CGTTTCGTCCCCTCCTTGACAATGAAAACCACAGCCGGCAACGAGTATTC
GTCGTCGTCGTTGTCGTCGTCGCAGGAGGAGGAGGAGGAGGAGGAGACAG
AAGCAGAGGAGGAGGAAGCGGAGGAGGACACCGCGAACGGAAAGGCGAAG
GCGAGCAAGACCGGCGACGACCGGAGCGACTCAGACGACAGCCAAGGCGC
CGTAAACGGAGATGAGGATGGAGATGAGGTCAGTCAGCGCCCGCCGCGGC
CATGCGTGCACGGCTTCCACCTTAGAGCGGTGGAGCGCCGCACATAATAG
GTAGTGAATGCCAGCTAGGCAAAGCAAAACAGGAAAGCACGCCATCGGCC
GAATGCGGTGTCCTTTTTCTGTTGAGAAGGAAGAGGGCCAAGAAAGACGT
GAGGTATAACGAGAACGGCGGAAATTTTCATGCCGCCCTTTCTCTCTCGT
GCGTACAAGGTTGGAAAAAATGCACACCCGACCAGGGGCTCGTGCCCGTC
GCGTTGTCCGTTTCTTTGCGCACACGGAGAGACGAAGTTGACGCCTCGCG
ACTCTTGTATTTTGGTTCATGAGACACGCACAAACGATGAACAGGAGTGC
TCCGCTTTGTGTTAAAATTTATCTCTCTCGCGCTTGTACCCGTCCTCCCA
GCAGCAGCCATAGCATTAATGCGGTTTCTCCAACCAAGCAATCTTTTGTT
CCCACATATGACCGTGCCTGGCCGATCGGCCGGCTGTTGCTGCATTCGCA
CGGGGGCGGCGTGAATGCGTACATCACGCCAGCAGTGTTCTCCTGCCTGT
TAATAAGAGCGGCACCGAAATCTGAAGGAATCGACCGCACGACCTTGGAT
GTGCATATACGCGTGTGTCTCGGGCGTCGCGTCGTAAAACCAGCTTCGAT
GAACTCATCGCGCACCGAACAAAATTACCTTGCAAATTTGTCCTTGTGTT
GTGGTCGAGTTTTGGAGTTTTTTTCGGCACATATCATCGACCAACAACCA
ATCACGCCAATTACGCCAACGTTGTAACCTCCCCCCCTCCGGCGGTTTGA
TGGACCGCTGATTCTCAGGTGATGGTCGACCCCTCGGACGTTGCGGCACT
GTTGGGCGGAAACGTCGATGACTCCGACGACGACGGAGAAGGAGGACGGG
CGCTGCAGCACCACGCGGGCGCCGACAAGGCGCTGGGAGCCCTGCTGGGG
CTCAAGAAGTCCGGCCGGAAGCGGGGCGCTCTGGAGGCACAGCGGCAAGG
GTACCAGATTCGACTTCGCGCCTTGGACCTTCTCGAGGTGGGTTTGTATG
TGTGTAACCTGCGTGATGAAAAACTTCAAATGCTGATGTGCAAATGGACG
AGGAAGAGTTTGACGGGGACCTAGGGAGTTGGTCTTTGTCACGAGTGTTG
GGGTATCCAAGGCGAGGAAAATGATTCCAACACCTGTGCAGCCAACAAGA
TGACTAAGCGAAATTGTGCTTGTCGTGTCACGATACGGGCCAAGTCTCCG
GAGTGCGCACCGGAGCTGGCGCGCGCGATTTGGAATCGTCGTCCTTATCC
TCCTGCCCTCCCAAACTCCCCCAAACAAAGCGGTGCCCCCTTTATTTTCT
CACACCCCTCCGCACCTTCGTGAAATCACTGATCGCATCTAACTTGTTCC
ATGGTCTCAGCGTTTTCCGGCGCACGTCCATGCAACATTCGACGCCAAGC
GTCCGATGGTGTGGCCGGCGGCGCTGCGCAACACCATTTCTCGGAGAGTC
TCTCTTTTTCTCTCGCTCTGCGCTTCTCCCTCTCCCTCTCCCTCTCTCTC
