Homology
BLAST of mRNA_P-fluviatile_contig76.14118.1 vs. uniprot
Match:
D8LCA6_ECTSI (Uncharacterized protein n=2 Tax=Ectocarpus TaxID=2879 RepID=D8LCA6_ECTSI)
HSP 1 Score: 325 bits (833), Expect = 1.790e-94
Identity = 180/294 (61.22%), Postives = 201/294 (68.37%), Query Frame = 1
Query: 1591 TAADRSRNRSPSSRSVGPPRRDIRKDYLTNLGLKRAVVAGPGGTRTPPTTVRRTSFNQSVEHPVEEQLKDPTAGEITFEAVLRVVGSILTGG-SNKKERKXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXSQRARRRGSGMDEDVGMAEAVAIPPCRHKRVEFAPVVSAVYVPVHSEYSDRVRRSYWSSAGEIREMVYRNMIEFDAEEYNWENVAEEEDMYYDEETGEFIHPIFFDAQEEGREASASSSTATTSDPDNAEDHVEYITEGRKMPVMQRR 2469
T AD + SP R+V PPRRDIR+DYLTNLG+KRAVVAGPG RTPP +RR+SF +SVE+PVEEQLKDP AGEIT E VLRVVGSILTGG S KKER+ + RR G G V PCRHK V+FAPVVSAVYVPVHSEYSDRVRRSYW+SAGEIREMVYRNMIEFDAEEYNWENVAEEEDMY+ EETGEFIHPIFFD+QEE RE A+SS+AT+S + E+HVEYI EGR +PVMQ+R
Sbjct: 312 TVADPLKVGSPPLRAVRPPRRDIRRDYLTNLGMKRAVVAGPGDARTPPPMIRRSSFIESVENPVEEQLKDPNAGEITLEGVLRVVGSILTGGNSTKKEREPRPCRTCERLRAGNSSGSSANSSPTVGWHGGAQDCRGG----------KGRRGVQGSGGGEGEGSVVEFAPCRHKHVDFAPVVSAVYVPVHSEYSDRVRRSYWNSAGEIREMVYRNMIEFDAEEYNWENVAEEEDMYFCEETGEFIHPIFFDSQEEAREVRATSSSATSSSDRDGEEHVEYINEGRGLPVMQQR 595
BLAST of mRNA_P-fluviatile_contig76.14118.1 vs. uniprot
Match:
A0A836CL05_9STRA (Uncharacterized protein n=1 Tax=Tribonema minus TaxID=303371 RepID=A0A836CL05_9STRA)
HSP 1 Score: 146 bits (368), Expect = 1.680e-33
Identity = 88/238 (36.97%), Postives = 122/238 (51.26%), Query Frame = 1
Query: 1651 RDIRKDYLTNLGLKRA--VVAGPGGTRTPPTTVRRTSFNQSVEHPVEEQLKDPTAGEITFEAVLRVVGSILTGGSNKKERKXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXXSQRARRRGSGMDEDVGMAEAVAIPPCRHKRVEFAPVVSAVYVPVHSEYSDRVRRSYWSSAGEIREMVYRNMIEFDAEEYNWENVAEEEDMYYDEETGEFIHPIFFDAQEEG 2358
RD+R++YL+ +G++ + + + P G P V EE+LKD ++TF+ +++V+G ++ G +++ +RA S +A PPC HKRV F+ V+ VY+PVH +YS+RVR SYW+SA EIREMVYRNM+EFDAE Y W NVAEEEDMYY EETGEFIHP+FFD +G
Sbjct: 215 RDVRRNYLSKVGIEASSPLPSRPSGAALP-------LLELDVR---EERLKDRQDQDLTFDDLVKVLGGLMGVGGGARDQAPRPGQPCEPC-------------------------------------RRAHAAAS-------VARTPPPPPCAHKRVRFSETVATVYIPVHRDYSNRVRASYWASAAEIREMVYRNMLEFDAEGYEWRNVAEEEDMYYSEETGEFIHPVFFDPGAQG 398
BLAST of mRNA_P-fluviatile_contig76.14118.1 vs. uniprot
Match:
A0A7S3Q7U4_9STRA (Hypothetical protein n=1 Tax=Chaetoceros debilis TaxID=122233 RepID=A0A7S3Q7U4_9STRA)
HSP 1 Score: 74.3 bits (181), Expect = 1.750e-10
Identity = 35/74 (47.30%), Postives = 47/74 (63.51%), Query Frame = 1
Query: 2113 RVEFAPVVSAVYVPVHSEYSDRVRRSYWSSAGEIREMVYRNMIEFDAEEYNWENVAEEEDMYYDEETGEFIHPI 2334
R+ F VS ++P+ SEYSDRVR WS+ EI E RN IEF AE ++W +V E+E M+ +GE IHP+
Sbjct: 218 RISFNDSVSVAHIPMRSEYSDRVRSRLWSNRYEIHENATRNAIEFQAENWDWRSVTEDEGMFVCTSSGELIHPV 291
BLAST of mRNA_P-fluviatile_contig76.14118.1 vs. uniprot
Match:
A0A448Z5Q9_9STRA (Uncharacterized protein n=1 Tax=Pseudo-nitzschia multistriata TaxID=183589 RepID=A0A448Z5Q9_9STRA)
HSP 1 Score: 68.9 bits (167), Expect = 8.960e-10
Identity = 35/79 (44.30%), Postives = 49/79 (62.03%), Query Frame = 1
Query: 2098 PCRHKRVEFAPVVSAVYVPVHSEYSDRVRRSYWSSAGEIREMVYRNMIEFDAEEYNWENVAEEEDMYYDEETGEFIHPI 2334
P R++F VV A+ +P H +YSDRV+R WS+ EIR+ RN EF E ++ + V EE+ MY D + EFIHP+
Sbjct: 70 PKADSRIQFNSVVKAMPIPSHQDYSDRVKRLIWSNGTEIRQNAQRNAREFAFEGWSAQYVLEEDQMYLDVGSMEFIHPV 148
BLAST of mRNA_P-fluviatile_contig76.14118.1 vs. uniprot
Match:
A0A7S3LF57_9STRA (Hypothetical protein n=1 Tax=Amphora coffeiformis TaxID=265554 RepID=A0A7S3LF57_9STRA)
HSP 1 Score: 69.3 bits (168), Expect = 4.610e-9
Identity = 32/77 (41.56%), Postives = 50/77 (64.94%), Query Frame = 1
Query: 2110 KRVEFAPVVSAVYVPVHSEYSDRVRRSYWSSAGEIREMVYRNMIEFDAEEYNWENVAEEEDMYYDEETGEFIHPIFF 2340
+ V F+P V+ +P HS YS R+R++ W++ E++E RN IEF AE ++W VAE++DM + GE +HP+ F
Sbjct: 157 RSVSFSPSVTVHPIPKHSAYSQRIRQTIWTAPSEMQENAARNCIEFAAENWDWRQVAEDQDMVLYQ--GELVHPVHF 231
BLAST of mRNA_P-fluviatile_contig76.14118.1 vs. uniprot
Match:
A0A1E7FUY3_9STRA (Uncharacterized protein n=1 Tax=Fragilariopsis cylindrus CCMP1102 TaxID=635003 RepID=A0A1E7FUY3_9STRA)
