Homology
BLAST of mRNA_P-fluviatile_contig79.14244.1 vs. uniprot
Match:
A0A6H5KMQ8_9PHAE (Nucleotid_trans domain-containing protein n=2 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5KMQ8_9PHAE)
HSP 1 Score: 254 bits (649), Expect = 1.220e-74
Identity = 152/339 (44.84%), Postives = 196/339 (57.82%), Query Frame = 3
Query: 135 TLHVKLLCCWLLAGCYTV-----------------RSDGAAYHSRRQATSGPTLAVIPGEIWDESWCSKLPEWNPPRTSPALVLQVLSEHYVHLEYNFIYHMELNSDFTRENLFIVCLDEESEAFLDSTFGIKCVRPDLGDGDGMSRKDVWTLRSHIASCLVLAGHDVLLSDADAIWLKDPIQEMNRVGAGESDVVSSRGKLPGYLHRAWGATLCFGFVLLRSGGPAMPEFLRTMARMVDTLNDDQKAGNEALNIMGVAWDSEGSDMRLIDSTALGRGLV---FADEGPMSVALLPHDTFSRFCDSTNVDLENTTVVAHCYSRAKGEKMTAWMKAEGLW 1091
T V++L W+LA C V +D H+ A T+A I +S CS + W PPR+SPA+V QV+SE Y LE NFI +MEL+S F+RENL++VCLDEES A D GI+CVR G MSR DVW LR CL+ AG DVL+SDADAIWL+DP + +S+VV+SR +P L+ WGAT+C GF R+GG AM F+ + +V+ L DDQKA NEAL+ +GV WD SDM +ST G G++ A+ P+ V LLPH+ ++R C T + N T+VAHC S KGE M WMK LW
Sbjct: 6 TTSVRVLRGWILAWCLAVCLKTSSTRAAGPNAEPDEADIVVVHTMGLAND--TVAGTLPPITKDSSCSDMLAWLPPRSSPAVVFQVVSEPYASLEANFISNMELHSTFSRENLYLVCLDEESVAIFDG-LGIRCVRYGCL-GCPMSRLDVWVLRVEATLCLLNAGQDVLMSDADAIWLRDPTNDFASDLNMDSNVVASRAVMPFPLYHKWGATVCMGFAFFRAGGSAMQAFMTVVGEIVNELGDDQKAVNEALDKLGVVWDPT-SDMDFTNSTRPGTGVIENITANGDPLKVTLLPHNKYTRSCRRTPIS--NDTIVAHCVSSDKGEGMATWMKEAHLW 337
BLAST of mRNA_P-fluviatile_contig79.14244.1 vs. uniprot
Match:
D7FGV6_ECTSI (Acetyltransferase (Isoleucine patch superfamily protein) n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FGV6_ECTSI)
HSP 1 Score: 250 bits (639), Expect = 3.090e-72
Identity = 145/337 (43.03%), Postives = 193/337 (57.27%), Query Frame = 3
Query: 135 TLHVKLLCCWLLAGCYTVRSDGAAYHS---------------RRQATSGPTLAVIPGEIWDESWCSKLPEWNPPRTSPALVLQVLSEHYVHLEYNFIYHMELNSDFTRENLFIVCLDEESEAFLDSTFGIKCVRPDLGDGDGMSRKDVWTLRSHIASCLVLAGHDVLLSDADAIWLKDPIQEMNRVGAGESDVVSSRGKLPGYLHRAWGATLCFGFVLLRSGGPAMPEFLRTMARMVDTLNDDQKAGNEALNIMGVAWDSEGSDMRLIDSTALGRGLV---FADEGPMSVALLPHDTFSRFCDSTNVDLENTTVVAHCYSRAKGEKMTAWMKAEGLW 1091
T V++L WLL C V ++ H+ + T+A I +S CS + W PPR+SPA+V QV+SE Y LE NFI +MEL+S F+RENL++VCLDEES A D GI+CVR G +SR D+W LR + CL+ AG DVL+SDADAIWL+DP ++ +S+VV+SR +P L+ WGAT+C GF R+GG AM F+ + + + L +DQ A NEALN + V WD SDM D+T G G++ D G + V LLPH+ ++R C T + N T+VAHC S KGE M WMK LW
Sbjct: 81 TTSVRVLRGWLLTWCLVVCLKTSSIHAAGPDAEPDEADNVVVHTMGLANDTVAGTLPPITKDSSCSDMLAWLPPRSSPAVVFQVVSEPYASLEENFISNMELHSTFSRENLYLVCLDEESVAIFDG-LGIRCVRYGCL-GCPVSRGDIWVLRIDVTICLLNAGQDVLMSDADAIWLRDPTDDLASDAFLDSNVVASRAVMPFPLYHKWGATICMGFAFFRAGGSAMQAFMTVVEEIANELGNDQIAVNEALNKLDVVWDPM-SDMNFTDNTRPGTGVIENITVDGGSLKVTLLPHNKYTRSCRRTPIS--NDTIVAHCVSSDKGEGMATWMKEAHLW 412
BLAST of mRNA_P-fluviatile_contig79.14244.1 vs. uniprot
Match:
A0A6H5LI82_9PHAE (Nucleotid_trans domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=A0A6H5LI82_9PHAE)
HSP 1 Score: 234 bits (596), Expect = 2.650e-67
Identity = 126/295 (42.71%), Postives = 177/295 (60.00%), Query Frame = 3
Query: 222 QATSGPTLAVIPGEIWDESWCSKLPEWNPPRTSPALVLQVLSEHYVHLEYNFIYHMELNSDFTRENLFIVCLDEESEAFLDSTFGIKCVRPDLGDGDGMSRKDVWTLRSHIASCLVLAGHDVLLSDADAIWLKDPIQEMNRVGAGESDVVSSRGKLPGYLHRAWGATLCFGFVLLRSGGP-AMPEFLRTMARMVDTLNDDQKAGNEALNIMGVAWDSEGSDMRLIDSTALGRG----LVFADEGPMSVALLPHDTFSRFCDSTNVDLENTTVVAHCYSRAKGEKMTAWMKAEGLW 1091
+ GP ++ I ++ C+ +W PPR+ PA+V+QV+S HY+ LE NFI MELNS TR++L+++C+D S F +S+ I+C+ L D S ++W LR+ + SCLV AG DV++SDADA+WL DP ++ N +S VV+SRGK P L WGAT+C GFVL R+ G + EFL M +V DDQ + N A +G+ WD E SDMR ++S + G G LV + P SV LLPH+ ++R CD T + N TVVAHC++ + T WM LW
