
Spg010919 (gene) Sponge gourd (cylindrica) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGGATGGCGACGATGAGGTGATGACGATCTTGTGCTCGGTGACCGGTGAGAATAGAGAGACAGAGAGAGCCAGAGAGGAGGAGACAGCGATGTTGGAGGTGGGCTACTGTGAGGAGAGGATTGTGGCTAAATGAATTGAGGAGGATTGCGATCACTTAAAGATTAGGGTTTCTAAGAGAGTATTTATATATCGGTTCGGTTCGGTTTTTTAACTGAATTTTCAATTCAAAACCGAACCGAACCGAAAAAAAGCGGTTTTCCCTATAAACAAACCGACATGTCCAATGTTTTTCTAAAAAATCGAACCAAACCAATGGATCGATTTGGATCGGTTCGGTTCATCGGTTTTTCGGTTTTTAGTTGCACTCCTAGTTAAAACCTTCGATAAAGATGTTTATGAAAAGAATATTATTCTTTATCAAGGCATTTAAAAAACCCACCGCTCTAAGAAGTATGTTTTTCTTTTCTTTTGGGTTAAAAATAAAAGTTAGGTTTATTTCTATTCTTTTCCTTGGTGAAAGCACGCTAGGTCTAAACACTCTCCCTTTTTGTTTGTCATCGGTTCGTTCGTCGATCGTGATCAATAGTTCGCAGGCTGCCGTCAACCATTCATCCCTCGGAGCTTGCCTCGGTTTCAATTGTTGCACGGTAATCTTTATTCTTCTTCCATCTCTCCCTCCAATTTCCCCCAATTTGAACTTCTAGTGACCTAAATTAGTTGAACGAACAAAGCTAGTTTTGCCAGCAATTTGATCTAAAGCGGCATCAGATTTAGGTTTTGGTTTCCGTTTTGTTCTAATTTTTGTGTGGAATTGGTGTAATTGTAGGTGGAATTTTGTCTGTGTTTGATTTTGACTCCACTCGATTACGTTCCAGGGATCATCTACACTCTCCATGCCATCGTCTTCGTTGAGTTCATGCCCGCAGTGATCTTGCTGAGGTGAGTGGAACTGAGAAGAGCTTTGACATGTGATTAATTGAACTAAAGCTTATAATTGAACTAGAGCTTTGCTAAGGTGAGTGGAACTGAGAAGGTTATTATTAATAACCTTTGATAAGTATCTACCCTCCATCTTCGTCTTCGACTTCGACACAAGGTAATAACATTAGATCTGTCACACACTGTTTCCATGCTCATCATATTTGATATGTTATGTTCAATGTTCTTTGTTTTCATTTTTTTTTCTTATTTCTTTTTGTTCTTCTTCCTTAATCTACAGTTAACCAAACCATCATTGATCTTGGATTGATTACACATATAACCTCAAATTAGCATAATTATTTTGTCTCTTTCTTTTGTAGGAAATCATGGCAATAGTACTAGAACTGTTGTATTTGTTGTGGTGTCTATCATTTCAGCCATCATTCTCATGGTTGACATTTGCATCATTTTGAGATTGAGGAAGCGAAAGCACAAAAGACCATTACAAAAATTAGAAAGTGAGTGGTTTATGTTTCCTCTGTTTTGTTTTTTAAATGACAGTTTTGCTTTGATTGTTTAGTTTTCCAAAGAAGCTCGTAGCTTTAATCCCACAAATGAATTTGATTTCATGTCTTAATCTACTCTTAGATGTTGCTCTTGGAGATGCCACCAATGAAATTAGCCGTGGAGACAATTCAATTAGCTTTTGACACGATTAAAGATGCAACAAGCATAAAAGAACATCTGATTATGCTTCATAATACACCTAATTTTTTGTCATCTGATTATGCTTTCATTTCTCTGTTGCAGTGCTTTTGACAAATCACTTAGAGCACGATTGTTGAAGGTAAAATGTCAAATACAGCTAGACATTATCTTTGATTTTTGAACATTTTTTTTTCTAATTTCTTAGAACTTGATGTTAGAGTGTCGATTCCTTGTTATTTATTGTTAGAACTTGATGTTTTTTTGGGTGTTTGCACGAGTATGGAGTTGCTGAATTGTTGTTAAAATGTGTTTTACCTTGTTAGTTTAGAACTATTTGCGGATTGCCAAGTCCTAAATGAATAAAAAAATGGATGTTATTGTATGTTGAATTCAAACCATCAATTCACAGTGTGTGTTGCAATTTGGAAGTGAATAAGACACTATATGTCAAATCTTTTTAGTTATTTTCTTGTGTTTTTGCTCTTTCATTCATGGCTATTGGAATGTGCATTATGTCTGTACCATCATATATCTTTTTAGTTATCTTTCTATTTCAAAATGCGATGCTTTCAAAATTGTTTTGGTATTTGAAGTGGGCATTGATATTTGACAAAAAAAAAGTGTTTAAAGAATTTGTATGGTTAACATGGTGGATCATGACTATAAATTTGTGAGAAATAGAGTAATACAGGTTCCTATAACTAGCTTTGAATTTGTATGGATGAACATATAGTTACACTTAGTTATATCCTTATATGTTGCTTTGAAAATACAGGATCATTTTTTGTGTGTGTTAAAACATTTTAAAATTTGTTCCAGGGAATCATTGCCCCAAACTGAATTTTCTAGGCCCCGTTTGATACCCATTTGGCTTTTGGTTTTGGTTTTTGAAAATTAGGCTTGTTTTCATCTAATTTCCTTACAATGGTTTTCATCTTTGTTAAGGACAAACTTGAGTTCCTAGCCAAATTCCAAAAACAAAAACAAGTTTTTGAAAACTACTTTTTCTAGTTTTCAAAACTTGACTTGGTTTTTAAAAACATGAAATGAGGTAGATTAGAAAACAAAGAAACTTACATGTGTAAGTTGTGTTTTTTAAGCTTAATTTTCGAAAACCAAAAACCAAAAACCAAATGATTATCAAACGGGGTCCTAGTGTTTTGATTTCAATTAAAGTACACATTTCTTTTTGTTTTATTTGCTGCCTATTACTTTTTGTTTATTTTTGTGTTTGTGTTACACCATTTTAAGATATGCATTAGTTTGCTTGTAGAGCCTCTCCTGTTTAACTGCACTTTGAGTTGTTCATTGATAATTACAGGTTGAGGGGTTCTTTTCTGTGAAACTTTATTTATATATGTGCTAGTTTTGAATTCTAAATTTTGAATTTGTACTTACAGTCGGAACTCAAATCATATGCTTCTCAAGTAGTTGATGGTACATTTGAAATGAACGAGGATGAGATTTTAGTTTTTGGACCAGAGAAACATGGACGTGTTCGTGGTTATGGAGTAGGTGTTACTCCTGAGTTGTTTGGATCATCTTCTAATGTACGTGACCTTGAGCGTCGTATTAACGAGTCTGAACAACGTCTTCAAGAATCTGAACGACAAAGAAAAGTCGAGGTACAAGCACTCAAAGATCAAATTGTCGAATTAGAAAATCGTTTTGAGGATAAATTTCAAACAATGATGGCAGAGATGCATAAACAATCTGCTAAGAGTTGATTGAATGTAGTAGTTGGATGTTATAGAAATTTTGTAGTTATTTTCTTTGTAAGTTTCTATAAAAAAAACAAATCTTTCTATTTCATATCTTTGTAATTAGCAATTCAGGGTACCTATCAGATGCCAATAATAAACTAAAATTGGTTTATAATGTCGTATTCAAATGCTAAAGATTTTGCAAAGCTTTTTCAAAGGATTTACAAATCTTGATAAAAAAAAACTATTTCCAAAGGCTTTAAAATCGTTGAAAATAACCTTATAAAGCCTTCAAAAATGATGAAAACCTTCGAAAAAGGTAGTTTGACAATAATGAATTATCAATAAATAAATTGAAAATTATCAAAGCCATGTGACCTTTGAAAAATAAATAATAAAATTTGAAGGTTAATGTACCTTCGAAAAAAGCTTTTTCGACGGGTTCTATTTCGATACTTTTCGAAGGTTTGGATAACCTTCGAAAAATGATTTATCGAAGGTTTGTTTAATACTTTTTCGAAGGTTGTGACCTTTGAAAATAGTAAGATTTCTTGTAGTGCAACTTGAGGTAATGGAACTCCTTCAAACTCCCCATCATAAGCCTCATCAAGACATCGAATTTAGTGCTCGTGTCGACGACGACGGTGAAAATAATGGAGATGGCAGCCGAAATGAGGAAGAAGACAGAGACGAAGATGAAATTGAGGAATCGAATGAAGAAGATGAAGATGAAACTGAGCGATGGGATGAGGAAGAGGAAGAAGAGGAAGGGGAATTGGAGAGGAGGATAGAAGAATTCATAGCTAAGGTGAACAAGAGATGGAGAGAAGAGAAGTTAAGAGACAATTTGCTTATTCAAATTTGTTCTAGTAATGTTTGTACCTGAAATTTAATTAAAATGCTGTTTTTTGGTTTTTTGGTTTTCCAAATGGCCTTTTCCTATTCATAGTTTTGTTACTCATTTATTATGATCAAGATTTATAACTGCATGATGGCAAAATAAATTTTGCACAAAGATATTTATCAACCCAAAGAAGAAATATATATAGATTAAGATTTCTGCCAACAAGAGCATAGCTCAACTGACACAAAGTTGTACTGATTTGATATCCTTTTCTTTTATGTATGATAGAGCTGATTCAACTGAGTCAAATTGACTGGTTTGGTTTGATTTTTCCTTTTCTTTTGGGGATAAAATAAAGAAAAAAAATTTGAAGTTTTTTGTTTAGTTGGGTTTATTGGTTAAAAATTTCAATTCAATGGAATAAATAGTCCCTAAAAATTTTTAAATCATAATCATTTTAGTTTTTACTATTGTTTTCTCATTAATTATTTGATAGAATCACAACATGACTTTGAATATATATATTAACATGTTAACACGAACAACTAACATAAAACTCTCCATCTATGTCTTTCTTCTCAATTGAGAAACAAAATTTAGAACTTGTCTAATGAATGAGTGGAAGAGTTGTTTGATTTTTTTTTATTAATAACATTAGTCGAATAGCAACTAAAAAAAGGGGATAGAAATGGGAGGAGAATTTTTTGGAGGACGCAATTGGAGCATAGAAGATGGAAGGATGGTTTTGAGACGGACATTGTGCAGGATCCAACACTCACTAAGGGACCGTTTGGTTTAAGGTTTTATAGATGCCTGGAAATAAAAGATGTAACGGCAAGCCTTGAGAAAAAAAAAAAGAAAAAGAAAAAGGGGAGTGGGCATTAACTGCCGGTCAAAGGGGAAAAAAAAAAGGGGGAAACTTTCCCCCCAATTTTCGGTCAAAGTGGCCGTTTGAAAAAAAAAAAAAAAAAAAGAAGAAAATCTGAAGCCCTCTCCCTCACGCAACTCCATCTCCCTCACGCTTTCTCTCTCCCTCTCTCTGCTCCATCTCCCTCGCGCCCATCTCTCTCGCTCCCTCTCGATTCTGTCTCCCTCCGCCGCACGTCGACGCCGCTGCAGCTCACCGCCGTCGCGCCTCCGCCGCCGCCGCTCGCCGACGGTACGTTCTCGTTCTCTCTCTCTTCCGTTTTTTTGTTGTCTCTCCCTCCCGTTTCCGTCTCTCTCTCTCTCTAACCCGGTTCTCTCTCTCTCCGTACCAGACCGTCGCAAGCCATCCGCCGCTACTGCCTCTCGTCGTCGAGCTCCGCCGCTGCAGTGACGTCGCCAACCGCCACGAGCCGCCGCCGGTAACGTCTCTCAGATTTTTCTCTCTCTCGGTTTTCTCTCTCTACTGTGTTAGTAATGGCCGCACTTTTTTTTCCGTTCAGATTCGAGCAGCCACTGCCGTCCGCGGGCTCGTTCGCCTCTTTTCAAATCTGTCCGTCGTTTCAGACCTGTTCGTCTCTGTCATTCGGAACCGATCGCCGCCACCTTCGCCTCAAGGAAACTGA ATGGATGGCGACGATGAGGTGATGACGATCTTGTGCTCGGTGACCGGTGAGAATAGAGAGACAGAGAGAGCCAGAGAGGAGGAGACAGCGATCACGCTAGGTCTAAACACTCTCCCTTTTTGTTTGTCATCGGTTCGTTCGTCGATCGTGATCAATAGTTCGCAGGCTGCCGTCAACCATTCATCCCTCGGAGCTTGCCTCGGTTTCAATTGTTGCACGGTGGAATTTTGTCTGTGTTTGATTTTGACTCCACTCGATTACGTTCCAGGGATCATCTACACTCTCCATGCCATCGTCTTCGTTGAGTTCATGCCCGCAGTGATCTTGCTGAGTGCTTTTGACAAATCACTTAGAGCACGATTGTTGAAGTCGGAACTCAAATCATATGCTTCTCAAGTAGTTGATGGTACATTTGAAATGAACGAGGATGAGATTTTAGTTTTTGGACCAGAGAAACATGGACGTGTTCGTGGTTATGGAGTAGGTGTTACTCCTGAGTTGTTTGGATCATCTTCTAATGTACGTGACCTTGAGCGTCGTATTAACGAGTCTGAACAACGTCTTCAAGAATCTGAACGACAAAGAAAAGTCGAGGTACAAGCACTCAAAGATCAAATTGTCGAATTAGAAAATCTGCAACTTGAGGTAATGGAACTCCTTCAAACTCCCCATCATAAGCCTCATCAAGACATCGAATTTAGTGCTCGTGTCGACGACGACGGTGAAAATAATGGAGATGGCAGCCGAAATGAGGAAGAAGACAGAGACGAAGATGAAATTGAGGAATCGAATGAAGAAGATGAAGATGAAACTGAGCGATGGGATGAGGAAGAGGAAGAAGAGGAAGGGGAATTGGAGAGGAGGATAGAAGAATTCATAGCTAAGACCGTCGCAAGCCATCCGCCGCTACTGCCTCTCGTCGTCGAGCTCCGCCGCTGCAGTGACGTCGCCAACCGCCACGAGCCGCCGCCGGTAACGTCTCTCAGATTTTTCTCTCTCTCGGTTTTCTCTCTCTACTGTGTTAGTAATGGCCGCACTTTTTTTTCCGTTCAGATTCGAGCAGCCACTGCCGTCCGCGGGCTCGTTCGCCTCTTTTCAAATCTGTCCGTCGTTTCAGACCTGTTCGTCTCTGTCATTCGGAACCGATCGCCGCCACCTTCGCCTCAAGGAAACTGA