HSP 1 Score: 67.0 bits (162), Expect = 5.050e-9
Identity = 34/77 (44.16%), Postives = 49/77 (63.64%), Query Frame = 1
Query: 2104 RHKRVEFAPVVSAVYVPVHSEYSDRVRRSYWSSAGEIREMVYRNMIEFDAEEYNWENVAEEEDMYYDEETGEFIHPI 2334
R + ++F VV ++ +P H +YSDRV+R WS+ EIRE RN EF E ++ + V EE+ MY D + EFIHP+
Sbjct: 80 RARSIQFNTVVKSMPIPSHLDYSDRVKRLIWSNGKEIRENARRNAREFAFEGWSAQYVLEEDQMYLDTGSMEFIHPV 156
BLAST of mRNA_P-fluviatile_contig76.14118.1 vs. uniprot
Match:
A0A7S2I7K9_9STRA (Hypothetical protein n=1 Tax=Helicotheca tamesis TaxID=374047 RepID=A0A7S2I7K9_9STRA)
HSP 1 Score: 69.7 bits (169), Expect = 7.130e-9
Identity = 36/94 (38.30%), Postives = 53/94 (56.38%), Query Frame = 1
Query: 2059 DEDVGMAEAVAIPPCRHKRVEFAPVVSAVYVPVHSEYSDRVRRSYWSSAGEIREMVYRNMIEFDAEEYNWENVAEEEDMYYDEETGEFIHPIFF 2340
D+ + + + PP K+V F V +P SEYS+R++ WS+ EI RN IEF AE ++W VAE+E+M ETGE +HP+ +
Sbjct: 191 DDQMPSRKVPSPPP---KKVSFNTSVHVRPIPTRSEYSERMKSQLWSNRHEIHMNATRNAIEFTAENWDWRQVAEDEEMVICHETGELVHPVHY 281
BLAST of mRNA_P-fluviatile_contig76.14118.1 vs. uniprot
Match:
A0A7S2HCE6_9STRA (Hypothetical protein n=2 Tax=Dictyocha speculum TaxID=35687 RepID=A0A7S2HCE6_9STRA)
HSP 1 Score: 65.9 bits (159), Expect = 1.800e-8
Identity = 32/81 (39.51%), Postives = 49/81 (60.49%), Query Frame = 1
Query: 2110 KRVEFAPVVSAVYVPVHSEYSDRVRRSYWSSAGEIREMVYRNMIEFDAEEYNWENVAEEEDMYYDEETGEFIHPIFFDAQE 2352
K+V F +V +VP+ S+YS RVR SYW+++ EI + RN EF++E Y+W EEED + + G+ +HP A +
Sbjct: 97 KKVSFKEMVEVRFVPIFSDYSQRVRESYWNNSQEIWDAAARNTFEFESEGYDWRQAFEEED--FTQWGGQLVHPAHTQAND 175
BLAST of mRNA_P-fluviatile_contig76.14118.1 vs. uniprot
Match:
A0A7S2IA60_9STRA (Hypothetical protein (Fragment) n=1 Tax=Helicotheca tamesis TaxID=374047 RepID=A0A7S2IA60_9STRA)
HSP 1 Score: 67.8 bits (164), Expect = 3.480e-8
Identity = 32/77 (41.56%), Postives = 46/77 (59.74%), Query Frame = 1
Query: 2104 RHKRVEFAPVVSAVYVPVHSEYSDRVRRSYWSSAGEIREMVYRNMIEFDAEEYNWENVAEEEDMYYDEETGEFIHPI 2334
R ++ F VS + +P+HS+YS R+R WS EIR RN IEF AE ++W V E+E M+ +GE +HP+
Sbjct: 186 RMSKIAFDTNVSVLPIPLHSDYSRRLRTRLWSDRNEIRHNAARNSIEFAAEGWDWRTVTEDEQMFVCAVSGELVHPV 262
BLAST of mRNA_P-fluviatile_contig76.14118.1 vs. uniprot
Match:
A0A7S4SQU5_9STRA (Hypothetical protein n=1 Tax=Ditylum brightwellii TaxID=49249 RepID=A0A7S4SQU5_9STRA)
HSP 1 Score: 65.1 bits (157), Expect = 1.430e-7
Identity = 30/77 (38.96%), Postives = 48/77 (62.34%), Query Frame = 1
Query: 2104 RHKRVEFAPVVSAVYVPVHSEYSDRVRRSYWSSAGEIREMVYRNMIEFDAEEYNWENVAEEEDMYYDEETGEFIHPI 2334
+ + + F+ VS + +P+HS+YS R+R WS EI++ RN IEF AE ++W V E+E MY +G+ +HP+
Sbjct: 140 KKRSICFSNKVSVLPIPLHSDYSRRLRTRLWSGRHEIKQNAARNTIEFAAEGWDWRTVTEDEKMYVCALSGQLVHPV 216
The following BLAST results are available for this feature:
Sequences
The following sequences are available for this feature:
protein sequence of mRNA_P-fluviatile_contig76.14118.1
>prot_P-fluviatile_contig76.14118.1 ID=prot_P-fluviatile_contig76.14118.1|Name=mRNA_P-fluviatile_contig76.14118.1|organism=Porterinema fluviatile SAG_2381|type=polypeptide|length=768bp
MIREVTPPPKNAGTDKINRTGFRNLREKMTPYQNPQQHQEEDEEEEEDEG
VAGGGGGGEHVQLQGDSSRADLNTLQAVNTPIPRGADISPSFRTRYLRKL
GIWSGLPTTRYKRDRGPDVAARGATSSASSDSAESTSVPPPQEEGSAAPS
GERAAVAPGPLESAPRQQKPSLRHKEGEEQGGSPRGSPPKKDEHGGGEGA
CDGGDSGGGASFVLWPRVREGTGEKTGASEGKRGTGASSTAAGPGPRARP
QSAPLADEVCGGDAVIAGEVVATAVASEAALARASFSCSSSSLGEEDAGA
ATVEEGDRAAAATAAAAAAVAVTVAASASLEPSAAAAVGSRSSAGGGSAL
LPMGHKGNSKSPTATAAAATEAAEALAVAASADSAASHQPFAGEKALPPG
GLAADANEQAGSDEDKKSPLVSSTSSASSAASSSPSSQPSAPAPAPVPSP
AAASSSTASSPPPAPPSSRTVEDWTAADRSRNRSPSSRSVGPPRRDIRKD
YLTNLGLKRAVVAGPGGTRTPPTTVRRTSFNQSVEHPVEEQLKDPTAGEI
TFEAVLRVVGSILTGGSNKKERKTRVCRACEQLRQGTAGSRSTSSSPPVA
RLVGGIGGGGSSGEGGQNGSQRARRRGSGMDEDVGMAEAVAIPPCRHKRV
EFAPVVSAVYVPVHSEYSDRVRRSYWSSAGEIREMVYRNMIEFDAEEYNW
ENVAEEEDMYYDEETGEFIHPIFFDAQEEGREASASSSTATTSDPDNAED
HVEYITEGRKMPVMQRR*
back to topmRNA from alignment at P-fluviatile_contig76:494773..505331+
Legend: UTRpolypeptideCDS
Hold the cursor over a type above to highlight its positions in the sequence below.