Sbjct: 24 EVAHGPAVSRRLPAITPKATCADWMKWIPPRSDPAIVMQVVSRHYLELERNFIRLMELNSALTRDHLYLMCMDNVSVHFFESSMNIRCIP--LTAFDFPSHAEIWVLRARVVSCLVEAGQDVIMSDADALWLDDPFKDFNLPRVIDSSVVASRGKFPKPLGLEWGATMCMGFVLFRATGRRVVGEFLEVMDALVHKNKDDQISVNLAAENLGIVWDQE-SDMRYVESDSFGFGTIDTLVDENNQPFSVTLLPHNAYTRVCDETPIS--NKTVVAHCWAPKTADSKTGWMVQSKLW 313
BLAST of mRNA_P-fluviatile_contig79.14244.1 vs. uniprot
Match:
D8LSV3_ECTSI (Nucleotid_trans domain-containing protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D8LSV3_ECTSI)
HSP 1 Score: 227 bits (579), Expect = 8.150e-64
Identity = 125/274 (45.62%), Postives = 176/274 (64.23%), Query Frame = 3
Query: 282 CSKLPEWNPPRTSPALVLQVLSEHYVHLEYNFIYHMELNSDFTRENLFIVCLDEES-EAFLDSTFGIKCVRPDLGDGDGMSRKDVWTLRSHIASCLVLAGHDVLLSDADAIWLKDPIQEMNRVGAGESDVVSSRGKLPGYLHRAWGATLCFGFVLLRSGGPAMPEFLRTMARMVDTLNDDQKAGNEALNIMGVAWDSEGSDMRLIDSTALGRGLV---FADEGPMSVALLPHDTFSRFCDSTNVDLENTTVVAHCYSRAKGEKMTAWMKAEGLW 1091
C+ + W PP+ PA+V QV+S+ YV ++ NFI +MEL+S F+REN++++CLDEES E+F GI+CVR G +SR VW LR ++ CL+ AG DVL+SDADA+WL DP+ + + +S +V+SRG +P L R WGAT+C GFVL R+G A+ +F+ + + L +DQ+A N AL + V WD SDM DST G G+V ++ E ++V+LLPH+ ++R C T + +E TVVAHC S KGE M WMK LW
Sbjct: 128 CADIVAWLPPQLQPAVVFQVVSKAYVSVQKNFISNMELHSTFSRENMYLICLDEESVESF--GALGIRCVRFGCM-GCPVSRHHVWALRIEVSVCLLKAGIDVLMSDADAVWLHDPMDDFDSDDYRDSSIVASRGAMPVPLFRTWGATICMGFVLFRAGSNAIYQFMEVVGEFTEELENDQQAVNLALQKLDVVWDPT-SDMSFSDSTRSGVGVVNSIYSGES-LTVSLLPHNKYTRSCRRTPISVE--TVVAHCISTDKGEGMATWMKEAHLW 394
BLAST of mRNA_P-fluviatile_contig79.14244.1 vs. uniprot
Match:
D8LK17_ECTSI (Nucleotid_trans domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D8LK17_ECTSI)
HSP 1 Score: 203 bits (516), Expect = 1.600e-55
Identity = 123/320 (38.44%), Postives = 172/320 (53.75%), Query Frame = 3
Query: 243 LAVIPGEIWDESWCSKLPEWNPPRTSPALVLQVLSEHYVHLEYNFIYHMELNSDFTRENLFIVCLDEESEAFLDSTFGIKCVRPDLGDGDGMSRKDVWTLRSHIASCLVLAGH-DVLLSDADAIWLKDPIQEM-NRVGAGESDVVSSRGKLPGYLHRAWGATLCFGFVLLRSGGPA-MPEFLRTMARMVDTLNDDQKAGNEALNIMGVAWDSEGSDMRLIDSTALGRGLVFA--------------------------------DEGPMSVALLPHDTFSRFCDSTNVDLENTTVVAHCYSRAK--GEKMTAWMKAEGLW 1091
L +P I ++ C W PPR+ PA+V+QV+SE Y+ +E NFI ME NS FTR N++++C+D+ S+ F D+ GI+CV + D + + +W LR + SCL+ G+ DV++SDADA+WL DP +++ +R G D+V+SRG P + WG+TLC GF+L R+ A M FL MA +V DDQ + N A +G+ WD SDMR +ST GRG++ E P V LLPH ++R C + TTVVAHCY K G K T+WMK LW
Sbjct: 24 LETLPA-ITKDATCVDWAAWIPPRSRPAVVMQVVSEGYIDIERNFIRLMERNSGFTRRNIYLMCMDDASKNFFDTKMGIRCVP--MSALDLPTHEHIWQLRVRVVSCLLEIGNVDVIMSDADALWLADPAKDLFSRGDGGRGDIVASRGSWPNDQWKEWGSTLCMGFILFRARNVAGMKRFLDVMADLVVQNKDDQISVNRAAKQLGIVWDKN-SDMRYEESTGYGRGIIAGLGTSNNSTSGGGGDLFIGQTGHGVVVGRGTREVEAPFRVTLLPHSAYTRLCGRRTLS-NQTTVVAHCYFPQKEAGVK-TSWMKKANLW 337
BLAST of mRNA_P-fluviatile_contig79.14244.1 vs. uniprot
Match:
D7G4E2_ECTSI (Nucleotid_trans domain-containing protein n=2 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7G4E2_ECTSI)
HSP 1 Score: 150 bits (380), Expect = 1.270e-37
Identity = 80/181 (44.20%), Postives = 105/181 (58.01%), Query Frame = 3
Query: 567 VLAGHDVLLSDADAIWLKDPIQEMNRVGAGESDVVSSRGKLPGYLHRAWGATLCFGFVLLRSGGP--AMPEFLRTMARMVDTLNDDQKAGNEALNIMGVAWDSEGSDMRLIDSTALGRGLVFA----DEGPMSVALLPHDTFSRFCDSTNVDLENTTVVAHCYSRAKGEKMTAWMKAEGLW 1091
V AGHDV++SDADA+WL DP+++ + G S +V+SRG PG + WGAT+C GF+L R+ AM EF+ M +V DDQ A N A +G+ W+ E SDMR +ST G G + + D P +V LLPH ++R C ST V NTTVVAHC S + WM LW
Sbjct: 64 VEAGHDVMMSDADALWLADPMKDFSLPGVVGSSIVASRGSFPGEVGHVWGATICMGFILFRTTASRVAMREFVTVMNALVLEEKDDQIAVNIAARDLGIVWNQEDSDMRYTESTGFGVGFIDSLSDDDNQPFTVTLLPHSAYTRICASTPVS--NTTVVAHCISSKTPQSKADWMHRMDLW 242
BLAST of mRNA_P-fluviatile_contig79.14244.1 vs. uniprot
