Clc02G25170 (gene) Watermelon (cordophanus) v2
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATGGATCCTCTTAAGCTCTCTCCTAGACTCTTATCTCCACTGAGCTTAGCTTTGAGCTTTCTCTTAGGGCTCCTAGCTCCATGGGTCCCTTTCTCGAGCTCTCAGCTCATAGGTTCTCTAGCTTTCTTAGGCTCTCCTCATGGGTCCTTAGCTCTCTCAGGCTGTCCCATGAGTCCTTTAACTTCTTAGACTCTCCTCATGGGTCCCTCTCAGACTCTCCCATGAATCCTCTAAGTTCTTCTTGATCCCATTGGACAAAATTTACCCATGACAAAAAAACATTTAATACATATATGATAGACAAAATTGTCATCTAATACATCTAAAATACATCATTTGAGTTGTGGGATAATTATCATTTGGAGTATTTAGAACTTAAGGAGTGAGATTTATTTCAAGAAGATGTCCTCCAACTTAGCTTACCTCAGAGTGATGATCGACTCTCTTCTTTTGGAGTCTTATGATAGTTGGCCGGGTATTGGAAGTTGAATGTGGATGTTGCTTGGTCAAATAAAAAAGGGATGGGTAGGCTTTGGTGGATTGTATGAAATCATATCAGATGTGCTATTTTGGGAGGCTATCAATTTATTTCTGAAGGGTGTTGCATGAGCATGTTGGAAGTTGAGGCATTACTTGAGGAGCTTAGAGATTTAGAAGGAGGGTGGTCGGGTCCAATTCCTCTGTTGGAGGTGGAGTCCGACGCACTGGAGGTCATCAGGCCTCTCAATAGGGAAGTGTATTTTTATGTTGAGATTGGTGTCCTTATTGAGGTTATTATAATTCTTTTTTTTTTTTTATTGAAAACTCTATTTATATTAAGTGTTTTTGTCATTGTCTTCAAGAGAAGAACAAAGTAGCACATGCTATAGCGCCTTTGCCATCCTCTTTGTGATGTTTTTTGATCTGAAAAGATGTTTTTCTAGATAGTTTGCCATGCCCCCTCATCATTAATAAGGTGTTAGAGAGTAGTTGGTTTTTGAGTTTGCATGAACTTTGCTAAAAATTTAAAAAAAAATTAAAAAAAAAATTAAGATCCCTTCTCAAATGAAGAATCTAATAACTTAGAAATACAGTTAATTCAAATGTACTCAATTTTAATACATTAATAATTGAGACTAAATAATTTTGGTTAACCACAATTTGATTTATGGTTTTTTAATTTTTGAAAATGGAGCATACATCATCTCCTTATAGATTTGCTTGTTTAATTGTCTGCTTAGTCTAAGAGTATTTTCACATCCAACCCATATTTTGGCACTTAAAATAAGTAGTTTGAAATGAACTTGTGTTTGTTTTTGTGTTTGTTTTTGTGTTTTTTTTTGTGTTTTTTTCTTTCTTTTTTCTTTTTTTTTTTGGGGGGGGGGGGGGGGGTGATTGAGAATAATAAATCCAAATATTTATTTAGAAAAAATAAAATTACTGTAAAAAATAGTGAGAAATCAAACACATTTTCGATAATATTATTATAAAAAAATATTTAAATATTACAATGGTTAAATTAGTAAAAAAATGTCTTGTAACAAAATATCTCTGGACTTTCAAAATTTTTCAAAGTATTCTTAGACTAAAAAAAATAAAAGTTAAAAATTGCTCTTACCATTAGTTTTACATGAAAACTATTTGTACTTCGTGTCAAAAATACTTTTGAACTTTTAAAAAATATCCTTAAATGTTTGATATTGATTTAAGATATATAGACTAAGACTATAACAAGTAGAAAAAGAATAATGGAACCACTAATAGATCTTAAGGCTTAACAAGGTTGTACATTAGTAATTGAATGTGTGTTAATATATCGTTTGAGTTTAATACACAGAAAGAGACATAATGTTGATCCTTTTTGCAATTAAAATTACTCTATTTATTGTGATTAGTTAAAAAAAATTGTAGTTAAGATATTTCTTTATCAATTCTTCTTGTATTTAGCTATTTATCATTTTGCTAAGTTATGAGAAAATTTTGATTTTAAAATTTTGTGAAGTTTTATTCATTAACTTGAAGTTTGTTTATATTTAGGCCATGTTTACATTAGGTGAAAGGTAATTCATCAATGGTAATGTAAAAAGTGAAACTAAGTTGATTAGTTTTGTTGTTGTTCACTTATGTTTTGTAATTGTCATGAGCTGTGGGACCCTCTTCAAAATTTGGAATCAAATTCTGCAATCAAATCGAGTAATGAAAAATGTTCAATCTTATTCTGGTTGAAAATTACATGGGACCCACTACCTTTACCATTATAAATATTGTTATTGTAACAATATAAAAATTATGAATATGTCACATTTATTATTAATTTTACCGTTAGTGGGTCAAGCAATAACAATAACAATAACGGTAACAGTAAAATATGAAAAACTCATATTTCTAAGTAAATGCGATCAAAATCAATTCAATTACGTTTGTGGTTAAGACATATTACAATTCATCTATCAATAAAATTTTATACGATTATACTAATTTTTATTACGAATTGGTAAATGCAGATTTAGTTATTGAGAAAAGTTGTTTGAAGAGAAAGATGCTTTTTACCAACTGCAATATATAATAACTTTGGAAACATGCGCAGCTATTAACAACGGTATAAATGGACAAATATATTTTGAGTAGTGAAAGTTATTTAAAAAAAAAAAAAAAAAAAAAAAGAAAATTAAAATTGAGAGACAAAGTAGAATTAATGCAATGAAATTTTGGAGACGTTGCGTGCGGGCAATGTCAGCTTCTTGGCCTCGGCCTTTGCAAAAAGCCTATACTGTGTTTCCCATTCCCTTCCCTAATAACGACGAGCCACAGCGCTGCCGCTGCCCCCATTTCATTTCAAAAAGCTTTCTAAAATATATTCAATTCCCATCCCAATAAACCATTTCCCTTTCTTTCTTCCTTTCCCCCATTTCTTTTTTCGTTTTTTCTCTCTTTTAATTCAACCAACAATCACATTCATCAGGCAGGCGATCCATTTTGAATGGGCTGCCCAGCTCGCTACCAATTTCTTTGACTCTTGAGCCTTTTGTTGTTCCAATCTAAGCCCGACACACGGCCATTGCTTTGCTTCACTTCACCACCCACCCCTTTCTTCTTTCTCTTTCCATTTCCTTTTGGGGCCAAACAATTCTATCAAGGGTTGTTCAGCGGCGTTAACCTCATTTCCTGCTTTTTTTTTGTTCGATCACTCTCTAACCCTTCAATTTTTCCATCTGGGTATGCTGATTCTTCGCCTATTTTGATGTTTTATGTTGCTGCTGCTGATTCTTCAAATTGCGAGTTCATAATCTCTCTTGGGTTTTGTTCGATTTCGTTGTTGTTGTATATTTCCAACATTGTTTATCAGTGTGCTGCATTCTCGTTATGTTCGTGCCTGTTGAGCAATTTTGAAACCATGGTGAATTTTGTCTGTCGTTTTCCTTCTTGATTCTTAACTGAAGTGGTTTAGATGGGAAAATGCTGGCTTCTAGTTATAAACAGAGGTGATTTAAGACCCGTTCTATTAATAGATAAATTGTTGTTTTCCTTTGGTTTCCTTATATTCTACTTTTCTGTTCATAGATTCTTATCGCAGCATAGATGCCAAACTCAATAAAGAGGAAAAGAGAAAATAAAAATTTGGTGCTTCTGTTGAGTTTTGTTTTCTTGCTGCTTGTACTTGTGCCAATAAATGATACTTCTTTTTCTTACTCTTAAACGCACTTTTTCTGTTGTGCAAGCAAACAATGATTCCATCCAATTATGACTGTCATTTTGTTGTAAATTTTAGTACAAACATGAGTTTTCAATTTAAAGGACCTTGAAGATTCTTCATCATAGTTTCCATTTCCAATAGGTTCTGTCCTTCCTATCCTATGTTATTATAAGAGAAGCATTCAATGATCTGAAACTTAATTGTTTTTACTTCTTGCTCATGCAATGCTTTCAAATTGCATCTGGCTTCTCATTTCTCTCGATTTCTAGATATGAATTTGATTTAGATATGTATTAAATTACGGCTTTACTGATTGATTGTTCTTGATTTGTAATTCAAGAGATTCATGTTTTGAACCTTTTTTTCCATTATAATGCAATTTGCATTGCACCTTTGAAAATAAATATAATTGAAAGTGAAGTTTGAATGGTCCGCGGAACCAGTTTTGAGATGCTTGCATATCATAAGTTTCAATGGAACTAGTCATGAGTTCTTCAAACAAGTCCCTCTGGGAATGACACTTCTTTTTTTTAACTAAATCTCACAGATGATTGTATGAGTACCATAGAATTCAGAGAGAAGGGGATGTATCAGCAGCCGAAGTCAAGGGAAGAACATGCTTCTTCTGCAGCCAGCTTCTGCAAAGAAGTGACCGAGTTGCGCCTTGCATCAATAGATTCTCAAGCAGCAACTTCTCGTCCAGAGTTCAAAGGTGTCACTTTCAGGAAAGCTTCAACTGGTGGTTTTGCTAGGAGTCGTAATGATGTACACGAGCTACTCGATTGTACTGTTTGCATGAATTTAATGCATCCCCCAATTTACCAGGTATCTTATTCTAATTGTGATGACTTTCAAAACTTCCAATCCTTGCTCATAAATCCATCCAATAAGAAAAGTAGAAAACGAAGGCATTTAATTTGAGACCCTGAATCAAAGTTGTAGCCTATAGCTAAAACCCTTATGCATCATTGAGCAAGAGCAATCCTTTTGTCCCCGGAAAGACCTTCCGATGGAGTATCAAAAACACTCTATCTAATTTCACTTTGTTCAAATGGGAGGCTAGCTATTTTGTTTAAGCATTGAATTGCATTATGGCTGAGTTATTACATTTGAGGCAATTCTAGTGCATACCAGCTAAAATAGTTATTATGGTTTAGTGTGCAAATGGGCACACTCTTTGTTCAAGCTGCAAGGCGAGGGTTCAGAACTGTTGCCCGACCTGCCGGCATGAGCTGGGGAACATAAGGTGCCTAGCACTGGAAAAGGTGGCTGAGTCGCTCGAGCTCCCTTGTGTGTACCAAAACCTAGGTTGCATTGACATGTTCCCATATTACAGCAAGCTTAAACATGAGAAGAATTGTAAATACCGGCCGTACAACTGCCCTTACGCTGGAGGTGAATGTCGTGTAACTGGTGATATTCCATACCTTGTCATGCATCTCAAGGACGATCACGAGGTTGATATGCATGATGGATGTTCCTTCAGCCATAGATATGTCAAATCCAATCCCCAAGAAGTTGAAAATGCTACATGGATGCTTACTGTAAGATGTCTATCTGTGTCTTTATTTAAGATTCTTAGGAATAACGAAAGCAAAGGAGAAGCATTTCATGTAATGAACATCCTCCTGATTTCTCATTTGATCCAATTCAGGTTTTCAACTGCTTCGGACGACAATTCTGTTTGCACTTCGAAGCATTTCGCTTAGGAACAGCACCTGTTTACATGGCATTCCTCCGGTTCATGGGAGACGATGACGATGCAAAACAATTTTCTTACAGTCTGGAAGTTGGTGGAAATGGAAGAAAACTCATCTGGCAAGGTATTCCTAGAAGTATCCGCGATAGCCATCGGAAGGTTCGAGACAGTCACGATGGACTAATCATTCAGAGGAAGTTGGCACTATTCTGCTCTGGAAATGAGGGGATGGAACTGAAGTTAAAGGTTACAGGGCGAATATGGAGAGTAAGGTGACAACAAATATAGATTTATCAAAGTCTAAACTTGTACAATATGTGACATTGTGACCTATGTACATGCCTCTGCCTCCTACAATTCAGCCTTGTTAGAAGAACCTCATATTTCTTCATTACTTACATTTTCTGCTTCCTTTTTTTTATTTAACTTATTTTTTTACTTCAAATATACACAGGAGGGAATTATAAAAATAGCATGATAATTTTTTTTTTTTTTTAAAAAAAGAAAAACTCACAATATTGCCAACCTATTTTCATATTTACAACAGTAATGCAACTCAAATCGGAGAAGTTGCATATTATGTTTAAATAATTGCACAATACTTAAATTATATATATATATATATGGAAACCTACAATACATTAGAGTGTATTTGGAATACATTTTCAAGTGTTTAATTTAAAAAACAAATTATTTTAGAAAAAATTGGAGTATTTGACAACTATTCAAAATAAATTTTAAAGTGTATTTAAACGGATTTTATCAAAAGAGTTTAAACAAAAATGAATTTTTTCAAAAACATTTTTTCTCAATTTAAACGAGCCCAACTTGTTATACAATTAGGTCAATATTCTAATATAAAAGCTTAACCTTTTATTGGCTTGCTTGGAAATTCTTTTTCCACTTTAATAATAACAAATAGAAATGGAAGAATAAATAAATAAAAATAAATAAATAAAGGTATCCATGTTTGTACAAAATTGAAAGCTGAGGATTTTGATTTTTGAAATTTTTTAGATATTTTTTATAGTTCACCTACTTAACATAAATTTGAAAGGTGGCTAATGAATCTTAAAATAAATTACAGTGAACTAATATAGATTGGTTAAATTATAAATTTAGTAGTTTCGAGAAAATTAGAATATAATTTATATAGTTTTAAAAGTTAGAATTTAGTCCTAATGATTAGATAAAACTTCATAAATGGTCTCTATCTATAAAGATTTTATCAAACCATATGAACTAAATTCAAATTATAGATTATAAGGATTAAAGTCTAATTTTTTTCAAATGAAAGGTCTAAATTTGCAAGTTAACCTAATTTCCTTTATTAACTAAACTTAAGACAAAATCAATGCTAATCTATACTATATTAAAAGGGGAAGGTATGAGAATTTTTACATTCCCTTTTTGCCCCTACAATTTTAGTAAATGACTATTTTGCCTTTCCATCGTTAGAACATGAATTTTCATTTGGTGCCTATTGAGTGATGTTAGGAAAATAGAGGTGCAATCTTATGTCGATGGGACACAACTCATTAGGTGCAAATGGTTATACATTGAATCAATATATCTATTCTTGAATGAATGTGATCCATGTATAAAGATGTGACTATTGGAGTTTAAGTGTTTATTTGATTATACTCTATTTAAGTGTTTAAAAACGTATCATTCAATCTTTGGGACACGACTTTTTAAGTTTAAATGTCTATTTGATTGTTTTTGTGTAGGCAATTACACATTGAATGAATGTATTCATTCATGTATGGGTGTAATCCATATAAACGGCAACCTATCGAGTTTAGGTGTTTGCTAAGAGATGTTAGCACAATAAAAGTTGTGCTTATTCTCGCTTTACATAAAATAGATTTATTGTATATGAAAGTTAACTTTGAAGCCGAATAAGTACATTTTATGTCAATATAACACCATTGTTTGAGTGTAGCTGGTGTTACATTTTATTTGCATTTATTACTAATTTTACAAAAAAAAAAAAAAAATCTTAAAAATAGATTTCATTGTATCATACGTATTTATAAAATATAGAATAGTTGAAATTATTTCAATATACTTCATCAACATGATTTATCATCAATAAATATAAATGATTTACACTAAACCTTTAAATAAAATAATAAACTATAAAATTCACGTGAATCATTACTAGTTAAAGGAAAATGGCAAATGAAAAATGGTAGTTAGAGAAGTTACGACGTCGTACCATTCGTCGTTCCAACAGAGTCTTCACCGGCTTAAACCCTAAACCCTGTGGAGTTGGCGTAGTGGGAAGGAAGAAAACCGCCGAACAAATGCTGATTACTCGAAAGCTTTCTGCTTCGAACCTCAAATCCTTTCTTTCTCTGCGTTTCGTTTCCCCTTCTCTGACTTCGCACTTGTTTTCTTCACCTTTCTGCTTAAACCCACCAATCCTTTGCCCACTTCCTCCCACTCTTTCGCCGTCTTTCTCTTCCAAACCCACACCTCCAGAAGCTTCCAACCTCACCCGCGATGGCAACTACGACGAAGCCACTTCCCGATTCTCCCTCGTCTGCCCTGGCTGTGGAGTTCACATGCAAGACACCAATCCCAAACATCCTGGCTTCTTCGTCAAACCCTCGAGAAAAGATTCCAATTATCGCTTACTTACCCATCTTGTCCCCGTCCATGATGAATCTGAATGCTCCGAATTTCTCAAGAGAGGCCTAGTAATCGAGCCAGATAATCAGAAAACTGAAGAGAATGTGACCGAGAAACCCCACAAGCCGACCGTGTGTTCGCGGTGCCACTCATTGAGGCATTATGGGAAGGTAAAGGATCCTTCAGTAGAGAATTTACTGCCGGATTTTGATTTCGATCATACCATCGGTAGGAGACTGGCGTCGACTTCGGGAACCCGATCTGTTGTTCTGATCGTCGTTGATGCTGCAGATTTTGATGGGTCATTCCCAAAGAAGGTAGCGAACTTGGTCTCGGCCACTATTGAGGATAATTCAGCTGCCTGGAAACAGGGGAAATCAGGGAATGTGCCTAGAGTGGTGCTTGTAGTGACAAAAATTGATCTGCTGCCTAGCTCTTTATCACCGACGAGATTTGAGCATTGGGTGAGGCAGAGAGCGAGGGAGGGAGGGATTAACAAGATAACGAGTTTGCATATGGTGAGTGCGGTTAGAGATTGGGGGCTGAAAATTTTGGTGGAGGATGTAATTGAATTGGTTGGGGCGAGAGGAAATGTGTGGGCAATTGGAGCACAAAATGCTGGGAAAAGCACGCTGATTAATTCAATAGGAAAGCATGTAGGTGGGAAGATTACGCAGTTGACTGAAGCACCAGTTCCTGGGACAACGTTGGGGATAATCAGAGTAGAGGGAATTTTTCCGGGTCAAGCCAAATTGTTTGATACTCCTGGGCTTCTCAATCCCCATCAGATTACTACGAGATTGACTAGGGAAGAGCAGAAACTTGTTCACATCAGCAAGGAATTGAAGCCCAGGACTTACAGGATTAAGGTAACCAAATTGATTTTTTATGTTTCTTTTCTCATGGCTGGAACTTAATTGTTGCTCCATTATCATTGAACTCTCGTTCTTTGAGTTTTAGTTTTAGAAAAGATATGGTTTTGGGACGAGTAGGCCATGGTATTGACCAAGAGGATACATGATATAGAGATTGTTGTACAAAAGACCCAATACTAGCTGCATTAAGGCAAAATGATCCAATCGTGGAAAACGAATGAAAACCAACATTCTACTTACGTCATGCACTTCACCACCGCCTAAAATACATTATTGCATTAGGGATGTCTCACCCTTTGCGAAATAATTAGAGCCCTAATGCAATTTTCATTTTTAATCATTGGTTGGCCAACTATTATTTAAAAAAAAATTACGATAGAAATGAATATCACACCAGGAGCCCAATTATTTCGCAATAGGAGGAACATCCGTAACGTGATAGTGGTTTGTGATGTTAACAAAAGATTAGTTTTTATTCCTTTTTTAGGATTGGATCATTTTGCATTAACACCTCTAAAAGTAGTTATCTGTACAAAAACCTCCATGATATAACTAACATGAAAAACTGTAACGAAGGATCATATGATTATTGAGTCGTTATGTAGGACCGAAATTGTGATTGGCTAAATAGCAAAATGGTATGATACTATATAATGATGTTGAAATTGTGAGTATAAAGTTCTACTCTCAATTTGGTCTTCTATAGACAACCATTTTCAGCAAGAAATTTGGTTGAGATTTCATAATATAGTGTTGCTTTTTATAGGTTGGTCACACAATTCATGTTGCTGGCCTCATGAGGCTAGATGTGGAAGAAACAACTGTGGATACAATTTATGTTACGGTGTGGGCATCTCCTTATCTTCCATTACACATGGGGAAAACAGAAAATGCAACCAAAATACAGGAGGACCATTTTGGGAATCAATTGCAGGTATTATTTGTAATAGCTAGTTTGATAATAAACATACAGAAGGATCGTTTTGTGGATACTCATGGTTTTTTGCTTTGCTTCAGCCACCTATAGGCAAAGATCGAGTTGCAGAACTTGGAAAATGGGTGAGAAGGGAATTTCGTGTTTGTGGAAGTAGTTGGGATTCAAGTTGTGTAGATGCTGCTGCTGCTGGCCTGGGTTGGTTCGCCATTGGACTAAAAGGCGAGGCAGTCTTGAGCATATGGACTTATGAGGGGATCGAGGTTGTTATACGAAGTTCTGTCATTCCTTACAGATCAAACTTCTTTGAAGATGCTGGATTTACAGTCTCGAAAATTGTCTCCAAGGCTGATCAGGTTGCAAATAAACCACATGATCAAAGCGAAAAGAAGAAGAAAAAGGGTGACCCCAAAGTTCGTGTGCTGACTGAGACGTCAGTATCGAAAGCTCGCTCCAAATATGATTCTGCTTAA ATGGATCCTCTTAAGCTCTCTCCTAGACTCTTATCTCCACTGAGCTTAGCTTTGAGCTTTCTCTTAGGGCTCCTAGCTCCATGGGTCCCTTTCTCGAGCTCTCAGCTCATAGGTTCTCTAGCTTTCTTAGGCTCTCCTCATGGATGTGCTATTTTGGGAGGCTATCAATTTATTTCTGAAGGGTGTTGCATGAGCATGTTGGAAGTTGAGGCATTACTTGAGGAGCTTAGAGATTTAGAAGGAGGGTGGTCGGGTCCAATTCCTCTGTTGGAGGTGGAGTCCGACGCACTGGAGGTCATCAGGCCTCTCAATAGGGAAGTGTATTTTTATGTTGAGATTGGTGTCCTTATTGAGGGTTGTTCAGCGGCGTTAACCTCATTTCCTGCTTTTTTTTTGTTCGATCACTCTCTAACCCTTCAATTTTTCCATCTGGATGATTGTATGAGTACCATAGAATTCAGAGAGAAGGGGATGTATCAGCAGCCGAAGTCAAGGGAAGAACATGCTTCTTCTGCAGCCAGCTTCTGCAAAGAAGTGACCGAGTTGCGCCTTGCATCAATAGATTCTCAAGCAGCAACTTCTCGTCCAGAGTTCAAAGGTGTCACTTTCAGGAAAGCTTCAACTGGTGGTTTTGCTAGGAGTCGTAATGATGTACACGAGCTACTCGATTGTACTGTTTGCATGAATTTAATGCATCCCCCAATTTACCAGTGTGCAAATGGGCACACTCTTTGTTCAAGCTGCAAGGCGAGGGTTCAGAACTGTTGCCCGACCTGCCGGCATGAGCTGGGGAACATAAGGTGCCTAGCACTGGAAAAGGTGGCTGAGTCGCTCGAGCTCCCTTGTGTGTACCAAAACCTAGGTTGCATTGACATGTTCCCATATTACAGCAAGCTTAAACATGAGAAGAATTGTAAATACCGGCCGTACAACTGCCCTTACGCTGGAGGTGAATGTCGTGTAACTGGTGATATTCCATACCTTGTCATGCATCTCAAGGACGATCACGAGGTTGATATGCATGATGGATGTTCCTTCAGCCATAGATATGTCAAATCCAATCCCCAAGAAGTTGAAAATGCTACATGGATGCTTACTGTTTTCAACTGCTTCGGACGACAATTCTGTTTGCACTTCGAAGCATTTCGCTTAGGAACAGCACCTGTTTACATGGCATTCCTCCGGTTCATGGGAGACGATGACGATGCAAAACAATTTTCTTACAGTCTGGAAGTTGGTGGAAATGGAAGAAAACTCATCTGGCAAGGTATTCCTAGAAGTATCCGCGATAGCCATCGGAAGGTTCGAGACAGTCACGATGGACTAATCATTCAGAGGAAGTTGGCACTATTCTGCTCTGGAAATGAGGGGATGGAACTGAAGTTAAAGGTTACAGGGCGAATATGGAGAGTAAGAGTCTTCACCGGCTTAAACCCTAAACCCTGTGGAGTTGGCGTAGTGGGAAGGAAGAAAACCGCCGAACAAATGCTGATTACTCGAAAGCTTTCTGCTTCGAACCTCAAATCCTTTCTTTCTCTGCGTTTCGTTTCCCCTTCTCTGACTTCGCACTTGTTTTCTTCACCTTTCTGCTTAAACCCACCAATCCTTTGCCCACTTCCTCCCACTCTTTCGCCGTCTTTCTCTTCCAAACCCACACCTCCAGAAGCTTCCAACCTCACCCGCGATGGCAACTACGACGAAGCCACTTCCCGATTCTCCCTCGTCTGCCCTGGCTGTGGAGTTCACATGCAAGACACCAATCCCAAACATCCTGGCTTCTTCGTCAAACCCTCGAGAAAAGATTCCAATTATCGCTTACTTACCCATCTTGTCCCCGTCCATGATGAATCTGAATGCTCCGAATTTCTCAAGAGAGGCCTAGTAATCGAGCCAGATAATCAGAAAACTGAAGAGAATGTGACCGAGAAACCCCACAAGCCGACCGTGTGTTCGCGGTGCCACTCATTGAGGCATTATGGGAAGGTAAAGGATCCTTCAGTAGAGAATTTACTGCCGGATTTTGATTTCGATCATACCATCGGTAGGAGACTGGCGTCGACTTCGGGAACCCGATCTGTTGTTCTGATCGTCGTTGATGCTGCAGATTTTGATGGGTCATTCCCAAAGAAGGTAGCGAACTTGGTCTCGGCCACTATTGAGGATAATTCAGCTGCCTGGAAACAGGGGAAATCAGGGAATGTGCCTAGAGTGGTGCTTGTAGTGACAAAAATTGATCTGCTGCCTAGCTCTTTATCACCGACGAGATTTGAGCATTGGGTGAGGCAGAGAGCGAGGGAGGGAGGGATTAACAAGATAACGAGTTTGCATATGGTGAGTGCGGTTAGAGATTGGGGGCTGAAAATTTTGGTGGAGGATGTAATTGAATTGGTTGGGGCGAGAGGAAATGTGTGGGCAATTGGAGCACAAAATGCTGGGAAAAGCACGCTGATTAATTCAATAGGAAAGCATGTAGGTGGGAAGATTACGCAGTTGACTGAAGCACCAGTTCCTGGGACAACGTTGGGGATAATCAGAGTAGAGGGAATTTTTCCGGGTCAAGCCAAATTGTTTGATACTCCTGGGCTTCTCAATCCCCATCAGATTACTACGAGATTGACTAGGGAAGAGCAGAAACTTGTTCACATCAGCAAGGAATTGAAGCCCAGGACTTACAGGATTAAGGTTGGTCACACAATTCATGTTGCTGGCCTCATGAGGCTAGATGTGGAAGAAACAACTGTGGATACAATTTATGTTACGGTGTGGGCATCTCCTTATCTTCCATTACACATGGGGAAAACAGAAAATGCAACCAAAATACAGGAGGACCATTTTGGGAATCAATTGCAGCCACCTATAGGCAAAGATCGAGTTGCAGAACTTGGAAAATGGGTGAGAAGGGAATTTCGTGTTTGTGGAAGTAGTTGGGATTCAAGTTGTGTAGATGCTGCTGCTGCTGGCCTGGGTTGGTTCGCCATTGGACTAAAAGGCGAGGCAGTCTTGAGCATATGGACTTATGAGGGGATCGAGGTTGTTATACGAAGTTCTGTCATTCCTTACAGATCAAACTTCTTTGAAGATGCTGGATTTACAGTCTCGAAAATTGTCTCCAAGGCTGATCAGGTTGCAAATAAACCACATGATCAAAGCGAAAAGAAGAAGAAAAAGGGTGACCCCAAAGTTCGTGTGCTGACTGAGACGTCAGTATCGAAAGCTCGCTCCAAATATGATTCTGCTTAA ATGGATCCTCTTAAGCTCTCTCCTAGACTCTTATCTCCACTGAGCTTAGCTTTGAGCTTTCTCTTAGGGCTCCTAGCTCCATGGGTCCCTTTCTCGAGCTCTCAGCTCATAGGTTCTCTAGCTTTCTTAGGCTCTCCTCATGGATGTGCTATTTTGGGAGGCTATCAATTTATTTCTGAAGGGTGTTGCATGAGCATGTTGGAAGTTGAGGCATTACTTGAGGAGCTTAGAGATTTAGAAGGAGGGTGGTCGGGTCCAATTCCTCTGTTGGAGGTGGAGTCCGACGCACTGGAGGTCATCAGGCCTCTCAATAGGGAAGTGTATTTTTATGTTGAGATTGGTGTCCTTATTGAGGGTTGTTCAGCGGCGTTAACCTCATTTCCTGCTTTTTTTTTGTTCGATCACTCTCTAACCCTTCAATTTTTCCATCTGGATGATTGTATGAGTACCATAGAATTCAGAGAGAAGGGGATGTATCAGCAGCCGAAGTCAAGGGAAGAACATGCTTCTTCTGCAGCCAGCTTCTGCAAAGAAGTGACCGAGTTGCGCCTTGCATCAATAGATTCTCAAGCAGCAACTTCTCGTCCAGAGTTCAAAGGTGTCACTTTCAGGAAAGCTTCAACTGGTGGTTTTGCTAGGAGTCGTAATGATGTACACGAGCTACTCGATTGTACTGTTTGCATGAATTTAATGCATCCCCCAATTTACCAGTGTGCAAATGGGCACACTCTTTGTTCAAGCTGCAAGGCGAGGGTTCAGAACTGTTGCCCGACCTGCCGGCATGAGCTGGGGAACATAAGGTGCCTAGCACTGGAAAAGGTGGCTGAGTCGCTCGAGCTCCCTTGTGTGTACCAAAACCTAGGTTGCATTGACATGTTCCCATATTACAGCAAGCTTAAACATGAGAAGAATTGTAAATACCGGCCGTACAACTGCCCTTACGCTGGAGGTGAATGTCGTGTAACTGGTGATATTCCATACCTTGTCATGCATCTCAAGGACGATCACGAGGTTGATATGCATGATGGATGTTCCTTCAGCCATAGATATGTCAAATCCAATCCCCAAGAAGTTGAAAATGCTACATGGATGCTTACTGTTTTCAACTGCTTCGGACGACAATTCTGTTTGCACTTCGAAGCATTTCGCTTAGGAACAGCACCTGTTTACATGGCATTCCTCCGGTTCATGGGAGACGATGACGATGCAAAACAATTTTCTTACAGTCTGGAAGTTGGTGGAAATGGAAGAAAACTCATCTGGCAAGGTATTCCTAGAAGTATCCGCGATAGCCATCGGAAGGTTCGAGACAGTCACGATGGACTAATCATTCAGAGGAAGTTGGCACTATTCTGCTCTGGAAATGAGGGGATGGAACTGAAGTTAAAGGTTACAGGGCGAATATGGAGAGTAAGAGTCTTCACCGGCTTAAACCCTAAACCCTGTGGAGTTGGCGTAGTGGGAAGGAAGAAAACCGCCGAACAAATGCTGATTACTCGAAAGCTTTCTGCTTCGAACCTCAAATCCTTTCTTTCTCTGCGTTTCGTTTCCCCTTCTCTGACTTCGCACTTGTTTTCTTCACCTTTCTGCTTAAACCCACCAATCCTTTGCCCACTTCCTCCCACTCTTTCGCCGTCTTTCTCTTCCAAACCCACACCTCCAGAAGCTTCCAACCTCACCCGCGATGGCAACTACGACGAAGCCACTTCCCGATTCTCCCTCGTCTGCCCTGGCTGTGGAGTTCACATGCAAGACACCAATCCCAAACATCCTGGCTTCTTCGTCAAACCCTCGAGAAAAGATTCCAATTATCGCTTACTTACCCATCTTGTCCCCGTCCATGATGAATCTGAATGCTCCGAATTTCTCAAGAGAGGCCTAGTAATCGAGCCAGATAATCAGAAAACTGAAGAGAATGTGACCGAGAAACCCCACAAGCCGACCGTGTGTTCGCGGTGCCACTCATTGAGGCATTATGGGAAGGTAAAGGATCCTTCAGTAGAGAATTTACTGCCGGATTTTGATTTCGATCATACCATCGGTAGGAGACTGGCGTCGACTTCGGGAACCCGATCTGTTGTTCTGATCGTCGTTGATGCTGCAGATTTTGATGGGTCATTCCCAAAGAAGGTAGCGAACTTGGTCTCGGCCACTATTGAGGATAATTCAGCTGCCTGGAAACAGGGGAAATCAGGGAATGTGCCTAGAGTGGTGCTTGTAGTGACAAAAATTGATCTGCTGCCTAGCTCTTTATCACCGACGAGATTTGAGCATTGGGTGAGGCAGAGAGCGAGGGAGGGAGGGATTAACAAGATAACGAGTTTGCATATGGTGAGTGCGGTTAGAGATTGGGGGCTGAAAATTTTGGTGGAGGATGTAATTGAATTGGTTGGGGCGAGAGGAAATGTGTGGGCAATTGGAGCACAAAATGCTGGGAAAAGCACGCTGATTAATTCAATAGGAAAGCATGTAGGTGGGAAGATTACGCAGTTGACTGAAGCACCAGTTCCTGGGACAACGTTGGGGATAATCAGAGTAGAGGGAATTTTTCCGGGTCAAGCCAAATTGTTTGATACTCCTGGGCTTCTCAATCCCCATCAGATTACTACGAGATTGACTAGGGAAGAGCAGAAACTTGTTCACATCAGCAAGGAATTGAAGCCCAGGACTTACAGGATTAAGGTTGGTCACACAATTCATGTTGCTGGCCTCATGAGGCTAGATGTGGAAGAAACAACTGTGGATACAATTTATGTTACGGTGTGGGCATCTCCTTATCTTCCATTACACATGGGGAAAACAGAAAATGCAACCAAAATACAGGAGGACCATTTTGGGAATCAATTGCAGCCACCTATAGGCAAAGATCGAGTTGCAGAACTTGGAAAATGGGTGAGAAGGGAATTTCGTGTTTGTGGAAGTAGTTGGGATTCAAGTTGTGTAGATGCTGCTGCTGCTGGCCTGGGTTGGTTCGCCATTGGACTAAAAGGCGAGGCAGTCTTGAGCATATGGACTTATGAGGGGATCGAGGTTGTTATACGAAGTTCTGTCATTCCTTACAGATCAAACTTCTTTGAAGATGCTGGATTTACAGTCTCGAAAATTGTCTCCAAGGCTGATCAGGTTGCAAATAAACCACATGATCAAAGCGAAAAGAAGAAGAAAAAGGGTGACCCCAAAGTTCGTGTGCTGACTGAGACGTCAGTATCGAAAGCTCGCTCCAAATATGATTCTGCTTAA MDPLKLSPRLLSPLSLALSFLLGLLAPWVPFSSSQLIGSLAFLGSPHGCAILGGYQFISEGCCMSMLEVEALLEELRDLEGGWSGPIPLLEVESDALEVIRPLNREVYFYVEIGVLIEGCSAALTSFPAFFLFDHSLTLQFFHLDDCMSTIEFREKGMYQQPKSREEHASSAASFCKEVTELRLASIDSQAATSRPEFKGVTFRKASTGGFARSRNDVHELLDCTVCMNLMHPPIYQCANGHTLCSSCKARVQNCCPTCRHELGNIRCLALEKVAESLELPCVYQNLGCIDMFPYYSKLKHEKNCKYRPYNCPYAGGECRVTGDIPYLVMHLKDDHEVDMHDGCSFSHRYVKSNPQEVENATWMLTVFNCFGRQFCLHFEAFRLGTAPVYMAFLRFMGDDDDAKQFSYSLEVGGNGRKLIWQGIPRSIRDSHRKVRDSHDGLIIQRKLALFCSGNEGMELKLKVTGRIWRVRVFTGLNPKPCGVGVVGRKKTAEQMLITRKLSASNLKSFLSLRFVSPSLTSHLFSSPFCLNPPILCPLPPTLSPSFSSKPTPPEASNLTRDGNYDEATSRFSLVCPGCGVHMQDTNPKHPGFFVKPSRKDSNYRLLTHLVPVHDESECSEFLKRGLVIEPDNQKTEENVTEKPHKPTVCSRCHSLRHYGKVKDPSVENLLPDFDFDHTIGRRLASTSGTRSVVLIVVDAADFDGSFPKKVANLVSATIEDNSAAWKQGKSGNVPRVVLVVTKIDLLPSSLSPTRFEHWVRQRAREGGINKITSLHMVSAVRDWGLKILVEDVIELVGARGNVWAIGAQNAGKSTLINSIGKHVGGKITQLTEAPVPGTTLGIIRVEGIFPGQAKLFDTPGLLNPHQITTRLTREEQKLVHISKELKPRTYRIKVGHTIHVAGLMRLDVEETTVDTIYVTVWASPYLPLHMGKTENATKIQEDHFGNQLQPPIGKDRVAELGKWVRREFRVCGSSWDSSCVDAAAAGLGWFAIGLKGEAVLSIWTYEGIEVVIRSSVIPYRSNFFEDAGFTVSKIVSKADQVANKPHDQSEKKKKKGDPKVRVLTETSVSKARSKYDSA Homology