>mRNA_P-fluviatile_contig76.14118.1 ID=mRNA_P-fluviatile_contig76.14118.1|Name=mRNA_P-fluviatile_contig76.14118.1|organism=Porterinema fluviatile SAG_2381|type=mRNA|length=10559bp|location=Sequence derived from alignment at P-fluviatile_contig76:494773..505331+ (Porterinema fluviatile SAG_2381)
TTTGTAGGGGCGGAGGGCACGCTACCACACGCTCTTCGCCATCACCGAGG
AGGAGTATAACGCTTGCTGTTAAATGCGCAGGACACGTAAGCTCACCAGT
AACTCGGAACGACACTCTCAGGTACGCGCCCCTTGAAACCTCCCTGTTCT
TGGCAGGTGCCTACTGCAACGTGTGTGCCTTTCCCCCCATCTCCGATTGC
AACCTCTTATCTCTCCTGTCGTGCGCCTTCCACTTCCCACTTACGAGTTT
TTTTTTTTTTTAATACAGCGTCCAGTCTCTTCCTCATGACAGACAATGTA
GTGACGAGGCTTGGAGTTCGTGAGCGTTTACGGCCTGTGTGAAGAGGGCG
CAGCGCGACGTCGCAGGAACAGGTGTGGCGGGAGACACGCCTGATTGCGG
AGTATCGCATTCTACTGTCACTTCAGTGGAGTTTTTGGTGCCTTCGATCA
CACCGGCCCAAGTCAGGTTATTGTCCTGATAAGACTTGACACATCGAAAT
TACGGAGTGCTGACAGCACGCACGCTGCCTCTCTTGAAATCGTGGGAGGG
ATGTTCACACAGCGGCAAGTGAGAGGGGCGGTGCAGCACCGCTGTACGGC
GAGCGTTTTCAGCAGAAGGCATCTGTAGCGGCATGATTTCAAGTGCGGTC
GATGCTTCAGTCGAAGAGCAGCCCCTCATTTCAAAGCTTTCCGTGCATTC
AAAAGTGCCATGGAACGTGAGGCAACAGAGATTGCATCAGCGCGCACACA
CTTTGACGACACACCAATGAGCTGCATTATCAACAGCAGTGTGTACGCAG
ACCTTGCAACCACAAACTGGCTCCCAACACACGACGATAATGGTTACGGG
ATCGATTCCATAGGCGACCGCCCTCCTCTTGAGTCGCACACACTTAACGC
TCGGAGATGTGTTGTGCTGCGCGGCTGTGGTTCACCCTGAATCGATGTTT
GACCATTCAGCAGCGCCCCTCGAGCTGATCTTCGACAACCCATCATATTA
CTGTATAGACCGCATCCCCTGACCTTTCTCCACAGCCTAACGACAAAAAA
TATCGCATCTCGATGAAAAAAACGAAAGCGCTTGTACTGAACTGGCGGAT
CCGGCACGCCAGGGGCTGCTTCCGGTCGGAGGTGGTCTGACGGTGTCTAT
CATTGGTCATTACTTCGCAAGGGCTCTTGCTCCCCCTCAACGCGGAGCAA
GGACGGTTCCACGAGCCGTTCTTTGTTCCATTTTCCTGTTTTTTTAGTGT
TAGGCATGGGGTGGACCGCAGCAAGGGCCGGAAACATGTCCACTCACACT
CCCGCCAGCTGCTACGGACATCCAAGTCACGGATTTGTCAAGGAGAGAGC
CAGGCATCCGCATAAAGCATTTGGGGGTGGATGGAAATGTGACATACAGA
CGCAAGTGTTCGTGAAGCCCACACACATCCGCCGCGTCGCGCGTTTAGAC
TTCGGGTCTACATGTGTCGTGCGGACCGTATTACCCTTGGTTTTTAGATG
TACGTTGCTGCCGTACACGGGGAACGCAGAGCAGCGAGCAGCAATACGCT
CGGATTGCACGCGTCTCTCGCAGTGTGGATAGTGGTTCGCCCCTTCAATC
ATGCAGCACTCCTGTCTTGAACCGCTCCTATTCCGATGACAAAACGCTCC
TTTAAAATGACACCTTTGGAAATTCCAAAGGTATTGCTTTACACATGTAC
ATTCGTAGGGGGAGATGACTTCCCCTCCTTGGTTACTCGTCCACCGTGAC
TTTTTGTTGTAAAAAGTGAGGCGAAAGCATTTTTCAAGTTTTGCATCCAC
GGTCCACGAACAAGAAGAGAACTGCGCCGTGAGTCCCGTATTGTTTGTCA
TCTCGTCCGTGATGTTCTGACGACTTGTGTCGTCCCTTCAAATAAACCAT
TTCGCACACCTTCCAAGTGTCCGTCCCCGATTCTCACCGAAACGACCCCG
TGGAGTGTATTTGGAAAGAAAGGGTGCGGCGAACCAAATCTGATGGCCAT
GTTTTCGTGCGTGGGCCCTTCCCCCCTTGCTTTTCCTTGTTTCCCTTCAA
CTCGAAGCACCCGCTTCCAGGGGGTTGCAAGCACCGGAACGTGGCGGCGG
CGGTATGATACGGGAGGTCACTCCCCCTCCGAAGAACGCAGGAACTGACA
AGATAAACAGGACAGGCTTCCGGAATTTACGCGAGAAGATGACGCCCTAC
CAAAATCCGCAGCAGCACCAGGAGGAGGACGAGGAGGAGGAAGAGGATGA
GGGAGTGGCAGGGGGGGGCGGTGGCGGGGAGCACGTGCAGTTGCAGGGTG
ATTCTAGCAGGGCCGATCTCAACACTCTGCAGGCCGTCAACACTCCCATC
