Csor.00g209140 (gene) Silver-seed gourd (wild; sororia) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideCDSinitialstart_codonintroninternalterminalstop_codon Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCCAATCAACCATCTTCTTATCCAATTCTCTGCGCCTCCTTCAATCAGGACGCTAGGTATGTTCCTCCTTCTCTTTCTGTGTGTATCCATGGGGTCTGATCATTCTTTTTAGTTTAGGATCGTTCTCTGATTGTAACTACTGCGAAACGAATTTGATCGAATTATATGTAATCTGGAGGCGTGATTACTGGTGAAGCATATGGAGAGTAGTGCTTTTATGTCAGTTAGATAATTCTGTTTGTCTAGAGTTTTGTGAATTATCTGGTGATGTAGGTGTGGATTTTGTATTATCGGAGCCTTTGAATTTATTTGAACTTGTATGAGTAGGTTGGTCTTGAGTAACGTTTAATTTAGTGTGTGGGGAAGAATTTCAAAGAGGTTTTAGCGACGTGGTTAACTGAATTTATGCTAATGTGAAGAGTTTGAGCATGGGCGAATTTTTTCGTTCATAATTATTCATCTTGTTTCAAGTATCTGTCGAACACTTCAAAAAAAGTTGTAGAGTTAGAGCTTAAGCCTTGAAAGAGAAAGCTGCAACTTAGCATCAAGTGCTCCAACTTACCTATGAAAGTCCATAGGAAGAATCTACTTGATTCACAAGATGCATGAGAAAATGTTGGCGGAGGCTATATAGAACTAGAAAAATGAAGTGGTCTTAAACAAGCCTAAGTGAAGTTCTACAACATATTAGTGAGAAAGATCCAAAGGCTTTCATCTAAGCCATCCAATTATTGTCAATGCAAAATTTGACAAAAATTCTGTTACATCTGCTACCCAAACAAGTATGATAAACTTTGTTGGCTTCTTTTAAAGATATCTATCGAGTTAAGAAAGTTTCCTCTGAAATTAAGTGGAGATTGTCAAGTGTTGTACGAGGAGGAGTTTGAATCAAATTCGCACACACACACATCTATGAGTGTCATTTTTTTTACCCTACTATATTTGGATATCTAGAAAACTCGTTGGGTATTAAATTGAAGGTAGGTTCCCACCAAGTTTGAACTCATTCTCTTTAAGCCCTTCACATTTTTTATTGGCCCCAATAGTCAATAGGTCAAACCATGGGGTTAAATAATTTCAAATCATGGTACATAGTTATGATGTAAATCATACTTCCATTCCTTTCATGACATATGTATGCGTACTCCCTGGGCCTGACTACAGGCTAGTGCACGCTCATCATGGTGTATGCTTCCGTAGTAATCATGCTGGGAAGGATTCCAATGCTTGTGACATACAACATGCATGAGGTCTCATAGTTTCAGATCATGACAGATAGTAGAGGAAAGGGGAGGAAATGGGGGAGAAGTGGAGGAAATAGGGAAATTGAGGTGTATATGTGTCTGTTCATATATTCTTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTTTTTTTTTTTTTTTTTTCTTCAATTGGACTATAACAAGTTATTGGTATACTTTGCAAGCTCTTATTAATTAAAAAAACAAATAGTCAACTAAAAAACATTTTCAATCAATGTTGTAGTTAGAGAGATAAATATCATAGCCATGAAAAGGACTGTTGAGGTTGAGATCACGGTAAAAGGTTACGATCCTAGTGATTTTATAGGTTGAGATAGAGAGAATTTTGGCTAAAGAGAACTTGATAGAGGCAGTTTTCTCTTATGCTCATCTTGTAAAGGCATATTCATTCAAGGCCATATGAGACTAAATGATGATAGAAGGTATGATAAAAATCATGTTAAATATTTTAATTGCCATAAATTTTGCCATATTCTTGGAAGGCAAGATTAAAATTAAAGAAAATGTTAGTTATGTTGAGGCAGTAAGAACGCCCAGTCTACTTTTCTTTTGGCATGGAAAGTTAGAGTGACATGTGAGAACATTTATGATACTTTGATAGTATTGCATGCAATAATAGGTAAGCAAGCAAAGCAATATTCAGTTAACTTATAAATCTATTGGTAGATATCATGTCTGGCAACTTTTCTGTCCTTATTAAAGTAAGGCCGAGAAGCAAGATCCTTGTTTCTAGAGGCCTTAGAAAATGTAATCCGTTATTTCCTTCTCCCTTTAATTTAGAGGTGGATATTCATAGCATATTGGTTTCTACTGGAGTGGAGAGAGGGAGTATTGAGACATCTATTTGCAAATGATTTTTGATCTAAGATGGAAAGATCCTTTGTTAATCTGAACAGCTTTTTGTTCTTCTTTGAATTCATGTCAACTTCAGAATAACAGAGGAAAAGGTTTCAATTATTGGTATTAACTGCAAGTCCTCCAAACGGAATATTTTGGAAAATGTTGGTGACAGAAAATAATATTGTTGATTTGTTTAGGGAACTAACTGAACTGATGTACATCTATACTGCTTCAACAGAGTTGAGTCAAGATAGTGAAAAATGAAGATTTGCCTCTTAATATGCTAATATGGGGAAACATTATATAGAATATACTTAAGAGAGGCGATGAGAAAGTAAGGGGCATGAATTTGTTTCTTTTATACAAGGAAGGTATGATTTCCAAGCAACAAAGAGATGAATACAGGTGCTATAAATGCATTACGATATATGAGGGTTGGACACAAGATTCCCTCAACATAGTGTAGATATAAAACCAATTTGAAGATGTGTATCCTCATTAAGCCAAGTCCATGCATTCCGCAAATATAGGGCCTTACCTTCTTATAATATATATATATATATATAGAGAGAGAGAGAGAGAGCCTTACCTGAAATTTCCAAAAAAAAAAAAAAAGAAAAAACGTAGGAAATCAACTTAAATATGGTTTATCTTAGATGCATTCTACACCATGTATGAATTTTGGATTCATGTACTTTGAGTTTTATTGTGAATAATATAGTGATACACGTATATATGGTTCAAACTCATAACATTTGAGTTATTATTATAGGAGTCCAGATTTTTTTTGAAGTCTGTTAGGAATACTATTAGGATATTAAAGGTATATTAATAATTAGTTATGGAGGTAGTTATGGGTTTGGTTATAAATAGGGAGTGAGGAAGGTGAGAGTTAAGCATTTGGTAAGTGAATTATTAGGGCTTGGGAGAGATCTCAAGAGGAGGGTGCAAGTATCTTGAATTACTTGGTTATTTTGTAATTTCTTCATTGACATTGCAATACAGTTATATTTGGTGTTTTATTATAGTTTCTGTTTTCGGATTTCTAACAAAGTCCTACAAATATGTTGGTTTATGTTTAGTTGAAGCAAGTATGTGAAGAAGAAAAACGGAGAAAGTTGAAAGTTGAGAGACTTGGTGAACCAAGTGTGTGTTAAGTACAGAGTTCAAAGCCTAGTGACATTGTTTTTTCTCACTTATACCTATCTCGGCCTTTTGGCTAAACATCAATTATGTGACATTGTTTTTACTCGGTTATTTTTTTTTTGTCTCAATATCCTCTACAAGTGATCACCCCATGCTTTGAAGAATTAGAAGCAAATAATAATAAATAAATAAATAGATAAAAATCTAAGATATTGTTTCGGTTGAAATTGGCAGTTTATTTGCAATAGGCACAAGAGATGGTTTCCGAATTTTTGATTCCAATAACGGAAGGCTCTGCTATGAACGAGGTATGCTTTTGAACTAATCTTTCTTCTTTTCTTTTTTTTATATTTTTTTTATAATTTTGATTTTGTCAGCAAAGCTGCTTTAATGATGAATCAAATAACAAATAATAATAATAATGAAAAACTTGAACGATTTTTTCAAAAAAAAAATTGGATTGTGCTATATATTTCCCATGTGCTTATCTAAAATGACTAGGTATGCAACATACTCTGGCTTGGTAATTTTTGTGGTAAGATACTCAGACTTATTGATTGAAGTGGAGTTCTTGCTGGACCCTCGATTTGTCCTGACAAATGCCTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTCATTATAGATTTAGTTCAGAGATGTTTATAGATAACTCCGAAAAATAATGATGAAGTATTTGTATGGAATCGTTTTCATGCACAAAACATGTTTACAGCCAAATGAAGTGTTACTATTAAGGCATGGAATCAGAAAGGTTGCAAGTTTGCAAAATAATTTAGTTCTCGGTATCTTTTCTCTATGTTTTACACATATAAGTAAACAGATGGGCACATTATTCGATTTTGTGTTCAGGTAAAAATAAATTTGATTTTTCTTTAACGAGTTGTTATCTATTGTCAGTAGACTCTTTGTTTTTGCAATCAAGTTCACAATTTTTTATTTATATAAGAATGAACTTGAAAGTTTTGATTTATGTTGATTTTTTACTTTTTAGTATTTGGAAGTATGAAGCTCTTGAGTTCACCTTCTGTGTTTGATCTAAAAATTTCACGTTCTTTCTTGCTAGCTCTTGGTGCATTCAATATTGTCGAGATGCTGTTTAGCTCTAATCTTGTTGCCATTGTTGGAGCTGGTGAACAGGTGATTTGGAAGTTGATTATAGCTACAATTCAATAATTATCTATTGTAACATGCGGTATCTCACATTTTATGCATCTGGTTGCTAATTAAATTATATTTTTCCTTGATTGTTCACAGCCATCTTTATCTCCACGTCGTCTTTGCTTGTTTAATACAATGAGTGGAAATGCCCTTAGAGAACTGAATTTCTTAACTTCAATTCTAGCTGTTCGCATGAATAGGAAAAGGTAAAGGAAAAAAAATCTAGCTATTTAAGATGCATTATTTTTAAAAGATGGTAATGATGTCTAATGTTTGATTTATTTATTTTTTATTTTTTTCAAGAAACTCACATTTCCATTATTATATGGTAAACTCAAATTTTTATTATATTTTATATCATATAAATTTGTTTTTATTATGGAACTGCTGATGTTGGTAACTTGAACAAATTGGTATAAGAGGTAGCTTGTATGCTTATTTGTAGTTGACAGAATTTTAAAAATGAACTTGCGAAATGAAGCTAGGCTAGATGATGTGAATCGTAATAATTGACCCACACGTCTCAGAGATTTTTGACATTTCCTTATTTATGTTGACCATTGACTATTTTACCTACGTTTCAAATCTAGTCCCTAGGTATCAAGCCCGTTTAATCCAAGAAACCATCTTTCTATTATTTAATTTAAGGGTGTAAGATGTTTTTGACATTTTGGTTATCATCTTTCTCCTACAATTAGCTTTTGAGCAATATCCTGTAATTTCCTTTTTGTTGGCTTCAATTCTTGGGTTTAGTTCGTGTTTTCCTTCTTTTTGGTTGTCCATGCGTTCTTCTTGATTGAAGTGGCTAAAATATTTAAACAACCTTCAACTTGGCTAAATGAGGTTTTGCAATTTTCCTCCACCTGAAGTTAGTTTTTTATGTCTTTTAGACTCTTTCTTCTAGTTGGAAATCGAATTTTAGTGGCCTATTATTGAAAGAAAAAAAGAGTGCCTATCTTTTAAGCAAAACTAAAATCATCAAACATACTTGATTTACTAGAAGGAAGTTAGTTTTTGGAAATGGTGGCTGCATTAGACCCTTCCTTTTTCAGAGAAGAGGAATTCATTCGTCTAGACCATTAACAGACTGAACTTTACAATCATCGGTAACGTTTATTTTCAAGTAAGGTTGAGAATAATTGTGTCAGTTTTTGAAATAGTAATCTGGTATCTATGGTGTGAAAAGAATGCAAGAATTTTCAGGGACGTTTTGTCATCTTTTGATAGCTTTTTGGATTTTATTTTCTTTTATGCATTCTGCTGGTGCAAGTATAAACACCTTTTTTGAGATTATTCTTTCATCTTTGATTTCAATTAGCAAGATTTTTTGCAACTCATCCATAGGTGTCGGGAATCTTTTATGCTTCCTTCATTTCATTTATCAATCGAATTTGTTTCTCCTCTCAAAAAAAGTTATTTTCATAAATATAATAGGAACTTATATTTTATTTATTTATTTATTTATTATTATTATTTTGTATTTCTACCAGTCTTTTAAGCTGTACTGACTCTATGATTGGATGGAAAATGCAGACTTATTGTACTACTGCAAGATAAGACATACATATACGACATAAATAGTCTTACAATCTTGGACACGATTGATACAGTACCAAATTTGAAAGGTCAGGTTGGTATATATTCCTGTTTGTACTTGCTGTGTCTTGCATAATATGTTCATGCTAGAGAGTTTTGGCAAAGTTTCTTGCATTTCTTTACATTGCTGTTCTATTCAAGAACTGTCATTTGCTCATTCCAGTGCTTGAACTTGGTAAAGAACTTTTAACTGTCATTTTTATACTTTTATGGTTCATTACTGCCGTATACACAGTCGAGAAAAGGCTTACATGCTTAATAAGTTGACCCAAATCTTACATGCTTTATAAGTTGGGTTTTGATTCTGATGTGTGAGTAACAAAATCTTGATAAGTGACTGACGGTTCTTTTCCAAAAATTAAAATTCTTAGGAATCTGTGCGTTCTCCCCCAGTTTGGATGGTTGCTTCTTAGCTCTTCCAGCCAGCATCACTAAGGGATCTCTGTTACTGTACAATGTCATGGAGCTTCAGTTACACTGCGAGGTTTGGGTTTTAACTTTCCTTGTTTTTGGGAAGGAAGAAAAAGATATAGGATAAAAGTATAAATTGTTGTCCGACATGATCTGTACTTTTTAGAAATTGCCATGGTTGTTTTTTTTTTTTTTTTTTTTTTTTTCTTGGAATAAAGAAATTTCCATGGTTAGTAATGCAAGGTTTGTAGATCCTAGTGAAATGTGCATCTGTGAGTGTGGCTAAAATTGCACACTCGTTTAGGAAGATCTGGGAACAGGCATCATCTAGTCTGTACTGTGACACTCTTAGTTACAATCAAACATTATTGACGGTTTCAGTTTTTTTATCTTTCCAATACTCGTGATTTGGGTTCTATTTATTGACCATGATTTATGCAATTTATCCTTTTTAATTGACTACATTTATTTTTTAATCCATTGTAATTTTAGCTTATTGTTTGCGGAAATTTAATTGCAGATAGATGCTCATCTTGCACCGCTGTCCACAATGGTCCTTTCTTCAAATGGGATGTACATAGCAACAGCATCAGAACAAGGAACTATAATTAGAGTGCATCTGGTATCGGAAGCAACTAAGGTGGAAAAAGTCTCTCCTACATTTATATTGGTTATTTTCTACCCACCATGTGAGATGCTTTGAATGTTATTAAAATCATGACCATAAATGGGTTTTTACCATCCTATCCAAAACTTCTCCTATGGTTTTTGGACTGGTCAGAAGAACTTTACTTATCTGCCTGGGAAATTTATTGGAGCAAGATTGGTTTCTTATTGATAGCATTGAATGTTAAGACCACCTTTTGAGACATTTAAAACTATTGATAACTTGCACATTTGTTGATTAATCGAGCTTATTCATCTTGAAAGCAGTGAACTACTTTTTGTTTTTGTTCAGTCTGTCTCTTTGAATCTTTGGTTTTCGTCTTTTTTTCTTTTCATTTTCCTTCTTTAGATGGTACCTAACTCAAATTTTTTGGCAGTCATATAGTTTCCGGAGAGGATCATATCCATCAACTATATTTTCATTGTCCTTTGGGCAATGTTCTCAAGTTCCGGAAATTCTGGTGGCAACTAGTTCCTCTGGTTCTGTTCATGTTTTTCCTCTGGGATTTGCTATAAACCAAAGGTGACTATCATGCATCTGTTTTTTCTGTCAGAGATCCAGAAAGGAAGGATAATTAATTTTTTTACGCAATGTTGTATGGGTATTGAAATCATGCTTGTGGGATTCTTTAATTGACAATCTTTACGACTAGGTTTTAGTTTTAGGCACATCTGTTCTGCTTCATGGGTATTCTGGTGAACCATCAATATGCATTATTCATCATGTTCCTGATATTTGTATTTTCCTAATCTTTCAAATACTGATACTGACACACCTCTGATTCTCTTTCTTTATTACTTCATTCTTTTTTATATTTCATCACAAAACTTTAAGGTTGTCGACAATATATAGTTTTTCAGTCTGTTGGATCTTTAATCCGATAATGAAGTGCAAGATAGATTTCCCCATATTTTCTAGGGACTAGAAATAATGAAAGAAAAGAAACTGTAATGTCATAGAACGTTAGATGAAAAGAATTGTGAAGTTATGATTACGATTTTCATGCATTGACAGAAATTCGACTCCAGAAAGCTAATGACGTTTGGGAGGGGTTATGTCAACTAAGAAATGTAGATATGAGCACATTGTAATCAAGGTGTATTCAAAATATATTATTTTAATTTAAAAATGTATCAATTTTATACATCTATGACATTTAATATTTTTTAGTTTTTAAAAAATTGTCTACTATAATGCATCTCGCCTTGTACATCATGTGTTTGGACATCCCTATAACTTGGGGGAAAAATTTTAGACTTCCTATTCCTAATCATATGGGGTGTTCAGATCATGTTTGTGTTTTGTATATATTCAGTGCAGATAGTTTGTTCTGTAGTATCTTGCTTCTAGAATGCATCTCAGCTTACTAAAGTAATTCAAAGCCCTTAAGTTTTTCCAATACTCAAATCTTCCCTCTTTCTTTCTGTAAGGTCTTCATGTTATTTCATAAACATGGAAGTGATCCACTCTCTTTCATCTTTTGTTAGCAATAAATTTTTTGCTATGGAGATTTCAGGGATGATCTGATTGCTCCTCTGCTGATTAGCTTGATTTTATCTGGTTCCTTTCCTGTTGTGGCAGCAGAAGATCAGGTGGCTTTCTTGGATCGATAATGCTCGACTCCATAAGTGATGCACTGGATCCAGCGCACCATCACATTGTTCATAATGCTGTACCAGCAGGAATTAAAAGGTATGACATGTTAATTGAGATAATTTTCTGGTAATATCTAATCATTCTTTCAAGTCAGCAAAGTTCTCATTCAATAACTTCTTTGACATGGCATTTGTAGCCTTCTTTTATAGAATCATCCTAGTGTGCAGAAGATTCTTAGCTTTTGCTAAAAAAAATCCAAATTTAGCAACTTTGCTATCAAGCTTATGAAGTGTTGTTTTGCAGCTATGCAGTGATACGCAAGGTTGATAGGGTTGCCGATACTTCAAGTTCTGAAATTGTAGCTTGCAGGTGAGTTGTTTATAATTCGTGATTTGCAAGCCTTGAGTGCTCCCCGTTCTGTAACTTTTCCTTCCATTTTCTTCAAACGTGTTTTCAGATCATGTACAAATGGGCGTTACAAAAGGCCTAACACAAAAAAATTAATGTTAAGTAAAAAAAACTCCAATTGTTGAGAATAAGAGAAAAGATATCCACATGGAGAAAGATAGAACGCCTGATGAAATGGTCTTCCTAGAATAAGTTCCTTAATTCCCACCAAGTGAAACCCATTTGATTAGGCGAGGGCTCATTATAATCCCAAGTCCCAGAGCATCATACTCCTAAGAGAACTGCCACTCCAATTTTGCAAACCAAACCCAAGCCCACTCCAATTTTGCAAACCAAACCCAAGCCCACTAGTAGATATTGTCATCTTTGAGCTTTCTCTTTCAGACTTATCCTCAAGGTTTTTAAAATGCGTATGTTAGAGAGAGGTTTCCACACTCTAATGAAGAATGCTTCGTTCTTCTCCCCAACCGACGTGGGATCTCACAATCCACCCCCCTTCGAGGTCTAGCGTCCTTGCTAGACGCTGGCACTCGTTTCCTTCTCCAATTGATGTGGGACCCCCCAATCACCTCCCTTCTGGGCCTAGCGTCATTGTTGGCACACTGCCTCGTGTCTACTTAAGGCCTCAGCCTCCTCGCTAGCACATCGCCCGGTGTCTGGCTCTGATACCATTTGTTATAGTCCAAGACCACCACTAGTTGACATTATCCTCCTTGGATTTTCCCTTTTAGGCTTCCCCTCAAGATTTTAAAATGCGTGTGCTAGGGAGAGTTATCCACACCCTCATAAAGAATGCTTCATTCTCCTTCCCAACCGATGTGGAATCTCACAAGGTTACATTATGAAGTCTCAAAGGTCAAAAGGACGGTACATTATCTCCAAATTTACAAGCTAGTATTCCATCCTCTGACACCTTCTATAGGAAATCCCACAGGTTCCTTTACACCTTTAGCACCAATGTCTAACCAATAAAGAAATCCTAAATCAAAGACGACTGCCTTTTTTGTGAAATGCCAGCCAATTTGCATGTAGGTAGTTTCCCTGCAATGAATAGCTTACCTTGCATTCTAGAACTCTAGGGCTTGTTCATTGCTTACAAAAATTCTTTCTGGTCTTTCAAATGAAACTATATTTTTATTGTGATAATTTCTAATTAAGTCATTGAGTATTTGAAATCACGATTCAGTAGAATCTGATTTTTGACCCATAAACAAACTCAGTGAAGTAAGTAACTTCTAGAAAATACTTGTGTTTTCTAGAAATGAGTAAGTTCTTTCTCATTTCATTTTGGATTTTGATACAGGGCCACACTAGCAATCATAACCTACAATGGTTACTTCCAGGAGTACAACTTAAGTCTCAGTAACCAGAACGAGTTCTCGAGAAGTTTGGACTGTGAATTCAATCTCTTGACTGCGATCGCCAATAACGACGTTAGGTTATGA ATGGCCAATCAACCATCTTCTTATCCAATTCTCTGCGCCTCCTTCAATCAGGACGCTAGTTTATTTGCAATAGGCACAAGAGATGGTTTCCGAATTTTTGATTCCAATAACGGAAGGCTCTGCTATGAACGAGCTCTTGGTGCATTCAATATTGTCGAGATGCTGTTTAGCTCTAATCTTGTTGCCATTGTTGGAGCTGGTGAACAGCCATCTTTATCTCCACGTCGTCTTTGCTTGTTTAATACAATGAGTGGAAATGCCCTTAGAGAACTGAATTTCTTAACTTCAATTCTAGCTGTTCGCATGAATAGGAAAAGACTTATTGTACTACTGCAAGATAAGACATACATATACGACATAAATAGTCTTACAATCTTGGACACGATTGATACAGTACCAAATTTGAAAGGAATCTGTGCGTTCTCCCCCAGTTTGGATGGTTGCTTCTTAGCTCTTCCAGCCAGCATCACTAAGGGATCTCTGTTACTGTACAATGTCATGGAGCTTCAGTTACACTGCGAGATAGATGCTCATCTTGCACCGCTGTCCACAATGGTCCTTTCTTCAAATGGGATGTACATAGCAACAGCATCAGAACAAGGAACTATAATTAGAGTGCATCTGGTATCGGAAGCAACTAAGTCATATAGTTTCCGGAGAGGATCATATCCATCAACTATATTTTCATTGTCCTTTGGGCAATGTTCTCAAGTTCCGGAAATTCTGGTGGCAACTAGTTCCTCTGGTTCTGTTCATGTTTTTCCTCTGGGATTTGCTATAAACCAAAGCAGAAGATCAGGTGGCTTTCTTGGATCGATAATGCTCGACTCCATAAGTGATGCACTGGATCCAGCGCACCATCACATTGTTCATAATGCTGTACCAGCAGGAATTAAAAGCTATGCAGTGATACGCAAGGTTGATAGGGTTGCCGATACTTCAAGTTCTGAAATTGTAGCTTGCAGGGCCACACTAGCAATCATAACCTACAATGGTTACTTCCAGGAGTACAACTTAAGTCTCAGTAACCAGAACGAGTTCTCGAGAAGTTTGGACTGTGAATTCAATCTCTTGACTGCGATCGCCAATAACGACGTTAGGTTATGA