CmUC04G080160 (gene) Watermelon (USVL531) v1
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.ATGCTTACCAAACCACCTTTTTTTGCCCAATTGCATCAAAGACCAAACTTCTCTAGTAAGCAAAAGGTAAGTTTTTAATTCATATCCAACCTCCATAACTTCTTACGACATGGGGTCAGGAATAAGCTCTATTCGACCAAGCATCCACCTTCGAATATAACTTTCCAAACAACTTCCATCTACCAACATTCTTACATAGAATTGAATCATTTCTAGCTTTCAAAAGTGCTTTATCCTCCATGAACGGGTTGAGTGATATTTGTGTTTGAAGAAATTCTTCCAGAGATTCCTTCACTTCCTTCCAAGAATAATGAGCAAATAATCTAGATACCACAAACAAGGACTTTAGGTTTAAGTTCAAAACTTCAGATTCCTTCTTCACCCAAAAGGATGCAATGCTAGCAGTCGTATGCTTTGATTTTGGAACTATGGAGTTTGTAACTTGTATGAGCACTTCTGCATAGGATCTTTTCCTTTCCATTTCTGAATTAGATCCAACAAAAATCTTCTTTCCTTCCAAAGCCTAACAAGTTGCACTATTGTTGTGCAATCAGCAATGTGCTGAAGGAGAACCAACCCTTTTTGTCATGGCTTAAAGGAATATGAAGATTTTTCCTTCCTCCTGATGCAGACCAAGAACCCTTTTCCGATTCGAATTTGGCCAAACGAAAGATACCTTGATCCCATTGTTTCTTCTTCTGAAAATATGAATGTGATGGGACATGCAGCAAGTTCTTCACTTCTCCAACCAACCATTTGAAGATGCATTCTGAAGGGGAAATCTTTTGATGTTTGCTCAACTCTTCTAAAATGAAGTCTTTTGTGCTCTTGTTTCCCATATTGTAATTTGAGCATTAGTCTCCATTCATTAATTCAATGAAGATACTCGTTTCCTTAAAAAAAAAAAAAAACTCCATCTTAACAAACACTTTTGAAACAAAAATGTAAACCGTGAAAAAACTCTTCATTGATTGGGACGATATCTGTTGTATGATGGGCAAAGGAATTTGGTCGGACAAGAGAAGGAGTGAGGAGAGAGGCCGTTTTTGGGGGAGAGGAGAGGGGGGGGGGGGGGGAGTGAGGACCAGTTATTAGTTTTCCAACACTTATTTGGCTTGTACTATTCATCCATTGTGATTGTCTCTTCTATTTGTTTTAATTGGATGTCTTATAATTTTTGGAGTATTAGTCTTGTTTCATTATATCAATGAAAACTTTGTTCTGTTTCATTGGTTTAGTTATTTTGGTTTTGACCCATTATATTTGTGTGTGCCCTTTGCTTTCATGTACTTTTATTGGTTGTTTATATTGTTGCGCTTAGTGTGGAGATGATGAGAGTGCTAAGGAGGTATCAACCTAGTGTGTCAACCTAGTTGAGATGTCCGAGTGCACTCCCTGATCCTTAGGTACTCTTGCTCTTGTTTCTATTATTGTACATTGAGCTTTTGTCTCAATTCATTATATTAATGAAAGAGACTTGTTTCCTTTTTTTTTTTAAAAAATTATATCAATGAAAATGCATTGTTCCTTTCAAAAAAAAAAAGTCTCCTTGATTTCATATGCAAGAGGAGACAAACTGCTCCTCAGTGATGCAAAGGAAATTCCCCTCTCATTGTTTGCCTCCATCTATTTGCCCTTTATGTAAACAAGAAGGTGAAGACTTGCAGCACCTATTCGTTGCTTGTTCATACATGATCTGTTGCTGGTGGAGACTATTCTCATTCTTCAATGTTTCTTGGGTGTTTGGAGCTGTCTTTAGAGACAATGTTCAGCATCTTCTTATTGGTCCCTCAGTTGATTTGGGCTAATGAAATTCAGGCAATGCTTGCTGAAGTTTGGTTTGAAAGGAATCAAAAAGGAATCAAAGAGTGTTCCATGACAAACAACTTGGATGGTTGGATCATTTTGAAATTGCTCGTTGGAATGCTTCCTCTTGGTGCACCTTATCCAAGCCTTTTGAAGACTTTTCTGTCCAAGACCTATGTCTAAATTGACATGCATTTATTTTCCCCCCCTAAGTTTTGTTGTTGCATTTTTATTGTTACTATTTGGACAGCTTGATCCTTTTGCGTCTTGGACGATGGAACAATTTTGTCTTTGTTTTGTTTTGTATATGGACATGATGAGGATGCTAAGGGGAGTCAATCCAGTTGAGATTCCCAGGTGCATCTCCTGATCCTCACGTTTCTCGTTCACTTATTGTATCTTTATTTTGTACTTTGAGCATTAGTCTCATTTCATTAAATTAATGAAGGGGCTGGTTTCTATTTCAAAAAAATATGCAAGAGGAGACAATTCATTGTTATCTAATTTGTCATTCTAGGAATGGGACCCTTTTCATTTGTTTTCCTTCTTTCTTCATATACAACAAACCACTTCTTGATGTCTTCCTTCAATTTCTAAGTTTAGAATTAATCACAAATCATTGCTACCCTTGTATTTTTCATCATGGCCCTGTAAACCAGATTGTGCTTATAACATGTCATTCCATCTGTGAATTAGTTATGTATTATGGAATTATAGGACTTGGATTCATTGAATTTTAATGTGAGGAACACCAGGTTTTGAAGAAAGCTGATATGATTCGGAAGAATGCCGTTGAAAGTATTTTGGCAGAACGTGATATTTTAATTTCTGTGCGCAACCCTTTTGTGGTGAGCTTGTCTATTTGGTTGTGTAAGTTATGCCTTATTTTCTTTTTGGTTTTGTTTTAACTGTAAAGTTGATTGTATCAGGTCCGCTTCTTCTACTCTTTTACTTGTCGTGACAATTTGTATCTCGTGATGGAGTATTTGAATGGAGGAGACCTTTACTCCTTGTTGAGAAATTTGGGCTGCTTAGATGAAGATGTTGCTCGCGTATATATCGCAGAAGTTGTATGTATATGTTCCTTTTCATCTTTCATTAGGCCTGCAAAGTGAAAGCAATTATTAGTAAGCTAAAATATGAAAAGGACTTAGATAGATAACACCAAGCATCCTTCAGCCTGAGATTTCCTCCGTGGCATGGTGTTGCTCGATTGCCAATTGGTTAGATTGCATTTCATTGGGTTGGAGTCTCTTCGGCATGGGCTGTCTTTTTTAGGAGATTGCTTCAACTTGATTTCCAGCCGCTTCTTTTTGGGTTGATCAAGCATTGTTGAAGTTTTTTTTGGAGCATCTTTGAAGGCTATGTATCATCAGTTGTGGATTTTTGCTGTCAAAGTATTACCAGCCAGATTTTTGGTTTGATAGGATGCTTGGTGTTATCTTTCTAAGTCTTTTACGTATTTTTCTTTTTCAAGTCTTTTGTTTGTATTGGGAAATTTTTCTTTCATGGTTGATCTTTGATTTATTTGGGTTGTGGTTCTTATAGTGCTTTTTTTTTTTTGTTTTTTTTTTTTGTCTTATTCTGAGCGTTAGTCTGTTTTCCTTTATATCCATGAAAAGTTCTATTCCCTTCAAAAGAAAAAAAAGAAAAGAAAAAAATTTGCTTGTTTATCTTTTCAGGTTCTTGCTTTGGAGTATCTGCATTCACTTGGGGTAGTTCATCGGGACTTAAAGCCTGATAATTTATTAATAGCACATGATGGTCATATTAAGGTAAATCAATATGTTTGCTCTTATAACTTACTCAGGATATTTATAATAATTGGGAGGCCTTTATGTTATAAATTAAAGCCTGGTAATATGTTTGCTCTTATCTGCCTCAAAATGGTGCTCTTCGTCCCGTATCTTCGCTGGTTATTCAAGAAATGATATTTGTAATAATTGGGAGGCCATTATGTGAGATTAAGGTTTTAGTTTTTCTTATTAAGAAAATTTAACGTTGCTTTAGTTTTTCTGATTGCTTTATGTTTCTCTTTAGTGTACGGGTGTACCTTTGATAGTATTGTTCGTTATGTTTTTTTGTTTTTCGTATCTTCTCAGTTATCAGTAAAAAAATTCCTTTATTCTTAGAAAAATGCATTTAATTACCATCACTGAAATTTCAGCTTCTCATAAAAATGGAAATAAAAATAATTCTCTGTTACTTACATAACTATTTTTGCTTCAAGCAGCTGACAGATTTTGGGCTTTCCAAGGTTGGTCTAATCAACAGTACTGATGATTTGTCTGGACCAGCTGTTAGCGGGACCACTCTTCTTGGCTATGATGAACCTACAATGTCTGCTTCTGAGCATCAACAAGAAAGACGGAAAAAGCGTTCTGCTGTTGGCACACCAGATTATTTGGCACCAGAGATACTATTGGGAACTGGACACGGTTACATAGACCACCTTTTTTTTATTTTTTATTTTTAATTCCAACTTAAGGGTAGCTGTCTTTATTCTTTTCTTTTTCCATCTATTTGTTTTTTTTAAGCAACAAATTTCAATGATGTATAAAATTACAAATTACAAAAGAAGGGCCAAATCCCAAACTAACTAAGATCAATTGGTCAAAAGAGAAGAGAGATTATAAGAACTATAAAAGGATGTGCATTTGCACCAAGTCATAGCAAGAATGATATCATGTTCATCAAGAATCACCGCCCCAAATCTAGAGATCTCTACCCCTTCACGACAAGATGCATCCACATATATAGCTGATCTCCCCTACTAACCAAAAGGGCTCAACGACTCCCTTAATGACACCTCAACATCTGTCACACCAGGATTTGAGTAAAAGCTTAGATAGTCAATTGTCCACTCAAAACAAATAGAAATTGATGAAATAGGGGATTCATGGTAAATTTTGATACGATCTCCCTAAATAGCCCACATCCCCACACATGCAATGGCAAACTCAGTAGAAAGAGACATAACAATCTTCACCCAACACCTCTTATAAAAAAAGTGAACTTCCTTAAGACTTCCAATTAGAGATAAGAGTACCCCAAATTTTCTTCCTAGCTCTCGAGCATTCAAATAAAGCACACACTATTCTTTCAACCGAAAGCCCACACTATGGAGGAAGAGGATCAATATCGAAGTTATGGCAAGACAGTAAGAAATAGTGGAATGCCTTCTTTTTTTGAAATGAAAATCAGTGTTGTTGAGGTGACCTCGGGCATGCGCCTAAGGTGAGGCGAGGCGCTCAGGGGCCTTTGTGCCTCTTGTAATGCCTAGGCGAGGCTCTTCAAAGAGGCAGTTGCCTTTTGGCGCCTCGGTGCACCTTCGCCTGATTAAATTTTATTTATGATTATTTTTTAAAAATAATATTTGATCCACAACCCACGTTAAAGACTTTCAATTACTTAACCTCAAGAATTCAGCAACTTCCTTCAAGAATTTCACGGCTTCCTTCAACTTCCGTTGCTTCGATTTCTTCTTCTTTTCTCTGTATTAGCTTTGGTTTTTTGAAGTTCTTTTTGCAGCTGTTTCGAGTTCAGGAGGGTGTGGCTTGTGGGTTTCGTTTTCCTTTTAATACTGATTTTCTGACTTGTGTAAAGGTAATATAAATTTATTATATTCCTTTTTTATATGCTGATTTCTTGAAGCTTCAACAAGTTTTTAAATAAAAAAAAGTCAGGTCGGTTGGTGGAGTTGGGTCTGGGTGGATCAAGATATTCTTTTTAGTTTTGAATTGTTTTCTAATAACTTATAACCATCTTAGTTTTTGCATATTATATATTTAGCGGATGGCGTGAGAGATTACATATTTTTCCTATTCATCTTATAATTTATATATTATGATTAGGAAAATTATTATAAATAAAAAACATATCAAACTATTTACAAATATAGCAAAATTTCAACATGTTTTGTCCTATCCTAGTGAATTGGATTCTTTGCAATACTTATTGCAACTTGATTGTCACACATCATTTGTATTGGTACCCCAAAAAAGAAGCATTTTGGCAGCTGGTCATAGGGAAAGTTCAAGATAAGTTGGATAAATGGAAAAGATACAACTTGTCAAGAGGGGGCCGTGTTACCCTTTGCAAATCGGTCCTTGCTCATCTCCCAACATATTATATGTCCTTATTTTTAATGCTGGAGAAGGTGATCACATTTTTAGAATGAGCAATGCGGAACTTTTTTTGGGAAGGTCACAAAGGAGGAAAAATCAATCACCTGGTTAAGTGGAAATTGATCACGGGAAACCAATCTGATGGTGGCCTTGGAATCAGAAATCTGAGAGCAAAAAATGCTGCCCTATTAGCTAAATGGGGCTGGAGATTCATGAAGGAAAAGAACTCCCTTTGGCGTCAAGTGGTCCAAAGTATTCATGGGAAAAGTTTGTTCGGTTGGCATACAAGCGGTTTAGCCATATGTAGTCTCCGTAGCCCTTGGGTTAGCATTTCAAGGACTTGGCTAAAGGTTGAAGCTTTGGCGATGTTCAAGGTGGAAAACGGAAGAACCACATTTTGGCTTGAACCTTGGGTGAATAAAACACCTCTTATTGATCTATTCCCACGTTTTTTCAGAATTTCATTAAATCCAAGAGGTGCAATTGCAGAATTTTGGGACCCTTCAACTACATCTTGGTCCATCAATTTCAGAAGAAACCTTAAAAAAGAAGAAATTGTTGAATTTCAAAACCTCCTCGGTCTTATCTCCTCCTTCCCCATCACAACAACGGATGATTCTCGGCATTGGGAGCTAGAAACTAATGAGAAATTCTCGGTAAAATCTCTTGTTAAACACCTCTCCAAGACCTCCCCCATTGGAAAGCTATTGGAAGATTCTTTATGGAAATCTAAAAGCCCCCGGAGAGTCAACATTACTGTTTGGATAAAGCTGGAAGGGCTTCTTAATTGTGCTTCAATGGTTCAATCAAAGCTGCCAGCTCATTTCCTCTCCCCCCATATTTGTCATCTCTGTTTGGCAGACCAAGAAGACCTACAACATCTATTTTTCAGCTGCAAATATGCCAGAAACTGCTGGTTCTGTTTATTCGAACACTTTAACCTAAGCTGGGTTTTTGGTAATAAGTTCAAGGAGAATGTATTGCATTTGCTGATTGGTCCTAGGCTGAAATCAAAACCAAATCTGCTATGGGCTAACGCGGTTAAAGCAATATTATCATAAATCTGGTTTGAAAGGAATCAGAGAGTATTCGATGCCAAAGCCTCACCTTGGTCGGTCAGATTTGAGAATGCTAAACTAAATGCTTCTTCATGGTGTTCTCTTGCCAAGACAATCAAAGACTTCTCCATCCACGATATTTGCCACAATTGGATGGCCTTTATCACCCCCCCTATTAGCATTTTGTTAGTTAGGAGTCTTTCTCTTGTATTCTACTCTTGCTAGTCCACAATTTCTTGTATTAGTTTGAACTATATTACCTCACAGGAAACTTCTAATTCTTTTGTAGTGGACATGATGAGAGTACTATGGGAGTGTCAACTTAGTTGAGATGCCTGGGTGCACTCCTTGATCCATAAATTATCTTTGTATCCCTTTCACTTCTATATCCTATTTCATTATCTTAATGAAGAGGGTTGTTTCCTTTTTTTAAAAAAACAATCTTTTCCTAACTCATTTAGGACTCTTTTGATCCTTATACCTTCATACATGCACTAAGCAAGTGCTCTAAATTCAACTTCTGCACTACTTCTTGCAACCACAGGCTGCTTTTTACTTCTCCATGTAACAAGATTGCCCCATATAAAGGAGCAATAACTAAAAGTAGACCGTCTTTTTGAGACATCCCCCGACCAATCTGCATCAGAATATACTTCAATGTTTCTCTTATCAGTTTTTTTTAAAAAAATAGCCCTTTTCCAGGAGTCATCTTTAGATATCTAATGCAGATTTGCAGCCTAACATTCCAGTTTCTTTGAGATCTAACACATACTTCCTCTGAGATATACCATGTTTTGATAGAGCAACCTCTATAGCTAGAAAATATTTTAGATTTCCTAGATCCTTGACTTCAAATTCTTGAGTCAAGTGCCTTTTCAAGGTTTGTAATTCTGATTCATCATTTCCAAAAGGAATTATGTCAAAAACATATACTATCAAGAGGGCAAGTAGATTTTTAGATGTTCTTTTGACAAATAGAGTATGACTGATTGACATTGTGAATACCCAAGACTGAGAACAAAAGTTGCAAATCTACCGAACCAAGCACGAGGCGATTGCTTAAGTCCATAAAGGGATTTCTTTAGTTCGCAAACCTCTGTTGTACCAAATTTCTCTGTGCATCCAGGAGGAACATCCATGTATACTTCTTCCAATTCACCATTCAAGAAGGCATTCTTAATATCTAACTGTTGAAGGGAAAGAGACCTTGTAAGGTAAGTTGCTCTCTCCTCTCCCCTCTCCCCCCTCCCCCCTCTCCTCCCTTCTCCCACCTCCTTTCTCCCTCCTTCTCTGGTAGACACCGACAAGCACTCAACGCTCCCACCAAGTACCTAATTCAACAAAATCAGGCTCCTCAGCTGGAAGAATGGAACTTAGAAGCTGCAAAGTGAATGGTGTCTACTTCTGTATTTGGTTTGATTCTGAAAGGTTTAATATAGAAGACATGGAAGCGAACAAAGTCTTACCCTTGTTCGAAACTCAACTCCGTTGGGTCGTGGATCAAATAGGAGAACTTCTCAATGGGTTAAGTGAACGATTTTTTCTCAGAAATATCAGAAATGACAGTAGAGTGATAAGGATATTGAAATTTAGAGCTAATTCAGGGTGGACTAGATGTGTGGTCTGGCCGGCTTCTAGGGGTAGAATCTTTATCCACGTTTCGAAGGGAACAACACAAAAGGGGTGGATATCCTTCTTAAAGATGATTGAAGGTTTCCTCTACAGCTTTGAAGCAGACCACGGACAACATGATAAAATTCAAAATTCGAAGATGGTTCCAAAGATCAATTATGCGGATGCAGTGAAAAACTACATCATTACTAAGGCCCCAACTGCTCCCTCCACTTGGAAGAAAGATTTACTTAAGTCCTCTGTTTCGCCATATGAGATATAGAGCAAGACGTTGCACTAGGTTCAAAAAAATTTCGATATGTTTAAGGAAGACTTCACAAACCTTTGGGTTATTTCCAAATTATTTGTTTTTAATGAATGGTTAGAAATTACCAATTTCGTGGAAGAACTTTTTCTAGTTAAAGTCATCATCAATCCACTATTTGCAGACAAAGCTCTAATTAAGATTGATCACGGAAAGTTGGAAGATCTGATTGAGAACCCTGGAAAATGGCATGATTATGGGAAATTCCATCTAAGAAGAGTCAACACCACGGTGTGGATTGTGATTTTTGGAAGCTTGAACTGCTCATTCGCCACCTTTGTATGTCAGCATTAGAGGACTTGCAACATTTATTTTATAACTGTAGCTTCGCAAGGAAATGTTGGCAGCGGTTGTTATTTATTCAACCTGTCTTGGGTTTTTGGGAAGGAATTCAAGGACAACACACTCCAAATTCTGATTGGTTCAGACCTCAAAAAAGGGCCCAAAATAAATGTTGCAAGTCCTCTGACCTAGGGGAGTTCGTTTCCCACTAGGTAGGTCTGTCACTATCCATGTACTGTTTTTTTCATGTGCTTCAATCTCATCTTGAATGGCTTTTCTCCAACCAGGATGCATTATAGCTTCATGAATGTTAGCTGGCACTTGAACATTGTCTCTAATGGAAACAAATGCTTGATATGATTCAGATAATCCATCATAAGACACATAGTTCCCAACGGGATGCATGGTACAACTCCTGACTCCTTTTCTTACTGCAATTGGTAACTCTAAATCATCAACCTTTGGAAGTAGGAGCTGGTTCAGACGTTTGGGAGATGTGATTAGTTCTAGAACCTGTCCTCTCAACTTGTTTGTTCCTCGTATATGTGTGTAGATTTTTATTAGCATTTGTCGGAACAACAATATTTGGAGACGTAGGTATACTTGAAGAAGTGGAAGGGTGAGAATGAATAGGATATAGTGAGGTGATTGATTCAAGTTCAGGTTCAATCTCAAGTAAAGATGCGCATGATTGAAGTTGATTGTCGTGCACATTCTCCCCCTGACAATCATTTTTGGAATAAAATGGGACATCTTCAAAGAATATGACATCCATAGTAACATAAACTCGATTTGGGAAAGGAGAAAAACATTTGTAACCACGTTGAGTGGGTGCGTAACGCAAGAATATGCATTTATGGGCTCGAGGATCCAACTTACTACGAGGATGGGAAGGGATGTCAACAAATGCACTACGCCAGAAGACTTTAGGAATCAAATCAGGAGATTGAGCACGTAGACGAGGAAATGATTGAAAGAAGACTTGATGAGGAGTGGAGTAACTAAGAACATGAGAGGGCATACGATTTATCAGATAAGTAGTAGTAAGAATAGCTTCCCCCAATAAAATTTAGGAACATGGGTAGAGAACATCAAGCATCGAGTGACTTCAAGAAGATGTCGATTCTTGTATTCAGCTACACGATTTTGTTGAGGAGTGTCAACACGAGCTAAGGTGGAAAATTCCTTGATTTGATAGATAATCTCCAAAAGATGAACTAAAAGATTCTTTTGCATTATCTGTTTTGAGGGCACGGATTTTTGCTTGATATAAGATTTTGGATCATATTATGAAACTGTTTGAAATGATTATAAACTTCAGATTTATCTTTCATAAGAAAGACCCAGTAACCCGTGCATGATCATCAACAAAGGAAACAAACCATCGAGCCCCAAAGATATTTTTTATTTTCAAAGGACCCTATACATCACTATGAATCAAAGAAATTGGACTTGACGGTTTATAAGCAATACGAGGATAAGAGTTTCTAGTATGCTTGGCAACTTGACAGATCTCACAATTGAATAATGTAGGATTTTTATGATGGAAAAGTTTTGGATATAGTTTAGAGAGAAAAAAATTCGGATGACCCAACTGATAGTGTAACAACATTATTTCACTATCTTTATTGACACAAGAAGAAAACTTACTACTAGAAATAAAAGACTTGTCTGCAAATGCTAGTAGAAAGACTTGTCTGCAAATGCTAGTAGGCTGCCAAGATCATAGTTGAGAAGATAGAGTCCGAAACATAAGTCAACACTGCCAATTATCTTCGCCAATTCCAAATCCTGAAAAACACATGAGTTTGGATAAAATTTAACGACACAAGCAAGATCACGTGTCAACTTACTTATTGAGAGTAAAATACAATCCAAGTCTGGCACATGTAAAACAGAGTTGAGATATAGATTTTGAGTAACTCTAACTGAACTTGTCCCAACTACTTTAGAATATGAACCATTAGCAATTCTCACAGACAAATTTGAGGTGTCAGCTTGGTAATTTTGGAACAAAGATTTGTTTCCTGTCATATGGTTTGAGGCTCTGTGTCTACAATCCAGGGTTGCATCCCTCCTTTACTAGCTGTTAGAGCAATAGGCATGACTTTCTGAGCTACTAACCCTGCTCCCTGTATGATGACCAATGATCTTTGCAATGCTTCATTTGTTCTTTGCTAAAAGGAGTTGACTCCGAAGTAATAGAATTTCAGAAGCTACATTAGCCCATATGCCTACTATTATGATCTTGCGATGACGTGATTTCCAATCTACTGGTTTCCCATGGAGTTTCCAACATGTGTCTTTTATGGGAACCCACCTTTCTGCAATGTTCCACACCATGGTCTCTCTCCTTTTGCTTGTTATCACTTGTCTTGTTGGATTAAAACTACATGTGCAGAAGCATCTAGGAACTGTAGGAACTGATTATGAGTTCCCCATCATTAAACTCTTCCTACTTTCTTGTCGCCTTACTTCTAAAAAAGTTTCACGGAAACCTGGTAGTGCAATTCCCATGATTCTCCCTCGAACTTCATCCAGATCATTGTTTAAGGCCAAGGAGAAATTTGGAGGTCCTCTTTTTCTAAAGAATTTCCTTATATTGAGTAGTATTACTAGCACACTTCCATGTATAGACTTCAAATAAATCAAGGTGTTGCCAATGATGAGAAAGATTATTAAAATATTGAGTAACAGACTGATCACCTTGGCGAAAATCATAGAGAATTGATTCAATGCGAAATAATTCTGTAGTGTTCTCTTCGCTAGAAAAAGTTTCCTGGACAGCGTCCTAAATCTCATGTGTGGTTTTTCATATAAGAGAAAATTTTTGCTATCTCATTTGTCATGGAATTTATTAGCTATGACATGACCATGTTGTTATCCACTTTCCACTTTTTGAATTATGGATTAGTCTTTTTGGGCTATTCATTTTCACTAGAGAGAAACTCATCCTTACCCTTACCACATGAATATCCTAACCGATTATGACCATTGAATGTAATTGTGGCCATTCAATTTGTGACTTTTGATTAGGGTATGTGATGCATATTCATTTGAAGTAATTTCCATTGATTTTGATGAAGTCATACTGTAAGGTGAAAAATTGGGCTAGTGATGATGAAGAAATCTGCCAATCGGTGATGAAGAATAAACCCACAGGCTATTGAATTAGTTTGGATTGAAGGAAGAATCCGCAGAAGTATTGATATTATTCAACGGAAACCACTACAACAGACGACAATCAGTGAAAATACCCCGGTGAACCCACAACAGGAAACCCACAATGGCGAACGGAAGATGTACGACAGTAGCGTTGTCTGGCGCAACATACGGATAAACTTCCCAAAGATGGTGAGTTGTCGATCATTGAGATTAGGGTTTCTAGACAATTAGGGTTGGCTTTGATACCATGAGAAATTTCTATATTTTCATTCATAAACTCACTAACTGCTTAATTCCTATATATATACAAGGGAAAAAATAATATAAGGAAATTATCTACCCCTAAATCAAACATTTAAATAATTACAAACTAAAAGTTACGGTAAATTCCTAACAAGACAATTACAAAAATACCCAAACTTTAATAAACCACAATAAATTACAACACAAAGAAATCAAGACAAAAGACGTAATAATAGACGAAGGTAATGTTGGCAAAGAAGACGTCAACCATGGGCAACCCGATTTGAAGAAGTTTGACACTCTAGTTGCAGCCGATTGCTTGGAAAACAACGAGGAAGAATGCATGGAAACACATGATCCATTTGAACTGACCGAAGTGATTCGACCCAACATGTGTGCTCAATTTCTAGCATTTGTTTCATGCATATCCGACCTGGGTTCAATCCTTCCCCGTTTCAATTTGCTCCCTCTTCGTGAGTTTTTTTCAACCCATTTCTTCACGAATTCTTGGTTATGTAACAACAAAATTTCAGATGGGTTTATGGGTTGTTTTGATACGTAGTCTTTGGCTGAGCAAAATCTTAGTGGGTGGCGTGCATACAATTCTCAACAACCGAAGAAATTTTTTGATGAGAGTCATGCTCTACAGTTCTCAGATTTTTTATGGGCTCCTTCATTCTTCGTAGTTGTAGTTGCAGTGGATGGACTTTTTGTCAAATAATCCAATTACAATCTCATCATCCAGATGTAGTTTTAATTTGGTTTTAATTAAGGAAACAAGAAAAGTGGAAGTGGATGGATTTTTCATCAAATAATTTTGGAGATCAAAAGTTGTAGGCTGGTCTTTTGTGGATTCTCTTGAAAATTTGGTGGCATTTTTGGCTGCTGTTTCTATGACTTGTTGCAAGAAGTTGTTCTCTATATTTCATATCCAGTGGGTGTTTGGTAATTCATTCAAGCCTCAATCAAATTTGATTTGGTCAATTGCGATTAAAGCCTTGCTTGCTGAAAATTGGTTTGAAAGAAACCAAAGGGTCTTTCAAGACAAATCTCTCACTTCTAGTGAATGTTATGAAGTTGCAAGGCTTTTTGCTTACTCTTGGTGTTCTTTCTTGGTGCAAGATATTTGTATGATTTGATGTGCTTTTATTTTCTTTGATTAGCTTTATTTTTGCAAACATCCGGATGGTTATTTTGTATTCTCAGTCTTTTCCTTTTTCAGTTTCATTGTAATTTGAGCATTAGTCTCTTATCAATAAATCAATGAAAAGTTTTGTTTCTTTTAAAAAAAAGAAAAAAAAAAAGAAAAAAGGAACCCTACTATTAGAACTTTGGTTGGAAAGAAATCAATGATATTTTAGAATTCTTCTTTTTCTCAATTTGATCGTTTTGATTCAGCACATCTCAAAGCTTCTTATTGGTGTTTGTTATCAAAGATCTTCGATGGGTTTTCTGTTTGAGATATCTCTCGAAGCTGGGATGCTTTCATTTACTCCTTTTTTAAAATCTTATTTGTCATAGTTTTCTTTATCCTTTCTAGTTTTGTCTGGTCTATTATTTGTCCTGAGTGTTTTTCTTTTGGTTAGTCTCTTTTCATTTACCTAATAAAAGTTTCATTTTTTTTTTCTAAAAATAGAGACCAGTCCAACAATAAATCTTTTAAAGAACAATTGATATTTCCAATATCCCTGCCTTCTTTGTACTAAAAAAACTTTGAGTGGTTGTAAATCTAGCCTGAAGCGATTATGATTCGAACTATTTTACGTATAATAAAAGTGTCTAATCAAATTTTCTTCCTTGTTCTGTCTGTAGGCGCCACAGCTGACTGGTGGTCTGTTGGGATCATTTTATTTGAACTAATTGTTGGCATTCCGCCCTTCAATGCAGAGCATCCCCAGGTTTACTTCTTGTTATAG ATGCTTACCAAACCACCTTTTTTTGCCCAATTGCATCAAAGACCAAACTTCTCTAGTAAGCAAAAGGTTTTGAAGAAAGCTGATATGATTCGGAAGAATGCCGTTGAAAGTATTTTGGCAGAACGTGATATTTTAATTTCTGTGCGCAACCCTTTTGTGGTCCGCTTCTTCTACTCTTTTACTTGTCGTGACAATTTGTATCTCGTGATGGAGTATTTGAATGGAGGAGACCTTTACTCCTTGTTGAGAAATTTGGGCTGCTTAGATGAAGATGTTGCTCGCGTATATATCGCAGAAGTTCTGACAGATTTTGGGCTTTCCAAGGTTGGTCTAATCAACAGTACTGATGATTTGTCTGGACCAGCTGTTAGCGGGACCACTCTTCTTGGCTATGATGAACCTACAATGTCTGCTTCTGAGCATCAACAAGAAAGACGGAAAAAGCGTTCTGCTGTTGGCACACCAGATTATTTGGCACCAGAGATACTATTGGGAACTGGACACGGTGAGGCGAGGCGCTCAGGGGCCTTTGTGCCTCTTGTAATGCCTAGGCGAGGCTCTTCAAAGAGGCAGTTGCCTTTTGGCGCCTCGCTGTTTCGAGTTCAGGAGGGTGTGGCTTGTGGGTTTCGTTTTCCTTTTAATACTGATTTTCTGACTTGTGTAAAGACGACAATCAGTGAAAATACCCCGGTGAACCCACAACAGGAAACCCACAATGGCGAACGGAAGATGTACGACAGTAGCGTTGTCTGGCGCAACATACGGATAAACTTCCCAAAGATGCACATCTCAAAGCTTCTTATTGGTGTTTGTTATCAAAGATCTTCGATGGGCGCCACAGCTGACTGGTGGTCTGTTGGGATCATTTTATTTGAACTAATTGTTGGCATTCCGCCCTTCAATGCAGAGCATCCCCAGGTTTACTTCTTGTTATAG ATGCTTACCAAACCACCTTTTTTTGCCCAATTGCATCAAAGACCAAACTTCTCTAGTAAGCAAAAGGTTTTGAAGAAAGCTGATATGATTCGGAAGAATGCCGTTGAAAGTATTTTGGCAGAACGTGATATTTTAATTTCTGTGCGCAACCCTTTTGTGGTCCGCTTCTTCTACTCTTTTACTTGTCGTGACAATTTGTATCTCGTGATGGAGTATTTGAATGGAGGAGACCTTTACTCCTTGTTGAGAAATTTGGGCTGCTTAGATGAAGATGTTGCTCGCGTATATATCGCAGAAGTTCTGACAGATTTTGGGCTTTCCAAGGTTGGTCTAATCAACAGTACTGATGATTTGTCTGGACCAGCTGTTAGCGGGACCACTCTTCTTGGCTATGATGAACCTACAATGTCTGCTTCTGAGCATCAACAAGAAAGACGGAAAAAGCGTTCTGCTGTTGGCACACCAGATTATTTGGCACCAGAGATACTATTGGGAACTGGACACGGTGAGGCGAGGCGCTCAGGGGCCTTTGTGCCTCTTGTAATGCCTAGGCGAGGCTCTTCAAAGAGGCAGTTGCCTTTTGGCGCCTCGCTGTTTCGAGTTCAGGAGGGTGTGGCTTGTGGGTTTCGTTTTCCTTTTAATACTGATTTTCTGACTTGTGTAAAGACGACAATCAGTGAAAATACCCCGGTGAACCCACAACAGGAAACCCACAATGGCGAACGGAAGATGTACGACAGTAGCGTTGTCTGGCGCAACATACGGATAAACTTCCCAAAGATGCACATCTCAAAGCTTCTTATTGGTGTTTGTTATCAAAGATCTTCGATGGGCGCCACAGCTGACTGGTGGTCTGTTGGGATCATTTTATTTGAACTAATTGTTGGCATTCCGCCCTTCAATGCAGAGCATCCCCAGGTTTACTTCTTGTTATAG MLTKPPFFAQLHQRPNFSSKQKVLKKADMIRKNAVESILAERDILISVRNPFVVRFFYSFTCRDNLYLVMEYLNGGDLYSLLRNLGCLDEDVARVYIAEVLTDFGLSKVGLINSTDDLSGPAVSGTTLLGYDEPTMSASEHQQERRKKRSAVGTPDYLAPEILLGTGHGEARRSGAFVPLVMPRRGSSKRQLPFGASLFRVQEGVACGFRFPFNTDFLTCVKTTISENTPVNPQQETHNGERKMYDSSVVWRNIRINFPKMHISKLLIGVCYQRSSMGATADWWSVGIILFELIVGIPPFNAEHPQVYFLL Homology