CCTCGGGGGGCTGATATTAGCCCCTCGTTCCGCACGCGGTATCTCCGGAA
GCTCGGGATCTGGAGCGGGTTGCCGACCACACGCTACAAGCGCGATCGCG
GGTAAGCGGCGGCGCCCATTCGCTTTTGTGCAACCCCCCACGCTAGAAGA
GTGAAACGCTTAAATGATGCATCTGGGAGAGAGACAGAGGGAGGGAGAGA
GAGACAAGGGGGGGGAAAGAGGGAGAAAGGGAGGGAGGGAGGGAGAAAAA
GACAGGGAGAGAGTCGGCGTGGATGAACCCACAGCACGGCGCGCATTTTT
TCTGTTTTAAGTTGCGGCCTTCCTCCGTCCTCGTCTCTTACAAGCTTGCG
TGCAAACTGCTCCTACTCCAAACGGAGGCTGTGGCAGCCGAGCGATGGCG
TCTCAAGAGAAAGTCCAGTTTCGTGGCCAGTCCCGTCGTCGCAAGCCGCA
ATCTCCCAGTGAATCTGCAACTCCAAAACCATTCGATTGATTTCCGCGTG
CATAATTCGCAAGTCCTCCACAGGTGCTGTTTTTTGGAGGTGGCGCGGGC
AGTGGGTCAATGCGCCCTAACCCCCTGACACTCAAACATTATCACGCCTC
CTTCTGATGGCTCGCCCCTGATTCTGGACTAGAGGCGGGTATGACTGGTT
TGTGAAATTCGCTGCATGCTTTGTGTCGTAGTCGATTGACATCCGCGCAA
CGCGCCCGGTGCATACATCTGTCCCAGTACGAGAAATCCCGATACCATCG
AGTTTCCCCTGCAGGCAGAGCCAGATGGATGGTATGAAGTTGCGTCAGCA
GCGAAACCCTTGAGGAGGCGTGATTTACGACCAATCCATCGCTTGGAATT
GCACGCTGTGTGGGATCATCTACATTGATGATCATCTACATTGATGATCG
GAGAAAGTTCCGATGTACCCTATAACAGCTCGACCTCTCTCATCTTTTCC
CCCGTCTCCGCTTTAGCCTCTGTTCTGTGACGCCGATGGCAAATGTATGG
TTAACGCCACAACGTCCGCCAACACCAAAGCAGGCCAGATGTCGCCGCAA
GAGGGGCGACCAGCAGCGCGAGCTCGGACTCAGCCGAATCGACGTCAGTC
CCACCGCCTCAGGAGGAAGGCTCGGCCGCTCCCTCAGGCGAGAGAGCTGC
TGTTGCACCCGGTCCGTTGGAGTCAGCACCACGACAGCAGAAGCCCAGCC
TTCGCCACAAGGAGGGAGAGGAGCAAGGCGGATCGCCGCGAGGGTCACCA
CCTAAGAAAGATGAGCACGGCGGCGGCGAAGGTGCCTGCGACGGCGGGGA
TAGTGGCGGCGGCGCTAGCTTTGTCCTCTGGCCGCGAGTGCGGGAGGGGA
CAGGGGAGAAGACGGGGGCTAGTGAAGGGAAAAGGGGGACgGGGGCATCG
AGCACGGCGGCGGGGCCGGGACCGAGGGCCAGGCCACAATCAGCGCCGTT
AGCGGACGAGGTTTGCGGTGGCGATGCCGTCATTGCCGGTGAGGTGGTTG
CCACCGCTGTGGCGTCAGAAGCAGCGCTAGCGAGAGCATCTTTTTCGTGC
TCGTCGTCGTCTCTAGGAGAGGAAGATGCGGGAGCGGCGACCGTGGAGGA
AGGAGACAGAGCGGCGGCGGCGACGGCCGCCGCGGCGGCGGCAGTGGCGG
TGACGGTAGCAGCTTCGGCAAGTTTAGAGCCATCTGCTGCGGCCGCTGTC
GGCAGCCGGAGCAGCGCCGGCGGCGGTAGTGCACTGCTGCCGATGGGGCA
CAAGGGGAACTCCAAATCACCCACAGCGACAGCTGCTGCCGCTACCGAAG
CGGCAGAGGCACTGGCCGTTGCCGCTTCTGCCGACTCTGCTGCCTCGCAC
CAGCCATTTGCCGGGGAGAAGGCTCTGCCCCCGGGCGGCCTCGCCGCCGA
CGCGAACGAACAAGCGGGCAGCGACGAAGATAAGAAGAGCCCCCTCGTTT
CCTCCACTTCCTCCGCCTCGTCGGCAGCATCTTCATCGCCGTCATCACAA
CCATCTGCGCCGGCGCCGGCACCAGTGCCGTCACCGGCAGCAGCGTCGTC
GTCGACCGCCTCCTCGCCCCCGCCGGCGCCGCCCTCCTCTCGTACCGTCG
AGGACTGGACGGCGGCCGATCGGAGTAGGAATCGATCGCCGTCCTCGAGG
TCCGTCGGGCCGCCGCGCAGAGACATCCGCAAGGACTACCTGACCAACCT
GGGCCTGAAGAGGGCAGTCGTGGCCGGCCCGGGGGGCACGCGGACTCCTC
CGACGACGGTTAGAAGAACTTCCTTCAATCAGGTGTGTTGACGACGAGAT
ATTGACCTGTGTCGTGCGCGAATGGATGGACGGGGGGCACCGGGAGGAGG
GCGGGGAGGGTGCGCGGATAGTGCTCGTGTTCTAAAGTCGGTGCAGACTC
GGGGCGGGAATATCCTGAATTGTCAACCGACTAGGCCCTGGGCTTGAGGT
GGTGCCCAGGGGGGCACGTGCGTACTAACCCTAACCCTAACTACTTAATG
CTAACCTTTGGCGCTTGACCGCTGACCTCTCATGTATTGGGGTTGCCCCT
ATCCAGGCATCACCAATGTTTTGGGGTCTTTTCGTTGTTACGTCATAAGC
ACCAGAAACGCCCAATTTCGTCAAATACACCCCATCCTTGTGTTTTCTCG
