Csor.00g262100 (gene) Silver-seed gourd (wild; sororia) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: CDSstart_codoninitialpolypeptideintroninternalterminalstop_codon Hold the cursor over a type above to highlight its positions in the sequence below.ATGGCTTCTTACTGGAGCTATGGATTCTCCGTCTCAGATGCTGCGATTCCCTCTACTAGCAGAGCCTTCATCTCCAATCCACGGCCATGTCGTCTACGGCTCCCTGCATTTCGACCTCGGAACATTAGGAAGCCCCATACCAAAGCGAACAGAATCAGAACTTCCTTTTCTGCATTGCCTTTCGACCTCTCCCCTCCTCCGATCGATGAGGACCTTCTTGTAAGTTTCTTTCCTCCTTTTATTTCACTTTGTTGATCTGTTTACTTCGGTAGAAACTAGAGAGGAGGGAGAAACAATCGCCAAGTGATTTTGCTTTGAGACTGATGTTTATAATCGGTGCTTGCGGAGGCTGTTTGTTGTTGTTGTTGTTATTATTATTTTTTTTTTTTGCTGAAATTGTTTCAACTGATTTGGCTCTGTCGTAAAAAGTGGAATGAGACGCTATTGTTTATTGACTTGTTGGAGTTATGGTATTTTAACTGATGACATGAAGACATATGCATTTAAATTAGGGAAGAGGAGGAAAAAGAAAGAAAGCAATGTGCTGGTATGCTTGATTTCAGAGAAATGATTCTCAAATCTTGTTCGGAGATTGAGAAAAAGAAAGAAAGCAATGTGCTGGTATACTTGATTTCAGAGAAATGATTCTCAAATCTTGTTCGGAGATTGAGAACCGACCCTCGTTTTCGTTTTCCTTTTAAGACGGCGGTTTAAGACTGTATTATTGCTAACAGTTGTTTTATGTGCTAAATTCCAATTGAAATGTTAGAACTTGCAATACTCTAATTTAGATATCTATGATGGACAGGAGGCTGCAACGACTGAAGGTGCGAGGATTTCTGATGATGGGATTATTGAAACTTTTCATAATGATGATGAAGCGCTGGATGCAGCCAATAATGGGGTTGCAGTATGTAGTCTTTCAACGTTTTTCTTACTGGTGTCATTTTTCTTTTTGCTTTGTTTAGTTTGAGAACTTTTTATAGCTCCCTTTGGAAAGAAAACACTGTTTATATGCATATCTAACTGTGTTAATTTGGTAATATTCTCAAATATATGAAAACATTTCTAAATTGCTATTTGTCTGAATTACAATATGCCAATTAATTCTTTAGTACCCAAATGAAGTCAGAAGATGGATGGATGAATTAGAGGCAGTACAGTGTGCTGTAGAAGTCTAGATGGTAATAATTTTCATAAGATGGTCAATTAGAAGCTCTCCTCAAATATCGCACGTGTCACGAAAGTTAGCTTTTTGACTGTTAGGCAAGACCATTAAGTTTGTGAGGAATAGCAAACTTTTGATAGGCCTTTTTTTTTCTATTGTTTATCTTCCTATCTCATAGGGTAAATTGTCACCTCTTTTATTAATTTTTATAGCTACTCTACACTTTTGTTCAATTGGAGAAGTTTCTTGTAACTCCATAGAGTGGAGGTTTTCTCCCTGTTTTTGTAATTTCATATTTCAATGAAATTGTTTCTTAGAAAAAACAAAAGTTATATCCTTCACGGTTGATTTTTTTTCTTATGTTGTTAATTGTTAGGTTGTGGATCTCTCTCATTTTGGCCGAATAAGAGGTACATTCTCTTCTTGCTGTCTAATTTTATGTTGCACTATTATTTATGAGTTTGATCCTACAGATGGCGTATAAAAGTTTTGCCGCCATCCTTTAAAGCATTCCATGTAATAATATGGAGATTTATGGCTGCTTATGATTTTTGTTTTTCAAGCTTTAGCTCAAAAATAATAATAATAGAATGATAAATGATGTATGTGTATATGTCTTTGCTCCTTCTTTGAAATATCATGGCTTTGGTGGCCCATTCTTTCTTAAATGACCTCATATTGTAAAAGGAAAAAGATCTTCTAACAACATGAATACATTACAATTGAGCGTGAAAGAAATGAAAAATTATTTTAAGTTGAGTGATTTTTCCCCCCAAGGGATAACGTTGGTGGCAGGGGGTTGGTGTGTTTAGAAATTCCCTTCAAGGTTTTAGGTTCAAGCCCCTTGGTGGAACTGATTTTATTTTTAGGTCTCGGTTGTTCTGCAATGATATGGCGTGTTGCAGAAATACTGTGGAACTGATGAAATGCTGTAGCATTTGTGCAGCAATAGTGCGCAGTGCACTAACAAAATTATCAAATTAATTTTCAAAATCTATTTCTAATTCGTGAACTCCAGTTCTTAAGTCAAGATTAACACGAGTACTTGATCTACCCCTTATTCAAGACATGAGCCTATTTTTGGACAAGAGACAAACTTTTCATTGATATAATAAAGCTAGCCTATTCTCCACTTGTACTTGAAACTTGTCCTCCAATGGACCGGGTCCATGCAACCACAGGCCACATGATCACAACTCATGTGCCTTCAAGATCACATCGTCTTCTTTCCTAGCCTTATAATCCTCAATGGACTTTGTTTGCAATCAAGAGTTCATTGAGCATTTGTCCACCAGATATAAGTGTACTTTAACATCCTAAAATAGTTTAATGCACAACTTTCTTAAATCAAATTTTATGCAGTCATCTTCTGTACTGAACTTCTCATGCTTCTCAACCGGTGGTTGAGATTTTCCCACAAATCTTGAATACTGAAGTATTTAATGCGTTTGCAACCATTTTTCTTATGAAACTGATGCATTAATGTACATGAAGTTAGTGGAGAAGATCGTTATCAGTTTCTTCAGAATCAAAGCACAGCTAATTTTGAAAGTCTCTGTCAAGGACAAGTAAGTTTCAAATAGGCATATCCTATTCTAATCATATTTGGTTATATTTAAATTCTTTTATAATGGAATTATATTGATAAAAGATTGATGTTTTATGTTCTTTTTTTTTTTCTGTTAACTACAGGGATGCAGTACTGTGTTCGTTACACCCACTGCTCGGACAATTGATATTGCACAAGCATGGATCATGGTAATGCTTTCAAATAGTATTTCTCCATGGTCCACGGTTTTCTATATCATAACTTGTTCGATTTCATCCTAATATTCATTTTTTATGCATCCTGTTAACAGAAAAATGCCATCACATTAATTGTTTCGCCAGTGACCCGTGAAAGCATAATTCAGATGCTCAACAAGTAGGTGTTCTTGTAAGTTTTTAATTGCCCCTTCATGGGTTTTGTGTTTTTTTCTTCTTGACTATAAGTATCCTTGCACTAGAACCATAACTTGAGAGGAGTAATTACGAAACATCAAGACCACAATTAAAAATTACATACAAACTGAAAAATTACAGGAAGGCCTCCCAACCAGAATTAATCTCAAAAGATGGGTAATTGGGAAAAGCTCCAGAGAGCTCTCCAAGAAACTGGATGGATCTTTATCAAAGATGAGCTTTCCACCCAAGGGATCCTTCTATTTCCGAAAACCTCTATCTTTTAAACCAAATCCCCCAAACTACAGATTGAACAAGAGAAACCCATAAAACTGTTGCCTTCTCCAAGGGCGTGACTGCTAAGAAGATTAAAAATATTAAAATTTACCTAAAATTGCCCAACATCAAAGATTGAAAGGAAGCATCCCACGTTAACACTCTTAGAGCATGAAAACTTATCAACCTTTTGACGTGATAATTAAAAATTGCGTTGAAAACAGATTGGAACAAGCTGATTTCCAATCCAAGAGTCTTTATTATTATTATTATTTATCTTTTAAAAAAATAAAAAGAAAAAATCCAAAAGGCTTTCGAGAAAGAATTTTCTCACCACTGCCTACCATGGTCAAGGGAAAACTTATCATAAATATTTCTAAACTATATCACGTTCCACCAAGGGCTTCCATAGCTTTCACGTCTATTTACTTTTGTGCATTACCCGGAAACTTCTTTCATGGACACCCTAGCCACCACGTAATGTCACAGTTCACTTGATTTAAATCCTCTTTGTGGGCTTCACACCTCAAGCTTTTTGTAAATTTTTTGTTATTATTAGCCACGTGATTATTTCAGATTGGACCCTCTTCCTAAGGTTTATTTGATTGGTTTTTCCTGTTGGGCTGTTTTTTTATGTCTTTGTATATTCTTCCATATTGCTCTTTCTCATAATAAATAATATTTTTTTGGATTTTTTTTACATTATTTATTTACATGGAAACAATATTTTTTATTGATAAAATAAAACGAGATATTGCAAAAGTAGTTACAATTCATTTGCATTTGGAAATCAAATCTTCAAAGCCGTTTGATTAAAAAAACTCCATTCTTCTTCCTTTATTTTGCAAACCCTAACCCATCATCCTCCAAAGGATCAACTACAGAATTCCATCCAATAAAATGTGATATCTTTTAGGCACCGTGAATTTTCTGAAAGAAGTTTCTCATATGGTTTGGTATTTCCATCCGCACTTAACAGAAACACAAAAAGAGACTATAATAAACTGGAAGATTGGGTTACACCACATTACGTAAACACTTTCCATCTACGACTTTTGCAGAATGCGTAAACATAAGCTGAATACTTTATTGCATGGTGAATAGCTTCTATTCATCTTGATTTGCAGATAATTCCTTGGAACACCATTGTGAAAGGATTTGAGTACACAGCTTCATGTTAACCTATAGTGTCATATAAGTTGATGAAATTGAGAGTTTCAGAAATTTATTTCATCCATTGGTCCAACTTAAGATAGGAAAACAACATAATTTATTTGATTATTTTAAGGAATGTTGCACGGACTTTCCATTATTTATTTATGGATCTATATTTATTGTTTATATATGTAAGAAAACCTTGTATTTGATTTGAATATAAAAAAATACAATATCTTTATTGCTTCCTAAACTCAAGTTGGCATAAGAGCAGCAAACGAAATGTGGTGTAAAAATACAATATCTTTATTTCTTCCTAAACCACTGTCCATTATGCAAGAAAGGCAACAAATAACAAAGCTACTTACTTATGCAATGCACATACGCTCAGAATTTTTGGACAATGATTCTCAATATATTTGTATGACATCTCACATTTCCTAGGAGGTAAAGGATTTATTAGACATGACCTTAACGTACCACCCTTTCAAGAATACAAAAGTCTTATTGTGGAAAAACCTCATCATGACTTTCCTTTGGAGTTTGTAGAAAGAGAAGAATAAAAAAATATTCGCAAAAAAAATTTCTACAAAACTTTTTGACAATGTTGTTGACCAAGCTATATCTTGGTGTAAACTATCTAATATTTTTACTTCCTATAGTTAGAGTAGAGATTCAAGGAACACATCAGCACTTTAGTGTAAGCTTTTATTTCTAATTAAAGCTATCTAGCATTACTTTCCTTTCTTTTTCTAATGAGAATCAATGTTAAAATATTGAGATGTGACAGAAACACTCCCCTAACATTCAAAGGGCGACAAAAACTTATTGAAAAATTAATTATAAAAGCTGTTTTGTTCTAGCATTACTAATCTGGATTTAAATTACACAGTTTGGAAATATGTAGATGTTACCAATGAAATCTGGAATCTTATTGTGCAGGTTAATGGTATGCCAATTACCGTTGGGGTGGGAAATATCATTTCTGAAGAAGGTTTTTCACTGTTGATATCACCTGCTGTGTCTGGACCAGTATGGAAAACTCTAGTTTCTCTAGGCGCTGTTCCAATGGGCTCAGATTTTTTTTGTTGGTTTTGTGTTGTGTCTCAACTTATTTTCTCTCTTTTTTTAGGGTCACCAAACTGATCAATAGAACTTTGGAGAAGCTTATGATAGATTTCTTATGGAAAGAGGTTAATGGAATCTCATTTAGTGTGTGTGATGTGGAGGCTAAGCCATTGGATCTTGGTGGGTTAGGTATAGGCAATTTAAGGGCACGAAATGAGGCCTTGTTATTTAAATCGTCGTAGTGCTTTTTGCAGGAGCCTAGCACCTTATGGAATAAGGCCATTGTAAACAAGTATGGACCCATTGTTTTGAGTGGATTTCAGGTGGGTCTTTGTAAGACAATTAAATAAATCCATGGAAAGCTATCTTTGTTGGGCTTCTCTTTTTCTTTTAGTTTGTTCATCAGTCAAGAGTGATGAGTTTGATACTTTTGGGAGGATAAGTGGTTGGGGGATACACCATTTTTGCTCTTTGTCTCCTTGATTATACCATTTTTGTTCTATGAGTATTGCCTCAGTAGCGTCCGTTCTTCCTACTTCTTGGAGATCTTTCTTGATTATACCATTTTTCTCTCAATATCTGTGGTTGTAGCCAAGTCTTATTTTGCTTGATTGGAGCTCCTGTTATACCGTGAACTCTTGTATCACTTGATAATTTGAGTAAGTTTTGCAGGTATGCCAGCTCCTCAGAAAGAGCTTACCGACGAGTTCAATGTACTCGAAGCTGGTCTTTGGAATTCAATTTCTCTCAACAAGGGTACTCATTTCTTGCCATAAAATTTCATCACACACCTAGCATGGATCGATTATTCAATTTTTAATCTTTGTAGGTTGTTACAAGGGACAAGAGACCATATCTAGACTAATTACATATGATGGAGTAAAACAGAGATTATGGGGACTTCAACTATCAGATTCAGTGGAACCTGGCAGCCCAATAACTATTGATGGGAGAAAGGTAGCTATTTGCATTTTTTAATCTCTGTGGAAACTTAAATTTCTCGATTGCGATTCTGCAACACTCATTCTCAGCAATAAGTAAGTTAAGCCAATTCGTTTGCACGTCGCCTACGGCCAGACAACGTATGCTCGAGCCTCTAGCTCCGATTTAAGAAGAAGGTTTTAGAAAACGGGGGCAGAGAGATTTTCAAAAGAGAGTTTAAAAGCAAGATTTGGTGAGATTAAAAATGGTGTTATATAGCATGCAAGCAAAGGCAACAACAACGACTTAGCAGTATATAACTATTCGGGTAGGGAATATTACGTCAAACCCCAACCAATTCATGAACCTCTTTTTCCTTTCTCAAGAGTGATTTCATAGGCTTTATTAAACTCCTAAGAGCTGTCATGCAGAATTTCTGCCCTTCGCCTCTGCATGAGCATGAAATTTCTGAACTGCATGAGCATGAAATTTCTGAACTGCATGAGCATGAAATTTCTGAACTGCATGAGCACGTTTTAGGTTGAATATGCATACGTTTTGATTGAAATTGTGTGTAGGTGGGAAAGCTGACAAGCTATACACCAGGAAGAAAAGGGTTGGAGCATTTCGGTCTTGGGTACATCAAGAAGCGAGCTGCTTCCAGTGGAGACACAGTAATTGTTGGAGAAAACACCATTGGTAGGGTCGTTGAAGTTCCTTTTTTGGCTCGACAACCACCACTGTCCAACACCTCAAGTAACTTGCCTCGAAGTAGTGTACAATAATTGTTGCTAGTTCATTGGATATTTCTTTTAATAATGTTTAGATACAGATACTTAGACCGATGGTTTTGGAACCCTGTTTGTGCATATCATCGGGGTTTGCTTGTAGTTCAACTGTATTTACAATATCAAACCACATTTTTTTTTCACCATTTGCCTAGGTAGAATTGAGCTTTAAGGATTCTAGCATAAGAAACTTAACTTTTTCAAGTGTTTCCCCTGCAATACTTACTTTAAGATTGGTTGGTTAGAGAGGAGGACGTGTAATGGCCTAAGTCCACCATTAGCAAATATTGTCTTCTTTGAGTTTTTTCTTTCGAGTTTCTCCTCAAGGTTTTTAAGACGCGTCTGCTAGAGAGAAGTTTCTACACCTTTATAAACAATATTTAGTTATCCTCTCCAACTGATGTGAGATCTCGTAATCCACACCCCTTTGGGGGCAAGTGTCCTCTCTCGTTGGTTTGTTTTCCTCCCCTCCAACCGATGTGGGATCTTACAAAACGTGAATAGGTCAAGGGCACGATTCAATGTAGAGAGAGACCTTGTGTTATGTGGCCCTTGGTGGTGGTGTGTTTTGTGTAAAAGTGCCTCGGGAAGAATGAATCACATGCTTTCGAGATGCAAGTCTGTTCCCTTTGGAAATATCGAGAGAATCCCAAAATCTCATCTAATCAAAATCTACCTTTGACCAATTCGTAAAGGATATTACTTAAAGTTTAAGAACTAAATGGACATCTAATCAAAATCTCATTAAAAAAAAAAAAAACGAACAAAAACTCCCAAAATCTCATTAAAAAAAACGAACAAAAACTCTGTAATTTACCGTCACAAATTTTAAATTTAAATCTCTATACGACCTTAGTTCTTATTTTAAAAAAAAATTTAAAAACAATATTTAACTATATGTGTGTATCCATCTACAGATCATTAATAATCCTTTTTATTATAAAATTAAAAAATTTCATTTTTCACGGGTCAGCTGTTAAAAGGGTATTTTTGTCATTAAAAAAAAGCTGTAGAACTGTAAGCCCAATTCGCAGTTTGTTCGTTCGCGGCCCATTGATGATGAACCATACTTGGAGAGCGGACGGAGACTTTAATCCGTCCGTCTCCGAATTCCAAATTTCCAACAACAATTGCAGAGTTGGAAGAAAAAACAAGAGTGGAAGATCTGGAGAAGAAGCTCGCACCTTCAGAAATCTAACCAAAATGAATAAAACAACCATTTACGCTTGGCTTGTAGCAATGGTTTGCTTCGTTGTTTTGATGATTGTTACCCCTTCAATCCCTCAGTCGCAGGAGTACCACGATTTCGCCGATCATCGCCGATTTCTCGGTTAATTTCCCTCTCCTTTTTATATCATCTGCGTTTCTGATTCTTTCCGTCTATTAATGAAATGCCTATCCTCTGTTTACTTGTAATCTATCGCACTTTCATTCCGATATGTTATGTGTAGAGAAATAGGAGTTTTAGAAACGATCCCATATGGAATTCTAGGGTTGAACCGATCAATTTCTTGCTGTTGGATGTATTTCTTTTGTGTTTTTCCTCATCGCAATGGTGCGGAGCCTTTGTTTCGTAATTCCATAAGTCGAGTATGATAGTTAATCTCTCTCTCTCTCTCTCTTTTTTTTTTTAAGAGAATCCTAAATACAGATCTTCTGAATGTCGCTCAGATTGGTTTTGGGTCGCTTTTCAATTTTTAACATGACTTGGGTTCGATGTTTTAAAAGACTAAAGACATTCTCAAGATTCATTCCCTTGAAGAGGCAGGCATAAGTCGGTGATCAAAGTAGAAATGAATCAAATTCCATAACTCATGTTGTATTAGCATTGCATTAAATTAATATTATTCTTCTGATGGTTAAAACGAAGCGAAAAATTTAGCATGAAGATAACTGTGAATGCACCTATTTATTAATGTAATTGTTTCAATTATTTTTAGCATCATACATGTAACGATCATAGTGAGAATCATCACTCTTATTTAATTCTTTTGATAAGTATGTTCCAAAAACCATAAACAGAACTTCCTAGTTCACTTACAAAAGAAGAACCACTATTAATCTAAAAAATTACAAGCCTCTTATGATCTGAAGAAGGCTTAGTCCTCTTTCAATCTAGAGAAGATGTAAACCTTGAGGTATATATAGATAGTTTGAGTTTCACGTCGAGGTCGAGGCTTGATCTGGTTCTCTACTTTTTTTCTTATTCAATTTTTGTTGTTGCATATATATATGTTTTGCTAAATATTGATCTCAAAGTTTTGGCCTTTTCCTTTTTTTCAGGTATACCTAATGCTCTTAACGTGGTTTCGAATTTTCCCTTCTTGGTTATCGGTCTCATAGGCCTTGTCCTTTGTTATCGTGAGAATTACTTTAGGCTGAGGTGCATTTTCTTTTGATATCTTTTGTCTATTATCTTTCCTAATTTTTTGATCTTCTATGATGAAGTAATTTATTGTGCCATATTAATTTTAAATTGATCGTGTTTTCCACAGTTTGAAAGGTGAGCTTTATGGTTGGACTTGCTTTTACATTGGCGTGGCTCTTGTAGCCTTTGGCTCCTCGTATTATCATCTTGAGCCAAACGACGCACGCCTTGTTTGGGATCGTTTACCTGTGAGTCACTTCCCCAATTATGGAGCATTGATTATATAGATTATTTCAAACATCTAATCGTATTGCAAGCAGTATATTGTAATTTTGAATCATTTACTCTTCTGGAAATTGTAGATGACCATTGCATTCACTTCGATCATCTCAATCTTTATTATTGAAAGAATTGATGAGCAGAAGGGAACACTGTCCATCGTGCCTTTATTGTTGGTCGGTATAGTTAGCATTTTATATTGGTGGTAAGTGCTTTCAAATCTTCTTTTAACAGTTAGCATTTTACTAGTTAAACTCGGCATTGTTGTTGTAAACAGTTCGGAATACTTCATCTTATACCATTGAAAAATTGGTTTTGGTACTAAAGTCCAGATTATTAGAGTCATGGAGTAATGCAACATTAATGGGTTAGTGGGAATGTTAGGTTTGACTTTGTTTTGTAAAAACACTGTATGCTAGCCAAAGACCAAGTAATGCCATATTAGTTATTAACGTTACAAATGCAATTCTTGTTCAAATTGCTATATGAGCTTGTGTGTTATTTGTAGTACAAATTAACTGTCTAGCTTTTGAGAATTACGAATCTTCTTTGACTTTTGGATGATCAAAATGCAGTAGGAAAAAGATCTCAAATGTTGCTTTCAAACTTTCAGAGGTTAATGGTTATCTCAACATCGAAATGCTAGAAATACCAGTTTGATTATGGAATGCACTTAGGGAATTTCTGGTCTGGGTTTCTTGCTGTACATGATTGACCTATGTCTTTTGCAGCTTGTTTGATGATCTACGCCCATATGCACTTGTCCAGTTTCTTCCTTGTATTGCTATTCCATTAATGACTATTTTATTACCTCCAATGTATACACATTCTACCTACTGGCTTTGGGCTGCAGGTTAGTTTCTGCTTTAAGGTATTCTGTTGCTGTTTAATGTCTTGCATTAGTGTTGACTGTTGGTAATATGTAATCGTGGATACTTTGTTATTCTTGCAGGGTTTTATTTATTAGCAAAGGTAGAAGAAGCTAGCGATAAACTGATATATAATTGGACATTTCATATTGTTAGTGGTCACACGCTCAAGCACTTATGTGCTGCTATGGTTCCTGTCTTCTTAACTTTGATGCTTGCTAAGCGAACAATTGAACCAGAAAGGCAAGTATTTCTTGCTCTCTATTCTTTTGATTGTTTCAAGTTTGCCATTGTTTATGCAACAATGATTTATTTTGAAAGTGCGTGCTCGTGGAAATGCTTCAAGTAACTCTGAAATACTAAAATGAGACGAAGTAGAAGTAATTATGCAAATGTCTGACATTTCTCTTGCAGTTCTGTTTTTATTCATTTCCGATATGGAATTGAAACTATGTTTGAATAGGATCTTGTTATTTGCATGTTTTAGATTTTATAGGTTTTTAGCATATATATATATATATATATATATATATAATAGAAACAATTTTATTGAGGATATGAAATTACAAAAAGTTGTTAAACTCCAATAAGCCCCAACCCAAGTTTGTTACACAGACCTTATCCAGTTGGATAAAATAGAAGAAATGCTAAAGCACCGACACTTTTGTTTCATTTTCTTGCCAACGAAGGGGTCAAAAGGAATATCCTTATCTTGGAAGATTCTTTCGATACCTTTCTTGCCAAGTAAGCTGGAAGAAAGCCCTGAAGAACTGCATCCAAAGGAGCTTCTTTTCCTTGTTGCAAGGATGACCCAATGATGTAGATATTATATTTTCCATAAAAGTATGGGTCATGGTGCAAACCTTGAAAATTTTGGGTATCTGGCATTGGTCGAGTTGGTTTGACCTTGTTCTATCTCCTCCCAACTTCATGTTCTTATTTTACCCTAAGTCCGATATCCTTGTTAATGGAACATGAATGCTCCATTCTTATGATATGTATATCTCTGTAATGGGATATCTCTTTGAGATCTTTTTGGATTATGATGTTTTTCTCTTTTAGATGGTGCTCTGTCATCCCAAGAGATTCACATGGTTTGCTCACCATCACTTTAGAAAAATCTTCTGATAGTTCTATGGACAACATATCCTCTGTCTCTCACTCTTTCAAATCTACAGTTTATCTTCTCTTTTGGCCGATTGGAGGCGCTTTTTGTAGCCTACCTCGACGTGGGATCAATTTCCACAAATTAGATATTGAGGTGGTAGAGGAGTTGGATGTGGTCTTTGGTGATCAGGATAAGTTATTACTGTTCCTCTTACCTTGTCTGCAAGAAATTGGTCAAATCATGGGAGAATATCCGGGTCTAGGAAAGTAGCATAGCTGGAATGTTTCCCAAATTGTATGCTCTTTCTTCTATTTATCACAAGACCAAACTGTACTTTCATCCATAACTTGCATACTTTACCATTTCAATATATTTGCATTATGAGCCTTTTATGAACACTTGTTTTGTAATGTCTTGCAGGCAGAGTTTATATAAGATTTGGAAGGTGTCATGGATGAAGGTCAGAGATAATAAGACAAAGGTAGAGGCCTCAGCTTGTTCCTTCTCATCTATCCCTGTCCAAGAACCACAATAGTTGTGTAAATTCTTGCCAAGCATATTTAAACTTCGACCAAGTAAATAATGCACTTGTATAGTTGTATGTAAACATTAAGAAACACCACGCAAAACTCAGTTTTCCAGATGTAACCACTTATTAGTTGTCTCCAAAATCTTATATGCTGACTCCAATCATTAATGGAGTATAGGGTAAATCGTAGTTTTTGCCATTGAATACTAACTTATCAATGGATAATATTGTTTTAAATACTCTTTTTCAAGTGCTTAAAAGATTGAAATGACAAATTAAATATTTTTTTACCGTGAATATATGATAAAATATTAGGACTTTTGTCAATGGACCTTTTGATCAAACTTTGGGTTTTTTTTTTTTGAATGAATGACTTGATTTTTAGACCAAATTATATATGATCTACTGTTTAAAAGTAAGGTTACATAACTTTTTAAGTCACAGGTAGTGCGAGAGTGA ATGGCTTCTTACTGGAGCTATGGATTCTCCGTCTCAGATGCTGCGATTCCCTCTACTAGCAGAGCCTTCATCTCCAATCCACGGCCATGTCGTCTACGGCTCCCTGCATTTCGACCTCGGAACATTAGGAAGCCCCATACCAAAGCGAACAGAATCAGAACTTCCTTTTCTGCATTGCCTTTCGACCTCTCCCCTCCTCCGATCGATGAGGACCTTCTTGAGGCTGCAACGACTGAAGGTGCGAGGATTTCTGATGATGGGATTATTGAAACTTTTCATAATGATGATGAAGCGCTGGATGCAGCCAATAATGGGGTTGCAGTTGTGGATCTCTCTCATTTTGGCCGAATAAGAGTTAGTGGAGAAGATCGTTATCAGTTTCTTCAGAATCAAAGCACAGCTAATTTTGAAAGTCTCTGTCAAGGACAAGGATGCAGTACTGTGTTCGTTACACCCACTGCTCGGACAATTGATATTGCACAAGCATGGATCATGAAAAATGCCATCACATTAATTGTTTCGCCAGTGACCCGTGAAAGCATAATTCAGATGCTCAACAAAATGCGTAAACATAAGCTGAATACTTTATTGCATGAGATTCAAGGAACACATCAGCACTTTAGTGTTAATGGTATGCCAATTACCGTTGGGGTGGGAAATATCATTTCTGAAGAAGGTATGCCAGCTCCTCAGAAAGAGCTTACCGACGAGTTCAATGTACTCGAAGCTGGTCTTTGGAATTCAATTTCTCTCAACAAGGGTTGTTACAAGGGACAAGAGACCATATCTAGACTAATTACATATGATGGAGTAAAACAGAGATTATGGGGACTTCAACTATCAGATTCAGTGGAACCTGGCAGCCCAATAACTATTGATGGGAGAAAGGTGGGAAAGCTGACAAGCTATACACCAGGAAGAAAAGGGTTGGAGCATTTCGGTCTTGGGTACATCAAGAAGCGAGCTGCTTCCAGTGGAGACACAGTAATTGTTGGAGAAAACACCATTGGTAGGGTCGTTGAAGTTCCTTTTTTGGCTCGACAACCACCACTGTCCAACACCTCAAGTATACCTAATGCTCTTAACGTGGTTTCGAATTTTCCCTTCTTGGTTATCGGTCTCATAGGCCTTGTCCTTTGTTATCGTGAGAATTACTTTAGGCTGAGTTTGAAAGGTGAGCTTTATGGTTGGACTTGCTTTTACATTGGCGTGGCTCTTGTAGCCTTTGGCTCCTCGTATTATCATCTTGAGCCAAACGACGCACGCCTTGTTTGGGATCGTTTACCTATGACCATTGCATTCACTTCGATCATCTCAATCTTTATTATTGAAAGAATTGATGAGCAGAAGGGAACACTGTCCATCGTGCCTTTATTGTTGGTCGGTATAGTTAGCATTTTATATTGGTGCTTGTTTGATGATCTACGCCCATATGCACTTGTCCAGTTTCTTCCTTGTATTGCTATTCCATTAATGACTATTTTATTACCTCCAATGTATACACATTCTACCTACTGGCTTTGGGCTGCAGGGTTTTATTTATTAGCAAAGGTAGAAGAAGCTAGCGATAAACTGATATATAATTGGACATTTCATATTGTTAGTGGTCACACGCTCAAGCACTTATGTGCTGCTATGGTTCCTGTCTTCTTAACTTTGATGCTTGCTAAGCGAACAATTGAACCAGAAAGGCAAAGTTTATATAAGATTTGGAAGGTGTCATGGATGAAGGTCAGAGATAATAAGACAAAGGTAGTGCGAGAGTGA ATGGCTTCTTACTGGAGCTATGGATTCTCCGTCTCAGATGCTGCGATTCCCTCTACTAGCAGAGCCTTCATCTCCAATCCACGGCCATGTCGTCTACGGCTCCCTGCATTTCGACCTCGGAACATTAGGAAGCCCCATACCAAAGCGAACAGAATCAGAACTTCCTTTTCTGCATTGCCTTTCGACCTCTCCCCTCCTCCGATCGATGAGGACCTTCTTGAGGCTGCAACGACTGAAGGTGCGAGGATTTCTGATGATGGGATTATTGAAACTTTTCATAATGATGATGAAGCGCTGGATGCAGCCAATAATGGGGTTGCAGTTGTGGATCTCTCTCATTTTGGCCGAATAAGAGTTAGTGGAGAAGATCGTTATCAGTTTCTTCAGAATCAAAGCACAGCTAATTTTGAAAGTCTCTGTCAAGGACAAGGATGCAGTACTGTGTTCGTTACACCCACTGCTCGGACAATTGATATTGCACAAGCATGGATCATGAAAAATGCCATCACATTAATTGTTTCGCCAGTGACCCGTGAAAGCATAATTCAGATGCTCAACAAAATGCGTAAACATAAGCTGAATACTTTATTGCATGAGATTCAAGGAACACATCAGCACTTTAGTGTTAATGGTATGCCAATTACCGTTGGGGTGGGAAATATCATTTCTGAAGAAGGTATGCCAGCTCCTCAGAAAGAGCTTACCGACGAGTTCAATGTACTCGAAGCTGGTCTTTGGAATTCAATTTCTCTCAACAAGGGTTGTTACAAGGGACAAGAGACCATATCTAGACTAATTACATATGATGGAGTAAAACAGAGATTATGGGGACTTCAACTATCAGATTCAGTGGAACCTGGCAGCCCAATAACTATTGATGGGAGAAAGGTGGGAAAGCTGACAAGCTATACACCAGGAAGAAAAGGGTTGGAGCATTTCGGTCTTGGGTACATCAAGAAGCGAGCTGCTTCCAGTGGAGACACAGTAATTGTTGGAGAAAACACCATTGGTAGGGTCGTTGAAGTTCCTTTTTTGGCTCGACAACCACCACTGTCCAACACCTCAAGTATACCTAATGCTCTTAACGTGGTTTCGAATTTTCCCTTCTTGGTTATCGGTCTCATAGGCCTTGTCCTTTGTTATCGTGAGAATTACTTTAGGCTGAGTTTGAAAGGTGAGCTTTATGGTTGGACTTGCTTTTACATTGGCGTGGCTCTTGTAGCCTTTGGCTCCTCGTATTATCATCTTGAGCCAAACGACGCACGCCTTGTTTGGGATCGTTTACCTATGACCATTGCATTCACTTCGATCATCTCAATCTTTATTATTGAAAGAATTGATGAGCAGAAGGGAACACTGTCCATCGTGCCTTTATTGTTGGTCGGTATAGTTAGCATTTTATATTGGTGCTTGTTTGATGATCTACGCCCATATGCACTTGTCCAGTTTCTTCCTTGTATTGCTATTCCATTAATGACTATTTTATTACCTCCAATGTATACACATTCTACCTACTGGCTTTGGGCTGCAGGGTTTTATTTATTAGCAAAGGTAGAAGAAGCTAGCGATAAACTGATATATAATTGGACATTTCATATTGTTAGTGGTCACACGCTCAAGCACTTATGTGCTGCTATGGTTCCTGTCTTCTTAACTTTGATGCTTGCTAAGCGAACAATTGAACCAGAAAGGCAAAGTTTATATAAGATTTGGAAGGTGTCATGGATGAAGGTCAGAGATAATAAGACAAAGGTAGTGCGAGAGTGA MASYWSYGFSVSDAAIPSTSRAFISNPRPCRLRLPAFRPRNIRKPHTKANRIRTSFSALPFDLSPPPIDEDLLEAATTEGARISDDGIIETFHNDDEALDAANNGVAVVDLSHFGRIRVSGEDRYQFLQNQSTANFESLCQGQGCSTVFVTPTARTIDIAQAWIMKNAITLIVSPVTRESIIQMLNKMRKHKLNTLLHEIQGTHQHFSVNGMPITVGVGNIISEEGMPAPQKELTDEFNVLEAGLWNSISLNKGCYKGQETISRLITYDGVKQRLWGLQLSDSVEPGSPITIDGRKVGKLTSYTPGRKGLEHFGLGYIKKRAASSGDTVIVGENTIGRVVEVPFLARQPPLSNTSSIPNALNVVSNFPFLVIGLIGLVLCYRENYFRLSLKGELYGWTCFYIGVALVAFGSSYYHLEPNDARLVWDRLPMTIAFTSIISIFIIERIDEQKGTLSIVPLLLVGIVSILYWCLFDDLRPYALVQFLPCIAIPLMTILLPPMYTHSTYWLWAAGFYLLAKVEEASDKLIYNWTFHIVSGHTLKHLCAAMVPVFLTLMLAKRTIEPERQSLYKIWKVSWMKVRDNKTKVVRE Homology
