Sed0012313 (gene) Chayote v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGTATGAACTCAACCGTAATTTAATGCCCAATTTTTCTATTGGTTCGAGTGTTCTTTTTTTTCTTTTTTTTTTTATAATCAAACAAAATGCTTATGGATAACAATTTCTTATGATGCCATGGCCTTTTAGTGGCCTTTTTTGTTTAATGATAATTTATTTTGTGTTACCTTTTAGACGCATACGTTTGTTTGCTGCTGTTCCCTATTTAGCAGTGCTTAAAATGCCATCAATTGGTCTCGTGCTATCAGAAACCTGAAAAAATTGCTTCAGTGAATATTTTTTGCCTTATAATTTGTACCCTTTTTCGCTATGCCTATTGATTCTCTGGAATAGTGGTATTGTAATATGTTTGTGGTTGTGATAGTTAAATGAAAGGGAAAATACCATCTCAATTTAATTGAATATGTCTATATTAAGATTTTTAATGTACATGTTTGGGTTGCTGCTAAGCATTTTGAAATTAATTTACTCGAGAATATTGGATTGGTATTGTTCACTCTTGTATTGATATGTTTTGAAGAATGACTTTAGAAATGCCAAAAACCAACAATTCTATTTTGTGTGGGGAACACGATACAACAATTCTCTTGTAGGCTTTTAACTTTCCCCATTTTGTTTGGTTGAGGTTTCTTCTGTTCATTTCTTATTAAAAAAAACCAGATACTAACCTTCCATCATTGAGATGGGTATCAACATTCTCTAGGGTTAATAGAGGGCTTTGAAGATTTGTTTTCTAGAGATGTCCGTTTTTCCCATAATGTTGGGGACAAAAATTTCTCCGTTTAGGTGGGGAATGGGGTTGTGTGTCAGGACAAAAAATTTTCACGAGCTAAATAGGGATGAGGACGATAATGTATTCTCCATCCCCATTTTCTCGCCACAGTTCATATTTAATTTTATTATCTTCTATTTTTTAATACATATACATTAATAAACTAATACATTAATAAACTAATTGTGCTTAATTTCACTCTTATTATAGACGAGAGGTACAGTTTAGGGATTACATTTATTTACAACGGTTCTTTTTTTTTAAGATTGTAACTGTGGGGGTATTAGTATAGCAAACACTAGTTAGCCAACTATTTAGTTCATATTCTTGTTATACATAAAAAGTACAAATATTTTCTTATAAAAATTAATATATGTAGTTGAAAATTAATAATTATTTATCGTTAAAAGTTAACTATTGTTTGAATATGAATTATAAGTTAACTATTTGACAATTTAACCAAAATTTAATAAAAAATAACTCCTCGCGATGAACCCAATCCTCGCAATTTCTTCGTTGGGAATCCCCACCCCTATCTCCACAAAATTTAACGGTGAATTTTGTGGAGAAAAAATGTGACAGGGATGCGGACGGTAAAGTCATCTCCATCACCACCTTGCCCCATGGACATCTTTAGTGTTTTCCGTCATTTGATTTTAAAGGGCTCGATTACATCTAGGGATCTGATACCATGTCTCAAGGCTCAGACTCGAGATACTTCAAGAGTATTCACTCATTTTAATAAATAATATTGATAAAAGTTGGAATATTTATCCGTAGACTGTAATTGACGAATGCATGGCAAGGGCGTCAAATTTGGAAACCAGTTTTTTGTGGACTAATGTGTAATAATGCATAATTTTGGGCATGCAGACAATACCAAGCTCCCAATTTTAGCTTTATTACGTGTTCATTCAGATTATGCAGGCATTTTCTTTTTGCCAGAATTACATATTCAGCTGTCGCAATTTCGACCTACTCTTACAACAAAAACCCCACAAATTTCAGAATATAGGGACTTATTCAAAAAACAATTTTATAAAATTAAATTCGACAAATTTAAAGTTTACGAATTTATTACATATTAAAAGTGAAGAGATTCATTAATGTAGGTGGAGTCCAATTTTTTATATTTAAAGAAAAAAAAAATTACGTCGCATAATTTTCCGACCTTCTAAATATTTGTTGGGTTGGTTTCCGTAATCTCCGTTAAGGGGAAGCCGGATTCGCCCTCTACTATTGTTAAAAAGAATTTACAATCAGCAACATATTCTACCTTTTATAAATTTATATTATATTTGGAATAGAATTTTTAAAATAATTCACATGAATTCCTATAACTCAACTAGTGATAAAACTCAATTTGAATTTCTATGACTATAGAAAATTCAAGCAATGATAGAATGAATCTATCAATGATCGATAATTATGCCAAACAGTGATAGATTTCAATTTATTTTTTTTTCAATATGCCTCTTAAATGGGATATAAAATATTCACCTTATGTCTGATATTATCAATTCCACTTGTTTTTGTATCTTTCTTCAAAATGTTGTTTTGTAGTGGGACCCCATTGCCCTTATATTGCACTTTCCCCCATCTCTTGAATTAATCTTTTACACACATTTTTTTTGAAATATTATATTATTATTCCAAAGTGTTTACTGCCCTTTCTGCTTTGTTTATCCCCAACTCCACTGTTCACAATAATGTCCACCAAATCTCTGAATGGTACGAGGAACAGCTCGAGGATGATCTCAAATGGTCCTTTCGAGTCAACAGGTCCTTCCCTTTTTCCCTCCTCACAATTCTCTTCCTCATTTACATTGCTTCTAAAATGGATAATTATCGTCCTCGTTCCCGCTTAGCCAACAATCATTGGAAACAGGGCGTGCCCCCGAACAAATTTTTTTGACCAATACAAAGTTTTGGATGAACTGATCCGTCCAATCTTATGTATTTGATAAACTCGGTCCATATATTTTTTAGTTAGCTTAGGTTGGTCGTTGGAGGGTTGTTTTTATCTCTGATTCTAATATAGTTGTTATTTATTTTTTATTTTTATAAAAATTAATATAATAATTTCAATTAACAATTCAAGTCAATTTATGTTGATATATACATTCTAAAGAGTTAAATATCACTTTGAAGAATAAAAAGTCTAAAAAAACAATTAAATAAAATAATTATACGCATATATAATTATGTGATCGATAAATAAAAAATTCAAAATTAATATTGAATTTGGGTTTAGTTCGGGATCAACCAAAGCTATGTCAACCCAAAAATCAACCCCAATTCATGAAATTTTCATATATTTGAATTTACTCTAACCGGCTAAGAATATTAAGAGGGGATCTCATACAGGGTGTGTTTGGGGGCACCGGTTTAGTTATTATAGACGGAAGGTTATGATAAACGATAGATTATTATAAATGGTATTTGCAAGGCAAGTTATTATAAAGAAATTATGATAAACGGTGTTTGAGAGGCTGGTTATGTAACATAAAGTAATATATGTAAGATGTAGATATACGAGCACGTAAGTTTAGATAAACGGGCACGGTGGGGCGAACATCGGTTCGGTTATTATAACCAACTCGGCCGTTTACATAAACGCGGCCCAAACACACCCTTAAGTATTATTTTATTGGTCTTTTTTCTTTTTGCAAAATTTGGACCAAACAAATACTCAACACAACAATGGTGAAAATCACATGGATTTGTTTTTCTATAATTCTGATTGTTGTTTACTATATTTTCGTAATCCTATATTTAGTTGGTCTGTTTGAAATCAAAACTCCTTAGAAATACTCTATAATCTCTTCATTGTAGAGTGGATTAAACAAATTTTGAGTTTTTTGGAAGTTAAGTTGATCCTGACATTCAATTGTTTTATAGGATACTTCATGCCACAACAAGCGAGTTCCAAGAAATAGTGCTCTTGGATACTGAGCGATTTGGGAAAGTTTGATTTTATCATATATGATTAGTGTTCTATTTTTTCAATAATATTTGATTAGTACTGCTCAATGAGTCAGTGACGCAATTGATTATCTTGTTTGATGTAAATCCATTTTAACTCCACGTTTATGAGTTCGAACTCATAAATTCGTATTTGAATTTCACATTATTCGAGAACAATTGTACTCTATGTAAGGTCTATGGTCTACCCTCTCTTAATTTATACTAAAAAAACATTAAATAAGACTTGATTAATACATAGCTGAAAATGAGTTTGATATTCATTGCAGGCTCTATTACTTGATGGGAAGCTGCAAAGTGCTGAAAAGGATGAATTCATTTACCATGAGTCTTTGGTTCACCCTGCAATGTTATTGCATAATAAGTAAGTTGTTTTCCTTGACCACTTTTTGTTTTTTCCATAACAAATATTTTGTTATTCATAAGTATTCTCTCTGTCTCAAACACATGAAACATTTTCCCATAATTTCATTAGTATCGTCATTCCAAACATAGATATCATTTTTTTTTGTTAATCATTCGGTTCTCTTTTGTATTTTTATTTTTCCCATAATTATTCCATTCTTTTACCCCAAAATGAGGGATTGGGTTAAGAAAAATGAAATTGATTGTGAGGGAGTCATTCTCCTATTCACGTTTAAATCCCCGAAAAACATTTCTTCCATAATTTTATTTTCTTTTCACCACATTTTATTCACTCAATAACCACTTCTCATTATCCTCATACTCACTATTTTATAAGTTTTTTTTTTGTTGGTGTGCAATTCTCATCTAAGTTGATTTTGTTTTGTTTATTTGTTTTTTTTTTTTTAATCTTGCATTTTGATTTTGGGAATGATTTCAGCCCCAAAAGAGTGGGAGGTGGAGAAGGGTGTACAGCTAGAGAGCACTAAGGCACAAAAATGTTGAGGAAGTTGTTATGTGCGATATTGATAGGGTATGCCTCTTTCAAAGTCCTAAGATGCATGCATTTGTTTGTATATGCAATATGTAACAAAGGGTCAATGAAGTTGAGTTGCATCACTACAAAAATAATATTTAGTAAAAATGTATTGATTTAAAGGGAGGCAATAATTAACTCTGTTTGATTACAAATTGTACTTGTACTTCATCATTTCTCTACAATCGATTTAGCCTTTTATATATATATATATATATATATATATATATATATATATATAACATTAGAAATTTTAACCAAATTCCAAAATCAAAACTAGTTTATGAAAATTGTTTTCTTAAGCTCCGTTTGATAACTATTTTGTATTTCGTTTTTTGTTTTTAAATAATTAAGCCTACAACAACTACTTTACTATAACTCTTTTCTTATTTGGATATCTACATCTTACTTATATTTTAAGAAACAAAACCAAAATTTAGAAACAAAAAAAGTAGTTTCTAAAAGCTTGTTTTTGTTTTTGAAATTTGGTCAGTATACACCTAGTTGTTTTTGTTTTTGAAATTTGATTAGTATACACCTACTTTCTTAAAAAAAAAATATAGATATATGATAGGAAAGATGGGACACATGGTAGGAAGTTTGAGTAAAATGGGCTTTAAATTTCATAAACAAAAAACAAAAAACCAAATGGTTATCAAACGAGACCTTAGTTTTAACTTACGACGTAATAGTATTTATAGACTTAATTTTAAAAAATAAAAAACACAATTCCTCCTTTTGTTTTCTCTTTTTTTTTGGGATCTTTTCATGAATAACAAAAAAGGAAAGAAATTCTCCTGAGGTCAAAATTTTACAAAACTAATGGTTTCAATTAAGGAAAATGGATAACTTCAATCGATTAAAAAAATAATCAAATGAAATTGCAATAAAAAATTGATAAAATTGTTTATAATAGTTTTCATATTCTTTTCCAAAAAAATAACAAGTTTTCAATTTTAACTTGAAACATGAATAAAAAGTAAATAAAACAAAGAAAACAAAGAAATTCATGCATAGAAATATAAGCTAAATTTAAACAAATAAATGATTACTAAATCAGACCTTATGTGATAAAGCATTTTATGCTAATTATTTACATTGTAGGAGGTGGTCAATTTTTGCCATGAACATCTAACAGAAAACCAAGATGCATTTCGGGACAGAAGCTTCATATCATTTTTTATGATGCAAAGTGAGTACCATACTCTTTTCCCACCAATTTCATTTGTATTTATACCCTCTTTCTCAATAAAACGGTTTCTCTCTACCCGTAGATATAGCTAAACACAAACCATTATCGAACCACAATAATCTATAATCTATGTTGATTTTTTTTATTATTCTTTACTTGTCGTTATTCGTTTTTGTCATAACACAATGCGTATGCTTATTTCCAAAAGATTCTTGTTATATTTTAAAGAGTCAACAAGAGCACTACCTCAATGACATTAGTTTTCACCTAATGACTAAGAGATTTTAGGTTCAGTCTCATCACCCTCAATTTGTTGTAATCTAAAGAAAAAAGAGATTGAAAGAACTAATCGGATGCAATATATATACATGTTAAACAATGAAAAAGGGCTGGATTGGAGGGACAACCAGAGAAATTCGACGTAATCATCGGCGATTTATCCGATCCACATGAAGGAGGACCATGTAATCATCTATACACCAAATCCTTCTATGAAGAAGTGATTAAGCCTAAGCTCAATGGCAATGGTATCTTTGTTACTCAGGTATATTATATGCATATTTTCATAGCCTTGTGTTATTATTCTTGCTTACTTCTGTTACTAACATTCTTACTGAAATGCAGGCTGGCCCTGCTGGTATGCTTTCCCACAAAGTTTTCTCATCAATATACAACACTGTAAAGCATGTCTTCAAATGTAAGATATTGTTTAACATGGTACATAACAATTGATTGAATTTGTAATCTTGAAAGTTTAGAGACCTATATATAGACATAAGTCTTAGTCAAAGGCCATGGCTAAATTAATGTGAGATTTTACATAAAAAGTTAGGTCAAAATTGAAGAAAAAATTATCTAAGAAGCATGGAAACGGATATGACATAGACACACAGACATGATACAGAATTTATTTAAGAAACTAAGACATATCAAATATTTGCAGTTTAAAAATGATCAAAATCAATACATTTATATGCTGAAAAATGAGTTTGATGTATTTTAATAAAAAAAAGTTTATTAATTTTTTCTAATATTATCATGTGTTGATATTATTTTTAGAGAAGAATTTGGGTGTCAGTCTGCATCCCCACCATGAGCTCATCTATGTGGAGCCACACATTTTTTTCTTTTAATTTTTTTAAATAAATATAAAGTATATAAAAAAAAAGATGTGTGACATCAAAAGTGTCATTTGGGTGACATCATGATGGGAGTGGAGCCTGGGCTCCACCCAAATTTTTCTCTTATTTTTATCCTAGTTAAAAAAGATTAGAAGGATTAAATTGAATTCATGGTGTCCAAAAAATTAATTTAATTTCTTTCAAGTTTTCCTGACAACCAAATGTAATAAGATTAATTGGTTGTCAGATAAGATTAATCAAGGTACGCGTAAGCAAGCTCAATATTCCCACAAATATATTAAAAAAAAAGTGTTTGATATCGATATGAGTCTTAGAAAGGTTGAAACCTATATTGACTTTGTTCAACCAGAGTCTAGCACATATATTTATTGTGATAACAAGTGCTCGATACATGTCCAATTAAAGTGTTGAAGTGTTCAAAGTGTCTATGTTTCTTAGAAGAAAATCATAAAAGAGAGGTTTAGGTCGGCCGGATAATCATTTGGTTTTTTGTTTTTAGTTTTTTAAATTTAAATTTATTTTGACTCAAATTTTATATTATATGTTTCATCCTTCCTACGATATATCTATCTTTTCTAAAGAAAGTATGTAATTGTTAACCAAATTTAAAAAACAAAAACATGTTTTTGGAAGCTACTTTTTCTGTTTTCAAATTTTGGTTTGGTTTTTAAAAATAAAGATAAGTAATAGATATCAAAGTAAAAAAACACATAGTAAGGTAGTTGTAGATTTAAATTTCAGAAACCAAAAACTAAAAACGAAATAATTATCAAACGGGACCTTAATGGTTCGGGTCTAGCTAACATTTGTTTGTTTTATGATCTGTAAAGATGTGATTGCATACACAGCTCATGTTCCATCCTATGCAGATTCATGTGGATGGGTTTTGGTAAGCAAAACTAGTAGTCCTTGTATGCCTTATTGCTTGAATGGAAAAAAAAGATTGAAACACAAATAATTTATGCTACAAAATTTCAGGCTTGTGACCATCCTCTTAAGCTGGACATTGAGGACCTCCACAACAGAATACGCGAGAGAGTCCGAGGCGAGCTACGCTACTTGGATGGCGAATTCATCGTGTCATCAACGGTCATAAACAAAACCATTCGAACAGCTTAAGTGAAACGATTTGGTTTCTTCATCGTCTCGATTTGAAGGGAGCATTGATTTTTGGATCATGTGTAAAGAGAAAGTGTGTGTGTGCAGGATGATGAATGAGACTCATTTGTTCACTGAGGAAGATGCAAGGTTTGCACATGGCCAAGGGCTGGCAGGCAATGCCTTAAATGGTCAAATATAA ATGTATGAACTCAACCTGTTTACTGCCCTTTCTGCTTTGTTTATCCCCAACTCCACTGTTCACAATAATGTCCACCAAATCTCTGAATGGTACGAGGAACAGCTCGAGGATGATCTCAAATGGTCCTTTCGAGTCAACAGGATACTTCATGCCACAACAAGCGAGTTCCAAGAAATAGTGCTCTTGGATACTGAGCGATTTGGGAAAGCTCTATTACTTGATGGGAAGCTGCAAAGTGCTGAAAAGGATGAATTCATTTACCATGAGTCTTTGGTTCACCCTGCAATGTTATTGCATAATAAAGCACTAAGGCACAAAAATGTTGAGGAAGTTGTTATGTGCGATATTGATAGGGAGGTGGTCAATTTTTGCCATGAACATCTAACAGAAAACCAAGATGCATTTCGGGACAGAAGCTTCATATCATTTTTTATGATGCAAAGTGAGGCTGGATTGGAGGGACAACCAGAGAAATTCGACGTAATCATCGGCGATTTATCCGATCCACATGAAGGAGGACCATGTAATCATCTATACACCAAATCCTTCTATGAAGAAGTGATTAAGCCTAAGCTCAATGGCAATGGTATCTTTGTTACTCAGGCTGGCCCTGCTGGTATGCTTTCCCACAAAGTTTTCTCATCAATATACAACACTGTAAAGCATGTCTTCAAATATGTGATTGCATACACAGCTCATGTTCCATCCTATGCAGATTCATGTGGATGGGTTTTGGCTTGTGACCATCCTCTTAAGCTGGACATTGAGGACCTCCACAACAGAATACGCGAGAGAGTCCGAGGCGAGCTACGCTACTTGGATGGCGAATTCATCGTGTCATCAACGGTCATAAACAAAACCATTCGAACAAAAGTGTGTGTGTGCAGGATGATGAATGAGACTCATTTGTTCACTGAGGAAGATGCAAGGTTTGCACATGGCCAAGGGCTGGCAGGCAATGCCTTAAATGGTCAAATATAA