CmaCh12G010960 (gene) Cucurbita maxima (Rimu) v1.1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ATCACAAAGGTGAGCAAACTTGCGCGTTCTTTTTTCATTTTTTGATTGATCGATTGTTCGGCGTCTCTGAAATTTGTGAAATCCTATTTCGATTTGGATTTTACAATAATTTTCATCCGTATTGATTTGTGTTGGAATTTGGTTCAATATATGTAGCAGGTGTGTTTCTAATCGTATCCTGCATGTATGTATAAAACTTTTCTTTAATCATAATCTCGTTGAGTACTTCGATTGTGTTGGATAACAGGAGCTATGGATCGGATTAAACCAGTATACACTCGACAGAAAAGTAACGCTGGCACCCCACTGGGACCAGCGTCGCCATTGGTACAACCGTATGGCCACCATGCCCGATCAGGTTCGATTGGCGTGGCAAATTCGAAGAGAGGACAGAACAATGCAACGAAAGCTGCAGCGCAAAGGCTTGCAAAAGTGATGGCAAGTTCAGCTGATGACGAGGATGAAGAAGATGATCTTTCTTTTGATTTGAGTTTGGCGAGTGGCCCAGGGAGCATTGGATTAGCAAGTGGAAGATCAGTCAGATCCCGCTCTCCTATGGTAATAATCGGTTCTAGTTACAATATATTTGTTCAGGTTTGCATGACATTCTGTTTCTTCATATAATTCATGTGTGTGACAATTCAGACATGAGGTTAGTGGTCTTTCTGCTCGCTTCTTACCATTTGAATTTCTAGGTTGCAGCTTGTCGTTAACATCCATTTTCTTAATCTTGACTGAGAACATGTTAGCTATTAGCTTCGGCTTTCTCCTTTTCATTAGAAGCTATTTTTCCGTGCCTTGCAATGGTGAAAACACAGATATGGAGATCTTTTAGCTTGATAACTTAGCCGTGAGAACGAAAAAGTGTCATCTAATTCTTTATGCAAATTAGTTTGCGATTCTTTTTGTCCAAATTGGAGCATATGAGACAATTAAATGTTAAATGGACTTGTATTGGTTGAACTAAAAGAATCGCCAAACTCCAAATTGATAAAGATGGATTGTGTCGCATCTTAATATGATCTCATTCTTATTTTGTAGCATTTTGATTAGTCATAAACCCCATTATGAATTAATATTTTAGTTTTAAAAGTCAACACAATCTAGAGATCTTCTTGAGCAGTTAGATTGTGCAATTAGCCTTTGATTTTCTTTTACGTTAATTGCTCATTTGCATCATTATATAATCATTATAGCCATCTGTGTTATACTACTAATAAATGTTATTTTCATATTTTACTTGAAGTCTAATACGTGCTTAAACTTTAAATATAGCCGTCTGCTCGTACTATTCAAGAACCTACTTCTGGACATGTGGGATTGGGGGGTCGAGCATCTCAAACTGTAAATCATATGGAGCAACCAATGTCAGCTCGTACAGCACTAGGACAACGACCATCTCGTTCGGATACTAATGCTGAACAAGCACCCATTACTCGCACTTCAACAGCTAGTCGACCATCCCAGCTTGCCAACTCCGTAGAGCAACCTACATCTACTCGTACAGCATCAGTTAGTCGTCCAAATTTAGGAGTCAAGACAGTTCCATTGGTACCCTCTTCTGTATCTATATCACTTAAACCAACATTGCCAGTAACTCCGAAGGAGAGTCAATCTGATTCTAGAACATCACTTAGACCAGCCTTGCCTGTAACTCCAAAAGAGGGTCAATCTGATGCTAGAGCATCACTTAGATCAACTTTGCCTGTAACACCAAAGGATAGTCAATTTGATACCAAAATGTCACTTAGACCAACGTTGCCCGTAACTCCGAAAGAAGGTCAGTTTGATTCTAAAATATCACTTAGACCAAGCTTTCCAATAACTCCAAAAGAGGGCCAGTTTGACGCCAAAAGAGATAAGAGGTATTATACAATGTATTTCTTATGTCATTATCATCAATGTCCCTTTTGGCTACTATGCTAACAGAGAAACACCATTCTTATGTATAGCTATATAATTACAACTTGATGTTAGATCACTGACCAAAACATGTTATCTTCTTGAAGGCTTGATAGTGCGAACATTTTATGTTGATAGTATTTGTATTTAGAAAATCCTATGGTGATAACAGTCTGGGCATGGTGGTTCGGATACCATAAAATCCCGTCTTTGTTAGCAGTGTTTAGGATTTTATTGCTTTGTAAATGTGTTTTTTTTTTTTTTTTGTTATTTAAAAGAACTCTTATTTGGGAGTAAAGGCAATGCATCTTGTTGTTATCAAAGAACTTTGATTTCCACTACCTTTTCATAGCTTGCTAAATTTTCATATTGAGGTTTAATTCTTGTCCCTAATATTTGCTGCTCGAATGTCTATTCCATGATTGTGCTGGTCCTTGAACAGGCTGTCTTTGGATATGGGAAGCATAAACTTCAGAGACAATAACAACCAGCCTTCCAGTTCTGCTTTACAAGATGAGGTATAGGGTAACCTTACAGCCAATTAATAGTCTGAGTCGAGTCCCTTAAATTCATTAAAGATTAACACGTCAATTTACTGTCACTCACACAAATATCATCTCCATCTTCATTTTCTTTTCTTTCTTTTTATTTTGCAACATCCATTCAGAAATAATGTCTTCGTCTCACCCACAGTCATATGTTTCTGCTGACCCAGCTAGCTGGCTGGAAGAATCCAAACAATGCACTTGTTATCACACGAAATGTATCTGGCCATTTTAGAGGTCTACTGGTCTAGTCTTTCCATAAAGGAATTACAACTTTATGTGCTTCTTGTGCTGAGTTTTTCTTTTTGTTATTAAGATCAAGTTAACGTGCTTCGTTTCTACTTCCTTTTCTGAACTGAGATATTTAGAAGCATGTATAAAGATATTGGTCTTTCCAGATTCTGCTAATGATAGTGATGATGTTTGTGCAGCTTGATATGGTACAGGAGGAAAATGAAAGTTTAGTTGAAAAGGTGATGCCAACAACTTTTCCGGTTCTTCTTATGCGAGTGTTATTGGCTGTTTCTTGTATAATTAGTGTCATCAGTTCAACACGAACAATTTATACCTGAATGGAACAATCCTGTTTTCAAAATCACTGATTTAATTAAGAAAAAAGGCTCCGTAATTTAAGAGCTCATTTGTTTTTTATATGAAAACTAGTTCAATGCCCAGACTTCTCCTAAACTACTTGGCTCAGTCTGACTAATCTAGTGCAAACACAATACGTAACTCTAGAAAATGTCCTAACATTGATAGGCTTTTCATTTATTTCATTTGGCATGTATCTAATATGTGCCTCCCCAGCTTCGAATTGCAGAAGAAAGATGTGAGGAAGCAGAAGCTAGAGCCCGACAGCTTGAGAATCAGGTAAAAAAAAATAGCTGGCTTGTATCTTCTCCACTATTTGGAAGCATTATTTTCACTTAAAATACTCTGCTCATGCTATGAGAAAATTCTAATTTTTTATCTAAAAAAACAACCTTTAAAATATCGTCCATTTATCCCATCTAGTTCACTGAATTATTCGCGTTGCCACTGGACAATCTATAGATTAATTCATGCCATCCCGTGAATGCAGTTCTCTTTTTCCTTATCTTCTTCTGGTTTGTCTTTGTTAGTTTTTATGGTGTTAATCATTGGAATTATATTTGCATTCCATCTGATTTTGCTTCCCACTATTAGAGTGGAATTTTTTTTTTAATGATTTCTGGAACAAACAAGTCGTCTATCTAAATGTTTTTAACGAGTTTCTTTCTTCCAAGGCCCAGAAAGAAAATTCTTGGGTAGGGTATCTTTCTGATGAACTAACCCGCTTGGTTCCTTTTGTAACAACTCTGTTGCATACCTGTGGTATAGTCCATGTTGTGTTACACTTCACAGTTGTTGCATAACCGTTCGTTTACTGGTACAGAACTCAATCTATGGTATAATGATTGGAACATCCCAACATCGTCAAATAAATAATCTCATCCAATGTACACATTTTGAAGTATTTAAATGTGATTTTTAGGTTTCTATGCTTGGAGAAGGTGTAACACTGGAAGCCCGTCTTTTGAGCAGGCTAGCTCCCGACCTTTCTATCCACTTCCAACTTGCAAGCCACTTCAGTTTTCATAATATCTAATAATTCATTACTGTTTTGCTTCCAGGAAGGAGGCAGCTCTGCAGCAGAGAGAGGTTTGTCCTACTAAAACTGGCAATATTATCAATTTCTCTTCTTCTGAGTAATATTGCACTGTATGGGTTAATATTCAGCTGCCTCCATGGAAAAGGACCATCAGGTTGAACTTTCCCAATATCCTTTAAAAGGACAGAGTGGAACCGGGAGATAAGTGTGTATTTACTATGCCAGTGTGATTCCTAAATTCCATGCTACACACTAAAAGCTGGATGTCCTAAAAGTCAAGAAACCATAATAGATCAAGGATCAATGACAATTGACAGTGTGGATGCATGCTTGTTTGCTGCTAATGCAGCATATCCTTGAAACTCTTCGATAACTTAAACTAGAAGAGACCATTCATCTTCGTGATTTTTTTTTTTTTTTGAATTTAACAATTGTGGGCGTGTGAGATCTAACAATTGACCTTTATAATTGTAATAGGTGTCCTTTCTATAGTTTATACAATGGAGAAGTATGTTAATAAGTGTTTCGCATAAAGAAACCATTCCACTGGCCCTCTGTTCATCCTAGTTTTGAAATCTAAAGATTTCCTCCGTGTACTTTTGAGAGCCTTCCCATCACCTAGAAACCAAATGCCCAGATTTTGAAGGAATCATTGGAAGAATTTGAAACAAATGCTACTACTTGAAACGACGTCGGTAATATAAACTGAAGAACAGCCATTCTATGTTATTAATGTCAACAGTTGAAAATATAAAAGAACAACTAAAAAATGGAAGTAATAAGAGGACAAACGTTATAGAATTTGAGTAACTGTCTTACTTGTGGTAGTGTGTAACATGTGCTTGAATAGTTTCCTTATTATTCTACTTTTATAATGCAAATGACTTCTTAAGTTAAGTAAAGTCTGCTTGTATTAATAGTACTTTCGAATTATTTGAATGGGTCTTTATATATTGTGTCTATTTGATCTCTTTACTTTAAGGAGTGCACTCTTTAGATTTGAATGACGAGTTTAACAAGCCATCCATTGGCTCTCATGGTTGTATCTTAAAAGTGAAAGTTCAATCTAAGCGAGCCCAAGGCACTTTCTGAACTTTGAACCACTTTGCTAATTGTGAATCCCTCTGGAACATTCAGTTTCTTGGCTTTCTTTTTGTTCCGTGACGGTCTTTTTCGGGGCGACCACGCCAGTGTTGTTAGATTGTCTTCAAACATCTTCTCGACTCCAGAAAGCTCTCTTTCTTTCATCATTGCCTCGTAATTTAGGGGCTCCACTTCTTGAAAACAAATCATGAATCTTTCCAGGATATCCGCTTCCACTTGCTGTTGGCTGGATCAGACTCAGTTCAGTTGGGATAAGACCACAATAATTATTCCTGATTGTAACACCCACATCAACCCAATCAAGAAGGAGCTTTTTTCCCCATACCCTTCAAAGCCACCAATTGCCTCAATCGCCTTCAGATTCCATAAACGCAGGGGAATGTTTTGAACTTTCTCCCAAACACCATAACAGGGGGCCACATTAATTCTATTGTGTTTGTTAGCAGATTATTTTGATTCTGTTGTGACCACCATAACAGGGGGCCACCAAACACCATACACCATGCACAACCAGATTGTGCTATCCTCCCGAGTTAACCAATTTCGTGATTTCCGGAAAACTTGTTAGCAGATTATTTGGATTATATTGTTGCCACCATAACAGGGGAACACCAAACACCATGCACAACCAGATTGTGCTTTCCTCCCGAGTTAACCTTTGTGATTTCCAGAAAACTCTCTTTTATTCCAGATTTTCTGAATCCATATAAAGCCATTCATGCAATCAGTTTTGTCAGTTTTTGGGAATTTGGGGAGAGGAAAAGGTCCCGAAGAGAAACAAGACTTAATTTTACTTAATCCCTCGTTAAGGTTTATTTTGTTGTTCATTGAAGATTCTGTCGGATTGTTCTCCACCCAAGAGAAAAATGTAAGTCCCCCCACAATCTCTCTCCCCCCAGACCTTTCTCCCTTCAGACGAAGATGCCGACGACAGCTCATCCCCTCTTTTTCCGAATGTGCCTGAGTCTACTCTTTGTACACTTATAATGTCATCCTCTCTCTCGTGCACGGTTAAGATAGAATATAATTCCTCCTCGTGTAGATTTGATAAGACATTTAAAGGAACGGTCGTAAAAATCACAGAATCTTGTCTCAAGAAAAAGTTTGCTCATTCAGCTGAAGAAGTCGCTTTAGTTTGGTTAACAGACTCGAGATAGAAGAGTCTGGAACTAAAATAATCTATCCTTCTCTTTTAATGTTTGGTCTATTTATATTTAACAAAGGATTATGTCCTTGATACGTGTGTTGTGTAAGTAAGGTGAATCCACCCCCTCCTTGCAGGCTGCTTTGAGAGTTGCATCACAATCTCAAGGGGGCAGAGGTACTCAGCATATTGCTGCACTTAAAACTGAAGCAGAGGTATGCAGAAGTTGAAATCTGTACAAAAGAAATTATTTCCTACTAGTATTGGCATTATTGGATGGGCATAAAATATGAATGATCTATTAAATTTCACTCATTGGTACTTTGACTCAGACTGCAAGGGATGAGGCAACATCTGCTTTGGAGCATTTGCACGAAGCCGAGGCTGAGTTGCAGTCGCTTAGGATTATGACCCATAGAATGAAATTGACTAAGGAAGAAATGGTCTGCAGTTCAAGTTTCAGAGTACTTACTTCCTTTCTGGTCCTATCTTAGGCATACTTGTCTGAAATGCTTCTTTAATGCTAGGAAGAGGTTGTTTTGAAGAGGTGTTGGCTTGCTCGATACTGGAGCTTATGCGTCCGTTACGGTGATTTTTTTTTTCTTCTATGGAACTTGCATGGCGTACTCTTGTGTTCTTTCAAATTTCCCAGAATTACAATATCCAGATACCCTATTCTCTGCTGCAACAAATAGTCTGGTCCCAAGAGTGAGATCCGCACCATAGAATCCTTTGTCCACTTTGCTTTGAACTAGAGCTGCAAATGAAAAGATAGATATTGGACCTAGACAAAAAAATCTCATTTTTTTAATGTTCATTCTTAACTGGAATAGCAATGAAACAATAATATTAGCGAGTTGTAAATTTAAAATCAACGTGAAAATAGTGGAACATAACTAATATTTTGACGTAAAATGAATATCAGGCAGTTAATAAAGTTTAGAAGTCTTTACCAGGATCTTGTCTAAAAAACCTGTTATGATCTTGATTTGCATGACTATTAACAAATTCAGACGTTAACGGCCATTATGGGATGGTTATTCACAGGACATGCGTTGTTCCCAGTTGGAATAAGCAGCTTCTATCCCATAAACTTGAAATAGGCCTTTGGGCATGTTGAAGTTTTGGATGTAGTCCACGCCATTGTATGTCAAAATTGTTTGTTCATTTTCCGAACACACTGGTTCCCATTCTTGTAGATCAAGTGGAACTGTTAGCTTTCTAACTGTTCTTTCTGATTCGTACAATCATTGATAGAGTCATGGAGACAATTTCTCAGTTTTCTGTGGAACACTGAATATCTTCTGTCATATGCCCTATGGTGGATTTCAACTACCTCTGGACTAACTTAGAGATACTTAGGCTGATAATTCTTTTTTTTTTTTAACTAAATACTTGGCAGGTATTCATGCTGAGGTTGCTGGAGCAAGATCTGAATACTGGTCATCTTTCACTTCAAGTCCTGTTGACGATGTCTTGGAAGCTGGAAAGAGAGCTAAAGAGGAGACAGGTAAAAGTAAAACTCTTGTCAAGCGATGGAAATGTTTAAGATCTCTCTCTCATTTTTCCTATGTTCTTATTACCATTTTGTGGATGATGTTCATTGACGTTGTTACACTTTTCTATTACAATCAGAAATCGATAATTTGGAGGGCAGAGAAAATCAACGAGACTTGAATGAACATTCTAGTGAGGCAAATGTCGAGAGCATGCTTGTAGTGGAGAGAGGTTTACGGGAGCTGGCTACATTGAAGGTTCCAGCTATATTTATACACTTGATAGTCTTGCAAATTCACTGCTTTTTTTTTTTTTTAATATTTTAATTTAATCTTCTAGATTTATAGAACAAAGAAAAGATTTCCACGACAGGGAGTCTTCACTATTCAATGGACACCAGGAACTCATCCTTTTAGAAAAAGAAATAAAAAATAATTATCTATGCTGACTTCAATAAATAAGCAACACGAGCGAATGTACCACAGAAGCTAAGCAAAAGAGAGAGAGAGGGGAGACCAAAAAAACAAAAATCCATGAAGAGAGGGAGGGGAGACTAAAAAAGGACACGCGGTGAGAACCTGGCCCACTAATAACCCTTGAAAAAACCCAGGAAGAGGGGGGGGGGGGGGGGGGGGGGGGGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGTGTAGGTTACAATAACTTGATGGTTACTCGGTACGAACGGCAAATAAAAATTGAAAAGGAGAGGAATGAAATACAAGACTCGAGGCAACAACAGAGTTTCTGTTTTGAGCTCCAGCAGCATCTATTTTTCTCTATTTTGCAAGGGATGAAATATAATATGCTTTTTCAAATTTGCATCTTCATTAAATTGAATGTTGCATGAAATTCATTTATCTCTAAATCATCACACCCGGAAGTAATGAAACATATTAGATTATACAAATATATTTTACGAAAATGTATTAACAGCAATGGAACATATTAAAAGATATTAGTACTTTTTTCGGAAAATGTATTAATTAGCGCATCCCTGTCACTTGTATTCAGGTTCTTAGATAATGATGTTACTTTTCGCATATCATGCCTATAATTATGTGCTTCTTCATTTAATATAGCAAAAATGATATCTTGGGGAAAACGTTAAGGGAGAGATGCAATTCTCTTGGTTAGTTTGTTTGTACCATGAAACTTACCATAATACAAGAATATCTGTTCAGTGAAATAGAGTTTCATATACTATCAAGGCTCTTTCATGACCAATCCATATCAGTAAACTGATCAGTCATATAATTATATCACATCTGGTCTTGAGCTATCTCTAAGTATTCACCTCTGCACTCACGTTTTTTTAACTGTAAATATTTTACTATTTCAATTCAATTTTACATGAATGAGTGGTAAAGATGTTTCTATGTCAAGTTGGAGTGTTTCAAATTCTAATCATGAATTTTTTCACTTCCAACTTGTAGGTCAGTTATTAATATTTATTTTTTATTTATTTATGTGACTATAAGTTTCTAATGAAATTATTTTGAAGGTAGAGGACGCAGTGGCTCTTGCAATGGCTCGTGAGCGACGTGCAAATTTGCTAAAACCAGGTGAGAAATCATATAAAAGAAGTTCTATTGACTGTACCGATTGTCAAATTATGCATGAGATAAACATTGGAAGACAACAAAATATACCTTCTCCGCTGGAATTTGAACTGCATTTTGGTTTACACGTTTGATATTGAATTTCCAATCCCATTTAGTTCTAGAATATTTTTGCTGAAGTTCTACACACTAACTTATTTTGTCCACGCTTAGTCTTTATTGGTACTGATTAGGAGCATCGGGAGTCTTCACTGATGCTGTTAGTTCCAATATAAATGAGACTACATAATTGTCCGATTTTCCATTAATTCTAGCTGTCATAGACTCAGGTAAGGGACATGAGAGTTAATACGAGCATTCTAACTGTGTTTTCCGTTCTTGCTATTGCGTAGATGAAGCGAAGCTGCCAATAGAAGGACAATTCGAAGCCTTTGGTATGTTATCTGAAAACACTAAACTCTTTTCGTTTCTATTTTTATGTGGTCTAAATTTGGTATTTATGTAAGACATGAGAAAGGTTTGTAGCATGACTTGAAGTACAACACATTTACTTGGGAGTAATTTATGATATACATGAAGTTTTTAAAATGGAAATCAATATAAGAGTCGTGCTAATAGGTTTTGCTCATTTCTTTTGCATACTACACTAGTTTTTGGACTGATGTGAGGCCTCCAATTATTCGTACTTATTCTAGAAAAGGGTAAAGAGGGGATAGAGCGATGAAAAACGGTTAGGGACGGGACCTTTTTGGATCGTGCGCATACAGTAAAGGAGGAGTGTGGAAGTTATGTAGGGGTTTTTGGTTTACGGTGAGAAGGAATCTTTTGTGGATAACTATCTAGGATAGAACCAAACTCTCTCGAAAAGCTGGGAGAAAAGCACTAATAACCCCACTCCCTGTTGAAGTACTCCCAATAGAGGAGTGTTGGTTTTCTATTGTTATCTTTATTGTGTTTGTTTTTATGTGATCAACACATTTATCTTAGTTGGATACCTAACACGAAATTTCTAAAAATAACTTTCCAGTTGTAACCAAATAGAAGTTATTGATAACGTAATTCATTATGGGAAGTGTCTATCAATTGCCAACTAATAGAATCTTTCTATCTGTTACATGATTCATTATCATCGCAATCTTGAAAAGTAGTTGTTTAGAGCTTGCATAGAAGAATGAGAACATTTGTGTTATTTGTAAGGAGTGCAATGTTAAGGATTATTGAGAGGAGTAGTCCCACGTTAACTAATTAAGAGGAAGTTCATGGGTTTATAAGTAAGGAACACTATCTCCATTAGTATGAGGCCTTTTGGAAAAACCGAAAGTAAAGCCATGAGAGCTTATGCTCCAAGTGGACAATATCATTAGTGGCCTTAGGCTCTCTTGTTTAGTTTTAGATCATAAACAGTGAGAGGCTAACGTTTAACTATTATTACTGAGTCTTGTGCATGCTATAAATTTATTATTGTTTTTCAAGTTTTTACTTTTAACTATTGAACTACAAATTAAGCGGACTCTCTTCAGTTCTTGTGAACCTTATACTAATTGTTTTAAATGAAATGTCCTTGCAGAAATAAGCCACGAGGAGGCAGAGGATGTATCTTTTAAGCAGGTATTTTGACTTCCTATATTCAGTCAACTTGTTTATCCATGTGTGTGTGTTTACATGGGTTGCCTTTGAAATCTATTTTTAAAAAACTCTCTTGAGCACTTATAATTTATAAAATTGAAAGCTGAATCAAAAAATGAATTAAGTCTAACCATTTTGAGAACATATGTAAAAAATAGATAACAAATTAAGGAAATAAACTTAATTCTTGAAGACCAAATGTTTTTCAAACAGGATCTAAAAAACAAAATTTGAATTGATTATCAAATTATCAAAATTAGAAAATCAATTGTATATACTATTTTATGGGTTTGTTTCCTTAAAGCCGCATAAAGATAATTTGTATTTATGATATAGGCTTGGCTCACTTATTTCTGGAGGAGAGCAAAAAATGAAGAACTCGAACCAGACATCGTTGGTGAACGCTTGGAGTTCTGGATCAACCACAGTAACAAATACTCTTCTCATGATGCCGTTGATGGTTCGTTCTCTTTCTCTTTCACGCCGCATTCTCATGTTTTTGTTCTCTAAATCAATTTTGTGAGGAGAGAAATTTTCATCTCAATTCTTGGATGGATTTTACCCGCCTGATAGTTAGCTACTTACTTTAGTCTAGAATCTAAATTTAGAATCGAAGAAAACTGCCTACATTTGTCAAGAGAGCCTCCAGTGAAGGCTGCTGATGAAAACCTTGAATGGGCTAACCATAGATTGCTTCTTATGAGTTATGACCAACCTAAAAGTATGGATACATTATAATTGAGCACGTTTGGTGTCATTGTGCCTTACCAAGATCAAGATCAAAATTAGCCTCCTCCCTCTTCTCCGTTGTGTTAATGTTTGCGAAAAGTTGAAGTTTAACAAGTTTTAAAAACTTGATTCTTGATTTTGGGAATGACCAACATTCCTCCCTCATAGGATCAGGTCATTTCCATTTTTCATTCCCAAAATTTATGACCTATTTTCTTTTCCAAAGACTTCCTTTTCACCTTGATCTTGCGACACGTGAAACTAAGATCGATCACATTCACACACCAAAAACAGAAATTAAACAAAGACACTACAAAGACTCTCAACAAAGTTCCTCCCAAATGTCACTCAAAAAATACATGATCATACTCAAATTCAAACTCTATACATCTCAACCATCCTAGACAACCCTTTATATAGGCATAGAAGCATTAATGTCATATATGATGATTCATGTTTCAAAATAGAAGATGAACCAAATAAATGAGAGTTATGAACCAAAAAGCTTATGAACCAAATAAATAAGAATACAAACCAAAAGGGTTCTGAACTAAATGAGAGTTATAAACCAAAATAAATGAAAATACATGCATAAGTTGATTTGTATTTGAAATATTGATAGGCAAGATCAACTACTACAAACTTTGTTTTTGTTTGATTTCAGATTTAATCTTCAAAAACACAATATTATAAATTGGATTCACACCTCATAATATATATCGTTTCAAGTGATTTTCGGTTTAATTTTATTCACATATTAAGAATGGTGTAGAATATTAAAGAATCATTGATATAAAAAATTTGTTTGATTTTAATGATATATGGAACAGTTGAGCGAGGGCTGATAGAGCTGAGGAAGCTAGGCATTGAAAACCAGCTATGGGAAATATCTCGCAGAGGGCTAGAGATGAACACTAACCGCAAACCTCGTCAGTTGTAGGAGCGAGGGCTGAAGTTACGGTGAACTTCATTTCCATGGGTATTCATTCATATTCATCTCCTGAAGGCCTCCCTCTGCATCCACCTGCCAATTTAATAAGGTACAATTTATTTAAACATCAGGTCTTACGCAACTAACTAGACAGGAATGAACTAAGTTTAAACCCTAATTTCATAAATGTTAAGAATACAGTTTAAGAACTTTTAATAAAGCTTAAAATTGGTCTCTATTGTTCATTGTTCTAAGGAAAAAAAGAGAGTAGTCTTGAAAAAAATTTGAAAATATGTTCATAGAGTGTCTTTTTCTGATGGAAATTATTATAGGGGTTAATTCTAATGGAAAGAACAGATTCGAGAATGGTCATATGTCCTATTCGATCGAATTAATCTTTCTTTCCTTTATAGGAGAGTAAAAGAGTGTAATCATAGAGAGTAAATTCATTAGCCTCTTTCCCTGTAATTAAAACAACAACAATAATCTTTCTTCTTCTTTTAAAGTGAAATCAGAGAGAGTAAATTCATTATCCGCTTTCCCTGTAACAAAAGTTTAAAGTTGAAGAACAATGAAACTCAAACTAACATCAAGGTCCAAATGATAAGTTTATTATTATTTTTATGGTTTCTGGTGCAGATGGAAGATTCTCAGAGTTCATATTACACACTCGATTCCTCCATTTTTCTCATCTGTTTCGTCATGAGAAGGTTGGTGTTCTTGAGGATCATCAGCTAATACTCTTCAATTTCTCATTTGTTTTATTTTTTAAGCTTACATGTGGTCTTGATTGTGACCCTAAGAACTATGTAATTTAATTATGATGCTCCTAAACTAAGTAATAAACGGCCTGCTCTTCCACTAGAGTTTCAATTTTGACTTGTTTCAGAGCCTTTAGTCTAATTTATAAGATTAGGAATGTCTGTAATTATTAACTTTTTTTTTTTTTTAGGTTAAATTACAAATTTAG ATCACAAAGGAGCTATGGATCGGATTAAACCAGTATACACTCGACAGAAAAGTAACGCTGGCACCCCACTGGGACCAGCGTCGCCATTGGTACAACCGTATGGCCACCATGCCCGATCAGGTTCGATTGGCGTGGCAAATTCGAAGAGAGGACAGAACAATGCAACGAAAGCTGCAGCGCAAAGGCTTGCAAAAGTGATGGCAAGTTCAGCTGATGACGAGGATGAAGAAGATGATCTTTCTTTTGATTTGAGTTTGGCGAGTGGCCCAGGGAGCATTGGATTAGCAAGTGGAAGATCAGTCAGATCCCGCTCTCCTATGCCGTCTGCTCGTACTATTCAAGAACCTACTTCTGGACATGTGGGATTGGGGGGTCGAGCATCTCAAACTGTAAATCATATGGAGCAACCAATGTCAGCTCGTACAGCACTAGGACAACGACCATCTCGTTCGGATACTAATGCTGAACAAGCACCCATTACTCGCACTTCAACAGCTAGTCGACCATCCCAGCTTGCCAACTCCGTAGAGCAACCTACATCTACTCGTACAGCATCAGTTAGTCGTCCAAATTTAGGAGTCAAGACAGTTCCATTGGTACCCTCTTCTGTATCTATATCACTTAAACCAACATTGCCAGTAACTCCGAAGGAGAGTCAATCTGATTCTAGAACATCACTTAGACCAGCCTTGCCTGTAACTCCAAAAGAGGGTCAATCTGATGCTAGAGCATCACTTAGATCAACTTTGCCTGTAACACCAAAGGATAGTCAATTTGATACCAAAATGTCACTTAGACCAACGTTGCCCGTAACTCCGAAAGAAGGTCAGTTTGATTCTAAAATATCACTTAGACCAAGCTTTCCAATAACTCCAAAAGAGGGCCAGTTTGACGCCAAAAGAGATAAGAGGCTGTCTTTGGATATGGGAAGCATAAACTTCAGAGACAATAACAACCAGCCTTCCAGTTCTGCTTTACAAGATGAGCTTGATATGGTACAGGAGGAAAATGAAAGTTTAGTTGAAAAGCTTCGAATTGCAGAAGAAAGATGTGAGGAAGCAGAAGCTAGAGCCCGACAGCTTGAGAATCAGGCCCAGAAAGAAAATTCTTGGGTAGGGAAGGAGGCAGCTCTGCAGCAGAGAGAGGCTGCTTTGAGAGTTGCATCACAATCTCAAGGGGGCAGAGGTACTCAGCATATTGCTGCACTTAAAACTGAAGCAGAGACTGCAAGGGATGAGGCAACATCTGCTTTGGAGCATTTGCACGAAGCCGAGGCTGAGTTGCAGTCGCTTAGGATTATGACCCATAGAATGAAATTGACTAAGGAAGAAATGGAAGAGGTTGTTTTGAAGAGGTGTTGGCTTGCTCGATACTGGAGCTTATGCGTCCGTTACGGTATTCATGCTGAGGTTGCTGGAGCAAGATCTGAATACTGGTCATCTTTCACTTCAAGTCCTGTTGACGATGTCTTGGAAGCTGGAAAGAGAGCTAAAGAGGAGACAGAAATCGATAATTTGGAGGGCAGAGAAAATCAACGAGACTTGAATGAACATTCTAGTGAGGCAAATGTCGAGAGCATGCTTGTAGTGGAGAGAGGTTTACGGGAGCTGGCTACATTGAAGGTAGAGGACGCAGTGGCTCTTGCAATGGCTCGTGAGCGACGTGCAAATTTGCTAAAACCAGATGAAGCGAAGCTGCCAATAGAAGGACAATTCGAAGCCTTTGAAATAAGCCACGAGGAGGCAGAGGATGTATCTTTTAAGCAGGCTTGGCTCACTTATTTCTGGAGGAGAGCAAAAAATGAAGAACTCGAACCAGACATCGTTGGTGAACGCTTGGAGTTCTGGATCAACCACAGTAACAAATACTCTTCTCATGATGCCGTTGATGTTGAGCGAGGGCTGATAGAGCTGAGGAAGCTAGGCATTGAAAACCAGCTATGGGAAATATCTCGCAGAGGGCTAGAGATGAACACTAACCGCAAACCTCATGGAAGATTCTCAGAGTTCATATTACACACTCGATTCCTCCATTTTTCTCATCTGTTTCGTCATGAGAAGGTTAAATTACAAATTTAG ATGGATCGGATTAAACCAGTATACACTCGACAGAAAAGTAACGCTGGCACCCCACTGGGACCAGCGTCGCCATTGGTACAACCGTATGGCCACCATGCCCGATCAGGTTCGATTGGCGTGGCAAATTCGAAGAGAGGACAGAACAATGCAACGAAAGCTGCAGCGCAAAGGCTTGCAAAAGTGATGGCAAGTTCAGCTGATGACGAGGATGAAGAAGATGATCTTTCTTTTGATTTGAGTTTGGCGAGTGGCCCAGGGAGCATTGGATTAGCAAGTGGAAGATCAGTCAGATCCCGCTCTCCTATGCCGTCTGCTCGTACTATTCAAGAACCTACTTCTGGACATGTGGGATTGGGGGGTCGAGCATCTCAAACTGTAAATCATATGGAGCAACCAATGTCAGCTCGTACAGCACTAGGACAACGACCATCTCGTTCGGATACTAATGCTGAACAAGCACCCATTACTCGCACTTCAACAGCTAGTCGACCATCCCAGCTTGCCAACTCCGTAGAGCAACCTACATCTACTCGTACAGCATCAGTTAGTCGTCCAAATTTAGGAGTCAAGACAGTTCCATTGGTACCCTCTTCTGTATCTATATCACTTAAACCAACATTGCCAGTAACTCCGAAGGAGAGTCAATCTGATTCTAGAACATCACTTAGACCAGCCTTGCCTGTAACTCCAAAAGAGGGTCAATCTGATGCTAGAGCATCACTTAGATCAACTTTGCCTGTAACACCAAAGGATAGTCAATTTGATACCAAAATGTCACTTAGACCAACGTTGCCCGTAACTCCGAAAGAAGGTCAGTTTGATTCTAAAATATCACTTAGACCAAGCTTTCCAATAACTCCAAAAGAGGGCCAGTTTGACGCCAAAAGAGATAAGAGGCTGTCTTTGGATATGGGAAGCATAAACTTCAGAGACAATAACAACCAGCCTTCCAGTTCTGCTTTACAAGATGAGCTTGATATGGTACAGGAGGAAAATGAAAGTTTAGTTGAAAAGCTTCGAATTGCAGAAGAAAGATGTGAGGAAGCAGAAGCTAGAGCCCGACAGCTTGAGAATCAGGCCCAGAAAGAAAATTCTTGGGTAGGGAAGGAGGCAGCTCTGCAGCAGAGAGAGGCTGCTTTGAGAGTTGCATCACAATCTCAAGGGGGCAGAGGTACTCAGCATATTGCTGCACTTAAAACTGAAGCAGAGACTGCAAGGGATGAGGCAACATCTGCTTTGGAGCATTTGCACGAAGCCGAGGCTGAGTTGCAGTCGCTTAGGATTATGACCCATAGAATGAAATTGACTAAGGAAGAAATGGAAGAGGTTGTTTTGAAGAGGTGTTGGCTTGCTCGATACTGGAGCTTATGCGTCCGTTACGGTATTCATGCTGAGGTTGCTGGAGCAAGATCTGAATACTGGTCATCTTTCACTTCAAGTCCTGTTGACGATGTCTTGGAAGCTGGAAAGAGAGCTAAAGAGGAGACAGAAATCGATAATTTGGAGGGCAGAGAAAATCAACGAGACTTGAATGAACATTCTAGTGAGGCAAATGTCGAGAGCATGCTTGTAGTGGAGAGAGGTTTACGGGAGCTGGCTACATTGAAGGTAGAGGACGCAGTGGCTCTTGCAATGGCTCGTGAGCGACGTGCAAATTTGCTAAAACCAGATGAAGCGAAGCTGCCAATAGAAGGACAATTCGAAGCCTTTGAAATAAGCCACGAGGAGGCAGAGGATGTATCTTTTAAGCAGGCTTGGCTCACTTATTTCTGGAGGAGAGCAAAAAATGAAGAACTCGAACCAGACATCGTTGGTGAACGCTTGGAGTTCTGGATCAACCACAGTAACAAATACTCTTCTCATGATGCCGTTGATGTTGAGCGAGGGCTGATAGAGCTGAGGAAGCTAGGCATTGAAAACCAGCTATGGGAAATATCTCGCAGAGGGCTAGAGATGAACACTAACCGCAAACCTCATGGAAGATTCTCAGAGTTCATATTACACACTCGATTCCTCCATTTTTCTCATCTGTTTCGTCATGAGAAGGTTAAATTACAAATTTAG MDRIKPVYTRQKSNAGTPLGPASPLVQPYGHHARSGSIGVANSKRGQNNATKAAAQRLAKVMASSADDEDEEDDLSFDLSLASGPGSIGLASGRSVRSRSPMPSARTIQEPTSGHVGLGGRASQTVNHMEQPMSARTALGQRPSRSDTNAEQAPITRTSTASRPSQLANSVEQPTSTRTASVSRPNLGVKTVPLVPSSVSISLKPTLPVTPKESQSDSRTSLRPALPVTPKEGQSDARASLRSTLPVTPKDSQFDTKMSLRPTLPVTPKEGQFDSKISLRPSFPITPKEGQFDAKRDKRLSLDMGSINFRDNNNQPSSSALQDELDMVQEENESLVEKLRIAEERCEEAEARARQLENQAQKENSWVGKEAALQQREAALRVASQSQGGRGTQHIAALKTEAETARDEATSALEHLHEAEAELQSLRIMTHRMKLTKEEMEEVVLKRCWLARYWSLCVRYGIHAEVAGARSEYWSSFTSSPVDDVLEAGKRAKEETEIDNLEGRENQRDLNEHSSEANVESMLVVERGLRELATLKVEDAVALAMARERRANLLKPDEAKLPIEGQFEAFEISHEEAEDVSFKQAWLTYFWRRAKNEELEPDIVGERLEFWINHSNKYSSHDAVDVERGLIELRKLGIENQLWEISRRGLEMNTNRKPHGRFSEFILHTRFLHFSHLFRHEKVKLQI Homology