BLAST of Csor.00g262100 vs. ExPASy Swiss-Prot
Match: Q681Y3 (Putative transferase At1g60990, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=At1g60990 PE=1 SV=1) HSP 1 Score: 396.4 bits (1017), Expect = 5.8e-109 Identity = 220/412 (53.40%), Postives = 261/412 (63.35%), Query Frame = 0
BLAST of Csor.00g262100 vs. ExPASy Swiss-Prot
Match: Q67N36 (Aminomethyltransferase OS=Symbiobacterium thermophilum (strain T / IAM 14863) OX=292459 GN=gcvT PE=3 SV=1) HSP 1 Score: 57.8 bits (138), Expect = 4.9e-07 Identity = 40/129 (31.01%), Postives = 70/129 (54.26%), Query Frame = 0
BLAST of Csor.00g262100 vs. ExPASy Swiss-Prot
Match: Q1INT8 (Aminomethyltransferase OS=Koribacter versatilis (strain Ellin345) OX=204669 GN=gcvT PE=3 SV=1) HSP 1 Score: 53.5 bits (127), Expect = 9.2e-06 Identity = 39/129 (30.23%), Postives = 68/129 (52.71%), Query Frame = 0
BLAST of Csor.00g262100 vs. ExPASy Swiss-Prot
Match: B8D1D7 (Aminomethyltransferase OS=Halothermothrix orenii (strain H 168 / OCM 544 / DSM 9562) OX=373903 GN=gcvT PE=3 SV=1) HSP 1 Score: 52.8 bits (125), Expect = 1.6e-05 Identity = 35/127 (27.56%), Postives = 67/127 (52.76%), Query Frame = 0
BLAST of Csor.00g262100 vs. ExPASy Swiss-Prot
Match: B0KD95 (Aminomethyltransferase OS=Thermoanaerobacter pseudethanolicus (strain ATCC 33223 / 39E) OX=340099 GN=gcvT PE=3 SV=1) HSP 1 Score: 49.7 bits (117), Expect = 1.3e-04 Identity = 30/110 (27.27%), Postives = 60/110 (54.55%), Query Frame = 0
BLAST of Csor.00g262100 vs. NCBI nr
Match: KAG6588802.1 (putative transferase, chloroplastic, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1169 bits (3023), Expect = 0.0 Identity = 588/588 (100.00%), Postives = 588/588 (100.00%), Query Frame = 0
BLAST of Csor.00g262100 vs. NCBI nr
Match: KAG7022574.1 (putative transferase, chloroplastic [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 645 bits (1664), Expect = 3.03e-227 Identity = 345/424 (81.37%), Postives = 347/424 (81.84%), Query Frame = 0
BLAST of Csor.00g262100 vs. NCBI nr
Match: XP_022927742.1 (putative transferase At1g60990, chloroplastic [Cucurbita moschata]) HSP 1 Score: 638 bits (1645), Expect = 2.33e-224 Identity = 341/424 (80.42%), Postives = 345/424 (81.37%), Query Frame = 0
BLAST of Csor.00g262100 vs. NCBI nr
Match: XP_022988791.1 (putative transferase At1g60990, chloroplastic [Cucurbita maxima]) HSP 1 Score: 635 bits (1637), Expect = 3.82e-223 Identity = 340/424 (80.19%), Postives = 345/424 (81.37%), Query Frame = 0