ATGTATGAACTCAACCTGTTTACTGCCCTTTCTGCTTTGTTTATCCCCAACTCCACTGTTCACAATAATGTCCACCAAATCTCTGAATGGTACGAGGAACAGCTCGAGGATGATCTCAAATGGTCCTTTCGAGTCAACAGGATACTTCATGCCACAACAAGCGAGTTCCAAGAAATAGTGCTCTTGGATACTGAGCGATTTGGGAAAGCTCTATTACTTGATGGGAAGCTGCAAAGTGCTGAAAAGGATGAATTCATTTACCATGAGTCTTTGGTTCACCCTGCAATGTTATTGCATAATAAAGCACTAAGGCACAAAAATGTTGAGGAAGTTGTTATGTGCGATATTGATAGGGAGGTGGTCAATTTTTGCCATGAACATCTAACAGAAAACCAAGATGCATTTCGGGACAGAAGCTTCATATCATTTTTTATGATGCAAAGTGAGGCTGGATTGGAGGGACAACCAGAGAAATTCGACGTAATCATCGGCGATTTATCCGATCCACATGAAGGAGGACCATGTAATCATCTATACACCAAATCCTTCTATGAAGAAGTGATTAAGCCTAAGCTCAATGGCAATGGTATCTTTGTTACTCAGGCTGGCCCTGCTGGTATGCTTTCCCACAAAGTTTTCTCATCAATATACAACACTGTAAAGCATGTCTTCAAATATGTGATTGCATACACAGCTCATGTTCCATCCTATGCAGATTCATGTGGATGGGTTTTGGCTTGTGACCATCCTCTTAAGCTGGACATTGAGGACCTCCACAACAGAATACGCGAGAGAGTCCGAGGCGAGCTACGCTACTTGGATGGCGAATTCATCGTGTCATCAACGGTCATAAACAAAACCATTCGAACAAAAGTGTGTGTGTGCAGGATGATGAATGAGACTCATTTGTTCACTGAGGAAGATGCAAGGTTTGCACATGGCCAAGGGCTGGCAGGCAATGCCTTAAATGGTCAAATATAA MYELNLFTALSALFIPNSTVHNNVHQISEWYEEQLEDDLKWSFRVNRILHATTSEFQEIVLLDTERFGKALLLDGKLQSAEKDEFIYHESLVHPAMLLHNKALRHKNVEEVVMCDIDREVVNFCHEHLTENQDAFRDRSFISFFMMQSEAGLEGQPEKFDVIIGDLSDPHEGGPCNHLYTKSFYEEVIKPKLNGNGIFVTQAGPAGMLSHKVFSSIYNTVKHVFKYVIAYTAHVPSYADSCGWVLACDHPLKLDIEDLHNRIRERVRGELRYLDGEFIVSSTVINKTIRTKVCVCRMMNETHLFTEEDARFAHGQGLAGNALNGQI Homology
BLAST of Sed0012313 vs. NCBI nr
Match: XP_038890496.1 (thermospermine synthase ACAULIS5-like [Benincasa hispida]) HSP 1 Score: 513.8 bits (1322), Expect = 1.1e-141 Identity = 253/333 (75.98%), Postives = 284/333 (85.29%), Query Frame = 0
BLAST of Sed0012313 vs. NCBI nr
Match: XP_008459675.1 (PREDICTED: thermospermine synthase ACAULIS5-like [Cucumis melo] >KAA0061473.1 thermospermine synthase ACAULIS5-like [Cucumis melo var. makuwa] >TYK10801.1 thermospermine synthase ACAULIS5-like [Cucumis melo var. makuwa]) HSP 1 Score: 504.2 bits (1297), Expect = 8.4e-139 Identity = 249/333 (74.77%), Postives = 283/333 (84.98%), Query Frame = 0
BLAST of Sed0012313 vs. NCBI nr
Match: XP_004141174.1 (thermospermine synthase ACAULIS5 [Cucumis sativus] >KGN60515.1 hypothetical protein Csa_019446 [Cucumis sativus]) HSP 1 Score: 502.3 bits (1292), Expect = 3.2e-138 Identity = 247/333 (74.17%), Postives = 283/333 (84.98%), Query Frame = 0