ATGGCCAATCAACCATCTTCTTATCCAATTCTCTGCGCCTCCTTCAATCAGGACGCTAGTTTATTTGCAATAGGCACAAGAGATGGTTTCCGAATTTTTGATTCCAATAACGGAAGGCTCTGCTATGAACGAGCTCTTGGTGCATTCAATATTGTCGAGATGCTGTTTAGCTCTAATCTTGTTGCCATTGTTGGAGCTGGTGAACAGCCATCTTTATCTCCACGTCGTCTTTGCTTGTTTAATACAATGAGTGGAAATGCCCTTAGAGAACTGAATTTCTTAACTTCAATTCTAGCTGTTCGCATGAATAGGAAAAGACTTATTGTACTACTGCAAGATAAGACATACATATACGACATAAATAGTCTTACAATCTTGGACACGATTGATACAGTACCAAATTTGAAAGGAATCTGTGCGTTCTCCCCCAGTTTGGATGGTTGCTTCTTAGCTCTTCCAGCCAGCATCACTAAGGGATCTCTGTTACTGTACAATGTCATGGAGCTTCAGTTACACTGCGAGATAGATGCTCATCTTGCACCGCTGTCCACAATGGTCCTTTCTTCAAATGGGATGTACATAGCAACAGCATCAGAACAAGGAACTATAATTAGAGTGCATCTGGTATCGGAAGCAACTAAGTCATATAGTTTCCGGAGAGGATCATATCCATCAACTATATTTTCATTGTCCTTTGGGCAATGTTCTCAAGTTCCGGAAATTCTGGTGGCAACTAGTTCCTCTGGTTCTGTTCATGTTTTTCCTCTGGGATTTGCTATAAACCAAAGCAGAAGATCAGGTGGCTTTCTTGGATCGATAATGCTCGACTCCATAAGTGATGCACTGGATCCAGCGCACCATCACATTGTTCATAATGCTGTACCAGCAGGAATTAAAAGCTATGCAGTGATACGCAAGGTTGATAGGGTTGCCGATACTTCAAGTTCTGAAATTGTAGCTTGCAGGGCCACACTAGCAATCATAACCTACAATGGTTACTTCCAGGAGTACAACTTAAGTCTCAGTAACCAGAACGAGTTCTCGAGAAGTTTGGACTGTGAATTCAATCTCTTGACTGCGATCGCCAATAACGACGTTAGGTTATGA MANQPSSYPILCASFNQDASLFAIGTRDGFRIFDSNNGRLCYERALGAFNIVEMLFSSNLVAIVGAGEQPSLSPRRLCLFNTMSGNALRELNFLTSILAVRMNRKRLIVLLQDKTYIYDINSLTILDTIDTVPNLKGICAFSPSLDGCFLALPASITKGSLLLYNVMELQLHCEIDAHLAPLSTMVLSSNGMYIATASEQGTIIRVHLVSEATKSYSFRRGSYPSTIFSLSFGQCSQVPEILVATSSSGSVHVFPLGFAINQSRRSGGFLGSIMLDSISDALDPAHHHIVHNAVPAGIKSYAVIRKVDRVADTSSSEIVACRATLAIITYNGYFQEYNLSLSNQNEFSRSLDCEFNLLTAIANNDVRL Homology
BLAST of Csor.00g209140 vs. ExPASy Swiss-Prot
Match: Q8H1Q8 (Autophagy-related protein 18b OS=Arabidopsis thaliana OX=3702 GN=ATG18B PE=2 SV=2) HSP 1 Score: 489.6 bits (1259), Expect = 3.2e-137 Identity = 250/362 (69.06%), Postives = 305/362 (84.25%), Query Frame = 0
BLAST of Csor.00g209140 vs. ExPASy Swiss-Prot
Match: Q54NA2 (Autophagy-related protein 18 OS=Dictyostelium discoideum OX=44689 GN=atg18 PE=3 SV=1) HSP 1 Score: 201.1 bits (510), Expect = 2.2e-50 Identity = 131/370 (35.41%), Postives = 212/370 (57.30%), Query Frame = 0
BLAST of Csor.00g209140 vs. ExPASy Swiss-Prot
Match: Q5QA94 (Autophagy-related protein 18 OS=Pichia angusta OX=870730 GN=ATG18 PE=1 SV=1) HSP 1 Score: 199.1 bits (505), Expect = 8.5e-50 Identity = 111/264 (42.05%), Postives = 168/264 (63.64%), Query Frame = 0