Match:
A0A6H5JTX9_9PHAE (Nucleotid_trans domain-containing protein n=1 Tax=Ectocarpus sp. CCAP 1310/34 TaxID=867726 RepID=A0A6H5JTX9_9PHAE)
HSP 1 Score: 138 bits (347), Expect = 4.040e-32
Identity = 86/255 (33.73%), Postives = 127/255 (49.80%), Query Frame = 3
Query: 327 LVLQVLSEHYVHLEYNFIYHMELNSDFTRENLFIVCLDEESEAFLDSTFGIKCVRPDLGDGDGMSRKDVWTLRSHIASCLVLAGH-DVLLSDADAIWLKDPIQEM-NRVGAGESDVVSSRGKLPGYLHRAWGATLCFGFVLLRSGGPA-MPEFLRTMARMVDTLNDDQK-----------------------------------------------------AGNEALNIMGVAWDSEGSDMRLIDSTALGRGLV 923
+ + V+SE Y+ +E NFI ME NS FTR N++++C+D S+ F D+ GI+CV + D + +D+W LR + SCL+ GH DV++SDADA+WL DP +++ +R G G D+++SRG P + WG+TLC GF++ R+ A M FL MA +V DDQ + N A +G+ WD SDMR +ST GRG++
Sbjct: 1 MTVPVVSEGYIDIERNFIRLMERNSGFTRSNIYLMCMDGASKNFFDAKMGIRCVP--MSALDLPTHQDIWQLRVKVVSCLLEVGHVDVIMSDADALWLADPAKDLFSRGGGGRGDIIASRGSWPNEQSKEWGSTLCMGFIVFRARNVAGMKRFLDVMADLVVQNKDDQMLCECATGVENDFCGFPASSRPRSNPTLTESAFCVAAPSPNASLILSIVSVEKISVNRAAKQLGIVWDKN-SDMRYEESTGYGRGVI 252
BLAST of mRNA_P-fluviatile_contig79.14244.1 vs. uniprot
Match:
D7FQM0_ECTSI (Nucleotid_trans domain-containing protein n=1 Tax=Ectocarpus siliculosus TaxID=2880 RepID=D7FQM0_ECTSI)
HSP 1 Score: 127 bits (319), Expect = 1.960e-30
Identity = 64/149 (42.95%), Postives = 95/149 (63.76%), Query Frame = 3
Query: 387 MELNSDFTRENLFIVCLDEESEAFLDSTFGIKCVRPDLGDGDGMSRKDVWTLRSHIASCLVLAGHDVLLSDADAIWLKDPIQEMNRVGAGESDVVSSRGKLPGYLHRAWGATLCFGFVLLRSGG--PAMPEFLRTMARMVDTLNDDQKA 827
MEL + FTR +L+++CLD++S F +S GI C+ L + S + +W LR + SCL AGHDV++SDADA+WL DP+++ + G +S +V+SRGK P + + WGAT+C GF+L R+ AM +F+ M +V DDQ A
Sbjct: 1 MELRTSFTRNHLYLMCLDDDSLHFFESFMGIHCIP--LSGLNISSHEQIWVLRVRVVSCLAEAGHDVIMSDADALWLADPMKDFSLPGVIDSSIVASRGKKPKEVGKVWGATMCMGFILFRATANRTAMGKFVTVMNALVFESEDDQIA 147
BLAST of mRNA_P-fluviatile_contig79.14244.1 vs. uniprot
Match:
A0A7S2LCA9_9STRA (Hypothetical protein (Fragment) n=1 Tax=Skeletonema marinoi TaxID=267567 RepID=A0A7S2LCA9_9STRA)
HSP 1 Score: 77.4 bits (189), Expect = 5.460e-11
Identity = 64/200 (32.00%), Postives = 95/200 (47.50%), Query Frame = 3
Query: 531 VWTLRSHIASCLV--LAGHDVLLSDADAIWLKDPIQEMNRVGAGESDVVSSRGKLPGYLHRAWG-----------ATLCFGFVLLRSGGPAMPEFLRTMARMVDTL-NDDQKAGNEALNIMGVAWDSEGSDMRLIDSTALGR-------------GLVFADEGPMSVALLPHDTFSRFCDSTNVDLENTTVVAHCYSRAK 1049
+W LR HI ++ +VL +DADAIWLKDP+Q N S++V+SRG P + A T+CFGF R+ P + + + + V NDDQ A N LN+ +DS D+ + D +++ G V A + V++LP++ +R C LEN+ VVAHCY+ K
Sbjct: 128 LWVLRLHIMQRIINTFPNLNVLYTDADAIWLKDPVQLYNHPQHQSSNIVASRGTYPEWCPLAMELHDDEKMHLNTVTICFGFTYFRNS-PDLHQLAQNLQNAVARYRNDDQIAINCVLNLQ---YDSN-DDLHMNDPSSIAAFTQPDKSVIRSFFGKVIAHN--IKVSILPYEQVTRRCGRDEGMLENS-VVAHCYTDLK 319
BLAST of mRNA_P-fluviatile_contig79.14244.1 vs. uniprot
Match:
F2U1B4_SALR5 (Nucleotid_trans domain-containing protein n=1 Tax=Salpingoeca rosetta (strain ATCC 50818 / BSB-021) TaxID=946362 RepID=F2U1B4_SALR5)
HSP 1 Score: 75.5 bits (184), Expect = 1.110e-10
Identity = 41/113 (36.28%), Postives = 67/113 (59.29%), Query Frame = 3
Query: 417 NLFIVCLDEESEAFLDSTFGIKCVRPDLGDGDGMSRKDVWTLRSHIASCLVLAGHDVLLSDADAIWLKDPIQEMNR-VGAGESDVVSSRGKLPGYLHRAWGATLCFGFVLLRS 752
+L+++CLD + + G+ CV P S D+W LR + + G DV ++DADA+WL+DP ++R + ++D+V+ RG P + +AWGAT+CFGFV +R+
Sbjct: 126 SLYVLCLDRKVTDWCRQQ-GLNCV-PFHAHFANTSLDDLWMLRLQLVQDCLHHGFDVWMNDADAVWLRDPWPLIHRELTVHKADIVAQRGGFPFEIGKAWGATMCFGFVYMRA 236
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig79.14244.1
>prot_P-fluviatile_contig79.14244.1 ID=prot_P-fluviatile_contig79.14244.1|Name=mRNA_P-fluviatile_contig79.14244.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=331bp
MKATLHVKLLCCWLLAGCYTVRSDGAAYHSRRQATSGPTLAVIPGEIWDE
SWCSKLPEWNPPRTSPALVLQVLSEHYVHLEYNFIYHMELNSDFTRENLF
IVCLDEESEAFLDSTFGIKCVRPDLGDGDGMSRKDVWTLRSHIASCLVLA
GHDVLLSDADAIWLKDPIQEMNRVGAGESDVVSSRGKLPGYLHRAWGATL
CFGFVLLRSGGPAMPEFLRTMARMVDTLNDDQKAGNEALNIMGVAWDSEG
SDMRLIDSTALGRGLVFADEGPMSVALLPHDTFSRFCDSTNVDLENTTVV
AHCYSRAKGEKMTAWMKAEGLWQDAGSHQL*
back to topmRNA from alignment at P-fluviatile_contig79:30997..44870-
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig79.14244.1 ID=mRNA_P-fluviatile_contig79.14244.1|Name=mRNA_P-fluviatile_contig79.14244.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=13874bp|location=Sequence derived from alignment at P-fluviatile_contig79:30997..44870- (Porterinema fluviatile SAG_2381)
CTCTCATCATGGACGCCAGCAGTACCTTCATTTCCGGTGTGTTTCGTTGC
CTTCGCTGCAGGGTCATGCCGGACGTAACATAGGTTCGTGGCCCGGTGAT
GGTGGGTGTACAAGGCCCTTTGTTTGTGGCTTGTCAGTCGTGTTGTCCCA
ATTAACTTCAAACTCACAAATCTCGGGTTCCACAGGCAGCGGAGCGAATC
CGAACAAACACAGAAGAGGCACGAAATCAACTCCATATCGCTCTCTTAGA
TCGGTTGAGATACGGTGGTGGACGAGTGTATACAGGCCGCAAGGGTGATT
GACACCAATCTTGGCATGTACAGAGAAACATGTCGGGTGTGTGCGAAGTC
CGAAATTGGGTGTGGACGTGGGCTTCGTTATTCTCGTTTTCATTCCTCCG
AGGACCGCCCCGTAGGTCCGAAGGATCTGGTTTCATTCGGAATTCCGAAA
GAGCGATTTCACCCTCCAAGGCCGGTTGCCGGCAGCGACTGGAGGGTGGA
AGCGAAGAGAGGGGGGGTCATGTGGTACAATAGAGTGGCGGAAGCGAGCG
CAAGATTAAAGGAGGAATGGCATGCGAAGGAGAGAGAAGCCAGTAGAGCC
CGCGATCAACCGAAACTGGAGGAGGAGGAGGAGGCAGAAGCCGCCAGATT
AATGAGAGAGGAACCGGAAAAAACTGAATGATAGTTCATCCCCATGATTG
AACTATGTTGTGGTCTACCGCCGTGTGCCCTCTTGTTTTTCGCGTTTTTC
TTTTTTTCTTTCGTAGCTTCTTCTGCGACTCTTCCGGAATTTTTTTTGTT
TTTTTGGGTGACTCCCCGGCCCCCGCTGCCTCGTACCCCCCCTCTGTGTG
TCAAGTAGGGGAGGGAGGTGCTCGGCCGGTGGAAACCCTGGAGGAGTCGG
CCGGTGAAAACCCTGCAGGGTTCGGCCGGTGAAAACCCTGACTTGTAGCA
TGAGGCGTTTCGGGCATAGTTCGGGGCCGGGGACAACCAGTTCCTCTTTT
TTTCATTTTGCGGCGGAAAGGAGTACAAAACTTTATGCATGTTGGATAGA
CGCTGCTGCGCCCACGCCATAATCGAGAGGAGGATAATGAGTTACTTTGC
CTTTGTATCCTGTCATGTATTTCGCTTCGTATGGTGCTAGATATATGGGA
CCGATTTTTCTTTTCGGGTGGAGCGTCAACAGTAAGGGGGGTCGCCATCT
TTGTACAGCCTGTGACCACGGAGTGGTTTCCCGACAGGATACGGTAAGGA
CGTTAGGGGGTACCAGGATTGAGCGGAGAGGAGGTTTTAATTTGAAGGCA
ACACACGAATTCCGAAAAAAAGTCCATATCGAGCTTCATTTAGTTTACTC
TTTTCGGGAAGCGTGTGGTTCGCTGAAATAACCCGAGCTTTCACGGAGTG
GGAGAAGGAGAGGAACGATCACACTCACTCCACTCAGCACGCACAGAGAG
AGCGACGGCAAGCTTACGTCGTCAAGCTGCGCGTGTGAACGGGACGGGAA
TTGGGACCGCGGAGCCAAGCTCCCTTAGTCTTGGACCGAAAGCAAACAAC
CTGCCGTTTGTGTGTGTGCTGCTCGTCTTGTCGCACACTTCGACAGCTCG
GAAAAAAATAACGAAGACAAGCCGTGGTTGAGCATTCGCGGCGATCCACA
TCGACACCTCTTACAGATCCTTCCCATATGATTAATGGAGCTTGCAGACG
CGCCCTCAGGGCCAGAGTTGACGGGGGGGAACAGAAAACGTACATAAAAC
AAAATCGAAGTTCGTTTCTCGGAAAAACCGGAATGCCATGTCAACGAGAA
GTGTGCAGGTTCCCTCTGATTGGACATAATTCTACCTCTCTAACAACTCT
CGCGCAAGTGGGTGCTCTTGTCACCCCTCCCTCCCCCGCATCCGAGATCT
TGTATGCAAACACCGACGCTATGCGCGATATCCGACCTCCCCGTAGCAGA
AGGTTGAAGCTCCTCGAAAGGCTGAAAGCGATGTTTGCGAGAATATTTCG
TCTGCTATATTTGCTGTCCGCCTTGGACGATCTCTGCACGTTGAATGCTC
ACCAAGTACCGCCTCGCAGCACGCTGCTGCCATGCGAGAGGTGGTCGTTC
ATGCAGTACATCAAGCCGATGCTCGGAGATGGCACCTTTGCAGGACTCTT
CCGCATGGAGTACAACGATTTCATGTTTTTTGTAGGACTCGTGCGGCCTA
CCGAACAGAGGAACGAGAAGATGGGAGCCCTGTGGAATGGAGCCGTCCCT
GTCGAATACCAAGTGGCGGTGACGTTACGGTGGCTAGTCGGGGCGTCCAT
GCACCAGGGGATGGGCGGCCATTTGATAGCAAGGAGTATGGCCCAACAGA
CAGCTCTCCGTGTCATCGAAGCCCTGAATGCTTGTCCTGGGCTAAACTGT
AAGTGGCCGGACGGAGAGGATGTTGCTAGGGATGCGAAGTTGTACGGCAT
CATCCGCAGGTGCATCGGCGCGATGGACGGCTTATTCATCCGCGTGATCA
GGCCCACCGCGAGGGAAACCGCCGAGCCGAATGGCTTTTACAGCGGGCAC
GAGAAGACTTTCGGCATAAACTCCCAGGTACGGGTGTTCCGGGTTTGTCG
TATGGAAGAATGACAGTCCGCTTGCAGGAACGCATGTTTTCGATGTGAGG