BLAST of Sed0012313 vs. NCBI nr
Match: XP_022946737.1 (thermospermine synthase ACAULIS5-like [Cucurbita moschata]) HSP 1 Score: 486.1 bits (1250), Expect = 2.4e-133 Identity = 245/333 (73.57%), Postives = 272/333 (81.68%), Query Frame = 0
BLAST of Sed0012313 vs. NCBI nr
Match: KAG7030499.1 (Thermospermine synthase ACAULIS5 [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 485.3 bits (1248), Expect = 4.0e-133 Identity = 243/333 (72.97%), Postives = 272/333 (81.68%), Query Frame = 0
BLAST of Sed0012313 vs. ExPASy Swiss-Prot
Match: Q9S7X6 (Thermospermine synthase ACAULIS5 OS=Arabidopsis thaliana OX=3702 GN=ACL5 PE=1 SV=1) HSP 1 Score: 357.8 bits (917), Expect = 1.3e-97 Identity = 175/332 (52.71%), Postives = 233/332 (70.18%), Query Frame = 0
BLAST of Sed0012313 vs. ExPASy Swiss-Prot
Match: Q975S5 (Polyamine aminopropyltransferase OS=Sulfurisphaera tokodaii (strain DSM 16993 / JCM 10545 / NBRC 100140 / 7) OX=273063 GN=speE PE=3 SV=1) HSP 1 Score: 168.7 bits (426), Expect = 1.1e-40 Identity = 98/264 (37.12%), Postives = 146/264 (55.30%), Query Frame = 0
BLAST of Sed0012313 vs. ExPASy Swiss-Prot
Match: Q4JAZ8 (Polyamine aminopropyltransferase OS=Sulfolobus acidocaldarius (strain ATCC 33909 / DSM 639 / JCM 8929 / NBRC 15157 / NCIMB 11770) OX=330779 GN=speE PE=3 SV=1) HSP 1 Score: 161.4 bits (407), Expect = 1.7e-38 Identity = 106/283 (37.46%), Postives = 152/283 (53.71%), Query Frame = 0
BLAST of Sed0012313 vs. ExPASy Swiss-Prot
Match: Q9YE02 (Polyamine aminopropyltransferase OS=Aeropyrum pernix (strain ATCC 700893 / DSM 11879 / JCM 9820 / NBRC 100138 / K1) OX=272557 GN=speE PE=3 SV=2) HSP 1 Score: 156.0 bits (393), Expect = 7.3e-37 Identity = 105/292 (35.96%), Postives = 155/292 (53.08%), Query Frame = 0
BLAST of Sed0012313 vs. ExPASy Swiss-Prot
Match: Q72K55 (Polyamine aminopropyltransferase OS=Thermus thermophilus (strain ATCC BAA-163 / DSM 7039 / HB27) OX=262724 GN=speE PE=3 SV=1) HSP 1 Score: 153.7 bits (387), Expect = 3.6e-36 Identity = 102/298 (34.23%), Postives = 156/298 (52.35%), Query Frame = 0
BLAST of Sed0012313 vs. ExPASy TrEMBL
Match: A0A5A7UZV1 (Thermospermine synthase ACAULIS5-like OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold332G001170 PE=3 SV=1) HSP 1 Score: 504.2 bits (1297), Expect = 4.0e-139 Identity = 249/333 (74.77%), Postives = 283/333 (84.98%), Query Frame = 0