TCTGGCTGCATCGAATTTTATGAGAGTCACTTGAGAAAATATCTGAACTG
CACAATCGAGGGGGTGTTCATCATGTCGACTGACCTGCATCGACTTCGCG
CGCTTCGTTTCCGTGTTTGCCCTTATCCCTCATATCAACTCCCCGCCCCG
CCGCTCGGACAGGTTGTGTGCTCTCGCCGTCCGGACTCGCCGTACCTCCT
CGCCGCCCTGCTTCCTGTCCTTCGTGCCATCAAGAGGCTGGAGGGGGCCG
CCGGGGTCGGACTCCGCAGCGGAGGAGAGGCCACGGCCCTCAGCACGCGG
CTCACGGTACGCAAGAAACTGGTTCCGTTCCTTTCAGTTCGTTTCGTTCC
GTCCCTTTCCGTGGCATTCCGTTTCCGTTGAGTTCAGTTCCGCTCCGTTA
CATTCCGTTCAGTTTCGCTCCCAAGGCATTCTGTTCCGTCCGATTCCGTA
GTACCATCCACATTCAGCGGTGTTCCGTCCAGTTTCGCTTCCTTAGCATC
TGTTCCGTCCGGTTCCCTATGCCCATTCATTCTCAGTGGTATTCCGCGGT
ATCCTCGTTCCGTGGTGTTCCCTTCTGGTTCCGTCCGACGAGCTTTACGC
GAGCTTTACGCCAGCCAGTAAGCAAGCAAGCCATCTATGCTTGATGTTTT
TCCAGCGAGAGCATTATCGGGCGAGACGTGGGATTGGACGGCGAGGAGGT
GGGCGGGGCCGGGGGAGGGGCTTGACCGTATGATCCAGCCTGCGTGTGTA
TGTGTGTGTTTTTTCTTCAGCCAAGTGCATTATGGCGCGCCCGCTTGCGC
CTGCGCTACGCCACCCACCCACGCACTCATCCATCCACCCCGCCGCCGCA
ACATTTTCCCGCAGACTCTTTACAAGAACCGCCTCTGCAAGTGCAAACCC
CGGACGCTTTCACCTTCCGAGGGAGACCGCAAGGGCAGAGCGGCGCCCGC
GGCGGAAGGGCACGACAACGACGAAGAGGAAGACATCCCCGGCAAGACCG
CCAAGGACTTCTCGGAGCTAATGGGCCTCTGCCGCTCCTGGGAGAAGAAG
AGAGACGCCCCTCTAGCCTCGCTTGCTCTGGAGGGCGCCCTGTGCTGCCT
CCGGTCGCTCAAGACTCTCCCGGCGAAGGGCAAGGGCGAGGGAGGGGCTG
CCGGCGGCTGTGGCGACGGCGGCGGTGGGGGAGCCCTGGAGGGGGCCCTG
AAGTCACTCTCCACGGCCGTGGGGACCTTCTTCCGCACAAAGCGGGGTGC
CGGCTTGACGCCTCTGCAGGTGTTTGCGGTTGTCCAGCTGCTTTTGAGGG
GGGAAGGGGCGGGTTGGTTGTGCCAGCAGCGGGCATGGTCGTCCGCATGT
GTATGTGAGCGTTGTTTCTGTGTCTCTTCGTCTTCTTTTCATATGCACAT
CACCGCTCGTTTGTGCGAAAGCGTTGTGTGTGAACGTCCGAGTAGTTGCC
GAGAGTTGCCGAGCGACGAAGTTTGGGGTGAAAGCGAAGTCTCGCTCGTC
TCCGCCGCTGCAGGAACAGCACCACGAGGTCCAGTTAAGAAAATCCTCGG
GAATATGGCTCGAGGCCCACCCCGCCGGCTCTTGCGCGGATTCAGCGGGG
GCGCGGTAGCAGCAGGGGGTCGCTAACCGCGGGTATTGCCCGAACACAAA
GCGCTTACGAAAGGATCTAGTGAGTATTTTATCTTCGTCCCGACATCTCA
AATATTTCACCTGTACTACCCCCGTCCCTCACCTGGACGCATTTTTTGGT