TCATGTCAAATATATTCATCTCCCGGTGCGATGGAATGCGGGTCGTGACC
GGAGGATCCTAAGCAACCAGCAGTACTGCACAGGCGGGCAGTTCATCCTC
GCAACCCGTCACGCAAGAGCCTTCCGCTGCACACGCACCTTCTCTGTCTG
CCTCCCTCTCTCCCCTCTCCCCCCCCCCCCCCCCCCCTCTCGATCTCCCT
CCTCCTCTCTCCTCTCCCTCCCTGCCCCTGTTGCTTTCTTTCCACTTTTT
ATTTGCATGGATTTTTCGTTTATTTCTCGTACTCCCCGACCACATGTCGC
ACAAGCCTTAGGAGGCGGCGACAAGGACAATATGATCCCAATTCAAGAAC
GCACCCTCTCGTGTTGTACCCGTGGCTGTCCATCGTCTGGTCATGCAGGC
AATTTGCGACGCGCAGTGTCGGATCATCGCGTGGACCATGAACTGCCTAG
GAAGTAAGCACCATCGCACGGCCTTCAAGTTTTCCGTTTTTCAGTGGCTC
TAGCGGAACTTGCCCCCGGATTACTTCATGGTGGGTGACGCGGCGCATCC
GGCTTCAGATCGCGTGGTCGTGCCGTTTCCGTGGACGTCCCTCTCCGCCA
GCCAGGACGCGGCTAACTTTTTTCGGGCTCAAGCGATGATTGTCAGCAAG
CAGATCATCGACAATTTGGTGAGCTGGCCGACGCCCGTGTTCAGGGGAAC
TGATGCGGTCCTGCCGCAGCAGATGCTTTTCTTTCGTTACCGTCAATGTC
CAACGACCATAGGGGGCTGCGGGTTACGGATGAAACAATTCTGCTGGGGA
AACATAAACCTCTGGAATAGGGGGGGGCAACAACCCCTCCTCTCCCGCAC
ACACACATAAGGAACCTTTGGCGTCGTTCCGGAAAGAAACTTGCACCATA
TCGTGGGGCGTTGTCCCGCGAGTCGTTGTCTAGAACTCCATCGTGCCGTA
GCCGTGGCGTCGCACCCGCCTTGGGTTGCGTAAACCTGATGCAGTGATGT
TTAAACGAATGTCGGCTTTTATCTGAGGGAGAATATCACCCGCAGAAGCG
TGGGGGCGCGGGGGCGGGGATTTTTTTTTTCTATCGCTTGCAAAAAGGTG
GAGGGGGGGGGGGGGGAGGGGTAAGGAAAAGGCGGTGATTGCTTAATTTT
GTATCGAATGTGTAGGAATAAGACGGAAAACGAAGTGCAATTAGGCGTGA
GCATTCGTTGCGTGTTCACCCTTGTCGCCGTCGGATGGTACAAAGTATAC
CTGGCAGAACCGGATTCGCAACGCTTCGGGATTACATAAACGGCCTTGCC
TGCGCGCAGCGTGGACATCATTTCACTGCAACCCTATCCCATCGTTCGCA
ACCATGAAAAACTTGTTTAGGTGAGGAAATGGGGTATCCTGTGGCGTCCC
TTAGAGATGGGGCTAAGGCGGTTCGAACAGATGCTGAGCGCCGTCGTCCA
CCCTCACAAGTTCTGCCTGCCGAGACCGCAACGTGTCGGTTCCCTCCGTC
TACCTGGACAACGTACCGGTGCCGCCGGAGATCACCTTGGCTAAGGAGGG
GCTCACCAGTTGCCACTACTTCGAAACCGCGGCAAGGCGCACGGGCCGGC
CGCTGCAAGACCAGGTGGTAGTGTCCAAGCCGAGGGAAGGCATCGCTGGC
AAATGAACATCAATGGTATTTTTGGCGGCCAGCCAAAAACCGTGGAAGGA
ACCCAAATCGCTCCGTATGATCCGCTGTAGCCGTCGTTGCGGCGGAGAAA
GCTCCAAGATTTTCTGTTCATGTTTTGGCGAGTGCCATACCGGTAGGGGG
GGGCGCGGCGCGGCGCGGCGCGGCTGGAGATCGGACTCGTTGTTTCGTCA
CCCCCTGTTGACATCTGTACGGTACGTCGTGTAGACATGGTCGGTACGAT
CGACGCCCCCTCCCGCGCGCACACCTCCTCCTCCGGTATGGGAGTGTTTC
TGACAGGCGGCGGGGTCCGGTTGGCGTTGTTTTGGCTGTAAGCGTGCTGA
TATTTTCTTTCGGGCGGTTTGAAGCAGTTTTCGAGTCGAGCACTCCGACA
GAGGCGTTTTTGTGATATTTGTGCTTAATGAAGACCTGGGTGGTAAGGTC
AGATTGCGGTCGTGCGTTCAATCCTAGCATTGTGGAAGCAGCATCCAAAC
GCGGTGTGCGCGAAACCCTCTTTTGGAGGCTGTAGAAAATGAAAAGGGTT
CGCCTTCAGAAAATGCTGATGCAGCGAAACCTGAGAGAGGAGGAATATGC
TTTTTGCTAGACGCAGAGCAATCCTTTCGTTTCCTGTCATCAAAACTGAT
GCTCCGGACACAAACATTGCCCTCGCGGACACCGTGCGCGCGCAACGAAA
GACACGCTGTTTCCTTTTCAGAGTTTTCTTATTCGGCCTTTCTTATTGGA
GCCGCCATCTTCAAACCTCATTCCAGCATAAAAAAAAGGACAATTTGAAA
CCCTTGGCTGATAAAAACACGCAAGCACGTGTCTAATACAGAGGAAGGGC
AAATGCCCGACATGATCATCCACGTCACACACTTGCGCATCATGACGCGC
CATACAGCAACAAGGGAGCGAATCAGCAAGCTACTGAACGCCCCGGGTGT
CGTCGGCTGTCCATCCCGCCAACATCGGTGATGGACCAGAACAAACGGGC
ATCGAACGTCGTGACTGTTGGGGGACCTGCAGGCATCAGCACGGCGTGTG
GGCGGCAGGGAGTCGTGGGCGCGCGGGGGGGTGGGAAGCGATGGTGTCTG
TGAAAAATAAGCCAGCTTTCGGCGTTTGTATCATGTGTTCGGACGTCAGA
AGGGGCGCTCAAAAGCATACTTCTTCTGGGAAATCTGTCACCCAACCCGA
AGTTTTGCTGTCCGCGAATGAGGCACACCCTTCCCCTTTAGAATGGTCAG
CCTTCATGGTGAGGCTACGACCGAGGCAGCCTTGGTCCATTAGTTCTTCG
TCAACGCAGGAGAACGGTACATCTCCATGACCATAAAAAAAAGCTTGTAC
AGCCAAACGACCATCTCACCGAATAGCAAACGATATCGAACTACTTCGAA
CACACACGATCGTGGCAAAGTTCACGCTCAGCGGCCACACTGCACTCACG
CCAGCATTTACAGCCGTCGAGACTCCTTCCTGGGCGGGATGTGCATGCTA
AACCCTCGGCTCGTCGCTTTTGACAAGTTTTGGGCATTGCGTGCGAGGCT
TGCCTTCAAGAGAGCCACCGAGAAAAATACACGTCGGCTCTACGGCGCGA
AACGATACGTGTAGCCTTTCGCGCGCGAGATGAGGGAGAAAAAGGGTGGA
GACGAAGCTTTGCAGACACTCCTTCTTTTCGCTCCACACAGCGGCAACGG
GCAGCGCCGTCATTCTTTGTAACGCCAAACCAACCTCGAGTGGCACCCTG