BLAST of CmaCh12G010960 vs. ExPASy Swiss-Prot
Match: Q8RWD5 (Coiled-coil domain-containing protein SCD2 OS=Arabidopsis thaliana OX=3702 GN=SCD2 PE=1 SV=1) HSP 1 Score: 331.3 bits (848), Expect = 2.7e-89 Identity = 260/676 (38.46%), Postives = 350/676 (51.78%), Query Frame = 0
BLAST of CmaCh12G010960 vs. ExPASy TrEMBL
Match: A0A6J1HKU2 (coiled-coil domain-containing protein SCD2-like isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111465468 PE=4 SV=1) HSP 1 Score: 1205.7 bits (3118), Expect = 0.0e+00 Identity = 650/666 (97.60%), Postives = 650/666 (97.60%), Query Frame = 0
BLAST of CmaCh12G010960 vs. ExPASy TrEMBL
Match: A0A6J1FI09 (coiled-coil domain-containing protein SCD2 isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111444316 PE=4 SV=1) HSP 1 Score: 1177.9 bits (3046), Expect = 0.0e+00 Identity = 636/673 (94.50%), Postives = 643/673 (95.54%), Query Frame = 0
BLAST of CmaCh12G010960 vs. ExPASy TrEMBL
Match: A0A1S3C153 (coiled-coil domain-containing protein SCD2 isoform X1 OS=Cucumis melo OX=3656 GN=LOC103495686 PE=4 SV=1) HSP 1 Score: 1005.7 bits (2599), Expect = 9.0e-290 Identity = 556/693 (80.23%), Postives = 593/693 (85.57%), Query Frame = 0
BLAST of CmaCh12G010960 vs. ExPASy TrEMBL
Match: A0A6J1CPD7 (coiled-coil domain-containing protein SCD2-like isoform X1 OS=Momordica charantia OX=3673 GN=LOC111013085 PE=4 SV=1) HSP 1 Score: 962.6 bits (2487), Expect = 8.8e-277 Identity = 536/693 (77.34%), Postives = 578/693 (83.41%), Query Frame = 0
BLAST of CmaCh12G010960 vs. ExPASy TrEMBL
Match: A0A6J1HPI8 (coiled-coil domain-containing protein SCD2-like isoform X2 OS=Cucurbita maxima OX=3661 GN=LOC111465468 PE=4 SV=1) HSP 1 Score: 961.4 bits (2484), Expect = 2.0e-276 Identity = 528/544 (97.06%), Postives = 528/544 (97.06%), Query Frame = 0
BLAST of CmaCh12G010960 vs. NCBI nr
Match: XP_022965626.1 (coiled-coil domain-containing protein SCD2-like isoform X1 [Cucurbita maxima] >XP_022965627.1 coiled-coil domain-containing protein SCD2-like isoform X1 [Cucurbita maxima]) HSP 1 Score: 1205.7 bits (3118), Expect = 0.0e+00 Identity = 650/666 (97.60%), Postives = 650/666 (97.60%), Query Frame = 0
BLAST of CmaCh12G010960 vs. NCBI nr
Match: KAG7021132.1 (Coiled-coil domain-containing protein SCD2, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 1182.9 bits (3059), Expect = 0.0e+00 Identity = 637/671 (94.93%), Postives = 645/671 (96.13%), Query Frame = 0
BLAST of CmaCh12G010960 vs. NCBI nr
Match: XP_022938138.1 (coiled-coil domain-containing protein SCD2 isoform X1 [Cucurbita moschata] >XP_022938139.1 coiled-coil domain-containing protein SCD2 isoform X1 [Cucurbita moschata]) HSP 1 Score: 1177.9 bits (3046), Expect = 0.0e+00 Identity = 636/673 (94.50%), Postives = 643/673 (95.54%), Query Frame = 0
BLAST of CmaCh12G010960 vs. NCBI nr
