Clc01G00440 (gene) Watermelon (cordophanus) v2
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.TTTGAAACGTCTACTTCTGAGATTTTGAATATAACCTTGACTTCGCTGTAATGGTATTGGTATGGCAGTTGTTCTAAATTCTAATGTAATCCCTACGATTCCAACAATAAACTCATTTTCCTCTCTGTTTCCTTTCCATTCTCCGCCCTTTTCTCCCTCCCCTCTTTTCTTTTCCACGGTAATCTTCTCCCTGCTATGTCCTTTCTGTTCTTGATTTTGCGTCTAAAGTTTCGATTAAGAATCTTTTTGACCGCGATTACTGTTGTATTTCGTTTCTGCTGAAGTGTATTTACTTGTTCACTTCATCTTCTGGGTAGGCTTTCGATTTTTAGGGTCGAATTTGAAAGTGCGTTTCTATTCTCTGTTGTTATTTGGGTTGTTTAGGATCAGAGCAAATTATGTAGAATTCCCTTCGTGTTGTTTTACTAATCGTTTCGTATTGGAATTTGGATACCCATTTTCAGAATTATCTATTTGTTGATTGAAATCCCTTTGCTCGGATTAATCATTGAAGCTATACCCCACCCATAAGTTTTTTCTTCTTCCAATTCTTATACATATGCAGTTAAAGCTAAGCGAATCAGTTTTTCTAGTGTTAGCCCCTTTCGAGGTTCATGAAGTGATAGACCGTATTTTGGACCATTGAGGTTTGATTACTTATTTGTGCATTTCTTTCAAATATTCCAAACAACGCCAGGATTGAATGATAATTGTATTTCTCTTCTGAACACACTCGTTCACTAAGTTGGCTGCTTAGACACTGTGACCATATCATTGCCATCCGTTGATAAGGTTCTCTTTAGCTAGAATTTGCTTCCGAAACTATATCACACTACGGACATGAGAAAAATGTTGTGCAAAAGGATGTAGTCTTAAATTCTTGGAAAGGGTAAGAAGAATGAGTTGAGAACCATTTAGAGTTTTGCCCATCTTTTTTTCCAAGTGCTATGGATGGGGACATTTCATTACTTGAGCTAGAAAGCTGAGTTTTGTCCATCTGAATCAAGCTTTGGTATTGTGATTCCCAAACTAATCTATGGTTATTGCTTTTACTTTCTGTCCTTTAGCTGCTTTATCTGTAGCATACTTTTTGCAGATTGCTGTGGTATTGAATTTAATGTCTAACTACTAGTTGTCTCGTCTGTACAAAACCAGTCTTAGTGTTAGAGGAGTAATGGCTGCAGCAGAAGCAAAGCCTCCACGAAAGCATTTGGGAAACCACTTCCCTGACCAAGATGATGGCTACAGAGATTCAAAATTATTGTCAACTCCATCGTTTTCCTCAAATTCAGAACGCAATGCATCTGATCACAGAGCACATGAGATTAGTTCTCCAACCAAAGCTGCTCATATCCCAACATCTTATCAAACAGTTGACTGTGAATTGAAATCAGATCAGCAACCTGATTTTCATCACCATACGGGTTTTGCAGTAGGATTGGCAAACACTTTGCAGGCTGGAGTGGATAATTCAAGTGTCCGGATTGCAAGTAAGACAACTGCATCTGGTGAGGAACATCGAAACATAGAAGAACTTGATCATCGAGTTTGCAAGGGATATGTTGCCACTGAGGCTGTGAGTAATAATCAATCGGTAAACATGACTAAGAAAACAGATTGCATGGATGAGTTCGACTACATAGAGGATCATTTTACAGACTTGCACAATTTTGACGGTCAGATCTCCAAGCAAGAAGAGAAGGTCCCTTTTGATCTGGAGTCGCATTGGACAAAAATTGAGAAGACTAAGCCATGGTGGCGTTCTGCTAGTAAAGATGAGTTGGCTTCCTTGGTTGCCCGGAAGTCTCTTGAAAACTTGGAAAATTGTGACCTTCCTCAACCACGAACCAAACACCAGGGCAAGGATGAGTCTACCTGTCTTGAGTGTTCTGATCAAGATTGCTTTCTCCATTCACCGTTTACTGAGATGCAATTCTCCAGTTTGGATGGATATAACAGGGGAATGCACCCTTCAGGTGGCATGGGTGAGAGACAGTTCATTGTTAGTAGTGTAGGTCACTCGCTGCGTCATCAAGATCATTTCAGGTATTGTTCGAGTACAAATTCTGCATTTTTTTTGGCTTTTTGGTTATCGTTTTCAGTTTATTTAAGAAGTTTCTTTAATTGAGTGATCTGTCAGTATGTTTACCTGAACCATAAACTGTCCATTCGCATGATTTTAAGATATTTGAAGTTCAGATGGAATGAACCAGTGGTTGGATAATGCGGTAGTGATTATTATTTCAATTAGAATTGTGTTAAAGAAAGAAAAGTAAAAATCATGTGTCAGACGATGCAATTTTGTGTTGGGACAATAAGGCATCCTGTACTCTAAAGCCAAGAGAGACTAGAAACAATTCAGATCACAAAATCCATACAGAGTAGCATACAGGAAAATCAAATTCTTGAAATATTCTTACTGCGAGTATTCTAAATAATTTTATGCAACATGCTCCCTTAAGCTGTTAGTTCACTTTGTATGTTTCTCCTTTATGTTCATTATCTTACTGCAAGTATTCTAAATTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTAAGAATGTGGTTGCTCTCCTGTTCTTATATTTCCCATTCTCTTGGGAATTTGGCTTAGAAAAGCCTTGAACATAAAGAATATAGGTTTCTTGGTGCTTAAATTGTCAAAGCTGTAAAATCAATCACTGGCAGCATATCCATTTCTTCTCGATATTTCCACTGCTTTCATGTCTTTGTGGTCACTTGTACTGTCTGAAAAGCTAGGTTGATTATCAAGCCATAAAAAGATAACTATCTGTAATGACAGCATTAGCAGAAGTGGCAATGAAGAAAACAACTCATGTAGTATTTCATATCTTAATTCTACTAGCAAAGCACAATTGTTGGAAGCGCTATGCCATTCACAAACTCGAGCAAGGGAGGCTGAGAAAGCCGCACAAGAAGCAGATACAGAGAAGAAGCACATTGTCTCACTCTTTCTCAGACAAGCCACCCAACTTTTTGCTTATAAGCAGTGGTTCCAGTTGCTGCAGTTACAGAACATTTGCCTTCAACTTAGGAACAAAGATCAGCCAACCACTGGTCTATTCTCAGATGTCTTGCCTTGGGTCCCTTGTAAAGACAGGCAATTCAATCAACCTAGAAACAGAAGGAAGAAAAGGGACCGAGACCATCGTGAATTTACAATGTATGACATTGCTTTCGCTGTGGGGTTGGGTCTTGCTGGTGCCAGTTTGCTCCTCGGCTGGACAACGGGTTGGTTGGTTCCCATCTTTTGAGTTTCTAAACATCTCATACTAGCAGTTCATTCTCTGGTTCACTTTGGAGTCCCTGGTCAAGGCAACTAGTTCTCATGGGATAACATCATCTTCCACATCACAAAATCAACCTTTTGTAAATATGTAGAGCCTTTGTATGTGTTTGTGCTTGACCAACTCTTGGAAAAACTGTAATTTGTATACAAAACAACATGTAAATGTATGGCAAACCAAACTACATGTAAAAATTATTTTCCAAAATGCTGTTAACCACAGGTTTTGTATTTGAGTTATTGTCTCCTTCAAACTCTCTTTTGTGTCTGGGAAGTTGAACATTTTCCATCTTGCTTAATGGAAGAAGAAGAAGAAGTTTGCTTTTTCTCCACTTTGGTATCCACTAAAGTGTGAGACGTCTTTCCTACTTCTCTTCCCTTTCCTTTTTATGAAAGTCATATGCTTCATAAACTCAGCTTCTCGGTGTCGAGGCTGAGATTTCAATTTTATGGTATATAGAAGGATATATGAATAAAATATTGATATTGACAAAAGTTACTTAGACTAATAATTGAATTATTTTTACTCCCAAGCTAAATTATCGATATTGTTATTAATATTTCTATTTATATTAGACTAAATAGATTATTGTTTTTTATTTTTTTATAAACATTTATAAAAGATATTAAAGATGTGAATGAATATTTAATATAGATGTTATGAATACTTTTTTTTTCATGTTTTAGTGCATAAATGAAGCTAATATGAAAGGTTGGTTTAAAACAAAATTTTAAAAATGGGAAGTCCACATATATATATATATATACAGACACACACATATAATTGAAACTTATTCCTAGAGTGAAGAATATTTTGTACAATTTAAACATTAACTCTTTAATCTCAACTAAAACATAAACTTAACTTCTTTTTTTTTTTTAAATTACAAATATTATTAAACTAAAATAATGATAAATATAAAAATCAGTGGAAATGAAGCTCCGGCATTGTCTGTTTGACTTTTGGTTGAATACCGACCTTCTTGTGTTGGTTCCCATGTATCCGCCGCGTGTTCGCGCCAACCACTCAATACCCTTTTTGGCTGTTTATCATAATCCAATTCCCAAAATTCCCCAATTCACCAATACCCAATTTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCTTCAGCTTCCAAATATGCCCTTCATCGAGGTTAACACAAGCACCGCCGTCGCGGAGGACGCCAAGATCAACTCAGCAATCAAAATTTTCTACAGAACTTACGGACGCGGATCGACCAAGGTCCTTCTTATCATAGGTCTCTTCAAGATTGTTCCATTCTTCCGTGTTTTCCCTTTTTATTTCTCCTTTTTTGGTACTCGATTCTGATGGCTGTGAAATGGATGAATCGATGATGGGCAGGATTGGCCGGAACCCACGATTCATGGGGCCCCCAAATCAAAGGGCTTACAGGGACCGATGTGCCTAATGACGACGGCGATCGGAATGCCGCCCATGTCGGCGAAGAACCCACCTTCGAAGATGATGGTGGTATCGAGGTTTGTGCATTTGATAATCGGGGAATGGGTCGGAGCTCCATCCCCACCAAAAAATCTGAATATACGTGAGTTCCACATTCGTTTGTTTGTGAATCTCAATATCTCTTATCGTTGTTGAGTGTCTGAGAAAATTGATTAGAATTTTGGGGATTCTGTTCAAAATACCCTAAAAGAAAGAGAAATGGAAATAAATAAATAAATAAAAGTCCTTCTTTGCTGGGTTTCATTTTATTTTTGTTTCATGGTCCAGGAGAAGCTATTAGAGCAAAAAAGACACTTGCATTTAGTTTGTAATCTGGCTTTTTCTTTTCTTTTCTTGGTTGTGCAGAACAAAGATAATGGCCAAGGATGCCATTGCCTTATTGGACCATTTGGGGTGGGAAAAGGCTCATATTTTTGGTCATTCCATGGGTGAGTGAGTTTTTAACTCTGCTCAATGACTTCTGAACAAAAAATAGTGAAAGTATTACCTTCTTGTAGTTATCAGTTCTTTATTATTACATGGCATCTGGTTATCACTGTAGGAGGTATGATAGCTTGCAAATTAGCAGCTATGGCACCCGAAAGAGTCAAGTCATTGGCCATGCTCAATGTAACTGGCGGAGGTTTTCAATGTTGCCCCAAGGTATCTGGATAAATATTTAGTTCTTTCACTCTGAGCTGTGTATTTGTCATACAATCTTCAGAAAAATATAAAAAAGCTGCTCGCATGTTCTTTCATTCGTTTAGGGTCTAAATATTTTATGAAACATAGAAAGGATAATAAATTACTACTAGTTATAAGTTAGTGAAGATGAGGCTTAGAGCTTGAATTTAATATAAAAGGTCAGGTCATTGATTGAAATCCCAAAAATACTATTCCGTTGTGGTTGAGCTGTTTCTTAAGGAATAATGCTGATGCCTTTCTTCTCACTCTTTCTTGTAGCTTGACAGGCAAACTTTCGACATTGCAGTTAGATTCTTAAAGGCCAAGACTCCTGAACAAAGGGCTAGTGTTGATTTAGATACCCACTATTCTAAGGTAAAGTTAATCTTCATGTCTATCCTCTATTATCTTCGACGATGTGTGAATTTGAACGAGGATGCGTAGATAAATAATTGTTAACACCTTGAAACAAGTAGACTATCTTATTCTGAGAAATATTATTGTATCTCATGGTGCAGGAATATCTTGAGGAGTATGTTGGATTTGAAAAAAGAAGAGCAGTTTTATATCGGGTATGTATGATGGGCGGATCATTCTTAACTGGCTTTAGTAGTCTTCATAGTTGGATTCTGGCACTCTTATCTTTTCATTAAACCTGATCCTGCCGCATTACTCTTTTCAAACCACCCTCTCCTCCTGAGACTTCCCAAAAAAGGATGGGAAAATAGAAACAATAAGTTAGTTATTACTTCTTTCTACGGCTTCAGAAGCTTACTGTTGGTGTTGAAATTAAGAGATTGAATGAATGTAGCCACTAGTTCGGGCTATGATCAAAACCAAGGAAGATTTGACGGGCACGGAGAATCGCTAACATCAGTATCGCCAACCTTCAATGCAGTTCAAACCATTATTATCATTGATGCCCTTGCTCGGCAAATTGGCTTCACTCCATTTTTCTTCTTCCATTCAAAAAGGAAATAAAAGAAAAACAGAAACATGGAACAGACAATTTAAGAAAGATGAAACCCTAACGAAACTCTAAGAGAAAACGGTGACATTGACGAAGATGAAACCCTAAAAATATAGAGAGGGAGAGTTCACTGTAAGCAGATTACTAAAGGTGTTGAAATTAGTGTGAAATATAGCTACACTGCCCTGTAGGGTTGTATTTTTTCTCTGTCAACCAGTTAATTCTACCGTCACTAGTTGCTTCAAATTCAACTGATCTCACAGAGTCTTTAGATCGTTTGGAACTGTACAACATCCCATCTCAAAAATAAACATACTCCTTCGGCGATACAGATCTATAACTGCATACATAGAAATACAAATGCTTGTATGATTGTTTTTGAGATTTTATTCCTACTTGATGGTAAATCATGATATTAAGTTATTGACTTACAACAGCCAAGTGTTTCGGGCAATGACCGCTGCTTATGGAATCTAACCATGAAGGAAATGGAGTCAAACATCCCTGAACCCTCTTAGAACAAACTTCTTTTGAACTTCCTTATGAAATGACTTTAACGAAAAGGAATGAGTTAAACCAAAAACTGATGTCAGAGATAAGGAAATCTGTTTGAGTAAGGTGCACCATCTTCCCGTAAATCAAGTTATTTGACACTACATTGTGGTAGTTATGTTCTTGAGTCTCAATTCCTGAGTATAAATAGTACCGTCCCAGATAGCTAATTGTTTATGAGATTTATCAAAGTCGCTAAATGACATTTAAATTTGTATGTACAGATAGATGTATGTATTTGTAGATAGGTCTCTGCCAAAATGGATGAGTCTTTTTGAAACCATGTGCATATATTGAGAGACATCTTAATGTTTGGGGAACTTGTTAAAAACTAGAGGTGTCTATGACACCATTCATTGGTTTGTTTATATTGATTCTTCATGGTATCTCTATCAACTGTTTTTCTGTGGACTGAGAAATTTGGATCCTTGGTCTTAGAATTTTCATGTTTCCCCAAGATCATTCATTATTTGGATCCATAGTAGAGATTTGGACATCTGTTCTCAAAAAAGAGAAGTGGTATCTTAACTATCAAGTTATGCTCATGTTAGCTGATTCTCCAGTTTATGACATAACATGTGCACACACGTAAATACATACATTACATTTAGAGCCCTAGCCAACTTCAAACAATTATTTGCAGGAATATGTTAAAGGTATATCAGCAACAGGAATGCAGTCTAATGATGGCTTTGTGGGTCAAGTCAATGCATGCTGGATGCATAAAGTGACAAGAAAAGAGATCGAATGCCTTCAGTCTGCTGGATTTCTTGTATCAGTCATTCATGGCAGGTAACCAATCACTTCTGTTAATAGCTATGAAATGATGAATGACATCCAAATCTGCAAAAGGTGTTCGCATGAGCATATTTGTATTACCTACCACTTATCATGTAAATATATTTTACTTCGTCATTGATTGATGACTAATTCATTTTCAACGACCAGGCACGATGTTATTGCTCAGATGTACTATGCAAGAAGACTTGCAGAGAAGCTGTATCCTGTTGCTAGAATGGTAGATCTCCATGGAGGTCATCTAGTCAGTCAAGAGAGAACTGAAGAGGTGTACTTTCTTTTACCGGAATCTAAATTGTGTTTTTCACTACGTCTAGTTGACAACAAAAACTGACAAGTTTGTTTTCTATGAAAATTCAGGTAAATCAAGCTCTTCTTGACTTAATCAGAGCCTCAGAAACAAAGATGAGTCCACATGACTGGACAAACTTGCCAAAGAAAAGCTCATGTGAGCATTTTTCTTCTAGTATTCCTCTATTTCTCTTTGGTTCTTGCCAGTGCTGAAAACTAATTTGTTTCTAACAGGGTGGATGAAGGAGAGAATGGCTTTTGTAACACTGAAGACTGAAGGAGGAAGCAGTATCTCCTCCAAACCTTTCTTGTTAGAGAGATTCCATCTTTTCTTCTTGTATATCTTTGGCCTGATTCTTTTGGTGTTCGAGTATCTCCGGAACACCCTCAAAAGCTTGAAACCGGTCCGAGTCGGAGCCTCCCTTACATGAATAAACATTTCAAAGACCCTAAATTTTTACAGGTGAGTTATCTGAATGTCCCTCTACTTCCTTTGAACTCAACCTGAAAGAGAAGTGTAAAAGTTGGTTTTTGCTTCAACTTTGTTGCAGAGTCTGTTTCATTTTTGCTATCTGATGGGCAATTGCTCCAATCATCAAAGTGAAGTTGGGGAATGAGTTCACTTCTAATATTGAGAACTTTTAAGATCAACACAAGAGAGGGAAATCAGCAAAAGCTCAATTGTTAAAGGTTGATGTATACCCTTCCTACTGGGTAAATTGTAATCTAAAACATTGGAACTGTTAATTATATATACCCTTTCTGTATAATTTATAAAAGTGTTCATATTATATTATAGCTAAGTCTAGAGATTTAGAG TTTGAAACGTCTACTTCTGAGATTTTGAATATAACCTTGACTTCGCTGTAATGGTATTGGTATGGCAGTTGTTCTAAATTCTAATGTAATCCCTACGATTCCAACAATAAACTCATTTTCCTCTCTGTTTCCTTTCCATTCTCCGCCCTTTTCTCCCTCCCCTCTTTTCTTTTCCACGGTAATCTTCTCCCTGCTATGTCCTTTCTGTTCTTGATTTTGCGTCTAAAGTTTCGATTAAGAATCTTTTTGACCGCGATTACTGTTGTATTTCGTTTCTGCTGAAGTGTATTTACTTGTTCACTTCATCTTCTGGGTAGGCTTTCGATTTTTAGGGTCGAATTTGAAAGTGCGTTTCTATTCTCTGTTGTTATTTGGGTTGTTTAGGATCAGAGCAAATTATGTAGAATTCCCTTCGTGTTGTTTTACTAATCGTTTCGTATTGGAATTTGGATACCCATTTTCAGAATTATCTATTTGTTGATTGAAATCCCTTTGCTCGGATTAATCATTGAAGCTATACCCCACCCATAAGTTTTTTCTTCTTCCAATTCTTATACATATGCAGTTAAAGCTAAGCGAATCAGTTTTTCTAGTGTTAGCCCCTTTCGAGGTTCATGAAGTGATAGACCGTATTTTGGACCATTGAGGTTTGATTACTTATTTGTGCATTTCTTTCAAATATTCCAAACAACGCCAGGATTGAATGATAATTGTATTTCTCTTCTGAACACACTCGTTCACTAAGTTGGCTGCTTAGACACTGTGACCATATCATTGCCATCCGTTGATAAGGTTCTCTTTAGCTAGAATTTGCTTCCGAAACTATATCACACTACGGACATGAGAAAAATGTTGTGCAAAAGGATGTAGTCTTAAATTCTTGGAAAGGGTAAGAAGAATGAGTTGAGAACCATTTAGAGTTTTGCCCATCTTTTTTTCCAAGTGCTATGGATGGGGACATTTCATTACTTGAGCTAGAAAGCTGAGTTTTGTCCATCTGAATCAAGCTTTGGTATTGTGATTCCCAAACTAATCTATGGTTATTGCTTTTACTTTCTGTCCTTTAGCTGCTTTATCTGTAGCATACTTTTTGCAGATTGCTGTGGTATTGAATTTAATGTCTAACTACTAGTTGTCTCGTCTGTACAAAACCAGTCTTAGTGTTAGAGGAGTAATGGCTGCAGCAGAAGCAAAGCCTCCACGAAAGCATTTGGGAAACCACTTCCCTGACCAAGATGATGGCTACAGAGATTCAAAATTATTGTCAACTCCATCGTTTTCCTCAAATTCAGAACGCAATGCATCTGATCACAGAGCACATGAGATTAGTTCTCCAACCAAAGCTGCTCATATCCCAACATCTTATCAAACAGTTGACTGTGAATTGAAATCAGATCAGCAACCTGATTTTCATCACCATACGGGTTTTGCAGTAGGATTGGCAAACACTTTGCAGGCTGGAGTGGATAATTCAAGTGTCCGGATTGCAAGTAAGACAACTGCATCTGGTGAGGAACATCGAAACATAGAAGAACTTGATCATCGAGTTTGCAAGGGATATGTTGCCACTGAGGCTGTGAGTAATAATCAATCGGTAAACATGACTAAGAAAACAGATTGCATGGATGAGTTCGACTACATAGAGGATCATTTTACAGACTTGCACAATTTTGACGGTCAGATCTCCAAGCAAGAAGAGAAGGTCCCTTTTGATCTGGAGTCGCATTGGACAAAAATTGAGAAGACTAAGCCATGGTGGCGTTCTGCTAGTAAAGATGAGTTGGCTTCCTTGGTTGCCCGGAAGTCTCTTGAAAACTTGGAAAATTGTGACCTTCCTCAACCACGAACCAAACACCAGGGCAAGGATGAGTCTACCTGTCTTGAGTGTTCTGATCAAGATTGCTTTCTCCATTCACCGTTTACTGAGATGCAATTCTCCAGTTTGGATGGATATAACAGGGGAATGCACCCTTCAGGTGGCATGGGTGAGAGACAGTTCATTGTTAGTAGTGTAGGTCACTCGCTGCGTCATCAAGATCATTTCAGAAGTGGCAATGAAGAAAACAACTCATGTAGTATTTCATATCTTAATTCTACTAGCAAAGCACAATTGTTGGAAGCGCTATGCCATTCACAAACTCGAGCAAGGGAGGCTGAGAAAGCCGCACAAGAAGCAGATACAGAGAAGAAGCACATTGTCTCACTCTTTCTCAGACAAGCCACCCAACTTTTTGCTTATAAGCAGTGGTTCCAGTTGCTGCAGTTACAGAACATTTGCCTTCAACTTAGGAACAAAGATCAGCCAACCACTGGTCTATTCTCAGATGTCTTGCCTTGGGTCCCTTGTAAAGACAGGCAATTCAATCAACCTAGAAACAGAAGGAAGAAAAGGGACCGAGACCATCGTGAATTTACAATGTATGACATTGCTTTCGCTGTGGGGTTGGGTCTTGCTGGTGCCAGTTTGCTCCTCGGCTGGACAACGGTGGAAATGAAGCTCCGGCATTGTCTGTTTGACTTTTGGTTGAATACCGACCTTCTTGTGTTGGTTCCCATGTATCCGCCGCGTGTTCGCGCCAACCACTCAATACCCTTTTTGGCTCTTCCAAATATGCCCTTCATCGAGGTTAACACAAGCACCGCCGTCGCGGAGGACGCCAAGATCAACTCAGCAATCAAAATTTTCTACAGAACTTACGGACGCGGATCGACCAAGGTCCTTCTTATCATAGGATTGGCCGGAACCCACGATTCATGGGGCCCCCAAATCAAAGGGCTTACAGGGACCGATGTGCCTAATGACGACGGCGATCGGAATGCCGCCCATGTCGGCGAAGAACCCACCTTCGAAGATGATGGTGGTATCGAGGTTTGTGCATTTGATAATCGGGGAATGGGTCGGAGCTCCATCCCCACCAAAAAATCTGAATATACAACAAAGATAATGGCCAAGGATGCCATTGCCTTATTGGACCATTTGGGGTGGGAAAAGGCTCATATTTTTGGTCATTCCATGGGAGGTATGATAGCTTGCAAATTAGCAGCTATGGCACCCGAAAGAGTCAAGTCATTGGCCATGCTCAATGTAACTGGCGGAGGTTTTCAATGTTGCCCCAAGCTTGACAGGCAAACTTTCGACATTGCAGTTAGATTCTTAAAGGCCAAGACTCCTGAACAAAGGGCTAGTGTTGATTTAGATACCCACTATTCTAAGGAATATCTTGAGGAGTATGTTGGATTTGAAAAAAGAAGAGCAGTTTTATATCGGGAATATGTTAAAGGTATATCAGCAACAGGAATGCAGTCTAATGATGGCTTTGTGGGTCAAGTCAATGCATGCTGGATGCATAAAGTGACAAGAAAAGAGATCGAATGCCTTCAGTCTGCTGGATTTCTTGTATCAGTCATTCATGGCAGGCACGATGTTATTGCTCAGATGTACTATGCAAGAAGACTTGCAGAGAAGCTGTATCCTGTTGCTAGAATGGTAGATCTCCATGGAGGTCATCTAGTCAGTCAAGAGAGAACTGAAGAGGTAAATCAAGCTCTTCTTGACTTAATCAGAGCCTCAGAAACAAAGATGAGTCCACATGACTGGACAAACTTGCCAAAGAAAAGCTCATGGTGGATGAAGGAGAGAATGGCTTTTGTAACACTGAAGACTGAAGGAGGAAGCAGTATCTCCTCCAAACCTTTCTTAGAGATTCCATCTTTTCTTCTTGTATATCTTTGGCCTGATTCTTTTGGTGTTCGAGTATCTCCGGAACACCCTCAAAAGCTTGAAACCGGTCCGAGTCGGAGCCTCCCTTACATGAATAAACATTTCAAAGACCCTAAATTTTTACAGAGTCTGTTTCATTTTTGCTATCTGATGGGCAATTGCTCCAATCATCAAAGTGAAGTTGGGGAATGAGTTCACTTCTAATATTGAGAACTTTTAAGATCAACACAAGAGAGGGAAATCAGCAAAAGCTCAATTGTTAAAGGTTGATGTATACCCTTCCTACTGGGTAAATTGTAATCTAAAACATTGGAACTGTTAATTATATATACCCTTTCTGTATAATTTATAAAAGTGTTCATATTATATTATAGCTAAGTCTAGAGATTTAGAG ATGGCTGCAGCAGAAGCAAAGCCTCCACGAAAGCATTTGGGAAACCACTTCCCTGACCAAGATGATGGCTACAGAGATTCAAAATTATTGTCAACTCCATCGTTTTCCTCAAATTCAGAACGCAATGCATCTGATCACAGAGCACATGAGATTAGTTCTCCAACCAAAGCTGCTCATATCCCAACATCTTATCAAACAGTTGACTGTGAATTGAAATCAGATCAGCAACCTGATTTTCATCACCATACGGGTTTTGCAGTAGGATTGGCAAACACTTTGCAGGCTGGAGTGGATAATTCAAGTGTCCGGATTGCAAGTAAGACAACTGCATCTGGTGAGGAACATCGAAACATAGAAGAACTTGATCATCGAGTTTGCAAGGGATATGTTGCCACTGAGGCTGTGAGTAATAATCAATCGGTAAACATGACTAAGAAAACAGATTGCATGGATGAGTTCGACTACATAGAGGATCATTTTACAGACTTGCACAATTTTGACGGTCAGATCTCCAAGCAAGAAGAGAAGGTCCCTTTTGATCTGGAGTCGCATTGGACAAAAATTGAGAAGACTAAGCCATGGTGGCGTTCTGCTAGTAAAGATGAGTTGGCTTCCTTGGTTGCCCGGAAGTCTCTTGAAAACTTGGAAAATTGTGACCTTCCTCAACCACGAACCAAACACCAGGGCAAGGATGAGTCTACCTGTCTTGAGTGTTCTGATCAAGATTGCTTTCTCCATTCACCGTTTACTGAGATGCAATTCTCCAGTTTGGATGGATATAACAGGGGAATGCACCCTTCAGGTGGCATGGGTGAGAGACAGTTCATTGTTAGTAGTGTAGGTCACTCGCTGCGTCATCAAGATCATTTCAGAAGTGGCAATGAAGAAAACAACTCATGTAGTATTTCATATCTTAATTCTACTAGCAAAGCACAATTGTTGGAAGCGCTATGCCATTCACAAACTCGAGCAAGGGAGGCTGAGAAAGCCGCACAAGAAGCAGATACAGAGAAGAAGCACATTGTCTCACTCTTTCTCAGACAAGCCACCCAACTTTTTGCTTATAAGCAGTGGTTCCAGTTGCTGCAGTTACAGAACATTTGCCTTCAACTTAGGAACAAAGATCAGCCAACCACTGGTCTATTCTCAGATGTCTTGCCTTGGGTCCCTTGTAAAGACAGGCAATTCAATCAACCTAGAAACAGAAGGAAGAAAAGGGACCGAGACCATCGTGAATTTACAATGTATGACATTGCTTTCGCTGTGGGGTTGGGTCTTGCTGGTGCCAGTTTGCTCCTCGGCTGGACAACGGTGGAAATGAAGCTCCGGCATTGTCTGTTTGACTTTTGGTTGAATACCGACCTTCTTGTGTTGGTTCCCATGTATCCGCCGCGTGTTCGCGCCAACCACTCAATACCCTTTTTGGCTCTTCCAAATATGCCCTTCATCGAGGTTAACACAAGCACCGCCGTCGCGGAGGACGCCAAGATCAACTCAGCAATCAAAATTTTCTACAGAACTTACGGACGCGGATCGACCAAGGTCCTTCTTATCATAGGATTGGCCGGAACCCACGATTCATGGGGCCCCCAAATCAAAGGGCTTACAGGGACCGATGTGCCTAATGACGACGGCGATCGGAATGCCGCCCATGTCGGCGAAGAACCCACCTTCGAAGATGATGGTGGTATCGAGGTTTGTGCATTTGATAATCGGGGAATGGGTCGGAGCTCCATCCCCACCAAAAAATCTGAATATACAACAAAGATAATGGCCAAGGATGCCATTGCCTTATTGGACCATTTGGGGTGGGAAAAGGCTCATATTTTTGGTCATTCCATGGGAGGTATGATAGCTTGCAAATTAGCAGCTATGGCACCCGAAAGAGTCAAGTCATTGGCCATGCTCAATGTAACTGGCGGAGGTTTTCAATGTTGCCCCAAGCTTGACAGGCAAACTTTCGACATTGCAGTTAGATTCTTAAAGGCCAAGACTCCTGAACAAAGGGCTAGTGTTGATTTAGATACCCACTATTCTAAGGAATATCTTGAGGAGTATGTTGGATTTGAAAAAAGAAGAGCAGTTTTATATCGGGAATATGTTAAAGGTATATCAGCAACAGGAATGCAGTCTAATGATGGCTTTGTGGGTCAAGTCAATGCATGCTGGATGCATAAAGTGACAAGAAAAGAGATCGAATGCCTTCAGTCTGCTGGATTTCTTGTATCAGTCATTCATGGCAGGCACGATGTTATTGCTCAGATGTACTATGCAAGAAGACTTGCAGAGAAGCTGTATCCTGTTGCTAGAATGGTAGATCTCCATGGAGGTCATCTAGTCAGTCAAGAGAGAACTGAAGAGGTAAATCAAGCTCTTCTTGACTTAATCAGAGCCTCAGAAACAAAGATGAGTCCACATGACTGGACAAACTTGCCAAAGAAAAGCTCATGGTGGATGAAGGAGAGAATGGCTTTTGTAACACTGAAGACTGAAGGAGGAAGCAGTATCTCCTCCAAACCTTTCTTAGAGATTCCATCTTTTCTTCTTGTATATCTTTGGCCTGATTCTTTTGGTGTTCGAGTATCTCCGGAACACCCTCAAAAGCTTGAAACCGGTCCGAGTCGGAGCCTCCCTTACATGAATAAACATTTCAAAGACCCTAAATTTTTACAGAGTCTGTTTCATTTTTGCTATCTGATGGGCAATTGCTCCAATCATCAAAGTGAAGTTGGGGAATGA MAAAEAKPPRKHLGNHFPDQDDGYRDSKLLSTPSFSSNSERNASDHRAHEISSPTKAAHIPTSYQTVDCELKSDQQPDFHHHTGFAVGLANTLQAGVDNSSVRIASKTTASGEEHRNIEELDHRVCKGYVATEAVSNNQSVNMTKKTDCMDEFDYIEDHFTDLHNFDGQISKQEEKVPFDLESHWTKIEKTKPWWRSASKDELASLVARKSLENLENCDLPQPRTKHQGKDESTCLECSDQDCFLHSPFTEMQFSSLDGYNRGMHPSGGMGERQFIVSSVGHSLRHQDHFRSGNEENNSCSISYLNSTSKAQLLEALCHSQTRAREAEKAAQEADTEKKHIVSLFLRQATQLFAYKQWFQLLQLQNICLQLRNKDQPTTGLFSDVLPWVPCKDRQFNQPRNRRKKRDRDHREFTMYDIAFAVGLGLAGASLLLGWTTVEMKLRHCLFDFWLNTDLLVLVPMYPPRVRANHSIPFLALPNMPFIEVNTSTAVAEDAKINSAIKIFYRTYGRGSTKVLLIIGLAGTHDSWGPQIKGLTGTDVPNDDGDRNAAHVGEEPTFEDDGGIEVCAFDNRGMGRSSIPTKKSEYTTKIMAKDAIALLDHLGWEKAHIFGHSMGGMIACKLAAMAPERVKSLAMLNVTGGGFQCCPKLDRQTFDIAVRFLKAKTPEQRASVDLDTHYSKEYLEEYVGFEKRRAVLYREYVKGISATGMQSNDGFVGQVNACWMHKVTRKEIECLQSAGFLVSVIHGRHDVIAQMYYARRLAEKLYPVARMVDLHGGHLVSQERTEEVNQALLDLIRASETKMSPHDWTNLPKKSSWWMKERMAFVTLKTEGGSSISSKPFLEIPSFLLVYLWPDSFGVRVSPEHPQKLETGPSRSLPYMNKHFKDPKFLQSLFHFCYLMGNCSNHQSEVGE Homology
BLAST of Clc01G00440 vs. NCBI nr
Match: RXI08249.1 (hypothetical protein DVH24_022393 [Malus domestica]) HSP 1 Score: 733.0 bits (1891), Expect = 3.1e-207 Identity = 415/751 (55.26%), Postives = 496/751 (66.05%), Query Frame = 0
BLAST of Clc01G00440 vs. NCBI nr