CTCCGAGAACCAACCGCCTCATGATCACCCTCCTTGCCAGCATTTTCAGT
TACGTCGACCAGAGCCTGTCCGAAACAACGGGCGGTGGAGGAGGAGAGCC
GGCGCTTTCATGCCTCAAATCTTCAAAAATATCACGTGCGAATCGTGCGC
GTGTGTACGCACTTGTGTGCGAGAGCCACGGAAAGCAGGGCAGCGAGGGC
TCACGATCAACGTTTGACATCCGAGTGATCTTGCTCCGCATACTCGGCGC
TTGGCTTTCATGACAACTCCGACCCTGTTGTTGCCGTTTAGCGTTCATGT
GTGCAATAATCAGAAAGCCGATACTCAGGCGGGTGTGTGTTGCCGCCATA
AAAAAATCAAACGGCCTCTCAGGAGCTTCGGCTTGGAGGGCAGGGGATTC
GTGGCGCGACTTGCACGGAATTCGCCGCTGTGCTTCGCACGCTGATCTGA
ACTCGAATTTGGTTTGGTGTGATCTTTTTGGGGGGTTTCAAGTCCGAACC
CGAATTAGTCGGACTTCGCAAACACTCCAACGAGCAACGAGGCGGCTCAG
AAGGGGTACACGGCGAAGTACACGCCAAGTCTGCCACTAGGGGGCCACAT
GATCTGTCCACCCACGAGAACACGACACCGAAGCGGTACCCCAAGAGCCT
TCAACGTGGGTAGATATATTTATCCTGAAAATATATATTTTCTGGAATAC
TGTACGTACACGCAAATCCGCTAATCACGAGAATCGACTACAGGATCACA
GACCGCCAGTCCCCACTACTACCGGCCAGCAAGTTACTGTTGACTACGGT
GTTATCGTATGATGTCGGCACCGCCTGTAGGCGCGGCAGAATCGGAGAAC
GATCACGCGACTGTCTGAAGTGCCGCCAAAATTTTCCGTGGACGGTGTGT
GTGTGTTTTCGTCTCATTTACTCTACCGACCGTATCCACATTCAACGTGA
GACTTGTGCCACACGTTGCGGTGCATGTAGGGCCGACACTTTTCAGTGTA
TTTTTCTGGACAACTAAATCAGCCGAGGTCACACAGGAGGGGGTAACACC
GGGTCTTTTTTTTCTTCTTTTTTTTTGGTTTTTGTTGCGCCACCTTCCCA
CTAGACCGCCGGGGCGACCAGTTGATTGCAAAGGAAAAACCATACAGGCG
CCATCAATATCAAACGACATCGAACACACTTCCCTGGTCTCAAGAGTAGC
AACATCGGAGTCGAGGCACCGAGCGATTCTGCAGAGTTCCGAGATACCAC
AGTCAGACAAGGAAGACAATGTTTCCTTTGGCGATATCTTGGCAAAACTA
GTGACGTCATGCCCACGAGCAACCACGAAGGTGACGGGGGAAAAGGTTAA
AAAAGCATCGATTTCACGATGTGAGGTCGGTCCGGTGCGGTCGATATCGT
CCTTGTGCTGATGGTGCCGCCGATCTGATGGGCAGCGAGCCCCAGTCTCT
CCACTCTGGATCCGCTCCGTATTGTCATGCCCTCGCTGCTGCTCCTTTTC
AGTCTCCCCAACGCAGCCGAGGTGCCAGTCTTGAAAAAATATGTTGTTAT
CGTATCGGAAGAGGCCAAGCAGTCCGTATGCTAGTTCGTGTCGCTGCTGC
CCCCTTGGGTCCTCCTTAGGGACGAGAAACCGCTCACTGAGCGGTGTTGT
TGCTCATCTCTGCTATCGAACCCAAATGCCACCGCCCGACATAAAGCCCT
CACGTCTGCCTCCGCGAGCATTTAACGGGAATTTCCTAGGTGCCAAGCCC
ACCAAAAGCCCCTGATGTGACCAATAAGCGATCCCACTTTACCGTTGCAC
GTCAACCTCGCGGCTGGTGGATCAGCACCAACGTATCACCCCTTGGACAT
GAGCCCAGCCTTTCGCTGCCAGAAAGACCCTCCCCGTACCCGCTGAAATG
CCATCCCTTATAATGGAGCATAGGTGGCGAGGAGGGAACGGAGAGCGTCC
AGCACAACTTTCCTCTTTGTTGCAAAGTTTGCTGGTTGCAAGACGGCAAA
AACACAACATCGAGGGCATCTGGTTTCTGCTGTAAATGCAGTGGAGCTCC
GCCAGCTTAGTCTACACGTTTCCCACAGAAGAAAGAACTCACGGCACAAG
TAGGGAACTAAACGCTGTGCTTCAGGTCGAACGCGCATACCGGGCCTCTA
GAATGTACTCTCGAGACAAAATATTCTGGTAGCAGTGGATAAGAGGTGCG
GCTGTGACTGAAGAAATCAGAAAATCCACCCGCACGCATATCCTGGCAGG
ATCAAGGCTGGTTAAGCCTTGGTTGCGGGAGACGCCTTGTTAGGTCCGGA
TCCGCCAAAAGTCTCTGTACTCACACCCCGCCCTTCGTTCCCTTGCAAGA
TTACCAGTGTACCAGCGTGTAGAGGGCACCGTGTCTTTCAATTGTGCCGC
ATTCCTTATATTCATTGTTGGGCCACTCTGGTCAAATTTCTCCTTTTCTC
GCTGCAGCGTACACCTATGCCTATGTCGGCAGATCCTTACTGGTTTAAGG
ACGTGCGTGTAACTTGGTGAACTATAAAGATCTTTTACTTGAGAGTTTAG
CCCCGCAGACGCGATCGAAACTAGCAGCAGGTGTCCCTTAATTAGACTTT
TGCACACACATCAGTGTGTGGGCATAGTTCGGGTACCCCAACTTGTGTTT
TTCTTATGGCCAGAGATACAAGTTTTCAGTTTGGGCCGCATTGCTGCACC
CACCCAGTCTGTTGCTGGGTGCTTTTTCATTGCTATTTCTGTTTCCTTCG
TCTTACTTTTTTTTTTTTGGACTTCGGGGGGATTTTGCAAGTATTCAGCC
GGTGACCACGGAGCCTTTTCCGATAGGATAGGATAAGGATTCTCGGAGGT
ACTGGACGTGATCGGCAAGGGCGGAGATTGGGGGAGGTCACGATGTTCAC
GCAAGCAAGACAATTTTTGCGTAGAGTACGGCGCACCAGATGCCATTTTC
AATAACGAGTGTGAAGCGGCGAAGAGAGTTCTTGAAAACGTGCCAACTTC
GGATTTTTTTCTACGTAATAATTTGTCTCCTGCGCCACCGTGAATAAAGA
ATGGCCGCTGTCTTTTTGTCGGTACAAAGACGCCTAGGGCGTGCGTAAAG
GTACATTTTTTCTGCTTCTTTGTGATTTTTCTGCAGATCACCAGCGAAAA
TGCAGAATTGCGCTGTCTCATCGTACGCCACTTCAGTCGGCATGTTGACT
CGAACTCACACGCGTTGTGTACCATTTTTTTTTGTTTGGTTGAGGGCAGC
TGGTCGGCCAGCTATACCACGCCCTCTGCGCGGTAATCAGCTCTCAGTAT
GCCACGCGAGAAAGTACCCTGCTAGCTGTGTGTTGATGTTTTTTTATCTT
CTCTTCTAGTCGGGATGTCAGGTTTAGGTTTAGGTTTAGATTTACCGTTG