BLAST of Csor.00g209140 vs. ExPASy Swiss-Prot
Match: A1CBB8 (Autophagy-related protein 18 OS=Aspergillus clavatus (strain ATCC 1007 / CBS 513.65 / DSM 816 / NCTC 3887 / NRRL 1) OX=344612 GN=atg18 PE=3 SV=1) HSP 1 Score: 194.1 bits (492), Expect = 2.7e-48 Identity = 114/273 (41.76%), Postives = 165/273 (60.44%), Query Frame = 0
BLAST of Csor.00g209140 vs. ExPASy Swiss-Prot
Match: Q2U6D5 (Autophagy-related protein 18 OS=Aspergillus oryzae (strain ATCC 42149 / RIB 40) OX=510516 GN=atg18 PE=3 SV=1) HSP 1 Score: 192.6 bits (488), Expect = 8.0e-48 Identity = 112/265 (42.26%), Postives = 163/265 (61.51%), Query Frame = 0
BLAST of Csor.00g209140 vs. NCBI nr
Match: KAG6599132.1 (Autophagy-related protein 18b, partial [Cucurbita argyrosperma subsp. sororia] >KAG7030074.1 Autophagy-related protein 18b [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 713 bits (1841), Expect = 6.59e-259 Identity = 368/368 (100.00%), Postives = 368/368 (100.00%), Query Frame = 0
BLAST of Csor.00g209140 vs. NCBI nr
Match: XP_022946801.1 (autophagy-related protein 18b isoform X4 [Cucurbita moschata]) HSP 1 Score: 712 bits (1838), Expect = 1.89e-258 Identity = 367/368 (99.73%), Postives = 368/368 (100.00%), Query Frame = 0
BLAST of Csor.00g209140 vs. NCBI nr
Match: XP_022999716.1 (autophagy-related protein 18b isoform X1 [Cucurbita maxima]) HSP 1 Score: 711 bits (1835), Expect = 5.41e-258 Identity = 366/368 (99.46%), Postives = 368/368 (100.00%), Query Frame = 0
BLAST of Csor.00g209140 vs. NCBI nr
Match: XP_023521194.1 (autophagy-related protein 18b [Cucurbita pepo subsp. pepo]) HSP 1 Score: 707 bits (1825), Expect = 1.81e-256 Identity = 365/368 (99.18%), Postives = 367/368 (99.73%), Query Frame = 0
BLAST of Csor.00g209140 vs. NCBI nr
Match: XP_022946795.1 (autophagy-related protein 18b isoform X1 [Cucurbita moschata]) HSP 1 Score: 706 bits (1822), Expect = 5.00e-256 Identity = 366/368 (99.46%), Postives = 367/368 (99.73%), Query Frame = 0
BLAST of Csor.00g209140 vs. ExPASy TrEMBL
Match: A0A6J1G4M3 (autophagy-related protein 18b isoform X4 OS=Cucurbita moschata OX=3662 GN=LOC111450756 PE=4 SV=1) HSP 1 Score: 712 bits (1838), Expect = 9.15e-259 Identity = 367/368 (99.73%), Postives = 368/368 (100.00%), Query Frame = 0
BLAST of Csor.00g209140 vs. ExPASy TrEMBL