Match: XP_038875629.1 (uncharacterized protein LOC120068032 isoform X2 [Benincasa hispida]) HSP 1 Score: 728.0 bits (1878), Expect = 1.0e-205 Identity = 375/441 (85.03%), Postives = 394/441 (89.34%), Query Frame = 0
BLAST of Clc01G00440 vs. NCBI nr
Match: XP_038875628.1 (uncharacterized protein LOC120068032 isoform X1 [Benincasa hispida]) HSP 1 Score: 723.0 bits (1865), Expect = 3.2e-204 Identity = 375/454 (82.60%), Postives = 394/454 (86.78%), Query Frame = 0
BLAST of Clc01G00440 vs. NCBI nr
Match: XP_038875630.1 (uncharacterized protein LOC120068032 isoform X3 [Benincasa hispida]) HSP 1 Score: 723.0 bits (1865), Expect = 3.2e-204 Identity = 375/454 (82.60%), Postives = 394/454 (86.78%), Query Frame = 0
BLAST of Clc01G00440 vs. NCBI nr
Match: XP_004145933.1 (uncharacterized protein LOC101203096 [Cucumis sativus] >KGN49859.1 hypothetical protein Csa_000422 [Cucumis sativus]) HSP 1 Score: 713.4 bits (1840), Expect = 2.5e-201 Identity = 344/363 (94.77%), Postives = 355/363 (97.80%), Query Frame = 0
BLAST of Clc01G00440 vs. ExPASy Swiss-Prot
Match: A8IAD8 (Putative aminoacrylate hydrolase RutD OS=Azorhizobium caulinodans (strain ATCC 43989 / DSM 5975 / JCM 20966 / NBRC 14845 / NCIMB 13405 / ORS 571) OX=438753 GN=rutD PE=3 SV=1) HSP 1 Score: 76.6 bits (187), Expect = 1.6e-12 Identity = 54/165 (32.73%), Postives = 77/165 (46.67%), Query Frame = 0
BLAST of Clc01G00440 vs. ExPASy Swiss-Prot
Match: B1M5I5 (Putative aminoacrylate hydrolase RutD OS=Methylobacterium radiotolerans (strain ATCC 27329 / DSM 1819 / JCM 2831 / NBRC 15690 / NCIMB 10815 / 0-1) OX=426355 GN=rutD PE=3 SV=1) HSP 1 Score: 75.5 bits (184), Expect = 3.5e-12 Identity = 76/290 (26.21%), Postives = 118/290 (40.69%), Query Frame = 0
BLAST of Clc01G00440 vs. ExPASy Swiss-Prot
Match: B7KWT4 (Putative aminoacrylate hydrolase RutD OS=Methylorubrum extorquens (strain CM4 / NCIMB 13688) OX=440085 GN=rutD PE=3 SV=1) HSP 1 Score: 74.3 bits (181), Expect = 7.8e-12 Identity = 71/237 (29.96%), Postives = 104/237 (43.88%), Query Frame = 0
BLAST of Clc01G00440 vs. ExPASy Swiss-Prot
Match: D5VGV3 (Putative aminoacrylate hydrolase RutD OS=Caulobacter segnis (strain ATCC 21756 / DSM 7131 / JCM 7823 / NBRC 15250 / LMG 17158 / TK0059) OX=509190 GN=rutD PE=3 SV=1) HSP 1 Score: 72.0 bits (175), Expect = 3.9e-11 Identity = 72/300 (24.00%), Postives = 113/300 (37.67%), Query Frame = 0
BLAST of Clc01G00440 vs. ExPASy Swiss-Prot
Match: B1ZB18 (Putative aminoacrylate hydrolase RutD OS=Methylorubrum populi (strain ATCC BAA-705 / NCIMB 13946 / BJ001) OX=441620 GN=rutD PE=3 SV=1) HSP 1 Score: 70.9 bits (172), Expect = 8.7e-11 Identity = 75/291 (25.77%), Postives = 111/291 (38.14%), Query Frame = 0
BLAST of Clc01G00440 vs. ExPASy TrEMBL
Match: A0A498KJ90 (Uncharacterized protein OS=Malus domestica OX=3750 GN=DVH24_022393 PE=4 SV=1) HSP 1 Score: 733.0 bits (1891), Expect = 1.5e-207 Identity = 415/751 (55.26%), Postives = 496/751 (66.05%), Query Frame = 0
