CmaCh01G008300 (gene) Cucurbita maxima (Rimu)
The following sequences are available for this feature:
Legend: exonfive_prime_UTRCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.AGAAGAAGGAGCAGCAGCAGAAGCAGCGAAGCACCGCGGCTGCCCTTCTCGTCTCTTCAGCGGAGGAAACTGTAAGCCATGGAAGACATAGAAGACCTGCTCATCGGCGGCGGCGGCGGCGGTGGAGCTCCCCCTGGTTACCGACTTCCAATATCCGCAGTCGGTGTAAAGTCGAAGAAAAAGAATAAGCTGAAACCTAATCCTGATGCTGATGATTCCAGCAGCGGGCTTTTTCCAACCCAAAATCTACTGGCACCTAAGATTCCAGGCACTCAGGTCTCTCTCTCTCTTCATATCTTCTTTTAACGCCTTGAGTGTTTTTTTGTTTTATGTTCACATTTCTCTTGCGGTACTGATAACTTTATGCGTCGATGTATTTTGGCAGACAATTTATGTTAAAACCTTTGGATGTTCTCACAACCAGGTTAGTCCTTCACACCTCGCGTATTAAATTGATTTCTTTTGTTTCCTTGGCTTAAATGAATGGCTGAGTCTTTAATCCCGTTAGAGTTTGTTTATTGTATACTTGTCCAAATAGAGGTTGATTGGTTATTAGTTTTTATCCTTGCAATTTGTTGTGACATGAAACTGGATTTTACTATTTCCACTGTGCATTCCACAATTGTTTCATCTTTTATGGCGCACAATTGTTTCATCTTTTATGGCGTTTTATCTAAGGCTTCCAGTTGTTGTAAATTGATTTTAGAGTAAAAGTTTTGAGTGCAATGTGATATATGTAAAACTAGAACTTTTTGCGAGTAGATAAAATGCGTGACACTGACACATCGTATATTAAATCTATTATTATGTTTTCTTTTCCTAATAAAGATTAGAAAAAGCTATCAATGATCCTATTTTTCAAGAGGACAAGTCCTATTTAGAGGAGAAATATAAGCAATACTACAAGCTCAATGGAATAAAGTTGGAATCGTCAAATTATATTAACTTTTTGCTCGAGTAAGAATCTTCACACACTGCGTAGATGTTCATCATAGAAAGCTCTTTGACAGCATTTGAAGTGTAAAAGATACAGCAGTGTCCAGGTCGCATTCTTCATGAGTTATCTTTCTTTTCTTTCTTTTCTTTCTTTATGGTCTGCAAAGGAAAAAAATCTTGATGTGAGATAGGTATCACAAGTTTCTCCTGTTTTGGACGAACCCAAGAAATTCTTGTCACAAAAGCACAAATATTTAATAGATGATTCATGTTCATGTTATCACTTTTATGTAGAATGCATCTGTCATGAGGGAGGAAAAATACTGATGAGGTCTTCTCTTGTATCATTGGTGATTAATTGAAAGATTGAGGTTAGTATTTTGGGGATTGGAGAAGAAACTTACCAAATAATGATTTCCAAACCTTAACAGTTGAAGTGCGTGGTTCTAGCCTCTCTCTCTTCAATGCTAGCGGAGTTTTCTCAAATGTCTCAAAGTACATGTACTTCAGCTGCTAGTTGGTCCTTTTATGGCTCCGAAGCTGAATTTACTATGGATAAATGTGGTTAAAGCTCTTATGTCGTGGTTGGGAGGAATGAGATAATTTTCGATAATAAACAACCCCCTTGGGCTGATTGTTTTTGAATATGCAAGATTAAGGGCTTCATCATGATGTTCTCTCTCCAAGTCTTTTTCTGTTTTATTTTACTAGATATATGTTTAAATTGAGATGTTTTTATTTTTCCATTTTAATTGTCTATTTATTTCCTACTTTTCTTCTCTCAATGGTGCGTTCTGTGTCACCATTGCTAAAATAAAAAATGGATAAAATTTTCATCATTGTTTTTTTTTCAATGACAGAGTGACAGCGAATACATGGCTGGTCAGCTTTCAGCATTTGGTTATTTGTTAAGTGAGAATCCTGAAGAGGCAGACTTGTGGCTCATAAATACGTATGATCTGTTCCTTCAAATTTTACTGTTTCTTATTTTGTCTTAATTTTGTAGAAATGTTCAGTGAAAATTTCTTTCTTAGTTGCCAGAAAACATAAGTTGCCTGTGAATACTTTCTAACGGTTTTTTGTGCCTCTAATGTGCCTTGTTGGCCTTAAGTCTACCATTTGTCTCTGCATCATTTATTCAAGTAAACTGTTCTCTTTCCCAGGTTGGTTATTACATCTTCTTAAGGACATTAACCTTTAACTTCCTCTAATCTACCTGGTGTCTTCTCTCATTATTGTTCTTTGATGTAGATAGCTGTGCATATATGTGCTTTGACACAGACATATATTTTTGCATAGACAGTCATGAATTTTTTTCCTTTTCTCCACTTATAAAAGAGACAATAGCCTGATAACTATTTTTTCAGTTGCACAGTTAAATCCCCTAGTCAGTCTGCTATGGACACTCTAATAACAAAATGCAAAAATGCAAAAAAGCCTCTTGTGGTAGCTGGGTGTGTACCACAAGGTAGTCGAGATTTAAAGGAGCTAGAAGGGGTCAGTATAGTAGGAGTCCAGCAGATTGACCGTGTGGTAGAAGTTGTGGAAGAGACACTGAAGGGTCATGAAGTAAGGCTATTGAATCGCAAGACACTGCCAGCGCTTGACCTTCCAAAAGTGCGAATTGTTTCCTGTTCTAGCCTTTTGAATCTTCTATTTGAGTTTGATTTAAGAAGCTTCTTTAACATATATTATCTTTGTCTTACCCTTTCGCCAACTATTAAAGAAGTTTATTTTGATTTTGAATTTTGAACAGGTGAGAAAGAACAAGTTCATCGAAATACTACCAATCAATGTTGGCTGTTTAGGTGCTTGCACTTATTGCAAGACAAAACATGCTCGTGGTCACTTGGGAAGTTACACAGTAGATAGCCTTGTAAGAACTTTAAACTAATGTATGGTTTTTGTTAAACATATGCCCCTTTTTTTCAGTTAGAAACTTAATGTTGTTCGATCTGAAGAAACATCTGCTAAAACTGTATTTGCAGGTAAATCGTGTAAGAACTGTCATCAATGAAGGAGTCCGGGAAATATGGTTGAGCAGTGAAGATACTGGGGCATATGGTACTTTACTCTACTTCCATAGAAATATATATCGTGTTGATTGAGTTATTTTATCAGAAGAGAACATTGAATCCATAGAAATATATAGAGTAGGATTTTCAATAAATGTTGATATCAATTAAGATTTATGGCCCAAAACCATCAAAATTGTGAATGAAATTATATTCTTCATCACTATGGACATCTCAATCCTTCCAATTATCATTTTTTAATGGATATGCATTATAAAAAATAGTTTAAAATTTTTTGAGGAATTAATTGCTTGCTTTTATTGTTGAGGAATATTCTCTCTTGGGGTCGAGGGGACCAATTATGGTTCTTTTTATGAAAATTAAAGTGTGCTCTCTCCCTCCCTCACTCACCTCCTTGTGGGGTTGGTGGACCAATTATGTTTCTTTCCTCCTCTCTCTTTCGGGAGACATCTCTTTCTTTATTCTTAGGTTGCTATACTTGAATCAATGATGATTTTGTAAGCTTCTTTCAATGCTGATTCTCTCCCTCTCTCCCCCAATCCACCATCTCACCCCCATCAAAAACCATGGCCAAACTCATACCACCTGTCCCTGACCATGGCAATAGACCCACCATTGTAGAAGAAAATTGTTACTATCAAAAGAAAGAAGTACTCTTAGACTTAGACAATAGATATCAAACGAATAGAGTAAAGGTCTCAGAATTTACGCAAGAAAGGCTTTCTTCATACCTCTACATTGGGAACCTTTGAAATGGTTGTTACTATCACACATACGTGTGCTCCTTTAAATGGGAAGTTCTTTAGGGAAGAGTGGTTTACCCAATGGGTTATCTGAGTTGAAAAAATTGCAAACAAGAAAGATACTCTTGTCGAGGTTGTCCTTCTACATACCAAGGAGGGTTAAACAAACTCTTTGTACCTATTGATGCAGAATGAAAAGGCTGGGATGTTTTTTATAATCTCATAGCTAACTACCCTGCCCTACCATTAAAGGTGGTTTACCAACCTAAAATCCTCCATTCTTCAACAAGACTACTAATGAACCTGCTCTTAAACCCTTTTACCTACCGAAAATTCTTCCCCCACTCCACTATCATTAAATTGTAGTCTTGTTGAAGGATTGAGGGTTTAGGTTGGTCTGCTTATTGGGATTTTGCTATGATTGTCACTAGAAGAAACTTTCATGATAGTTTGTACAAGATTTTTAATGGCCCTATTTTTCTTAATAAAATAGAAATGTGGTATGCCTAATATGTGCAAAAATTCATTAGAACAATCACAAGTAAATGTTTCCATGGACTTAAACGTTTGCAAAATTCATTTAAAATGAAGGTAAAAGTGATGTTAACAATAACAACAGAAATCAAAATAGCAAGAAATTCAAATGAATGGAAACACCCTGATCTAATCTGAAGGCTACAACGTTAAATGCAAATGCGACTACCCTAACTTCATTCCCATGGCCTCCAAAACGACGCTATCATCCGTACAAAGGTGCCTTACCTTTACCTGAGAAAGAAGTAGCACGTGATTTGAGTATTTAAAGGAATACTAAGCAAGTAGCCTTATTGTTGAGGTCGTGAAATATAATCACATGTAATCATGTTGGGACCTATTTTTTCATAAAAACATCATGGTCTTGAACTCTACTTTTCAGTTCGAACGAAAGTGGATGTGTAGTATTTCTCCACACGGCCCACCACGCGCACATGGACCCTCCAAGCGGGCTTGTATACATACCTCTTGGGTTTGGCCTTTGACTAGTGCACGCTCACTCTGTCGGAGCTACAAAGGGAAAATAGCTTGCATAATATCATGGGGTACATAAATATTGTAATGTACGCACTCATACAAATCATAACGGGGAAGCATCTTGATGCACGTGACATACAAAATGCATGAGGTTCCATAGTATCAAATCATGACATATACTTATGATGTAAGTTGTACGTCCCTTCTTTTCATAACATAGCATTCTTATGAGACATGCAATGTATACTAAGCATATCTTTCATGGTTAATATGTATGGTTTATCAATTTCTCGTAGGCATAGAGTGAACATGCTAACATAATATATAGTATGACATATGGAGGTTCATGCATCATATAATGTAATTAGGTAGAGTCAATTGAGGGTTCAACAATCACAATGTGGATGAGTTGTCAAACTAAAAAGTCAAGGAAAAGCCAAGCAGTAACACTCTAACTCAACCAGGAATCATGCCAAAGAGAGGTTGAGAGACCATTACCAAGACTTCTCTGAGCATGATTAGCTAGGTCAATAGATGAACAAATAAAACCAAGATACGAACTAAACCCCTCCAAATATGTCGAGACAAAAAACAATTGTTCTCTGAAGAATAATTATTTTGTTATTCTTCTTTCCCTTGCTTTTCCGTGCTTTTATTTGTATTTTAATATTTCAACAATAGGTTGGTCTAATGATCAAAACAAAAACTATCCATTGAGATACAATCGAAGTCATATATAATCTTCAATATATCTCTAAGTCTAGATCTTGTATATTTGTTTGGGTGGTCGTTTGTAAGATTAGCAAAAACACGACACAGTGACCTATAGGTTGAAGAGAACCAATGATTGGTTTTGTATCATGAATACTATGATAATTTTCAATATTGAATACATTTTTTCTAATAATATGAAATTTGAACCTTGAAATAAGGCATACATATTATCCAAGGATCTCTAAGATCATAAAATATTTGTCCTTGGCTATAAAGTATCATCACTTGTAAAAGGGCCAAGTATTGATGTCACACTTATATCGCACTTCGACACGTTGTCGACACATGTTTGACACATTGTTTTGCATGCTATTATTGTTTTTTATATTATTTTTCATTTTTTGGCATGGCAAGGACATGCTCGGACACAGTTAGGGACACACAAAGACACGGTTAAGACATGTAATGCCAATTTTTTTTCAAGTTTCAAGTCTTTTAAGATCATTTAAAAGAAAGCCCACTCCGCATATAGACCTCAAAGTATTAGTGTTTCTTACCATCATCTTCCAACCTCAAATCTTGCCTCCACGACAAGAAAAAAAATCCTGCACAACTGCTCATCAACAACAACAATGAATGACAGTTGTCGGTTGTCGTTGATCACTAGTGGCCATTGGTGAAGAGGACAACGATGGTGGCCGCGGATATAGAAAGGCTTTTTAGAAATTACTTGTGGAAAGATAGTGCACACCTTGTTTGTTGGAATATTCTAAACCTCCCAACAGAAAAGGGAGGTCTCGGTCTTCTCTCGATAAGGAAGAAGAACACAGCTCTCCTCGCCAAATTGATATAGAGATATCATCACGAAAAAAAGGCCTTATGGAGAAATCTTATAAAGGCTAAATATACTCCTACATCAAACAAAGATCACCTCCCTCCATCTTCTACAAAAGGGCCTTGGAAGTACATAAAGAAACATCAAAATCTCATCACCCACCGAACTCGCCATAAGGTGGGGAATGGGGGAAGCACATCATTTTGGACCAACCCATGGATTGAAAACACCACGCTAGCTTTGAAGTATCCACTTTTGTACAGGCTTTCTCACAACAAAAAAGCCACGATTAAAGAAACGTGGAATGTTGTCAACAAATTTTGGGACTTGAAGCTTGGGAGGAATCTAAAGGATAATGAAGCAACAGAGTGGGCTGAATTAAGCCTTGACCTTGCCCCTGTGGTATTGTCAAACAAAGAAGACTCACTAACTTGGCTCCCCAATGCAGACGGGGTCTTTTCTACAAAATCCTTGATGATGGACATGGGGAAAAAAAGTAGAAGCAATAAATCCCACGCTAGCAAAGACATTATGGAAAGGACATCAACCTAAAAAGGTGAAGTTCTTCCTTTGGGAAATAGCGCATAAAGCCATCAGCACAAGTGAAAATCTTCAAAAAAGAATTCCTTACATCACTCTCTCTCCAAATTGGTGTCCACTATGCAAGAAAGCAAACGAATCACAAAGTCACTTGTTTATGGAATGCACATACACTCAAAATTTATGGCCAACGATTCTCAATATATTCGGATGACATCTCACATTTCCTAGGGAGGTAAAGGATTTTTTTGGATATGGCCTTAACGTGCCACCCTTTCAAGAACGCAAAAGCCCTATTATGGAAAAACCTCATCATGACTTTCTTTTGGAATCTGTGGAAAGAAAGAAATCAGAGAATATTTGCAGAAACGACATAGACCTACACAAAACTTTTCGACAATGTTGTTTACCAAGCTATATCTTGGTGTAAACTGTCTAATATTTTTACTTCTTATAGTTATACCTCCCTCGTTGCAAATTGGGAAGGTCTTTTGTAAACATCATGGATTATACATCCCTCTTGTAAATTTCACTCATCAATGAAATTGTCTCTTATAAAAAAAAAAANAAAAAAGACAAGGATGGGGAAAATATGTAGTATGTAGAAGACTCGTTTTGTTTGATTCTATCTTGTAGTTTTCTGTGTAAGACTTGTTGAACATTGAATATTGTTGATGTTGAAGTTTTTTTGTGTAAGACTTGTTGAATATTGGATATAGTTGATGTTGTTTGTTGATTGTTATCTTATCATTATCTTTTTAATGAATTTTATGGATGTTCTTTTGATGTTTAAATGTAGAACGTTACATTAGAAGTAATGAATATTCATAACATGTCAAATTATACACATTTTAAAAAATAAAACAAATGTTTCCCCTATGTGTTGTGTCCTACTTTTTTGGAAATTAATGTGTCGCCTGTTCATGTCGTGTCGTATCCACGTTACATGTTCTTGCCTGTGTTTTTTTTTTTTGTCCTTGCTAATATCATATGATGAAATTTCAGGCCGTGACATTGGGGTCAATCTTCCAATTTTGTTAAATGCAATTGTTGCCGAGCTTCCTCCTGATGCAAGCACAATGCTTCGGATTGGGATGACAAATCCTCCTTTCATTCTTGAGCATTTGAAAGAGATAGCTAATGTTTTGTGTCATCCATGTGTATACTCCTTTTTGCATGTGCCAGTTCAATCTGGGAGTGACACAATCTTAAGTGTAAGTATTGTCTATACCCAAATTTTCTTAGATTTGTTTTTAGTGACTTGAGGCCAGTACAGTTTTGAGGAAGGAAATTACTTGTAGACCTAATCATTACATTTTTCTCTCAGGCAATGAATCGAGAATATACAGTCAGTGAGTTCAGGACTGTAGTAGATACCTTAACTGAGCTTGTTCCTGGGATGCAGGTCGCAACTGATATAATATGTGGATTCCCTGGTTAGTAAGTGGGTTTGAGGGGATTGATCCCTATACTTCTATTGTTGTCTCTCTATTGGTTTGCATGGGTTTTTATTCTTTGCATACTGTTTTGGATGGGAAATGAAACTTTCACCTTCATTGATTTCCTTGTTGCAAAACACCAACTGCTGAAACAGTGTAATCTATAAAACTATTGTTCTCCTCAAAGATGCAATATTTGAGCTATTACTTACAAACATTTTAAAATATTGATTTTCATAATGGTCAACTATATTGATTATTATGAAAATGTAACCCTTTGGCCTTGTGGGATACCTCATCTCCCCTCTTTTTGTAATAGTTCCTCTTGTTAATTTTACTGTCTCGTTTCCTTGTTCAATTTTTTTTTTTTTTTTTTTTTTTAAGAAAATAACTGAAAAATACTAATGTTCAAGTATCAGTGGTTTGTTTTGGTCGCTATGCGGCAGTGTGAAAATTATCTGTTAGGTTTGTCAGGGCCTTTATCCCCCATTTTTTTCTTTGTATCATCTTGAATGTTTATCTCCTCCAATGTTGTATACAATATTAATTCGCATTTTGCGGAGCATAATATCTTAAAATTTTATTACATGTGAATTATTGCCAAACTTTTGTTAATTCTGTGGCTTTTCAGGGGAAACGGATGAAGATTTTTGTGAAACTATCAACCTTATTAAAGAGTACAAATTACCCCAAGTTCATATCTCACAATTCTATCCTCGACCAGGTATGGCATCATGTTCAAGCCTCCTTATTTCTTTGCATAGACTTTAACTAAAGAAGGTAACAGTTAGACTTGAATGCTAATGACTAGCTTAATAATCCTCTATCTCAAATTAGGATGAACCTTGTGCTATTCCTTGTGTATTATTCAGGAGACACATCACATGCTTAAAATGTTTATTTCCCAGGATGTGGCAATAAGATTACCTAGGAAGCATATATATATATATATATATATATATATATTTTTTTTTGGTTAATCCAAACACTTTTATATCCCTTCTCATTTAGTTTTCTTGTTGTTGCTTGCAACTTATTAGGACCAAGGTTTTTTAATTTATTAATTTGTCTAATTTTTTTTTCTTAACATGACTGAGAAAAATAGAAGAAAGCAAAAGGGCATCAAAAAACAACCTAGAAAAAAATCCTGAAAAAAAAAAACCTAACTAAATATAAAGGGATTCAAACCAAAAGAATAAAGCCAAAGAGACATTGAACGAAGAATCACATTTTGTTTTGTTTGGAAGGTTTTTTTTTTGTTAGGATGGTAGAAACTTAACATTTCTTTGTCTAATTTTAAAGAGCAACTGCTACTTATGGATCCCTCTATAATACAAACAACCTATTTTATACTTATTCAGATGAAACAGTGTGATACTAGCCACAACAAATGATTGAATGACTAAGATGAATTATTCATGCATGTGCAAAATCCAGCAATCAAACAGTTTGCCCATGTTACCTTAGAAGAACCCTGGCTGTAGCAATTTCTTTCATTAAATTGATTGTCTCGGATATATCTGGCTAGACTAGGTTTTGGAACTTCTTTGATTCCAAGTAAATAGAATGTGATTACTTAAACTAATGTTTCCAGCCGTCAACTATTTAAAATGAAAAAAACAGTATTCTTCTCTCTTGTCCTTCAGGGACACCTGCTGCTAGGATGAAGAAAGTTCCAAGTGCTATTGTCAAGAAACGAAGCCGCGAGTTGACTTCGGTTTTTGAAGCTTTTACTCCATATAATGGAATGGAGGGCAGAGTGGAAAGAATTTGGATTACAGAAATTGCAGCTGATGGAATTCACTTGGTAAGAAAGCGATGCTGTCTAGTGTATTTGTTTCTAATTCTTCCATGTATTTGCCTACAGTTGTTTCAGGTGGCTGTTTCTACACAAAATAGTTAGGACAATGGTGAGAAAAATTGTTTGGATCAGTTTTAGGCCCAAATTTGAGACATCAAGGCTGTTTAATTGACCTTTTAGCTAGTGTAAATGAAATTGTGTTTACAGTAACAAACAAGAAAAGGGAGAAAATAGGATAAAGAAAAAACTGGTAAAATTCACTGTTCAACATTTTGAGAATCCATATAAAATTTTAGACTCAGTCTGCATGCCTAACAAATTATAGAAAATATTTATTGGAAGGAGTAAAAAGAAAGATAGAAAATATCTACGGGCGGAGTAATCAATCAATAAACATTTTAATTCACCATGTTCTACACGAGGAAAAACCCAGCTGTACCATCTATTGGCCTTTAAGTGAAATAGAATTAGATACCGTCACCAAAATTTGGATTTCAAGACATTAAGGACTTGCATTTCTACCTAGCATTTAATAACTAAGTTATTTTTTCTTTTTAACAAGAAACAAAATATTTCATTGAATTAATTAAAAGAGTCTAGCAAATATCTTGACCATTGAGAAACCTTCCATTATTCCATCTCAAAACAATCAACCCAATATTTAAATATAAGTAGGTTCTATTAATCTTAGTTAATTTTAAACATTCTTCAAAAAAAGGATTTTCTTCAAACATGTCTTATTTGACGTTGCTTCTTTAGACAATATGTAATTGGCTTGTTCATGAGCGAGTTAAATTTTATTCATTCTTTCATATACGTATATAAAGTATACTATTTACATTAGCTTAGACCATTCCTAACCCAAGGCCTGGTCTGTGGAATGCATGTTCTCTGTACACTCTACACTCTTGCAGTTAAGACCATCCAAGTTAACACTATCTTGTGGTGAACTTGGATAGGAATAAATAGTAAACCTTTAGAAGGTAAGCTTAGATCGCGAGCTGAAGTATATGGGCTGAAGTCTTTGGTTATGTTAAGTTTTTGATGTAGTAGATTAGCCGACTAGGGATAATCTTGTAATTTTTGGCTGAGTTTGTTAATTGTTAGTTGTTAGTTGGGTTTAGGTTAATGGTTTTGGTAGTTAAATTAGTTTGTTAATTGATTGCTTTGTTTGTAACTGGGTTTTTTACTTAGCTTGTCAGTTGGCATCCAGAGGATAGTCTCTTGTAAAGACTTCGGAATAGTAATTAAAAAAAATGGTTATCCTTGGGTTCTATTTTTTGGTTGCGAGGTTGCATCATTTTTTGTATAGAGAACGGAGAAGTAGCTTGGCCAAGAAAGATGACGAGCAAGAGTCTCGAATGGTAGGGAATGAAAGTTCATTTGGTCCAAATGGTAGGAAATGTGTGGAAAATCAGTTGCAATTGTACTGACTTAGTTGATTCACATTCACTCAAGCCTGAGATTTTCACACGTAAGAAAGTAGTGAAAAACATCAATATTCCATGGGAGAGATCAGAAATCAGTCGTTAATTTATAAGTTCTGCAAAATTTCACCTTTGAAATTTAACAAAACTTTTAGAAAAGGGTCAAATTCTCTCGGACAATTGATTGAAGAAAATGTTATTATCTATGGATCTAGGTTTGGAGAGATCTTGGGAGGAAACTTGTGGTAGGCTAGAAAGGGACAACATAATTTTTAGCGAGCGGAGAGATTTTGAAGGAAGTTTGGGAGGTTGCTTGGTTTGCCTTCCCGTGGGAATCCTTCCATTGGAGTTTCTTTTATTGTTAGCTTTGTTTCATTCCTTTGAATTGGAATACCATCCTGTAGTTAATTGTTAACTGGTTCTTAATCAATTTCAATTCCCATATGCATTTTAGTGCATCATGGAAGTGAACTTCCTTTTCTGAGCCATCTCATAAAACTGCTGTTTTTACATACTTTTCATCATCTAATGTTTCAAAGAACTGTTGTTTCTTTTTCGATAAGCTCAATTTATATTGCTCCCCCCCAGGTTGGCCATACCAAGGGATACATACAGGTGCTAGTAATTGGCCATGAAGCTATGCTGGGAACTTCTGCTTTGGTGAAGATAACATCCGTTGGAAGATGGTCTGTTTTCGGGGAAGTGATTGAAACCATCGTCACCAAACATCATAAAACAACTGCTCTCGAAGACATGCCGATTCAAGCCAAGGTTCCTCCCTGCTCTAATTCTCATGAAACATGTGCATGTTCCGTGGAACCCGAAGCTTGTGCTTGTGGACCAGAAAGCTGCTGCAAAGGACCAGTTGCTCTGGATGAGAAAGATGATTCTTCAAGAAATATCCCATTGCCTGAAGAGCCCAAACGGAAGAATCTGGTTGAGTGGCTATTGCGGAAACGGAAGAGCCATGTGCCCAAAAGGGAGGAAGGGGAAAGTCCGGTAGTGTCCGGGAGAAAGCAGGCATCGGCTGGAGGAAGCATGAGTGAGTGGGGCGTCGTCGATAGGATTCTTGTTGGAGGAATACTAATCAGTATCTTCACAATTGTTGGTCTGCTGTTTCATCTTGGATCCACGACACTCTCCTCCAGTTGATGATATTAATGATATTATACAATGCTAATTTGTATCGGACCATATTTAAGAAAGTTTGTAATGAGAGCTATAATCCATCATATCTTCATGTTCCTTTTCCAACTTTCATCCATGGAGATCGTGTTTTGACGGTCACAATTTCAATTGTAATTTGAGAGCGATTTTGTTTCAATTTCACAGTTCTCCCTCTAGAGCTTCATCTACTTCCATGACTTTGAATCTACTAGAATACATGGAATAAACTAATTAACTATTGAAGATAGATTCATATTTACAAATTTTGGATGGATG AGAAGAAGGAGCAGCAGCAGAAGCAGCGAAGCACCGCGGCTGCCCTTCTCGTCTCTTCAGCGGAGGAAACTGTAAGCCATGGAAGACATAGAAGACCTGCTCATCGGCGGCGGCGGCGGCGGTGGAGCTCCCCCTGGTTACCGACTTCCAATATCCGCAGTCGGTGTAAAGTCGAAGAAAAAGAATAAGCTGAAACCTAATCCTGATGCTGATGATTCCAGCAGCGGGCTTTTTCCAACCCAAAATCTACTGGCACCTAAGATTCCAGGCACTCAGACAATTTATGTTAAAACCTTTGGATGTTCTCACAACCAGAGTGACAGCGAATACATGGCTGGTCAGCTTTCAGCATTTGGTTATTTGTTAAGTGAGAATCCTGAAGAGGCAGACTTGTGGCTCATAAATACTTGCACAGTTAAATCCCCTAGTCAGTCTGCTATGGACACTCTAATAACAAAATGCAAAAATGCAAAAAAGCCTCTTGTGGTAGCTGGGTGTGTACCACAAGGTAGTCGAGATTTAAAGGAGCTAGAAGGGGTCAGTATAGTAGGAGTCCAGCAGATTGACCGTGTGGTAGAAGTTGTGGAAGAGACACTGAAGGGTCATGAAGTAAGGCTATTGAATCGCAAGACACTGCCAGCGCTTGACCTTCCAAAAGTGAGAAAGAACAAGTTCATCGAAATACTACCAATCAATGTTGGCTGTTTAGGTGCTTGCACTTATTGCAAGACAAAACATGCTCGTGGTCACTTGGGAAGTTACACAGTAGATAGCCTTGTAAATCGTGTAAGAACTGTCATCAATGAAGGAGTCCGGGAAATATGGTTGAGCAGTGAAGATACTGGGGCATATGGCCGTGACATTGGGGTCAATCTTCCAATTTTGTTAAATGCAATTGTTGCCGAGCTTCCTCCTGATGCAAGCACAATGCTTCGGATTGGGATGACAAATCCTCCTTTCATTCTTGAGCATTTGAAAGAGATAGCTAATGTTTTGTGTCATCCATGTGTATACTCCTTTTTGCATGTGCCAGTTCAATCTGGGAGTGACACAATCTTAAGTGCAATGAATCGAGAATATACAGTCAGTGAGTTCAGGACTGTAGTAGATACCTTAACTGAGCTTGTTCCTGGGATGCAGGTCGCAACTGATATAATATGTGGATTCCCTGGGGAAACGGATGAAGATTTTTGTGAAACTATCAACCTTATTAAAGAGTACAAATTACCCCAAGTTCATATCTCACAATTCTATCCTCGACCAGGGACACCTGCTGCTAGGATGAAGAAAGTTCCAAGTGCTATTGTCAAGAAACGAAGCCGCGAGTTGACTTCGGTTTTTGAAGCTTTTACTCCATATAATGGAATGGAGGGCAGAGTGGAAAGAATTTGGATTACAGAAATTGCAGCTGATGGAATTCACTTGGTTGGCCATACCAAGGGATACATACAGGTGCTAGTAATTGGCCATGAAGCTATGCTGGGAACTTCTGCTTTGGTGAAGATAACATCCGTTGGAAGATGGTCTGTTTTCGGGGAAGTGATTGAAACCATCGTCACCAAACATCATAAAACAACTGCTCTCGAAGACATGCCGATTCAAGCCAAGGTTCCTCCCTGCTCTAATTCTCATGAAACATGTGCATGTTCCGTGGAACCCGAAGCTTGTGCTTGTGGACCAGAAAGCTGCTGCAAAGGACCAGTTGCTCTGGATGAGAAAGATGATTCTTCAAGAAATATCCCATTGCCTGAAGAGCCCAAACGGAAGAATCTGGTTGAGTGGCTATTGCGGAAACGGAAGAGCCATGTGCCCAAAAGGGAGGAAGGGGAAAGTCCGGTAGTGTCCGGGAGAAAGCAGGCATCGGCTGGAGGAAGCATGAGTGAGTGGGGCGTCGTCGATAGGATTCTTGTTGGAGGAATACTAATCAGTATCTTCACAATTGTTGGTCTGCTGTTTCATCTTGGATCCACGACACTCTCCTCCAGTTGATGATATTAATGATATTATACAATGCTAATTTGTATCGGACCATATTTAAGAAAGTTTGTAATGAGAGCTATAATCCATCATATCTTCATGTTCCTTTTCCAACTTTCATCCATGGAGATCGTGTTTTGACGGTCACAATTTCAATTGTAATTTGAGAGCGATTTTGTTTCAATTTCACAGTTCTCCCTCTAGAGCTTCATCTACTTCCATGACTTTGAATCTACTAGAATACATGGAATAAACTAATTAACTATTGAAGATAGATTCATATTTACAAATTTTGGATGGATG ATGGAAGACATAGAAGACCTGCTCATCGGCGGCGGCGGCGGCGGTGGAGCTCCCCCTGGTTACCGACTTCCAATATCCGCAGTCGGTGTAAAGTCGAAGAAAAAGAATAAGCTGAAACCTAATCCTGATGCTGATGATTCCAGCAGCGGGCTTTTTCCAACCCAAAATCTACTGGCACCTAAGATTCCAGGCACTCAGACAATTTATGTTAAAACCTTTGGATGTTCTCACAACCAGAGTGACAGCGAATACATGGCTGGTCAGCTTTCAGCATTTGGTTATTTGTTAAGTGAGAATCCTGAAGAGGCAGACTTGTGGCTCATAAATACTTGCACAGTTAAATCCCCTAGTCAGTCTGCTATGGACACTCTAATAACAAAATGCAAAAATGCAAAAAAGCCTCTTGTGGTAGCTGGGTGTGTACCACAAGGTAGTCGAGATTTAAAGGAGCTAGAAGGGGTCAGTATAGTAGGAGTCCAGCAGATTGACCGTGTGGTAGAAGTTGTGGAAGAGACACTGAAGGGTCATGAAGTAAGGCTATTGAATCGCAAGACACTGCCAGCGCTTGACCTTCCAAAAGTGAGAAAGAACAAGTTCATCGAAATACTACCAATCAATGTTGGCTGTTTAGGTGCTTGCACTTATTGCAAGACAAAACATGCTCGTGGTCACTTGGGAAGTTACACAGTAGATAGCCTTGTAAATCGTGTAAGAACTGTCATCAATGAAGGAGTCCGGGAAATATGGTTGAGCAGTGAAGATACTGGGGCATATGGCCGTGACATTGGGGTCAATCTTCCAATTTTGTTAAATGCAATTGTTGCCGAGCTTCCTCCTGATGCAAGCACAATGCTTCGGATTGGGATGACAAATCCTCCTTTCATTCTTGAGCATTTGAAAGAGATAGCTAATGTTTTGTGTCATCCATGTGTATACTCCTTTTTGCATGTGCCAGTTCAATCTGGGAGTGACACAATCTTAAGTGCAATGAATCGAGAATATACAGTCAGTGAGTTCAGGACTGTAGTAGATACCTTAACTGAGCTTGTTCCTGGGATGCAGGTCGCAACTGATATAATATGTGGATTCCCTGGGGAAACGGATGAAGATTTTTGTGAAACTATCAACCTTATTAAAGAGTACAAATTACCCCAAGTTCATATCTCACAATTCTATCCTCGACCAGGGACACCTGCTGCTAGGATGAAGAAAGTTCCAAGTGCTATTGTCAAGAAACGAAGCCGCGAGTTGACTTCGGTTTTTGAAGCTTTTACTCCATATAATGGAATGGAGGGCAGAGTGGAAAGAATTTGGATTACAGAAATTGCAGCTGATGGAATTCACTTGGTTGGCCATACCAAGGGATACATACAGGTGCTAGTAATTGGCCATGAAGCTATGCTGGGAACTTCTGCTTTGGTGAAGATAACATCCGTTGGAAGATGGTCTGTTTTCGGGGAAGTGATTGAAACCATCGTCACCAAACATCATAAAACAACTGCTCTCGAAGACATGCCGATTCAAGCCAAGGTTCCTCCCTGCTCTAATTCTCATGAAACATGTGCATGTTCCGTGGAACCCGAAGCTTGTGCTTGTGGACCAGAAAGCTGCTGCAAAGGACCAGTTGCTCTGGATGAGAAAGATGATTCTTCAAGAAATATCCCATTGCCTGAAGAGCCCAAACGGAAGAATCTGGTTGAGTGGCTATTGCGGAAACGGAAGAGCCATGTGCCCAAAAGGGAGGAAGGGGAAAGTCCGGTAGTGTCCGGGAGAAAGCAGGCATCGGCTGGAGGAAGCATGAGTGAGTGGGGCGTCGTCGATAGGATTCTTGTTGGAGGAATACTAATCAGTATCTTCACAATTGTTGGTCTGCTGTTTCATCTTGGATCCACGACACTCTCCTCCAGTTGA