TGCTTGGTTAGCATTTCGATGTCGGCGACGTGTCACGTCTCTCGCCACAT
GCAGCCGTGTTCGCGGGGAACGTAGTAAGCGAGCCTGAGCCGGAAATAAT
GGTGATGCCGTCTTTGTTGTTTTTTCGTTCGCCCGAAAAACGCGGTAGTG
GCGTACCAACCGACACCCCGGCGGATCAGATGTTGAGTGGTTTCGTTCAA
TGGTCTCTTTTTTGGTTTTTTGTTCGCTTCGTTGCACATTACATTACTGT
TGGGCATGGTCCGTACGTCCTCGCGTACCGCTGGTATGGTAGGACAGCAC
GGAATGAGCTACCTGTCTTCCGTACGCGCTTCGCGTCTATCGTGCCACCG
GAGCGAACGAGCCAAGGGGGTGCGCGCGTGGTGGTCTTAGCAGGACACTA
CCGTTTTTTTACCTTTCATGTCTCGTCCTTTTGTCCGATCGTGTCTCGCT
CGTACAACGGCATGTCACGCCTCCGTTGGTGGTCGTGAGATGCTGAGCGA
GCACACTCGCCCTGCCGTCTTGCCCCTAGTTTCCGCCGATGATCATCGCG
GACTCGACTGATACCCGGAATCAAATCTGTTGGTCAGCAGCGTGTCATTC
GGAATCGAACCGTAAATCTTAATCATAATCATGGTCCTGATGAAACTGCG
CCGGCTGGGCAGAGTGTGGAGCACCCCGTGGAGGAGCAGCTGAAGGATCC
CACCGCCGGAGAGATCACCTTTGAGGCGGTTCTCCGGGTGAGCGCGCGCG
TTGAGTTCATCAAGGGTTAGAAGTAGGGATGGGAGGAAGATCGTTATGAC
AACTTGTGTTCAAGTCCTTCCTTGAGGAGGGCAAAACGACAGGCAGACGA
TGTACCAGGAAGAAGAATAGAAGGATTGAAGGCAGAATGATGCGAAGTTT
GGCAGAGCGACGATAGAGTACCAGTGTTGGAGCAGATCAGCTCGGGATGC
GATGGCGGTCGACGGACGATAGAACGATGTTTGTTTTGTGCAAAGACAAC
GCCCAACGCTCAGCCCCCGACGCGCAGCCCCCGCCATCGCTACCGCCACC
GGCAACACCAGCAACACGCATGTGCCAGCCGAAAAATACTAGTCGCATTT
TGCATTTTCCCCCCCTACCTTCCTTACTGTTTTCTCCTCCCCCTTCCTTT
CCCACGCCCCACACGTCCCCCCTGCCCCCTCGCCTGTCTTGACCCACTCC
CCTTGGACGGGACGTGCAGGTCGTTGGGAGTATCCTCACGGGGGGCAGCA
ACAAGAAGGAACGCAAGACCCGCGTTTGCCGGGCCTGCGAGCAGCTGAGG
CAGGGCACCGCCGGCTCCCGCAGCACCAGCTCCTCACCCCCGGTGGCCCG
ACTCGTCGGCGGCATCGGCGGCGGCGGCAGCAGTGGGGAAGGGGGACAAA
ATGGGTCGCAGAGGGCGAGGAGGCGGGGCAGCGGGATGGACGAGGATGTG
GGCATGGCGGAGGCCGTGGCGATACCTCCTTGCCGTCACAAGCGCGTGGA
GTTTGCCCCGGTGGTGTCAGCGGTGTATGTGCCTGTGCACTCGGAATATA
GGTGGGAAGCCGGGGACGAATGGATCAGATATGTGCTGCTGTCATGGCTT
CGGTTATCTCCCCGAAAATTTTGTCGTTTGCCGGCGCTCTTGACAGAAGT
TACATCATCGTGCGAATCCGACGACGGGGGGGGGGGAGGGTGCGGCGATA
CACGCCGGGAGACGGACGGGCGTCCGTGCTCTCTTGAATGAAAATTGAAG
AATCCGAGAAGCACACTGCTGCTGCTGCTGCGAATCCGACGAGGGGAGGG
GTGCAGCGATACACGCCGGGGGACGGACGGGCGTCGGTGCTCTCTTGAAT
GAAAATTGAAAAATCCAAGAAGCACACTGCTGCTGCTGCTGCTGCTGCTG
CTGCTGCTTGAGCAATGTCGTGTTTTCTGACTTGTTTACCTCTATTATTC
GGCAGCAACTCTGGATCCGTGGGCAGAATGCGTAAATAGCAACTTGAAGA
ACGCCGAAACAGCAGTGGGAACGGGTGCACATCTCGATGGAAGGGCACCG
TAGTGGATACAATTGAGGACAATGGGAGCTGGGGGACAATCCCTCCTCGA
ACGGAAAGTGTCAGGTCCTTCGAAACCCAACATGTATTTTTATAGAAGCT
GAAATCAAACCATTCGGACAACTAGCGCTGACCGGTCTACTGATTTGGTT
ACAGCTTCCATTGGACCCCGCCTGCCTTCCAACCCGGTGGAGTCTGAGAA
GATTCATCGATGCGTGTTGTAAGTTTTATTCTACTTGTCTTCGTGCTCGT
TTCTCGAGTTTCGTTTCAGTTCAATCCAATTCCCGGCCTTCCGGCACGGC
ACGTCCATCATCTCTCTCTCCTTTTCCTTTTTCATACACTCCCGCTCTTC
TTCCGATAGCGATCGTGTGCGACGAAGCTACTGGAGCAGCGCTGGGGAGA
TCCGAGAGATGGTGTACCGCAACATGATCGAGTTCGATGCCGAGGAGTAC
AACTGGGAAAATGTCGCGGAGGTCAGTCCAGCAATTACGGTGTACGGCGA
TGATATGACTCATCGGAGAGCCCGCGTCAATTTTTGCATGATCTCCGCGC
GGTGCCATCCCTATGCTGTGAAAGACAACTTTCTTCGAGGATCCACACAC