CGCTGAACACCCGATCGGCATGGCGTGGTTGTCGCGGCAAGGTCGAGGAA
GTGGTGAAGCGATTCCCGGGGGCGCTGTCGCCGGTGCTGGTTGAGGCGGC
AGAAGGGGCCGCCGCGAGCGACTACCTGCGCACGGAGTCCTTCCGGCTGC
TGGCGGGGGTCCTCCAAAGGTATGCCGTTTGGAGGAGACACTCCTCGCTC
TTCGTTCGTGTACTGGAGACGCGCACTTGATTAAAATACCGAGCAGACGG
CTGTACACCACTCCATACCGCTAGAGCGACCTCCGCTAGCTGCGTGTCTG
CTTTCTGTTCTGCGTACGCCCGTGAGCGATGCCCCCCCCTCTCCCACGGT
TGCCCTTCTTTGTTGTGGTATTGTTCGGCGCTGCGTTCGTGTTCTAACGG
TGGGGCTCCTCTTCTTTGCCGCCGCGGGTTCTCAAAGTCCGTCGAATTTG
TTCGAAGGCGCCCCCCCTCCTCCGCTCCGCCGTCCCCTTCGCTCGCGGTA
TCGTTTCGCTCTCGTTCCCACATTCCCATTTTTTCATCGTTCCCCCCTTT
TTTTAATGTCCCCGGCCGGGCTCTTCCGACCCCCGCTGTCGTGCGTGTGT
GTGCGTGTGTGCAGTGCCCTGGCGCCTGCTGGCGATACTCTTGGCGGTGC
GTGCGCGCCCTCCTGACATCGACACTCGAGGAAATTCCAGTAGTGATGAT
GGTGGCAACAAATCAATCGTGGCAAAAAATTGACGACACTGTTTATCTTT
CCAATGCAGGCGACCGTCTATGGACCCGTCTTCCAGGAAGGCCTTGCTCG
CGCACTGCCCCGCGATCTTCAAGGCCCTCGGAGACGTCATCTCCGACACC
GCAGGGGATGCAGCGGCCGCGTCGGCAGCCGCCGCCGCCGCCGTGGCAGA
TGACGTTGCCGCAGTCGCCACTGGTGTCGAGAAGAAATCTTCGAAGGCCC
ACAACACCACGTCGTCGTCCACCATGCTCAAGGCGAAGCGGCTTAAGCCC
CTGCTGGCTTGCCTGTCGGCCGCGATCGCCGCCGCGGGGGGCGGCACCGG
CGCCGGTAGCACCGGTAGCGCCGGCTCAATATTGCTGTCCCGGCCgGGGG
CGGCGTCCGAGGTCCGTGCACTGAAGGCCGCCCTCGAAACGCTTGCCCAG
GCCAGCGCCAGTTTAGCCATGCAGCTGCAGTGCGGGCAGGCTGCGAGGGA
GCTGGACGCCCTCGAAGTGCCGGAGGAGGAAGCAGCGTCGGCGGCGGGTC
ATGACGGAGCAGGAACAGGAGGATTCCAAAGCGAGGAGAAAGTGAAGAAG
AAAAAGAAGGAGAGTAAGGCCAGGGGGGCCGGGGGTTCGCCAATGACGCA
GAAGCGCAAAGCGGCGGCTGATGGGAGGGCAGACGGAGAGGCCGACGAAA
ACAGAGGCGACAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAACAAC
AACAACAAGAAGAAGAGGCGCAGGAAGAGCTCGGAGGGGTGA back to topCoding sequence (CDS) from alignment at P-fluviatile_contig11:3354573..3374564+ >mRNA_P-fluviatile_contig11.1288.1 ID=mRNA_P-fluviatile_contig11.1288.1|Name=mRNA_P-fluviatile_contig11.1288.