BLAST of Clc01G00440 vs. ExPASy TrEMBL
Match: A0A0A0KLW7 (AB hydrolase-1 domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_5G139370 PE=4 SV=1) HSP 1 Score: 713.4 bits (1840), Expect = 1.2e-201 Identity = 344/363 (94.77%), Postives = 355/363 (97.80%), Query Frame = 0
BLAST of Clc01G00440 vs. ExPASy TrEMBL
Match: A0A1S3AUJ9 (putative aminoacrylate hydrolase RutD OS=Cucumis melo OX=3656 GN=LOC103482970 PE=4 SV=1) HSP 1 Score: 699.5 bits (1804), Expect = 1.8e-197 Identity = 337/363 (92.84%), Postives = 351/363 (96.69%), Query Frame = 0
BLAST of Clc01G00440 vs. ExPASy TrEMBL
Match: A0A5A7TMC3 (Putative aminoacrylate hydrolase RutD OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold376G00420 PE=4 SV=1) HSP 1 Score: 699.1 bits (1803), Expect = 2.4e-197 Identity = 336/363 (92.56%), Postives = 351/363 (96.69%), Query Frame = 0
BLAST of Clc01G00440 vs. ExPASy TrEMBL
Match: A0A5A7TGM0 (Uncharacterized protein OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold376G00410 PE=4 SV=1) HSP 1 Score: 688.0 bits (1774), Expect = 5.5e-194 Identity = 357/441 (80.95%), Postives = 379/441 (85.94%), Query Frame = 0
BLAST of Clc01G00440 vs. TAIR 10
Match: AT5G53050.2 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 510.0 bits (1312), Expect = 4.0e-144 Identity = 253/363 (69.70%), Postives = 289/363 (79.61%), Query Frame = 0
BLAST of Clc01G00440 vs. TAIR 10
Match: AT5G53050.3 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 510.0 bits (1312), Expect = 4.0e-144 Identity = 253/363 (69.70%), Postives = 289/363 (79.61%), Query Frame = 0
BLAST of Clc01G00440 vs. TAIR 10
Match: AT5G53050.1 (alpha/beta-Hydrolases superfamily protein ) HSP 1 Score: 469.2 bits (1206), Expect = 7.8e-132 Identity = 231/309 (74.76%), Postives = 257/309 (83.17%), Query Frame = 0
BLAST of Clc01G00440 vs. TAIR 10
Match: AT2G46550.1 (unknown protein; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT1G01240.3); Has 72 Blast hits to 68 proteins in 13 species: Archae - 0; Bacteria - 0; Metazoa - 1; Fungi - 0; Plants - 71; Viruses - 0; Other Eukaryotes - 0 (source: NCBI BLink). ) HSP 1 Score: 146.4 bits (368), Expect = 1.2e-34 Identity = 136/457 (29.76%), Postives = 202/457 (44.20%), Query Frame = 0
BLAST of Clc01G00440 vs. TAIR 10
Match: AT2G46550.2 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; EXPRESSED IN: 23 plant structures; EXPRESSED DURING: 13 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT1G01240.3). ) HSP 1 Score: 144.8 bits (364), Expect = 3.4e-34 Identity = 101/279 (36.20%), Postives = 142/279 (50.90%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Watermelon (cordophanus) v2
Date Performed: 2022-01-31
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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