TGGCTTTGGGGCACTAGACTTTGGTTACCGTAAAGCGCTTTGTCCGCGCA
CCGGGGTGCAAAAGTTTTTTCAATCGCGTCGTTCTCGTTTTCTCCACACG
CGGTGCCAACTCAACGTTTCGGTGCGGAATCACGTCCCGGTGTGCGAACA
AATCGCTCTACGGCATTGAGTGGAGCGCGTTTATATTTTTTCAGTTTGAA
TTTTAATGAATTACTTGATCTCGGTACCATTCTCATCGATCGAACTACTG
CGAGCTCGCTGTTCGCCGCAAATTAGCACCGCTCCCGTGCGGAGGCGCTG
CAGCAAGCATCGAACACTACTGTTCCCCCCCTTCGTTTCAACTTTTCCGA
TCTCCTCCTGAAGAAAACTGGCAGACGGACAGGCGATGTTCCATAAAGAT
CGTGCTGCTTCTTGTGTTGTTTTGGTCTTCTCGAGTTCGTGCTGTCTCTT
TTTTGGTAGCGTTGAGCCGAATCCGAAAACACCCGAGATAGCACACTTCC
CGCCGTGGTCACCGACTCAGCATTGATGGACCAACATCCCGAACCTTTAC
CCTGAAACGTCACCCTAAATCTTTACCCCGAACGTGCACTTGAAGGAGGA
GGACATGTACTACGACGAAGAGACGGGCGAGTTCATCCACCCAATTTTTT
TCGACGCCCAGGAAGAGGGCAGGGAGGCGAGCGCCAGCTCTTCCACGGCT
ACCACGTCGGACCCCGATAATGCAGAGGTATGCTGCTGCCGCTGCCGCTG
CTACTGCTACCGCCGTGGTTCTTCGTGTCGCTGCTCTCGAGTCAATCGCG
GCTACAGCGCCGTGAGCCATGATATTTTATTTTGTCGGCAGGATGGAATG
AGAAAGACTTGGACAGGTGACGCCGCAGCAGCACGCAAAGGTCGACAACC
AGCAAACCAACCTCCTCTTGGAGCGATAGTCCGGCACGTTGCTCCGATGT
GCGAAGTTACCGCACGCCCGTGGGCCCAACGGGACCCCCCCCTCCCGTAC
CCTCCATCCCTAACCGCTCTCGAAAGAGAGGCCTCGGCCTGATGGCGCGC
ACGGGGTTGGGTTGGCTTCGAGTTGGCAACGAAGCTGTAAAACACGCCAC
TTCACTACGTGACCTAGGCCACCAGGTTTCCGTTGTTTGTTTCCGCTCTG
CGTATTTTTGGCGGTAACGGTAGTGGTGGTCGAGTAGATCATGTTGTGCG
GGTGGATAACCCAAACGCCGCACAACTGGGGATGATCGTATCACGTAGTG
TAAAAATGTTCACGCACCTACGAGGCAGTTACGTAGTGGGTACCCATGAC
TGTCTCTTAAAGTGGCAAGGACCAGAAAACAGAAAGCAAGTCACCCGAGG
CTGTTATCCATATGCAAGACAAGTGCGCTTCGCGCTTGGTAAATGATGCG
AGCCTGGTCCGGCGAAAACCCGGCATGCTCCATCCCGGCTTTGTAGGGAT
GCGAGTTCAATGATCTCACGACTACGGCATGCATGACAATGAGTACCCCC
CCCTCCCCCTACCCTTCACTCGTACACGCAACCTTCGCTCTCCTCTGTTT
TCCTCTACACCCGTCTGCTTTTTCATGTCTGGCCCTCTGCTATATCCCAT
CTCACAGGATCATGTCGAGTACATAACCGAGGGACGCAAGATGCCTGTCA
TGCAAAGGCGCTGAGGCAGTGAAGCCGTGGGGGAGTCGATGGGTAGGCAG
CCAGTTGCGTCACACACGCGGACACACGGGAAGCAATTGCCCGGAGGGAC
GGGCGCGCGCCAGCTTCACAGCGGTGCCCTGGGGCCTGGGGGGATGTGGG
GAGGCTCGGGAAGACTGTTCGGGTGCGGGGTCGGGCAGAGACAGGGCGGG
GCGCCGTAACGCGCTTTGTCAAAGGCGAGGTTTAGGGAGTGGGCAGTGGT
ATCCCGCGGCCGCAACTGAATTTACCGTTTCCTGGTGTCGTGGCTTGGTC
GCAAGCCGTGAATCCACATAGATGTGCAATTGACTGATCACCTGAGGTTC
CCGATTGCACCTATCGTTGTCTCGGGCTGAAGGCAGGGTGGTGCAGAACG
AGACGCACAGCTCTACGGCTGGCTGGTAGATGGTGGCAGTTCCCAACTGT
ACACATTTGGTCTCGTGTAGGAGCAAGCGAGCGTCGCTGTGTGTGAGGTG
ATTTGATGGACCTCCGAGCGTGTGCCAAGGTCATCCACGCTTGGTGTATG
CACAAGGTAGGTGGTCTAGAGTCGACTACGACAGGGCGCGTGACGTATGG
AGGAAGCTTTATTATCTCTAATTGTTTTGTGCCGTTTCAAAGGCTCGTGT
TGCAGTAGTTGCGAGAAGGTTCGTTCACGGTTCGGAAGCCCTCGATTGCT
GTGCGGGATGGAGTATCAAAACACGCAGCAAGCACGCGTTCGTCGTGAAC
CGTAGTATAATTATTTCCAGAGCCGTGATTGGTGTGTATTACATTTGTGT
TTTCATGGGCTCCGCATAGAGGCGGATGACTGCCAGTATGTCCCCTCTTT
TGCCCGCAAACACGGCGAGGGGGACGCTCTGTTGTGCGTTTCGTGGATCT
TCGAACTGGGAGATTGGGTCGGAACTCGAATGTATGATGCCGGTGAGAAC
GAAGATGTACCATATTTTGTCTTCGATGTTCTACTGCCCGGTTTGGGCAC