BLAST of Clc02G25170 vs. NCBI nr
Match: KAF3444436.1 (hypothetical protein FNV43_RR14128 [Rhamnella rubrinervis]) HSP 1 Score: 1255.4 bits (3247), Expect = 0.0e+00 Identity = 629/924 (68.07%), Postives = 725/924 (78.46%), Query Frame = 0
BLAST of Clc02G25170 vs. NCBI nr
Match: KAB5572884.1 (hypothetical protein DKX38_000078 [Salix brachista]) HSP 1 Score: 1105.5 bits (2858), Expect = 0.0e+00 Identity = 562/912 (61.62%), Postives = 670/912 (73.46%), Query Frame = 0
BLAST of Clc02G25170 vs. NCBI nr
Match: XP_038901740.1 (GTP-binding protein BRASSINAZOLE INSENSITIVE PALE GREEN 2, chloroplastic [Benincasa hispida]) HSP 1 Score: 1087.0 bits (2810), Expect = 0.0e+00 Identity = 546/584 (93.49%), Postives = 560/584 (95.89%), Query Frame = 0
BLAST of Clc02G25170 vs. NCBI nr
Match: KAG6570359.1 (GTP-binding protein BRASSINAZOLE INSENSITIVE PALE GREEN 2, chloroplastic, partial [Cucurbita argyrosperma subsp. sororia] >KAG7010240.1 GTP-binding protein BRASSINAZOLE INSENSITIVE PALE GREEN 2, chloroplastic, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 1042.0 bits (2693), Expect = 3.7e-300 Identity = 524/593 (88.36%), Postives = 546/593 (92.07%), Query Frame = 0
BLAST of Clc02G25170 vs. NCBI nr
Match: XP_023513264.1 (GTP-binding protein BRASSINAZOLE INSENSITIVE PALE GREEN 2, chloroplastic [Cucurbita pepo subsp. pepo]) HSP 1 Score: 1041.6 bits (2692), Expect = 4.8e-300 Identity = 525/593 (88.53%), Postives = 545/593 (91.91%), Query Frame = 0
BLAST of Clc02G25170 vs. ExPASy Swiss-Prot
Match: Q9M2P4 (E3 ubiquitin-protein ligase SINAT2 OS=Arabidopsis thaliana OX=3702 GN=SINAT2 PE=1 SV=1) HSP 1 Score: 471.9 bits (1213), Expect = 2.0e-131 Identity = 217/301 (72.09%), Postives = 249/301 (82.72%), Query Frame = 0
BLAST of Clc02G25170 vs. ExPASy Swiss-Prot
Match: P93748 (Putative E3 ubiquitin-protein ligase SINAT1 OS=Arabidopsis thaliana OX=3702 GN=SINAT1 PE=1 SV=1) HSP 1 Score: 461.8 bits (1187), Expect = 2.1e-128 Identity = 214/298 (71.81%), Postives = 245/298 (82.21%), Query Frame = 0
BLAST of Clc02G25170 vs. ExPASy Swiss-Prot
Match: Q10L91 (E3 ubiquitin-protein ligase DIS1 OS=Oryza sativa subsp. japonica OX=39947 GN=DIS1 PE=1 SV=1) HSP 1 Score: 449.9 bits (1156), Expect = 8.1e-125 Identity = 197/255 (77.25%), Postives = 225/255 (88.24%), Query Frame = 0
BLAST of Clc02G25170 vs. ExPASy Swiss-Prot
Match: Q84JL3 (E3 ubiquitin-protein ligase SINAT3 OS=Arabidopsis thaliana OX=3702 GN=SINAT3 PE=1 SV=1) HSP 1 Score: 446.8 bits (1148), Expect = 6.9e-124 Identity = 198/277 (71.48%), Postives = 233/277 (84.12%), Query Frame = 0
BLAST of Clc02G25170 vs. ExPASy Swiss-Prot