GGGTCTATTCCTGTGATCGCGACGGAAAGCAGAGGCTTTCGCTGCTGATG
TCCCCTCCGCCTCCTTGCTGCTGGTCTCAAAGCTCCTCTGATTCACCAGT
CCTGTATCGTCCTGTGCAAACTGCCACTCAGCACCGTGTTATCCAACTTA
GGGTTAGGCAGGCTTTTGGAGCGGAAGATCGATATATTGTCTTCCACTTG
AAGGGCTTGTCGAGGGGCCTCATATTGTGGTGCCGACGAACAAAACCTTG
CATCACCCCTGCCTTGTCGGAGGTTGCCGTTACGTTCAGATAAAAAATAT
CGCATTACGCATTTCTTCGTGCAAAACGAGCCACCGAATTCAAATGAACT
TGGTCTCGTTATGTGTGACTCAGTCGCAGCGCCTTGGTTTTCCTTCCGCG
CTCCCATAGATATTTTTCAAGCTATCGAAGTCGACTTCAGGATGATACTT
CCTCTGTGCCTGAAGTATAGGTCCTTGTAATGGGACAGACCCATACACAC
CGTAGGCGCCATTTCTTACTTTGAGTTTTTCTGCTTGAGTTCCATTTTTT
CAATTTTCTTTTTTGCATGTAACCCCTTGCAAGCATGAATGACCGAAAAA
ATTTCAGTCGGCCAAAATTGGCGGGAGTTCGACCCTTGCTGGAGGGCTAA
AAAGTGATGAGAAACAAAAAATTAATGAAAACAAGACTTAGTTGTCCTCG
CCGTCACAGGTGGGCGCCGCTAGGTAGTCCCACGCCTTCGAGAAATATTC
TACCATCCTCGCTCTAATTTCCTGCCCTCTGGCGTCTCCCCGGTATGCTC
ATCGCGAAGGGCGTTATCGCCCATCCTGCGTTTTGTCTGGTTGTTAACCT
TGAGACTCTGCCGTACCCGTTCAACGGTGGCAATGTCGTACTCCTCGTAC
TTCTGGAAGATAGTCTGCATCAAGTTGTCTATCGAGCTGGCGCTAGACCC
CCATACCGCCGACATAAGTGACGCGAAGAAGCCCAAGTCGTTGACGTTCA
AGTCAGGGGACGAGCAGGCGGCGTTACAATCTCCACGATCCAACCATACC
CCTACCCTGCAGCGTTAAGAATCTCCGGATTGTTCTTTACCGTGCGTGTG
GGGGCTTGTGCCATCCTGCTGCACCACTGCAAGCGTTAAACGTAGCCAGG
GCATCTTCCTCTTGACCGCAGGCAGAAGCTGCTCGATGTACCAGTCCTCG
TATCACGTCGCAACGATGGTGCAGTCGAACTTGTACTCCTCCCCCCTTTT
TCTCCTCTTGGACGAGCGCTCGGCCGTTATTATGATGCAAATGCGCCAGA
TGCCGATCGTTCCGTCGAAGCCGTGGCTCGGGTCAGGCCGAGCGTTTACC
GCAATCACCATGAACTTTGGCGGATGGCTCTTGTGTTTCACGCGGACACG
CGGGGATTTGCTCACCCGGGAAGATTCGAATCCTCTCCTTGGTTCGTAGG
GGGAAAAATTAGCTTTCGTCGAAGTGGATGACGTTTCCCATGTCGAGGTA
GTTCCCGGTCATCTCTTCCACCTGACGGCAGATGAAGTCGATCCGGCGTT
TCTTCCGGCGTCGGAAAGGGACTACTATATGCGGAAAGGGACTACTCTAT
ACGCGTTACCCATCACTTCGAATTTTTTCATACCAGGTAGCCACTGTGAT
GATATTTTCCTCCTTCATCAGCGTTTCGCAGCGCCATTCACGGGAACACA
CATTTTCCACTAGTTCGGTGCATTGCGTCACAGCTACATCCGCACATTAT
TCGATCTCATACCCCCCATCCACACTTGTGGATCTCCACCTAACTAATCG
TTTTTCATTTTCTTGCGTGTCACCGTCAACGGCGTCGCCAAATGGCCCAA
CTTCTTACCGTGTCTACCATACACCCCATCCCGTTGCCACCGTCCGCTGA
CCACCCCCTTCTCAGTTACACTTTTTCGATTCCACCTTTGCCCCGTAGAT
TTCTGCTTTCAACGGACGACTTAGTTTTCGCCTAATCGACTGATTGTTGT
CTTCTGGCCGTAAGTGACATTTTCTTGCCTGCTCGCCATCAAAGTATGGC
CGTTGGGCCCTTTGGACGGCCGGGGGCTACCAGGTATCCCGTCCTAGCGA
AGCTGACGTTCCCATCTCGTTGTCATGGGGTTGGGAATATGCACTGGCGT
TGTAGGGCAGGTATCAAGGCGCCTTCCCATAATGTTGCCTGTGAGTAAAT
CTGAATGCCTGGCTTGTTACGTGTCGTGGAAGCCTTATGTACCTACTCTG
ATGTACATCATGCTACCTCTCTGCCCCTCCTTGGCATGACCTACCACGTT
CTCGAACCATGCTGTGCTTGGCATCAGGGGGTCGCACGGTACGGTGATCG
AGAAGCCGAGAGGAAAAAGATGAAAGCGACATTACATGTCAAGCTACTCT
GTTGCTGGCTTCTTGCTGGCTGCTATACCGTGCGGAGTGACGGTGCTGCA
TACCATTCGAGGCGTCAAGCCACCTCTGGACCAACATTGGCAGTAATCCC
GGGGGAAATATGGGACGAATCGTGGTGCTCTAAATTGCCGGAGTGGAATC
CCCCACGGACGTCCCCGGCGTTGGTGCTGCAGGTTCTTAGCGAACACTAC
GTCCACTTGGAGTACAACTTCATTTACCACATGGAGCTCAACTCTGATTT
CACTCGTGAGAATCTGTTTATTGTGTGCCTGGACGAAGAATCGGAGGCAT
TTCTAGATTCGACGTTCGGCATTAAGTGTGTTCGACCAGACCTCGGTGAT
GGCGACGGCATGAGCCGCAAGGACGTGTGGACACTCAGGTCTCACATCGC
TTCGTGCCTGGTGCTCGCGGGGCATGACGTTTTGCTATCCGATGCTGATG
CCATTTGGTTGAAGGACCCGATTCAGGAAATGAACAGGGTGGGGGCTGGC
GAAAGCGACGTCGTTTCCTCGCGAGGAAAGCTGCCCGGGTACCTACACCG
CGCTTGGGGGGCAACGCTCTGTTTTGGGTTCGTTCTACTTCGGTCAGGGG
GGCCTGCTATGCCAGAATTCTTGCGCACGATGGCGAGAATGGTGGACACT
TTGAACGATGACCAGAAAGCGGGGAACGAGGCCTTGAATATTATGGGAGT
CGCGTGGGATTCTGAAGGGAGTGATATGCGCTTGATTGACAGCACGGCCC
TTGGTAGGGGGCTTGTTTTTGCCGACGAAGGACCGATGTCAGTTGCGCTG
CTTCCGCATGACACATTTTCGAGGTTTTGTGACAGCACGAATGTAGACCT
CGAGAACACAACGGTTGTGGCACACTGCTACAGTAGAGCAAAAGGAGAGA
AGATGACTGCGTGGATGAAAGCGGAAGGTCTCTGGCAGGATGCAGGAAGC
CACCAGTTGTAGGGGCGGGCACCGACGAAGCGAGTTGTGTAGGCGTAAGT