BLAST of CmUC04G080160 vs. NCBI nr
Match: XP_038893957.1 (probable serine/threonine protein kinase IREH1 isoform X2 [Benincasa hispida]) HSP 1 Score: 292.7 bits (748), Expect = 3.6e-75 Identity = 176/319 (55.17%), Postives = 177/319 (55.49%), Query Frame = 0
BLAST of CmUC04G080160 vs. NCBI nr
Match: XP_038893956.1 (probable serine/threonine protein kinase IREH1 isoform X1 [Benincasa hispida]) HSP 1 Score: 292.7 bits (748), Expect = 3.6e-75 Identity = 176/319 (55.17%), Postives = 177/319 (55.49%), Query Frame = 0
BLAST of CmUC04G080160 vs. NCBI nr
Match: XP_011649519.1 (probable serine/threonine protein kinase IREH1 [Cucumis sativus] >KAE8652490.1 hypothetical protein Csa_013146 [Cucumis sativus]) HSP 1 Score: 290.8 bits (743), Expect = 1.4e-74 Identity = 175/319 (54.86%), Postives = 177/319 (55.49%), Query Frame = 0
BLAST of CmUC04G080160 vs. NCBI nr
Match: XP_008443041.1 (PREDICTED: probable serine/threonine protein kinase IREH1 [Cucumis melo]) HSP 1 Score: 290.8 bits (743), Expect = 1.4e-74 Identity = 175/319 (54.86%), Postives = 177/319 (55.49%), Query Frame = 0
BLAST of CmUC04G080160 vs. NCBI nr
Match: XP_042504041.1 (probable serine/threonine protein kinase IREH1 isoform X2 [Macadamia integrifolia]) HSP 1 Score: 290.0 bits (741), Expect = 2.4e-74 Identity = 167/290 (57.59%), Postives = 175/290 (60.34%), Query Frame = 0
BLAST of CmUC04G080160 vs. ExPASy Swiss-Prot
Match: F4J6F6 (Probable serine/threonine protein kinase IREH1 OS=Arabidopsis thaliana OX=3702 GN=IREH1 PE=1 SV=1) HSP 1 Score: 265.0 bits (676), Expect = 1.1e-69 Identity = 162/319 (50.78%), Postives = 170/319 (53.29%), Query Frame = 0
BLAST of CmUC04G080160 vs. ExPASy Swiss-Prot
Match: F4HYG2 (Probable serine/threonine protein kinase IRE3 OS=Arabidopsis thaliana OX=3702 GN=IRE3 PE=2 SV=1) HSP 1 Score: 223.0 bits (567), Expect = 4.6e-57 Identity = 141/319 (44.20%), Postives = 155/319 (48.59%), Query Frame = 0
BLAST of CmUC04G080160 vs. ExPASy Swiss-Prot
Match: Q9LE81 (Probable serine/threonine protein kinase IRE OS=Arabidopsis thaliana OX=3702 GN=IRE PE=2 SV=1) HSP 1 Score: 221.5 bits (563), Expect = 1.4e-56 Identity = 143/321 (44.55%), Postives = 159/321 (49.53%), Query Frame = 0
BLAST of CmUC04G080160 vs. ExPASy Swiss-Prot
Match: F4HPN2 (Probable serine/threonine protein kinase IRE4 OS=Arabidopsis thaliana OX=3702 GN=IRE4 PE=2 SV=1) HSP 1 Score: 184.5 bits (467), Expect = 1.8e-45 Identity = 106/183 (57.92%), Postives = 123/183 (67.21%), Query Frame = 0
HSP 2 Score: 57.8 bits (138), Expect = 2.6e-07 Identity = 27/79 (34.18%), Postives = 44/79 (55.70%), Query Frame = 0
BLAST of CmUC04G080160 vs. ExPASy Swiss-Prot