MEDIEDLLIGGGGGGGAPPGYRLPISAVGVKSKKKNKLKPNPDADDSSSGLFPTQNLLAPKIPGTQTIYVKTFGCSHNQSDSEYMAGQLSAFGYLLSENPEEADLWLINTCTVKSPSQSAMDTLITKCKNAKKPLVVAGCVPQGSRDLKELEGVSIVGVQQIDRVVEVVEETLKGHEVRLLNRKTLPALDLPKVRKNKFIEILPINVGCLGACTYCKTKHARGHLGSYTVDSLVNRVRTVINEGVREIWLSSEDTGAYGRDIGVNLPILLNAIVAELPPDASTMLRIGMTNPPFILEHLKEIANVLCHPCVYSFLHVPVQSGSDTILSAMNREYTVSEFRTVVDTLTELVPGMQVATDIICGFPGETDEDFCETINLIKEYKLPQVHISQFYPRPGTPAARMKKVPSAIVKKRSRELTSVFEAFTPYNGMEGRVERIWITEIAADGIHLVGHTKGYIQVLVIGHEAMLGTSALVKITSVGRWSVFGEVIETIVTKHHKTTALEDMPIQAKVPPCSNSHETCACSVEPEACACGPESCCKGPVALDEKDDSSRNIPLPEEPKRKNLVEWLLRKRKSHVPKREEGESPVVSGRKQASAGGSMSEWGVVDRILVGGILISIFTIVGLLFHLGSTTLSSS
BLAST of CmaCh01G008300 vs. Swiss-Prot
Match: CDKAL_DROPS (Threonylcarbamoyladenosine tRNA methylthiotransferase OS=Drosophila pseudoobscura pseudoobscura GN=GA19679 PE=3 SV=1) HSP 1 Score: 507.7 bits (1306), Expect = 1.9e-142 Identity = 263/497 (52.92%), Postives = 344/497 (69.22%), Query Frame = 1
BLAST of CmaCh01G008300 vs. Swiss-Prot
Match: CDKAL_XENTR (Threonylcarbamoyladenosine tRNA methylthiotransferase OS=Xenopus tropicalis GN=cdkal1 PE=2 SV=1) HSP 1 Score: 500.4 bits (1287), Expect = 3.0e-140 Identity = 248/467 (53.10%), Postives = 331/467 (70.88%), Query Frame = 1
BLAST of CmaCh01G008300 vs. Swiss-Prot
Match: CDKAL_DROME (Threonylcarbamoyladenosine tRNA methylthiotransferase OS=Drosophila melanogaster GN=CG6550 PE=2 SV=1) HSP 1 Score: 497.3 bits (1279), Expect = 2.5e-139 Identity = 264/521 (50.67%), Postives = 347/521 (66.60%), Query Frame = 1
BLAST of CmaCh01G008300 vs. Swiss-Prot
Match: CDKAL_XENLA (Threonylcarbamoyladenosine tRNA methylthiotransferase OS=Xenopus laevis GN=cdkal1 PE=2 SV=1) HSP 1 Score: 495.4 bits (1274), Expect = 9.6e-139 Identity = 254/497 (51.11%), Postives = 337/497 (67.81%), Query Frame = 1
BLAST of CmaCh01G008300 vs. Swiss-Prot
Match: CDKAL_HUMAN (Threonylcarbamoyladenosine tRNA methylthiotransferase OS=Homo sapiens GN=CDKAL1 PE=1 SV=1) HSP 1 Score: 494.2 bits (1271), Expect = 2.1e-138 Identity = 241/435 (55.40%), Postives = 318/435 (73.10%), Query Frame = 1
BLAST of CmaCh01G008300 vs. TrEMBL
Match: A0A0A0KSZ4_CUCSA (Uncharacterized protein OS=Cucumis sativus GN=Csa_5G652200 PE=4 SV=1) HSP 1 Score: 1116.3 bits (2886), Expect = 0.0e+00 Identity = 565/637 (88.70%), Postives = 588/637 (92.31%), Query Frame = 1
BLAST of CmaCh01G008300 vs. TrEMBL
Match: B9S747_RICCO (Radical sam protein, putative OS=Ricinus communis GN=RCOM_1333590 PE=4 SV=1) HSP 1 Score: 951.8 bits (2459), Expect = 4.2e-274 Identity = 486/638 (76.18%), Postives = 539/638 (84.48%), Query Frame = 1
BLAST of CmaCh01G008300 vs. TrEMBL
Match: A0A067KJB8_JATCU (Uncharacterized protein OS=Jatropha curcas GN=JCGZ_10950 PE=4 SV=1) HSP 1 Score: 943.0 bits (2436), Expect = 1.9e-271 Identity = 485/636 (76.26%), Postives = 542/636 (85.22%), Query Frame = 1
BLAST of CmaCh01G008300 vs. TrEMBL