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=8814bp|location=Sequence derived from alignment at P-fluviatile_contig11:3354573..3374564+ (Porterinema fluviatile SAG_2381) ATGACCGCTGACGATGCAATGGACGTGGAGGAATCTCCTCTGGAGCAAAT GGATGACAGCGACACGAGCAGCTCAGGAGAAGGAGAGAGCAGTGGCCAGG AGGACATGCAACACGGATTGGACCAGGACCAGCAGGGGAGGGAGGAGGGG AAGCCCTCCAACCCGGCCTTCGACAAATTCATGCAGGGATTCTGGGACTT GGCTAGCGTTGACGTGCCCGTGAGATGACCGCTGACGATGCAATGGACGT GGAGGAATCTCCTCTGGAGCAAATGGATGACAGCGACACGAGCAGCTCAG GAGAAGGAGAGAGCAGTGGCCAGGAGGACATGCAACACGGATTGGACCAG GACCAGCAGGGGAGGGAGGAGGGGAAGCCCTCCAACCCGGCCTTCGACAA ATTCATGCAGGGATTCTGGGACTTGGCTAGCGTTGACGTGCCCGTGAGGT TGGGAGCGGCGGCCATGATCGTGAGGCATGTGTCGAGCCCCGTCGGGGGG GGTGACGCGGAGTACGCGATCAAGCGCCTGGTGCGAGGCATGTGCTCCGG CCGAGAGTGCGCCAGGCAGGGCTTCGCGTCGTGCTTGACGCAGGCGTTGG CAGTTCTGTCCCGGGATGCGGTTGGGAGCGGCGGCCATGATCGTGAGGCA TGTGTCGAGCCCCGTCGGGGGGGGTGACGCGGAGTACGCGATCAAGCGCC TGGTGCGAGGCATGTGCTCCGGCCGAGAGTGCGCCAGGCAGGGCTTCGCG TCGTGCTTGACGCAGGCGTTGGCAGTTCTGTCCCGGGATGCGCCGGCCAC CGCTACGTCGACTGTGCTGGAGCAAATCTTGAAGGTCACCCAGACCACGG CGGCCATGAAGGGGGCCGACGAACGTGACCTGGCCCTCGGGCGACTTGTG GGAGTCTCTGCCCTTGCCTTGTCGGGCCGCTTGGGACCGGATCCGCAGAG CGCGGAGGGGGCTTTGAAGCCGGCCACCGCTACGTCGACTGTGCTGGAGC AAATCTTGAAGGTCACCCAGACCACGGCGGCCATGAAGGGGGCCGACGAA CGTGACCTGGCCCTCGGGCGACTTGTGGGAGTCTCTGCCCTTGCCTTGTC GGGCCGCTTGGGACCGGATCCGCAGAGCGCGGAGGGGGCTTTGAAGGCTG TGTCAGAGCTGTACACCAAAAGGAAGTGGATCGGACAGGCAGCCGGCGAG GCGGCCCTGCTGGTCACGTCCAAGGCATTCGAGGGGGACGGGGAGTTCTT CCGGACGGTCCTCCCGCTGCTGGCGCCGCTGCTCAAGGGGAAAGACGGGA GCATCCTCCAGGCTGTGTCAGAGCTGTACACCAAAAGGAAGTGGATCGGA CAGGCAGCCGGCGAGGCGGCCCTGCTGGTCACGTCCAAGGCATTCGAGGG GGACGGGGAGTTCTTCCGGACGGTCCTCCCGCTGCTGGCGCCGCTGCTCA AGGGGAAAGACGGGAGCATCCTCCAGGTGTCGGACCTGTCCCCCGACCAG CTGCTGCTCTCGCTGGGACTGCGCTCCATCATGAGGGAGCGAGGCCTTGA CCCGCAGGAAGACGCCGCCCTGAAGGAGGCCTTGCCCCCGTTCTTGCGGT ACGCTTCGGTCGTGCGCGCGGGGAAGACACAGGTGTCGGACCTGTCCCCC GACCAGCTGCTGCTCTCGCTGGGACTGCGCTCCATCATGAGGGAGCGAGG