BLAST of Sed0012313 vs. ExPASy TrEMBL
Match: A0A1S3CAR3 (thermospermine synthase ACAULIS5-like OS=Cucumis melo OX=3656 GN=LOC103498720 PE=3 SV=1) HSP 1 Score: 504.2 bits (1297), Expect = 4.0e-139 Identity = 249/333 (74.77%), Postives = 283/333 (84.98%), Query Frame = 0
BLAST of Sed0012313 vs. ExPASy TrEMBL
Match: A0A0A0LET5 (PABS domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_2G000240 PE=3 SV=1) HSP 1 Score: 502.3 bits (1292), Expect = 1.5e-138 Identity = 247/333 (74.17%), Postives = 283/333 (84.98%), Query Frame = 0
BLAST of Sed0012313 vs. ExPASy TrEMBL
Match: A0A6J1G4J8 (thermospermine synthase ACAULIS5-like OS=Cucurbita moschata OX=3662 GN=LOC111450716 PE=3 SV=1) HSP 1 Score: 486.1 bits (1250), Expect = 1.1e-133 Identity = 245/333 (73.57%), Postives = 272/333 (81.68%), Query Frame = 0
BLAST of Sed0012313 vs. ExPASy TrEMBL
Match: A0A6J1KJ05 (thermospermine synthase ACAULIS5-like OS=Cucurbita maxima OX=3661 GN=LOC111493662 PE=3 SV=1) HSP 1 Score: 483.4 bits (1243), Expect = 7.4e-133 Identity = 243/333 (72.97%), Postives = 272/333 (81.68%), Query Frame = 0
BLAST of Sed0012313 vs. TAIR 10
Match: AT5G19530.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 357.8 bits (917), Expect = 9.0e-99 Identity = 175/332 (52.71%), Postives = 233/332 (70.18%), Query Frame = 0
BLAST of Sed0012313 vs. TAIR 10
Match: AT5G19530.2 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 357.8 bits (917), Expect = 9.0e-99 Identity = 175/332 (52.71%), Postives = 233/332 (70.18%), Query Frame = 0
BLAST of Sed0012313 vs. TAIR 10
Match: AT1G23820.1 (spermidine synthase 1 ) HSP 1 Score: 88.2 bits (217), Expect = 1.3e-17 Identity = 67/258 (25.97%), Postives = 120/258 (46.51%), Query Frame = 0
BLAST of Sed0012313 vs. TAIR 10
Match: AT1G23820.2 (spermidine synthase 1 ) HSP 1 Score: 86.3 bits (212), Expect = 5.1e-17 Identity = 61/225 (27.11%), Postives = 107/225 (47.56%), Query Frame = 0
BLAST of Sed0012313 vs. TAIR 10
Match: AT1G70310.1 (spermidine synthase 2 ) HSP 1 Score: 85.5 bits (210), Expect = 8.6e-17 Identity = 61/225 (27.11%), Postives = 105/225 (46.67%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Chayote (edule) v1
Date Performed: 2021-10-25
Relationships
The following mRNA feature(s) are a part of this gene:
GO Annotation
GO Assignments
This gene is annotated with the following GO terms.
|