Match: Q8W4I6 (GTP-binding protein BRASSINAZOLE INSENSITIVE PALE GREEN 2, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=BPG2 PE=1 SV=1) HSP 1 Score: 446.0 bits (1146), Expect = 1.2e-123 Identity = 236/580 (40.69%), Postives = 346/580 (59.66%), Query Frame = 0
BLAST of Clc02G25170 vs. ExPASy TrEMBL
Match: A0A5N5NZU1 (RING-type E3 ubiquitin transferase OS=Salix brachista OX=2182728 GN=DKX38_000078 PE=3 SV=1) HSP 1 Score: 1105.5 bits (2858), Expect = 0.0e+00 Identity = 562/912 (61.62%), Postives = 670/912 (73.46%), Query Frame = 0
BLAST of Clc02G25170 vs. ExPASy TrEMBL
Match: A0A6J1JD02 (GTP-binding protein BRASSINAZOLE INSENSITIVE PALE GREEN 2, chloroplastic OS=Cucurbita maxima OX=3661 GN=LOC111483924 PE=4 SV=1) HSP 1 Score: 1034.6 bits (2674), Expect = 2.8e-298 Identity = 521/593 (87.86%), Postives = 544/593 (91.74%), Query Frame = 0
BLAST of Clc02G25170 vs. ExPASy TrEMBL
Match: A0A6J1FW06 (GTP-binding protein BRASSINAZOLE INSENSITIVE PALE GREEN 2, chloroplastic OS=Cucurbita moschata OX=3662 GN=LOC111448990 PE=4 SV=1) HSP 1 Score: 1024.2 bits (2647), Expect = 3.8e-295 Identity = 515/584 (88.18%), Postives = 535/584 (91.61%), Query Frame = 0
BLAST of Clc02G25170 vs. ExPASy TrEMBL
Match: A0A0A0KZ58 (G domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_4G285700 PE=4 SV=1) HSP 1 Score: 1011.5 bits (2614), Expect = 2.6e-291 Identity = 500/572 (87.41%), Postives = 532/572 (93.01%), Query Frame = 0
BLAST of Clc02G25170 vs. ExPASy TrEMBL
Match: A0A5D3DDC5 (GTP-binding protein BRASSINAZOLE INSENSITIVE PALE GREEN 2 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold859G00340 PE=4 SV=1) HSP 1 Score: 997.7 bits (2578), Expect = 3.9e-287 Identity = 497/572 (86.89%), Postives = 528/572 (92.31%), Query Frame = 0
BLAST of Clc02G25170 vs. TAIR 10
Match: AT4G10620.1 (P-loop containing nucleoside triphosphate hydrolases superfamily protein ) HSP 1 Score: 726.5 bits (1874), Expect = 3.2e-209 Identity = 363/565 (64.25%), Postives = 442/565 (78.23%), Query Frame = 0
BLAST of Clc02G25170 vs. TAIR 10
Match: AT3G58040.1 (seven in absentia of Arabidopsis 2 ) HSP 1 Score: 471.9 bits (1213), Expect = 1.4e-132 Identity = 217/301 (72.09%), Postives = 249/301 (82.72%), Query Frame = 0
BLAST of Clc02G25170 vs. TAIR 10
Match: AT2G41980.1 (Protein with RING/U-box and TRAF-like domains ) HSP 1 Score: 461.8 bits (1187), Expect = 1.5e-129 Identity = 214/298 (71.81%), Postives = 245/298 (82.21%), Query Frame = 0
BLAST of Clc02G25170 vs. TAIR 10
Match: AT3G61790.1 (Protein with RING/U-box and TRAF-like domains ) HSP 1 Score: 446.8 bits (1148), Expect = 4.9e-125 Identity = 198/277 (71.48%), Postives = 233/277 (84.12%), Query Frame = 0
BLAST of Clc02G25170 vs. TAIR 10
Match: AT3G57180.1 (P-loop containing nucleoside triphosphate hydrolases superfamily protein ) HSP 1 Score: 446.0 bits (1146), Expect = 8.3e-125 Identity = 236/580 (40.69%), Postives = 346/580 (59.66%), 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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