CCTTGACCCGCAGGAAGACGCCGCCCTGAAGGAGGCCTTGCCCCCGTTCT TGCGGTACGCTTCGGTCGTGCGCGCGGGGAAGACACAGGAGCTAGTCTCG CCGCTAAAGCAGTCGGCGTCGGCCTTCCCGAAGGTCCACGCGGTGTGGGG CCGCCTGTGGGACGACCTCGGCCTGTCTCCGGCTGGACAACGCCCTCGGG CCTCGCTGAGCGCGAAGCGACTGAAAAAGCTCGGAGAGGAGCTAGTCTCG CCGCTAAAGCAGTCGGCGTCGGCCTTCCCGAAGGTCCACGCGGTGTGGGG CCGCCTGTGGGACGACCTCGGCCTGTCTCCGGCTGGACAACGCCCTCGGG CCTCGCTGAGCGCGAAGCGACTGAAAAAGCTCGGAGAGGTATGGTCGGCC GTGGTGGATGGCGCCCTCACGACCACCACCCTCAACAATAAAGGGACTGC TATCCTGCTGCTGAAGCAGGTATGGTCGGCCGTGGTGGATGGCGCCCTCA CGACCACCACCCTCAACAATAAAGGGACTGCTATCCTGCTGCTGAAGCAG GTCCTGCAGCGGGTGCCCGCGGCGGGGGTCTGGCGCATCCTGTCCCCGGG CATCGTTCGACTGGTGCTCAACCACACACAGGTCCTGCAGCGGGTGCCCG CGGCGGGGGTCTGGCGCATCCTGTCCCCGGGCATCGTTCGACTGGTGCTC AACCACACACAGGGGGAGGACAATTACCTCTTCTCCTTGGTGCGCATGAC GCTTAGGCAGCTCCCGACGATCGTAGAAGACGACCAGGAGGGGGAGGACA ATTACCTCTTCTCCTTGGTGCGCATGACGCTTAGGCAGCTCCCGACGATC GTAGAAGACGACCAGGAGGTGCAGGCCCAGGTGGCTGCGTGCCTGCTCCG CAGGGGCACGATCCGCTTCGACAACCGCGCCGGGGTTCCCGTGGTGTCCG CCCTAGTCAGGGCGATGGGACAGGTGCAGGCCCAGGTGGCTGCGTGCCTG CTCCGCAGGGGCACGATCCGCTTCGACAACCGCGCCGGGGTTCCCGTGGT GTCCGCCCTAGTCAGGGCGATGGGACAGGAGGCGCTGGAAACCCACGTGG AGTTCCTGAAGGGAGTGGTGCAGGGGAAGCCCGGATGGGCGGACTCAAAA GGAGGCGCTGGAAACCCACGTGGAGTTCCTGAAGGGAGTGGTGCAGGGGA AGCCCGGATGGGCGGACTCAAAAGATCTCCTGCCGAACGGTGCGAGCTCC TCTTCGACCGCCGCGGGCACGCCTCCTCCTGATTCTGCCGTTGTCGACGA CGGAAACGAACAATGCGCGGACACCGCCACGGACGGGTCAGTGGCCGAAC GCCTCCAGGCCGTAGAAGCCCTGTACTCTCTTGCGAGGAGCTCCGGAGGC GACAGAGGCGGAAGCAGCGGCGGCAAGGGCGACGCTAGGAGCTTGGCCAT TGCCGCGTCGAGCGGGGGAGGGCTGGATGTTCAGGGCAGGCGGCTGACGA GGACGGCCGAGTTTTTCCTCGAGGTCGGCTTCTTCGCGCCGGAAGATGGA GATCTCCTGCCGAACGGTGCGAGCTCCTCTTCGACCGCCGCGGGCACGCC TCCTCCTGATTCTGCCGTTGTCGACGACGGAAACGAACAATGCGCGGACA CCGCCACGGACGGGTCAGTGGCCGAACGCCTCCAGGCCGTAGAAGCCCTG TACTCTCTTGCGAGGAGCTCCGGAGGCGACAGAGGCGGAAGCAGCGGCGG CAAGGGCGACGCTAGGAGCTTGGCCATTGCCGCGTCGAGCGGGGGAGGGC