GCCTCTTACAGAAGTGCCATACGCACCCCGTATTGAGACTTGAGGCAAGT
GCTTGGGTGAATCCCGAGGGAGGGAAAATGGTGGCAGCGGTAGAATTGCG
CGACGTCGCTAGAGTTTCTCCCTCGTGGTTCCTCGTTCCCCTCGGAGTCG
TTTGTTCCCGCCGCGCCTAAAGTGTAATACCACAATGGGTCGAGACGGTC
GGATGAGTGTTAGGATGCATTAATCGGAACCTACCAAGTCTCGTGTGGTT
TGGTGAGCG
back to topCoding sequence (CDS) from alignment at P-fluviatile_contig76:494773..505331+
>mRNA_P-fluviatile_contig76.14118.1 ID=mRNA_P-fluviatile_contig76.14118.1|Name=mRNA_P-fluviatile_contig76.14118.1|organism=Porterinema fluviatile SAG_2381|type=CDS|length=4608bp|location=Sequence derived from alignment at P-fluviatile_contig76:494773..505331+ (Porterinema fluviatile SAG_2381)
ATGATACGGGAGGTCACTCCCCCTCCGAAGAACGCAGGAACTGACAAGAT
AAACAGGACAGGCTTCCGGAATTTACGCGAGAAGATGACGCCCTACCAAA
ATCCGCAGCAGCACCAGGAGGAGGACGAGGAGGAGGAAGAGGATGAGGGA
GTGGCAGGGGGGGGCGGTGGCGGGGAGCACGTGCAGTTGCAGGGTGATTC
TAGCAGGGCCGATCTCAACACTCTGCAGGCCGTCAACACTCCCATCCCTC
GGGGGGCTGATATTAGCCCCTCGTTCCGCACGCGGTATCTCCGGAAGCTC
GGGATCTGGAGCGGGTTGCCGACCACACGCTACAAGCGCGATCGCGGATG
ATACGGGAGGTCACTCCCCCTCCGAAGAACGCAGGAACTGACAAGATAAA
CAGGACAGGCTTCCGGAATTTACGCGAGAAGATGACGCCCTACCAAAATC
CGCAGCAGCACCAGGAGGAGGACGAGGAGGAGGAAGAGGATGAGGGAGTG
GCAGGGGGGGGCGGTGGCGGGGAGCACGTGCAGTTGCAGGGTGATTCTAG
CAGGGCCGATCTCAACACTCTGCAGGCCGTCAACACTCCCATCCCTCGGG
GGGCTGATATTAGCCCCTCGTTCCGCACGCGGTATCTCCGGAAGCTCGGG
ATCTGGAGCGGGTTGCCGACCACACGCTACAAGCGCGATCGCGGGCCAGA
TGTCGCCGCAAGAGGGGCGACCAGCAGCGCGAGCTCGGACTCAGCCGAAT
CGACGTCAGTCCCACCGCCTCAGGAGGAAGGCTCGGCCGCTCCCTCAGGC
GAGAGAGCTGCTGTTGCACCCGGTCCGTTGGAGTCAGCACCACGACAGCA
GAAGCCCAGCCTTCGCCACAAGGAGGGAGAGGAGCAAGGCGGATCGCCGC
GAGGGTCACCACCTAAGAAAGATGAGCACGGCGGCGGCGAAGGTGCCTGC
GACGGCGGGGATAGTGGCGGCGGCGCTAGCTTTGTCCTCTGGCCGCGAGT
GCGGGAGGGGACAGGGGAGAAGACGGGGGCTAGTGAAGGGAAAAGGGGGA
CgGGGGCATCGAGCACGGCGGCGGGGCCGGGACCGAGGGCCAGGCCACAA
TCAGCGCCGTTAGCGGACGAGGTTTGCGGTGGCGATGCCGTCATTGCCGG
TGAGGTGGTTGCCACCGCTGTGGCGTCAGAAGCAGCGCTAGCGAGAGCAT
CTTTTTCGTGCTCGTCGTCGTCTCTAGGAGAGGAAGATGCGGGAGCGGCG
ACCGTGGAGGAAGGAGACAGAGCGGCGGCGGCGACGGCCGCCGCGGCGGC
GGCAGTGGCGGTGACGGTAGCAGCTTCGGCAAGTTTAGAGCCATCTGCTG
CGGCCGCTGTCGGCAGCCGGAGCAGCGCCGGCGGCGGTAGTGCACTGCTG
CCGATGGGGCACAAGGGGAACTCCAAATCACCCACAGCGACAGCTGCTGC
CGCTACCGAAGCGGCAGAGGCACTGGCCGTTGCCGCTTCTGCCGACTCTG
CTGCCTCGCACCAGCCATTTGCCGGGGAGAAGGCTCTGCCCCCGGGCGGC
CTCGCCGCCGACGCGAACGAACAAGCGGGCAGCGACGAAGATAAGAAGAG
CCCCCTCGTTTCCTCCACTTCCTCCGCCTCGTCGGCAGCATCTTCATCGC
CGTCATCACAACCATCTGCGCCGGCGCCGGCACCAGTGCCGTCACCGGCA
GCAGCGTCGTCGTCGACCGCCTCCTCGCCCCCGCCGGCGCCGCCCTCCTC
TCGTACCGTCGAGGACTGGACGGCGGCCGATCGGAGTAGGAATCGATCGC
CGTCCTCGAGGTCCGTCGGGCCGCCGCGCAGAGACATCCGCAAGGACTAC
CTGACCAACCTGGGCCTGAAGAGGGCAGTCGTGGCCGGCCCGGGGGGCAC
GCGGACTCCTCCGACGACGGTTAGAAGAACTTCCTTCAATCAGGCCAGAT
GTCGCCGCAAGAGGGGCGACCAGCAGCGCGAGCTCGGACTCAGCCGAATC