Match: XP_023537927.1 (coiled-coil domain-containing protein SCD2 isoform X1 [Cucurbita pepo subsp. pepo] >XP_023537928.1 coiled-coil domain-containing protein SCD2 isoform X1 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 1176.8 bits (3043), Expect = 0.0e+00 Identity = 636/673 (94.50%), Postives = 643/673 (95.54%), Query Frame = 0
BLAST of CmaCh12G010960 vs. NCBI nr
Match: KAG6586285.1 (Coiled-coil domain-containing protein SCD2, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 1174.8 bits (3038), Expect = 0.0e+00 Identity = 635/673 (94.35%), Postives = 642/673 (95.39%), Query Frame = 0
BLAST of CmaCh12G010960 vs. TAIR 10
Match: AT4G08630.1 (unknown protein; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT3G48860.2); Has 1487 Blast hits to 747 proteins in 184 species: Archae - 0; Bacteria - 56; Metazoa - 305; Fungi - 197; Plants - 180; Viruses - 3; Other Eukaryotes - 746 (source: NCBI BLink). ) HSP 1 Score: 363.6 bits (932), Expect = 3.5e-100 Identity = 263/689 (38.17%), Postives = 376/689 (54.57%), Query Frame = 0
BLAST of CmaCh12G010960 vs. TAIR 10
Match: AT3G48860.2 (unknown protein; INVOLVED IN: biological_process unknown; LOCATED IN: plasma membrane; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT5G23700.1); Has 12429 Blast hits to 9751 proteins in 897 species: Archae - 180; Bacteria - 1190; Metazoa - 6552; Fungi - 1361; Plants - 886; Viruses - 50; Other Eukaryotes - 2210 (source: NCBI BLink). ) HSP 1 Score: 331.3 bits (848), Expect = 1.9e-90 Identity = 260/676 (38.46%), Postives = 350/676 (51.78%), Query Frame = 0
BLAST of CmaCh12G010960 vs. TAIR 10
Match: AT5G13260.1 (unknown protein; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT3G48860.2); Has 30201 Blast hits to 17322 proteins in 780 species: Archae - 12; Bacteria - 1396; Metazoa - 17338; Fungi - 3422; Plants - 5037; Viruses - 0; Other Eukaryotes - 2996 (source: NCBI BLink). ) HSP 1 Score: 307.8 bits (787), Expect = 2.3e-83 Identity = 251/664 (37.80%), Postives = 348/664 (52.41%), Query Frame = 0
BLAST of CmaCh12G010960 vs. TAIR 10
Match: AT4G25070.1 (unknown protein; EXPRESSED IN: cultured cell; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT3G48860.2); Has 14837 Blast hits to 10961 proteins in 1163 species: Archae - 189; Bacteria - 1924; Metazoa - 7665; Fungi - 1127; Plants - 653; Viruses - 80; Other Eukaryotes - 3199 (source: NCBI BLink). ) HSP 1 Score: 287.3 bits (734), Expect = 3.2e-77 Identity = 198/489 (40.49%), Postives = 286/489 (58.49%), Query Frame = 0
BLAST of CmaCh12G010960 vs. TAIR 10
Match: AT4G25070.2 (unknown protein; EXPRESSED IN: cultured cell; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT3G48860.2); Has 30201 Blast hits to 17322 proteins in 780 species: Archae - 12; Bacteria - 1396; Metazoa - 17338; Fungi - 3422; Plants - 5037; Viruses - 0; Other Eukaryotes - 2996 (source: NCBI BLink). ) HSP 1 Score: 285.8 bits (730), Expect = 9.2e-77 Identity = 202/493 (40.97%), Postives = 290/493 (58.82%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucurbita maxima (Rimu) v1.1
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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