ATGGATGGCGACGATGAGGTGATGACGATCTTGTGCTCGGTGACCGGTGAGAATAGAGAGACAGAGAGAGCCAGAGAGGAGGAGACAGCGATCACGCTAGGTCTAAACACTCTCCCTTTTTGTTTGTCATCGGTTCGTTCGTCGATCGTGATCAATAGTTCGCAGGCTGCCGTCAACCATTCATCCCTCGGAGCTTGCCTCGGTTTCAATTGTTGCACGGTGGAATTTTGTCTGTGTTTGATTTTGACTCCACTCGATTACGTTCCAGGGATCATCTACACTCTCCATGCCATCGTCTTCGTTGAGTTCATGCCCGCAGTGATCTTGCTGAGTGCTTTTGACAAATCACTTAGAGCACGATTGTTGAAGTCGGAACTCAAATCATATGCTTCTCAAGTAGTTGATGGTACATTTGAAATGAACGAGGATGAGATTTTAGTTTTTGGACCAGAGAAACATGGACGTGTTCGTGGTTATGGAGTAGGTGTTACTCCTGAGTTGTTTGGATCATCTTCTAATGTACGTGACCTTGAGCGTCGTATTAACGAGTCTGAACAACGTCTTCAAGAATCTGAACGACAAAGAAAAGTCGAGGTACAAGCACTCAAAGATCAAATTGTCGAATTAGAAAATCTGCAACTTGAGGTAATGGAACTCCTTCAAACTCCCCATCATAAGCCTCATCAAGACATCGAATTTAGTGCTCGTGTCGACGACGACGGTGAAAATAATGGAGATGGCAGCCGAAATGAGGAAGAAGACAGAGACGAAGATGAAATTGAGGAATCGAATGAAGAAGATGAAGATGAAACTGAGCGATGGGATGAGGAAGAGGAAGAAGAGGAAGGGGAATTGGAGAGGAGGATAGAAGAATTCATAGCTAAGACCGTCGCAAGCCATCCGCCGCTACTGCCTCTCGTCGTCGAGCTCCGCCGCTGCAGTGACGTCGCCAACCGCCACGAGCCGCCGCCGGTAACGTCTCTCAGATTTTTCTCTCTCTCGGTTTTCTCTCTCTACTGTGTTAGTAATGGCCGCACTTTTTTTTCCGTTCAGATTCGAGCAGCCACTGCCGTCCGCGGGCTCGTTCGCCTCTTTTCAAATCTGTCCGTCGTTTCAGACCTGTTCGTCTCTGTCATTCGGAACCGATCGCCGCCACCTTCGCCTCAAGGAAACTGA MDGDDEVMTILCSVTGENRETERAREEETAITLGLNTLPFCLSSVRSSIVINSSQAAVNHSSLGACLGFNCCTVEFCLCLILTPLDYVPGIIYTLHAIVFVEFMPAVILLSAFDKSLRARLLKSELKSYASQVVDGTFEMNEDEILVFGPEKHGRVRGYGVGVTPELFGSSSNVRDLERRINESEQRLQESERQRKVEVQALKDQIVELENLQLEVMELLQTPHHKPHQDIEFSARVDDDGENNGDGSRNEEEDRDEDEIEESNEEDEDETERWDEEEEEEEGELERRIEEFIAKTVASHPPLLPLVVELRRCSDVANRHEPPPVTSLRFFSLSVFSLYCVSNGRTFFSVQIRAATAVRGLVRLFSNLSVVSDLFVSVIRNRSPPPSPQGN Homology
BLAST of Spg010919 vs. NCBI nr
Match: XP_038904040.1 (uncharacterized protein LOC120090445 [Benincasa hispida]) HSP 1 Score: 120.6 bits (301), Expect = 3.1e-23 Identity = 69/98 (70.41%), Postives = 78/98 (79.59%), Query Frame = 0
BLAST of Spg010919 vs. NCBI nr