Match: A0A6J1KDW4 (autophagy-related protein 18b isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111493984 PE=4 SV=1) HSP 1 Score: 711 bits (1835), Expect = 2.62e-258 Identity = 366/368 (99.46%), Postives = 368/368 (100.00%), Query Frame = 0
BLAST of Csor.00g209140 vs. ExPASy TrEMBL
Match: A0A6J1G519 (autophagy-related protein 18b isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111450756 PE=4 SV=1) HSP 1 Score: 706 bits (1822), Expect = 2.42e-256 Identity = 366/368 (99.46%), Postives = 367/368 (99.73%), Query Frame = 0
BLAST of Csor.00g209140 vs. ExPASy TrEMBL
Match: A0A6J1KBK9 (autophagy-related protein 18b isoform X2 OS=Cucurbita maxima OX=3661 GN=LOC111493984 PE=4 SV=1) HSP 1 Score: 705 bits (1819), Expect = 6.93e-256 Identity = 365/368 (99.18%), Postives = 367/368 (99.73%), Query Frame = 0
BLAST of Csor.00g209140 vs. ExPASy TrEMBL
Match: A0A6J1G4L9 (autophagy-related protein 18b isoform X2 OS=Cucurbita moschata OX=3662 GN=LOC111450756 PE=4 SV=1) HSP 1 Score: 672 bits (1733), Expect = 5.65e-243 Identity = 347/348 (99.71%), Postives = 348/348 (100.00%), Query Frame = 0
BLAST of Csor.00g209140 vs. TAIR 10
Match: AT4G30510.1 (homolog of yeast autophagy 18 (ATG18) B ) HSP 1 Score: 425.6 bits (1093), Expect = 4.0e-119 Identity = 214/308 (69.48%), Postives = 267/308 (86.69%), Query Frame = 0
BLAST of Csor.00g209140 vs. TAIR 10
Match: AT4G30510.2 (homolog of yeast autophagy 18 (ATG18) B ) HSP 1 Score: 361.3 bits (926), Expect = 9.2e-100 Identity = 180/247 (72.87%), Postives = 219/247 (88.66%), Query Frame = 0
BLAST of Csor.00g209140 vs. TAIR 10
Match: AT3G62770.1 (Transducin/WD40 repeat-like superfamily protein ) HSP 1 Score: 141.4 bits (355), Expect = 1.5e-33 Identity = 83/250 (33.20%), Postives = 141/250 (56.40%), Query Frame = 0
BLAST of Csor.00g209140 vs. TAIR 10
Match: AT3G62770.3 (Transducin/WD40 repeat-like superfamily protein ) HSP 1 Score: 141.4 bits (355), Expect = 1.5e-33 Identity = 83/250 (33.20%), Postives = 141/250 (56.40%), Query Frame = 0
BLAST of Csor.00g209140 vs. TAIR 10
Match: AT3G56440.1 (homolog of yeast autophagy 18 (ATG18) D ) HSP 1 Score: 137.9 bits (346), Expect = 1.7e-32 Identity = 83/249 (33.33%), Postives = 141/249 (56.63%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Silver-seed gourd (sororia) 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.
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