Match: A0A061FK81_THECC (Methylthiotransferase OS=Theobroma cacao GN=TCM_036466 PE=4 SV=1) HSP 1 Score: 937.6 bits (2422), Expect = 8.1e-270 Identity = 483/635 (76.06%), Postives = 536/635 (84.41%), Query Frame = 1
BLAST of CmaCh01G008300 vs. TrEMBL
Match: W9RWT6_9ROSA (CDK5 regulatory subunit-associated protein 1-like 1 OS=Morus notabilis GN=L484_025461 PE=4 SV=1) HSP 1 Score: 937.6 bits (2422), Expect = 8.1e-270 Identity = 484/635 (76.22%), Postives = 530/635 (83.46%), Query Frame = 1
BLAST of CmaCh01G008300 vs. TAIR10
Match: AT1G72090.1 (AT1G72090.1 Methylthiotransferase) HSP 1 Score: 846.3 bits (2185), Expect = 1.2e-245 Identity = 447/638 (70.06%), Postives = 505/638 (79.15%), Query Frame = 1
BLAST of CmaCh01G008300 vs. TAIR10
Match: AT4G36390.1 (AT4G36390.1 Methylthiotransferase) HSP 1 Score: 105.9 bits (263), Expect = 9.2e-23 Identity = 94/399 (23.56%), Postives = 169/399 (42.36%), Query Frame = 1
BLAST of CmaCh01G008300 vs. NCBI nr
Match: gi|449447617|ref|XP_004141564.1| (PREDICTED: threonylcarbamoyladenosine tRNA methylthiotransferase isoform X1 [Cucumis sativus]) HSP 1 Score: 1116.3 bits (2886), Expect = 0.0e+00 Identity = 565/637 (88.70%), Postives = 588/637 (92.31%), Query Frame = 1
BLAST of CmaCh01G008300 vs. NCBI nr
Match: gi|659119467|ref|XP_008459673.1| (PREDICTED: threonylcarbamoyladenosine tRNA methylthiotransferase isoform X1 [Cucumis melo]) HSP 1 Score: 1112.8 bits (2877), Expect = 0.0e+00 Identity = 566/637 (88.85%), Postives = 589/637 (92.46%), Query Frame = 1
BLAST of CmaCh01G008300 vs. NCBI nr
Match: gi|659119469|ref|XP_008459674.1| (PREDICTED: threonylcarbamoyladenosine tRNA methylthiotransferase isoform X2 [Cucumis melo]) HSP 1 Score: 991.5 bits (2562), Expect = 6.8e-286 Identity = 503/564 (89.18%), Postives = 525/564 (93.09%), Query Frame = 1
BLAST of CmaCh01G008300 vs. NCBI nr
Match: gi|778708092|ref|XP_011656120.1| (PREDICTED: threonylcarbamoyladenosine tRNA methylthiotransferase isoform X2 [Cucumis sativus]) HSP 1 Score: 986.5 bits (2549), Expect = 2.2e-284 Identity = 497/553 (89.87%), Postives = 518/553 (93.67%), Query Frame = 1
BLAST of CmaCh01G008300 vs. NCBI nr
Match: gi|659119471|ref|XP_008459676.1| (PREDICTED: threonylcarbamoyladenosine tRNA methylthiotransferase isoform X3 [Cucumis melo]) HSP 1 Score: 980.3 bits (2533), Expect = 1.6e-282 Identity = 497/553 (89.87%), Postives = 518/553 (93.67%), Query Frame = 1
The following BLAST results are available for this feature:
The following terms have been associated with this gene:
GO Assignments
This gene is annotated with the following GO terms.
The following mRNA feature(s) are a part of this gene:
Analysis Name: InterPro Annotations of Cucurbita maxima
Date Performed: 2017-05-20
The following gene(s) are orthologous to this gene:
The following gene(s) are paralogous to this gene: None The following block(s) are covering this gene:
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