TGGATGTTCAGGGCAGGCGGCTGACGAGGACGGCCGAGTTTTTCCTCGAG GTCGGCTTCTTCGCGCCGGAAGATGGAGCGGGGGTGCTTCCTCTACCCCT GAAGCTAGCGGAGCTCTGCCGCTCCAAGTTCTTCAGCCTCGTGGCGGACA TCGCCGCCAAGCCGCTCTTCTGGCAATCTGGTACTCCCGCTGCCGCCGCT CAAGCAGCAGAGACCAATAGAAGCAGCAGCGGCAGCGGCAAGAAGAAGTC GCCCTCGAAGAAGGCGCTTTTGTCGGGAACGGCGGCGGCGGCGGGTGGCG GGTGGGGCGCGTTGGAGGCCCTGTGGGGCCTGCACGAGGCCTGGCAGGGG CTCGAGGGCGCGGGAAGAAAGCTCGTGGAGGGGGTGTCGGTTGGTCAAGA CGAGCGGGAGGCGTGCTCGGTGGCTCTGGCGGTGGTGGGGAGGATCAGGG CGGCGGCAGCAGCGGCCAGCGGGGGTGCTTCCTCTACCCCTGAAGCTAGC GGAGCTCTGCCGCTCCAAGTTCTTCAGCCTCGTGGCGGACATCGCCGCCA AGCCGCTCTTCTGGCAATCTGGTACTCCCGCTGCCGCCGCTCAAGCAGCA GAGACCAATAGAAGCAGCAGCGGCAGCGGCAAGAAGAAGTCGCCCTCGAA GAAGGCGCTTTTGTCGGGAACGGCGGCGGCGGCGGGTGGCGGGTGGGGCG CGTTGGAGGCCCTGTGGGGCCTGCACGAGGCCTGGCAGGGGCTCGAGGGC GCGGGAAGAAAGCTCGTGGAGGGGGTGTCGGTTGGTCAAGACGAGCGGGA GGCGTGCTCGGTGGCTCTGGCGGTGGTGGGGAGGATCAGGGCGGCGGCAG CAGCGGCCAGGGGGGGCGACAAGCTTGGGTCCGCTTTCGCCGGCATCCTG CTGATGGTGTCGCTGCACCTGTTGGAGGGCTCCAATGCCGACGGCCGCGG GGAGGAGCGCTGTGAGCACATCACCGATCTCGTCGAGACGTACGGCCGCA TGTCGTCCGGCAAACGGGACGGCAAAGGCGGAGATGACTATGATGACGAT GGGAGCGATGATGAGGCCGACGAGGACGAGGATAACAACGGGGGGGCGAC AAGCTTGGGTCCGCTTTCGCCGGCATCCTGCTGATGGTGTCGCTGCACCT GTTGGAGGGCTCCAATGCCGACGGCCGCGGGGAGGAGCGCTGTGAGCACA TCACCGATCTCGTCGAGACGTACGGCCGCATGTCGTCCGGCAAACGGGAC GGCAAAGGCGGAGATGACTATGATGACGATGGGAGCGATGATGAGGCCGA CGAGGACGAGGATAACAACGACCCGGAGCCCCTGGCCATGCTTGCCGACG TGCTCGTTGCGGTCGTCGCCGAGCCATCGACCCACTCCGTCAGGGGGCTC CGTGACACCGCGAGACCCGGAGCCCCTGGCCATGCTTGCCGACGTGCTCG TTGCGGTCGTCGCCGAGCCATCGACCCACTCCGTCAGGGGGCTCCGTGAC ACCGCGAGGCGCGTGTGGGGCATGATCTGCGGCGCCCGCCCATTGACGCG TTCTGCCCTGGACACCCTCCTGTCGGCCGTGTGCGGGGAGGACGAGGGCC AGGGCGAAGACGATGCGCAAGGTGACAGGGCGCGTGTGGGGCATGATCTG CGGCGCCCGCCCATTGACGCGTTCTGCCCTGGACACCCTCCTGTCGGCCG TGTGCGGGGAGGACGAGGGCCAGGGCGAAGACGATGCGCAAGGTGACAGG GAGGAGGAGGAGGAGGAGGAGACAGAAGCAGAGGAGGAGGAAGCGGAGGA