Match: Q552E9 (Probable serine/threonine-protein kinase pkgA OS=Dictyostelium discoideum OX=44689 GN=pkgA PE=3 SV=1) HSP 1 Score: 113.2 bits (282), Expect = 5.2e-24 Identity = 98/364 (26.92%), Postives = 155/364 (42.58%), Query Frame = 0
BLAST of CmUC04G080160 vs. ExPASy TrEMBL
Match: A0A0A0LSH8 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_1G031190 PE=4 SV=1) HSP 1 Score: 290.8 bits (743), Expect = 6.7e-75 Identity = 175/319 (54.86%), Postives = 177/319 (55.49%), Query Frame = 0
BLAST of CmUC04G080160 vs. ExPASy TrEMBL
Match: A0A1S3B6M3 (probable serine/threonine protein kinase IREH1 OS=Cucumis melo OX=3656 GN=LOC103486458 PE=4 SV=1) HSP 1 Score: 290.8 bits (743), Expect = 6.7e-75 Identity = 175/319 (54.86%), Postives = 177/319 (55.49%), Query Frame = 0
BLAST of CmUC04G080160 vs. ExPASy TrEMBL
Match: A0A6A1VH67 (Uncharacterized protein OS=Morella rubra OX=262757 GN=CJ030_MR5G024980 PE=4 SV=1) HSP 1 Score: 288.1 bits (736), Expect = 4.3e-74 Identity = 183/347 (52.74%), Postives = 194/347 (55.91%), Query Frame = 0
BLAST of CmUC04G080160 vs. ExPASy TrEMBL
Match: A0A6J1C754 (probable serine/threonine protein kinase IREH1 isoform X1 OS=Momordica charantia OX=3673 GN=LOC111008863 PE=4 SV=1) HSP 1 Score: 288.1 bits (736), Expect = 4.3e-74 Identity = 173/319 (54.23%), Postives = 175/319 (54.86%), Query Frame = 0
BLAST of CmUC04G080160 vs. ExPASy TrEMBL
Match: A0A6J1C6J8 (probable serine/threonine protein kinase IREH1 isoform X2 OS=Momordica charantia OX=3673 GN=LOC111008863 PE=4 SV=1) HSP 1 Score: 288.1 bits (736), Expect = 4.3e-74 Identity = 173/319 (54.23%), Postives = 175/319 (54.86%), Query Frame = 0
BLAST of CmUC04G080160 vs. TAIR 10
Match: AT3G17850.1 (Protein kinase superfamily protein ) HSP 1 Score: 265.0 bits (676), Expect = 7.6e-71 Identity = 162/319 (50.78%), Postives = 170/319 (53.29%), Query Frame = 0
BLAST of CmUC04G080160 vs. TAIR 10
Match: AT1G48490.1 (Protein kinase superfamily protein ) HSP 1 Score: 223.0 bits (567), Expect = 3.3e-58 Identity = 141/319 (44.20%), Postives = 155/319 (48.59%), Query Frame = 0
BLAST of CmUC04G080160 vs. TAIR 10
Match: AT1G48490.2 (Protein kinase superfamily protein ) HSP 1 Score: 223.0 bits (567), Expect = 3.3e-58 Identity = 141/319 (44.20%), Postives = 155/319 (48.59%), Query Frame = 0
BLAST of CmUC04G080160 vs. TAIR 10
Match: AT1G48490.3 (Protein kinase superfamily protein ) HSP 1 Score: 223.0 bits (567), Expect = 3.3e-58 Identity = 141/319 (44.20%), Postives = 155/319 (48.59%), Query Frame = 0
BLAST of CmUC04G080160 vs. TAIR 10
Match: AT5G62310.1 (AGC (cAMP-dependent, cGMP-dependent and protein kinase C) kinase family protein ) HSP 1 Score: 221.5 bits (563), Expect = 9.6e-58 Identity = 143/321 (44.55%), Postives = 159/321 (49.53%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Watermelon (USVL531) v1
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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