Match: XP_008457059.1 (PREDICTED: uncharacterized protein LOC103496828 [Cucumis melo]) HSP 1 Score: 87.4 bits (215), Expect = 2.9e-13 Identity = 45/64 (70.31%), Postives = 53/64 (82.81%), Query Frame = 0
BLAST of Spg010919 vs. NCBI nr
Match: KAA0049895.1 (uncharacterized protein E6C27_scaffold13G00470 [Cucumis melo var. makuwa] >TYK07633.1 uncharacterized protein E5676_scaffold105G00340 [Cucumis melo var. makuwa]) HSP 1 Score: 86.7 bits (213), Expect = 5.0e-13 Identity = 49/71 (69.01%), Postives = 54/71 (76.06%), Query Frame = 0
BLAST of Spg010919 vs. NCBI nr
Match: KAA0056079.1 (bromodomain-containing factor 1-like isoform X2 [Cucumis melo var. makuwa] >TYK01531.1 bromodomain-containing factor 1-like isoform X2 [Cucumis melo var. makuwa]) HSP 1 Score: 84.3 bits (207), Expect = 2.5e-12 Identity = 44/64 (68.75%), Postives = 52/64 (81.25%), Query Frame = 0
BLAST of Spg010919 vs. NCBI nr
Match: ONH96063.1 (hypothetical protein PRUPE_7G105300 [Prunus persica]) HSP 1 Score: 76.6 bits (187), Expect = 5.2e-10 Identity = 50/96 (52.08%), Postives = 64/96 (66.67%), Query Frame = 0
BLAST of Spg010919 vs. ExPASy Swiss-Prot
Match: Q9M095 (UPF0057 membrane protein At4g30650 OS=Arabidopsis thaliana OX=3702 GN=At4g30650 PE=3 SV=1) HSP 1 Score: 54.3 bits (129), Expect = 3.6e-06 Identity = 25/38 (65.79%), Postives = 29/38 (76.32%), Query Frame = 0
BLAST of Spg010919 vs. ExPASy Swiss-Prot
Match: Q9SUI0 (UPF0057 membrane protein At4g30660 OS=Arabidopsis thaliana OX=3702 GN=At4g30660 PE=3 SV=1) HSP 1 Score: 52.4 bits (124), Expect = 1.4e-05 Identity = 24/38 (63.16%), Postives = 28/38 (73.68%), Query Frame = 0
BLAST of Spg010919 vs. ExPASy Swiss-Prot
Match: O82232 (UPF0057 membrane protein At2g24040 OS=Arabidopsis thaliana OX=3702 GN=At2g24040 PE=3 SV=1) HSP 1 Score: 52.0 bits (123), Expect = 1.8e-05 Identity = 24/39 (61.54%), Postives = 30/39 (76.92%), Query Frame = 0
BLAST of Spg010919 vs. ExPASy TrEMBL
Match: A0A1S3C480 (uncharacterized protein LOC103496828 OS=Cucumis melo OX=3656 GN=LOC103496828 PE=4 SV=1) HSP 1 Score: 87.4 bits (215), Expect = 1.4e-13 Identity = 45/64 (70.31%), Postives = 53/64 (82.81%), Query Frame = 0
BLAST of Spg010919 vs. ExPASy TrEMBL
Match: A0A5A7U8E9 (Uncharacterized protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold105G00340 PE=4 SV=1) HSP 1 Score: 86.7 bits (213), Expect = 2.4e-13 Identity = 49/71 (69.01%), Postives = 54/71 (76.06%), Query Frame = 0