GGACACCGCGAACGGAAAGGCGAAGGCGAGCAAGACCGGCGACGACCGGA GCGACTCAGACGACAGCCAAGGCGCCGTAAACGGAGATGAGGATGGAGAT GAGGAGGAGGAGGAGGAGGAGGAGACAGAAGCAGAGGAGGAGGAAGCGGA GGAGGACACCGCGAACGGAAAGGCGAAGGCGAGCAAGACCGGCGACGACC GGAGCGACTCAGACGACAGCCAAGGCGCCGTAAACGGAGATGAGGATGGA GATGAGGTGATGGTCGACCCCTCGGACGTTGCGGCACTGTTGGGCGGAAA CGTCGATGACTCCGACGACGACGGAGAAGGAGGACGGGCGCTGCAGCACC ACGCGGGCGCCGACAAGGCGCTGGGAGCCCTGCTGGGGCTCAAGAAGTCC GGCCGGAAGCGGGGCGCTCTGGAGGCACAGCGGCAAGGGTACCAGATTCG ACTTCGCGCCTTGGACCTTCTCGAGGTGATGGTCGACCCCTCGGACGTTG CGGCACTGTTGGGCGGAAACGTCGATGACTCCGACGACGACGGAGAAGGA GGACGGGCGCTGCAGCACCACGCGGGCGCCGACAAGGCGCTGGGAGCCCT GCTGGGGCTCAAGAAGTCCGGCCGGAAGCGGGGCGCTCTGGAGGCACAGC GGCAAGGGTACCAGATTCGACTTCGCGCCTTGGACCTTCTCGAGGTTGTG TGCTCTCGCCGTCCGGACTCGCCGTACCTCCTCGCCGCCCTGCTTCCTGT CCTTCGTGCCATCAAGAGGCTGGAGGGGGCCGCCGGGGTCGGACTCCGCA GCGGAGGAGAGGCCACGGCCCTCAGCACGCGGCTCACGGTTGTGTGCTCT CGCCGTCCGGACTCGCCGTACCTCCTCGCCGCCCTGCTTCCTGTCCTTCG TGCCATCAAGAGGCTGGAGGGGGCCGCCGGGGTCGGACTCCGCAGCGGAG GAGAGGCCACGGCCCTCAGCACGCGGCTCACGACTCTTTACAAGAACCGC CTCTGCAAGTGCAAACCCCGGACGCTTTCACCTTCCGAGGGAGACCGCAA GGGCAGAGCGGCGCCCGCGGCGGAAGGGCACGACAACGACGAAGAGGAAG ACATCCCCGGCAAGACCGCCAAGGACTTCTCGGAGCTAATGGGCCTCTGC CGCTCCTGGGAGAAGAAGAGAGACGCCCCTCTAGCCTCGCTTGCTCTGGA GGGCGCCCTGTGCTGCCTCCGGTCGCTCAAGACTCTCCCGGCGAAGGGCA AGGGCGAGGGAGGGGCTGCCGGCGGCTGTGGCGACGGCGGCGGTGGGGGA GCCCTGGAGGGGGCCCTGAAGTCACTCTCCACGGCCGTGGGGACCTTCTT CCGCACAAAGCGGGGTGCCGGCTTGACGCCTCTGCAGACTCTTTACAAGA ACCGCCTCTGCAAGTGCAAACCCCGGACGCTTTCACCTTCCGAGGGAGAC CGCAAGGGCAGAGCGGCGCCCGCGGCGGAAGGGCACGACAACGACGAAGA GGAAGACATCCCCGGCAAGACCGCCAAGGACTTCTCGGAGCTAATGGGCC TCTGCCGCTCCTGGGAGAAGAAGAGAGACGCCCCTCTAGCCTCGCTTGCT CTGGAGGGCGCCCTGTGCTGCCTCCGGTCGCTCAAGACTCTCCCGGCGAA GGGCAAGGGCGAGGGAGGGGCTGCCGGCGGCTGTGGCGACGGCGGCGGTG GGGGAGCCCTGGAGGGGGCCCTGAAGTCACTCTCCACGGCCGTGGGGACC