GATCGCAGAAGGGTGTACCCCGGTAATCTTACGGTCGGTGTCGCCAGCCT
CGCGGAGGATAGAAAATAGCAGATAGCCGGAGTGTGATGTGTGAGGCAGC
GTCAGGTTGCCTGACGATGATGTATGTATGTACGAAGAGGGCAGAGAGGG
CAGGTAGAGGGAAGGGTATGGACCCATTTTCCTGTTGAAATTCTCTTCGC
TGTTACCCATCACTTAAAGAATGTATGGGGTTGTTTTGATGATGCCTCCT
GTCCCCAAAGGAGCATCTCACCCCAAGACACCGCGCTGGATCTGTTAGGT
GCCGGAAACAGGAACAGCGCCGTATGGCCATCCAAAGTGATGTAGCTGAG
AAATGCAGTGCCGACTGGCGGGCGGAATGGTCTCTTTCCTACTCTCGCCA
TTTTTTTCTGAGCCACGTTCTTGTGTGAGAGAATTATCTATAGGGCGTTC
ATCGTCACAGTAATTCGGAGATCTGCAGATAGGTTTTATTCGTTCCGAAT
CTTCCCATCTGTGGAGTCCCACATATTACTGAGGTATTTCTCTTATCTGC
TACCTGTGGACAGGGGTTCGGAGCCACCAATATGGTACATGTGCGGAGAC
TGTAAGGGGCTCCGTGGTGTAAACTAGCCTTTCTAGGTAGGTCGTGGCCG
ATACTCTGAGCTCATCTGTGCTCATCTTACTCTTCATGTTCTCATGTAAC
TGTGCAATCGATCACAAGCCTTCCAGCAGTCCCATGATGGGATGAGAGTC
CTAGTGGAATAGACAAATCCTACTAGATAATAAAGTTATATTCAGGATAT
CTAATTTGGATTTCTGCAGCGAGAAGGCAGCAGGGATTACGCCGACAAGA
CGAGTAGTCAGAGAGACGGGCTCGGTAGAGGGTTCACTGGCTTGCCATCG
CGACACAAGGCGCGGCATCTCTGAGGCATGCCGCCAAGAAGGAATCAAGG
GACGCCGGCCTCGCCAGGCGGCGGCGGTACGTAGGTCTTGGACGAACACT
GAGCTACTCGTCTGTGCTCATGTT
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig79:30997..44870-
>mRNA_P-fluviatile_contig79.14244.1 ID=mRNA_P-fluviatile_contig79.14244.1|Name=mRNA_P-fluviatile_contig79.14244.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=1986bp|location=Sequence derived from alignment at P-fluviatile_contig79:30997..44870- (Porterinema fluviatile SAG_2381)
ATGAAAGCGACATTACATGTCAAGCTACTCTGTTGCTGGCTTCTTGCTGG
CTGCTATACCGTGCGGAGTGACGGTGCTGCATACCATTCGAGGCGTCAAG
CCACCTCTGGACCAACATTGGCAGTAATCCCGGGGGAAATATGGGACGAA
TCGTGGTGCTCTAAATTGCCGGAGTGGAATCCCCCACGGACGTCCCCGGC
GTTGGTGCTGCAGGTTCTTAGCGAACACTACGTCCACTTGGAGTACAACT
TCATTTACCACATGGAGCTCAACTCTGATTTCACTCGTGAGAATCTGTTT
ATTGTGTGCCTGGACGAAGAATCGGAGGCATTTCTAGATTCGACGTTCGG
CATTAAGTGTGTTCGACCAGACCTCGGTGATGGCGACGGCATGAGCCGCA
AGGACGTGTGGACACTCAGGTCTCACATCGCTTCGTGCCTGGTGCTCGCG
GGGCATGACGTTTTGCTATCCGATGCTGATGCCATTTGGTTGAAGGACCC
GATTCAGGAAATGAACAGGGTGGGGGCTGGCGAAAGCGACGTCGTTTCCT
CGCGAGGAAAGCTGCCCGGGTACCTACACCGCGCTTGGGGGGCAACGCTC
TGTTTTGGGTTCGTTCTACTTCGGTCAGGGGGGCCTGCTATGCCAGAATT
CTTGCGCACGATGGCGAGAATGGTGGACACTTTGAACGATGACCAGAAAG
CGGGGAACGAGGCCTTGAATATTATGGGAGTCGCGTGGGATTCTGAAGGG
AGTGATATGCGCTTGATTGACAGCACGGCCCTTGGTAGGGGGCTTGTTTT
TGCCGACGAAGGACCGATGTCAGTTGCGCTGCTTCCGCATGACACATTTT
CGAGGTTTTGTGACAGCACGAATGTAGACCTCGAGAACACAACGGTTGTG
GCACACTGCTACAGTAGAGCAAAAGGAGAGAAGATGACTGCGTGGATGAA
AGCGGAAGGTCTCTGGCAGGATGCAGGAAGCCACCAGTTGTAGATGAAAG
CGACATTACATGTCAAGCTACTCTGTTGCTGGCTTCTTGCTGGCTGCTAT
ACCGTGCGGAGTGACGGTGCTGCATACCATTCGAGGCGTCAAGCCACCTC
TGGACCAACATTGGCAGTAATCCCGGGGGAAATATGGGACGAATCGTGGT
GCTCTAAATTGCCGGAGTGGAATCCCCCACGGACGTCCCCGGCGTTGGTG
CTGCAGGTTCTTAGCGAACACTACGTCCACTTGGAGTACAACTTCATTTA
CCACATGGAGCTCAACTCTGATTTCACTCGTGAGAATCTGTTTATTGTGT
GCCTGGACGAAGAATCGGAGGCATTTCTAGATTCGACGTTCGGCATTAAG
TGTGTTCGACCAGACCTCGGTGATGGCGACGGCATGAGCCGCAAGGACGT
GTGGACACTCAGGTCTCACATCGCTTCGTGCCTGGTGCTCGCGGGGCATG
ACGTTTTGCTATCCGATGCTGATGCCATTTGGTTGAAGGACCCGATTCAG
GAAATGAACAGGGTGGGGGCTGGCGAAAGCGACGTCGTTTCCTCGCGAGG
AAAGCTGCCCGGGTACCTACACCGCGCTTGGGGGGCAACGCTCTGTTTTG
GGTTCGTTCTACTTCGGTCAGGGGGGCCTGCTATGCCAGAATTCTTGCGC
ACGATGGCGAGAATGGTGGACACTTTGAACGATGACCAGAAAGCGGGGAA
CGAGGCCTTGAATATTATGGGAGTCGCGTGGGATTCTGAAGGGAGTGATA
TGCGCTTGATTGACAGCACGGCCCTTGGTAGGGGGCTTGTTTTTGCCGAC
GAAGGACCGATGTCAGTTGCGCTGCTTCCGCATGACACATTTTCGAGGTT
TTGTGACAGCACGAATGTAGACCTCGAGAACACAACGGTTGTGGCACACT
GCTACAGTAGAGCAAAAGGAGAGAAGATGACTGCGTGGATGAAAGCGGAA
GGTCTCTGGCAGGATGCAGGAAGCCACCAGTTGTAG
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