BLAST of Spg010919 vs. ExPASy TrEMBL
Match: A0A5D3BP34 (Bromodomain-containing factor 1-like isoform X2 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold451G00930 PE=4 SV=1) HSP 1 Score: 84.3 bits (207), Expect = 1.2e-12 Identity = 44/64 (68.75%), Postives = 52/64 (81.25%), Query Frame = 0
BLAST of Spg010919 vs. ExPASy TrEMBL
Match: A0A2N9H9X0 (Uncharacterized protein OS=Fagus sylvatica OX=28930 GN=FSB_LOCUS36266 PE=4 SV=1) HSP 1 Score: 80.1 bits (196), Expect = 2.3e-11 Identity = 52/115 (45.22%), Postives = 77/115 (66.96%), Query Frame = 0
BLAST of Spg010919 vs. ExPASy TrEMBL
Match: A0A2N9HCP8 (Uncharacterized protein OS=Fagus sylvatica OX=28930 GN=FSB_LOCUS40018 PE=4 SV=1) HSP 1 Score: 79.3 bits (194), Expect = 3.9e-11 Identity = 43/91 (47.25%), Postives = 69/91 (75.82%), Query Frame = 0
BLAST of Spg010919 vs. TAIR 10
Match: AT4G28088.1 (Low temperature and salt responsive protein family ) HSP 1 Score: 57.0 bits (136), Expect = 3.9e-08 Identity = 27/40 (67.50%), Postives = 31/40 (77.50%), Query Frame = 0
BLAST of Spg010919 vs. TAIR 10
Match: AT4G30650.1 (Low temperature and salt responsive protein family ) HSP 1 Score: 54.3 bits (129), Expect = 2.6e-07 Identity = 25/38 (65.79%), Postives = 29/38 (76.32%), Query Frame = 0
BLAST of Spg010919 vs. TAIR 10
Match: AT4G30660.1 (Low temperature and salt responsive protein family ) HSP 1 Score: 52.4 bits (124), Expect = 9.7e-07 Identity = 24/38 (63.16%), Postives = 28/38 (73.68%), Query Frame = 0
BLAST of Spg010919 vs. TAIR 10
Match: AT4G30660.2 (Low temperature and salt responsive protein family ) HSP 1 Score: 52.4 bits (124), Expect = 9.7e-07 Identity = 24/38 (63.16%), Postives = 28/38 (73.68%), Query Frame = 0
BLAST of Spg010919 vs. TAIR 10
Match: AT2G24040.1 (Low temperature and salt responsive protein family ) HSP 1 Score: 52.0 bits (123), Expect = 1.3e-06 Identity = 24/39 (61.54%), Postives = 30/39 (76.92%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Sponge gourd (cylindrica) v1
Date Performed: 2022-08-01 Position : 0 Zoom : x 1
Relationships
The following mRNA feature(s) are a part of this gene:
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