TTCTTCCGCACAAAGCGGGGTGCCGGCTTGACGCCTCTGCAGGTCGAGGA AGTGGTGAAGCGATTCCCGGGGGCGCTGTCGCCGGTGCTGGTTGAGGCGG CAGAAGGGGCCGCCGCGAGCGACTACCTGCGCACGGAGTCCTTCCGGCTG CTGGCGGGGGTCCTCCAAAGGTCGAGGAAGTGGTGAAGCGATTCCCGGGG GCGCTGTCGCCGGTGCTGGTTGAGGCGGCAGAAGGGGCCGCCGCGAGCGA CTACCTGCGCACGGAGTCCTTCCGGCTGCTGGCGGGGGTCCTCCAAAGGC GACCGTCTATGGACCCGTCTTCCAGGAAGGCCTTGCTCGCGCACTGCCCC GCGATCTTCAAGGCCCTCGGAGACGTCATCTCCGACACCGCAGGGGATGC AGCGGCCGCGTCGGCAGCCGCCGCCGCCGCCGTGGCAGATGACGTTGCCG CAGTCGCCACTGGTGTCGAGAAGAAATCTTCGAAGGCCCACAACACCACG TCGTCGTCCACCATGCTCAAGGCGAAGCGGCTTAAGCCCCTGCTGGCTTG CCTGTCGGCCGCGATCGCCGCCGCGGGGGGCGGCACCGGCGCCGGTAGCA CCGGTAGCGCCGGCTCAATATTGCTGTCCCGGCCgGGGGCGGCGTCCGAG GTCCGTGCACTGAAGGCCGCCCTCGAAACGCTTGCCCAGGCCAGCGCCAG TTTAGCCATGCAGCTGCAGTGCGGGCAGGCTGCGAGGGAGCTGGACGCCC TCGAAGTGCCGGAGGAGGAAGCAGCGTCGGCGGCGGGTCATGACGGAGCA GGAACAGGAGGATTCCAAAGCGAGGAGAAAGTGAAGAAGAAAAAGAAGGA GAGTAAGGCCAGGGGGGCCGGGGGTTCGCCAATGACGCAGAAGCGCAAAG CGGCGGCTGATGGGAGGGCAGACGGAGAGGCCGACGAAAACAGAGGCGAC AGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAGCAACAACAACAACAAGAA GAAGAGGCGCAGGAAGAGCTCGGAGGGGTGAGCGACCGTCTATGGACCCG TCTTCCAGGAAGGCCTTGCTCGCGCACTGCCCCGCGATCTTCAAGGCCCT CGGAGACGTCATCTCCGACACCGCAGGGGATGCAGCGGCCGCGTCGGCAG CCGCCGCCGCCGCCGTGGCAGATGACGTTGCCGCAGTCGCCACTGGTGTC GAGAAGAAATCTTCGAAGGCCCACAACACCACGTCGTCGTCCACCATGCT CAAGGCGAAGCGGCTTAAGCCCCTGCTGGCTTGCCTGTCGGCCGCGATCG CCGCCGCGGGGGGCGGCACCGGCGCCGGTAGCACCGGTAGCGCCGGCTCA ATATTGCTGTCCCGGCCgGGGGCGGCGTCCGAGGTCCGTGCACTGAAGGC CGCCCTCGAAACGCTTGCCCAGGCCAGCGCCAGTTTAGCCATGCAGCTGC AGTGCGGGCAGGCTGCGAGGGAGCTGGACGCCCTCGAAGTGCCGGAGGAG GAAGCAGCGTCGGCGGCGGGTCATGACGGAGCAGGAACAGGAGGATTCCA AAGCGAGGAGAAAGTGAAGAAGAAAAAGAAGGAGAGTAAGGCCAGGGGGG CCGGGGGTTCGCCAATGACGCAGAAGCGCAAAGCGGCGGCTGATGGGAGG GCAGACGGAGAGGCCGACGAAAACAGAGGCGACAGCAGCAGCAGCAGCAG CAGCAGCAGCAGCAGCAACAACAACAACAAGAAGAAGAGGCGCAGGAAGA GCTCGGAGGGGTGA back to top
|