GACGTCAGTCCCACCGCCTCAGGAGGAAGGCTCGGCCGCTCCCTCAGGCG
AGAGAGCTGCTGTTGCACCCGGTCCGTTGGAGTCAGCACCACGACAGCAG
AAGCCCAGCCTTCGCCACAAGGAGGGAGAGGAGCAAGGCGGATCGCCGCG
AGGGTCACCACCTAAGAAAGATGAGCACGGCGGCGGCGAAGGTGCCTGCG
ACGGCGGGGATAGTGGCGGCGGCGCTAGCTTTGTCCTCTGGCCGCGAGTG
CGGGAGGGGACAGGGGAGAAGACGGGGGCTAGTGAAGGGAAAAGGGGGAC
gGGGGCATCGAGCACGGCGGCGGGGCCGGGACCGAGGGCCAGGCCACAAT
CAGCGCCGTTAGCGGACGAGGTTTGCGGTGGCGATGCCGTCATTGCCGGT
GAGGTGGTTGCCACCGCTGTGGCGTCAGAAGCAGCGCTAGCGAGAGCATC
TTTTTCGTGCTCGTCGTCGTCTCTAGGAGAGGAAGATGCGGGAGCGGCGA
CCGTGGAGGAAGGAGACAGAGCGGCGGCGGCGACGGCCGCCGCGGCGGCG
GCAGTGGCGGTGACGGTAGCAGCTTCGGCAAGTTTAGAGCCATCTGCTGC
GGCCGCTGTCGGCAGCCGGAGCAGCGCCGGCGGCGGTAGTGCACTGCTGC
CGATGGGGCACAAGGGGAACTCCAAATCACCCACAGCGACAGCTGCTGCC
GCTACCGAAGCGGCAGAGGCACTGGCCGTTGCCGCTTCTGCCGACTCTGC
TGCCTCGCACCAGCCATTTGCCGGGGAGAAGGCTCTGCCCCCGGGCGGCC
TCGCCGCCGACGCGAACGAACAAGCGGGCAGCGACGAAGATAAGAAGAGC
CCCCTCGTTTCCTCCACTTCCTCCGCCTCGTCGGCAGCATCTTCATCGCC
GTCATCACAACCATCTGCGCCGGCGCCGGCACCAGTGCCGTCACCGGCAG
CAGCGTCGTCGTCGACCGCCTCCTCGCCCCCGCCGGCGCCGCCCTCCTCT
CGTACCGTCGAGGACTGGACGGCGGCCGATCGGAGTAGGAATCGATCGCC
GTCCTCGAGGTCCGTCGGGCCGCCGCGCAGAGACATCCGCAAGGACTACC
TGACCAACCTGGGCCTGAAGAGGGCAGTCGTGGCCGGCCCGGGGGGCACG
CGGACTCCTCCGACGACGGTTAGAAGAACTTCCTTCAATCAGAGTGTGGA
GCACCCCGTGGAGGAGCAGCTGAAGGATCCCACCGCCGGAGAGATCACCT
TTGAGGCGGTTCTCCGGAGTGTGGAGCACCCCGTGGAGGAGCAGCTGAAG
GATCCCACCGCCGGAGAGATCACCTTTGAGGCGGTTCTCCGGGTCGTTGG
GAGTATCCTCACGGGGGGCAGCAACAAGAAGGAACGCAAGACCCGCGTTT
GCCGGGCCTGCGAGCAGCTGAGGCAGGGCACCGCCGGCTCCCGCAGCACC
AGCTCCTCACCCCCGGTGGCCCGACTCGTCGGCGGCATCGGCGGCGGCGG
CAGCAGTGGGGAAGGGGGACAAAATGGGTCGCAGAGGGCGAGGAGGCGGG
GCAGCGGGATGGACGAGGATGTGGGCATGGCGGAGGCCGTGGCGATACCT
CCTTGCCGTCACAAGCGCGTGGAGTTTGCCCCGGTGGTGTCAGCGGTGTA
TGTGCCTGTGCACTCGGAATATAGGTCGTTGGGAGTATCCTCACGGGGGG
CAGCAACAAGAAGGAACGCAAGACCCGCGTTTGCCGGGCCTGCGAGCAGC
TGAGGCAGGGCACCGCCGGCTCCCGCAGCACCAGCTCCTCACCCCCGGTG
GCCCGACTCGTCGGCGGCATCGGCGGCGGCGGCAGCAGTGGGGAAGGGGG
ACAAAATGGGTCGCAGAGGGCGAGGAGGCGGGGCAGCGGGATGGACGAGG
ATGTGGGCATGGCGGAGGCCGTGGCGATACCTCCTTGCCGTCACAAGCGC
GTGGAGTTTGCCCCGGTGGTGTCAGCGGTGTATGTGCCTGTGCACTCGGA
ATATAGCGATCGTGTGCGACGAAGCTACTGGAGCAGCGCTGGGGAGATCC
GAGAGATGGTGTACCGCAACATGATCGAGTTCGATGCCGAGGAGTACAAC
TGGGAAAATGTCGCGGAGCGATCGTGTGCGACGAAGCTACTGGAGCAGCG
CTGGGGAGATCCGAGAGATGGTGTACCGCAACATGATCGAGTTCGATGCC
GAGGAGTACAACTGGGAAAATGTCGCGGAGGAGGAGGACATGTACTACGA
CGAAGAGACGGGCGAGTTCATCCACCCAATTTTTTTCGACGCCCAGGAAG
AGGGCAGGGAGGCGAGCGCCAGCTCTTCCACGGCTACCACGTCGGACCCC
GATAATGCAGAGGAGGAGGACATGTACTACGACGAAGAGACGGGCGAGTT
CATCCACCCAATTTTTTTCGACGCCCAGGAAGAGGGCAGGGAGGCGAGCG
CCAGCTCTTCCACGGCTACCACGTCGGACCCCGATAATGCAGAGGATCAT
GTCGAGTACATAACCGAGGGACGCAAGATGCCTGTCATGCAAAGGCGCTG
AGATCATGTCGAGTACATAACCGAGGGACGCAAGATGCCTGTCATGCAAA
GGCGCTGA
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