BLAST of Csor.00g262100 vs. NCBI nr
Match: XP_023531687.1 (putative transferase At1g60990, chloroplastic [Cucurbita pepo subsp. pepo]) HSP 1 Score: 622 bits (1603), Expect = 4.63e-218 Identity = 335/424 (79.01%), Postives = 340/424 (80.19%), Query Frame = 0
BLAST of Csor.00g262100 vs. ExPASy TrEMBL
Match: A0A6J1EI20 (putative transferase At1g60990, chloroplastic OS=Cucurbita moschata OX=3662 GN=LOC111434553 PE=3 SV=1) HSP 1 Score: 638 bits (1645), Expect = 1.13e-224 Identity = 341/424 (80.42%), Postives = 345/424 (81.37%), Query Frame = 0
BLAST of Csor.00g262100 vs. ExPASy TrEMBL
Match: A0A6J1JI89 (putative transferase At1g60990, chloroplastic OS=Cucurbita maxima OX=3661 GN=LOC111486027 PE=3 SV=1) HSP 1 Score: 635 bits (1637), Expect = 1.85e-223 Identity = 340/424 (80.19%), Postives = 345/424 (81.37%), Query Frame = 0
BLAST of Csor.00g262100 vs. ExPASy TrEMBL
Match: A0A6J1DYD6 (LOW QUALITY PROTEIN: putative transferase At1g60990, chloroplastic OS=Momordica charantia OX=3673 GN=LOC111025359 PE=3 SV=1) HSP 1 Score: 564 bits (1454), Expect = 1.62e-195 Identity = 311/436 (71.33%), Postives = 329/436 (75.46%), Query Frame = 0
BLAST of Csor.00g262100 vs. ExPASy TrEMBL
Match: A0A0A0KJI9 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_6G417880 PE=3 SV=1) HSP 1 Score: 557 bits (1435), Expect = 1.32e-192 Identity = 306/433 (70.67%), Postives = 323/433 (74.60%), Query Frame = 0
BLAST of Csor.00g262100 vs. ExPASy TrEMBL
Match: A0A5D3CQT8 (Putative transferase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold496G00010 PE=3 SV=1) HSP 1 Score: 548 bits (1413), Expect = 2.85e-189 Identity = 301/433 (69.52%), Postives = 321/433 (74.13%), Query Frame = 0
BLAST of Csor.00g262100 vs. TAIR 10
Match: AT1G60990.1 (Glycine cleavage T-protein family ) HSP 1 Score: 396.4 bits (1017), Expect = 4.1e-110 Identity = 220/412 (53.40%), Postives = 261/412 (63.35%), Query Frame = 0
BLAST of Csor.00g262100 vs. TAIR 10
Match: AT1G60990.2 (Glycine cleavage T-protein family ) HSP 1 Score: 396.4 bits (1017), Expect = 4.1e-110 Identity = 220/412 (53.40%), Postives = 261/412 (63.35%), Query Frame = 0
BLAST of Csor.00g262100 vs. TAIR 10
Match: AT1G60990.3 (Glycine cleavage T-protein family ) HSP 1 Score: 396.4 bits (1017), Expect = 4.1e-110 Identity = 220/412 (53.40%), Postives = 261/412 (63.35%), Query Frame = 0
BLAST of Csor.00g262100 vs. TAIR 10
Match: AT1G71190.1 (senescence associated gene 18 ) HSP 1 Score: 369.0 bits (946), Expect = 7.0e-102 Identity = 177/217 (81.57%), Postives = 194/217 (89.40%), Query Frame = 0
BLAST of Csor.00g262100 vs. TAIR 10
Match: AT1G71190.2 (senescence associated gene 18 ) HSP 1 Score: 317.8 bits (813), Expect = 1.9e-86 Identity = 151/204 (74.02%), Postives = 172/204 (84.31%), 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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