CaUC02G031670 (gene) Watermelon (USVL246-FR2) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGTATGAGAGAGGAGAAAACAGAATCATAGAAATGAAGAAAGGGAAAGATAGGAATAAGAGAATGTGAGTGGAATTAGGGAAACTGAAGGGAGAAATACAGCAATTCAGTTGTACAATATTTCTGGTGTAAATGGTCCAGAGTATGTGATTCTGGGTTTGATTCTATTTTATTACTGTTCTGTATAAAGATGTATTGTTCTTTTGGTGGAGCTCTCCTAGCTTTCAATGCATCAGCTGTAAAACTCTTGTATTTAGCCTCCTTAAAGTTCTTGAGGTTAAAAAGTAAATAAGATTGACAAAATTTCTACATGTAGCAACTGTGGCAAAAGTGAAGCACTTTGTTCTGCTTACGTCCCTGGGAACCAACAAGATCGGATTTCCTGCTGCCATTCTCAAGTAAGTGTTCATGGATTAGTTTTTCTTAAATGATCAACCATTGACCTTGTTCTTGTTCAACTTTCACAAATGTTGAAGTTTTTTCTTCCCAGTTCCCATAACTTTAATGTTAAATCACTAATTGTGATTATTTGCTTCTAAAGTTTGTTTTGGGGAGTCCTATTATGGAAAAGGAAGGCAGAAGAAGCATTGATTGCAAGTGGTCTTCCTTATACAGTAAGCAAATACTAGTAGCTGTACATTATATAATTGTGGTGACTTAGAGACAGTTTGATAATGTTTTTGTTTGTTGTTTCCTTCTTTCAAAAACCATGCTTATTTATTAACGTTTTAAAAAAAGGTTTTCTGAATTCCTAGACTCACTTAAAACTAAAAACAGTTTTTGAAAATCTGACTTTGTTTTCAAAAAATGGACTAAGATTCCAAAAGTGTTTTCAGAAAGTAATATAGGGAGCCAGGAAAATATAGGGTTTAAGTACTTTGTACAACCTTAATAATTAAAAACAAAAAATCAAAAGCAAAATAGTTATCAAATGGGCCTCAAGTGTTTGATTTATTTAAAATAAAATTTCCAGATAGTGAGACCTGGAGGCATGGAGAGGCCTACAGATGCTTTCAAGGAAACTCATAATACTACCCTTTCACCAGAAGATACTTTATTTGGTGGTCTAGTGTCAAACCTTCAGGTATATTTATAAATTTTGATGTGACAGATGATCTCAATCCTGTATGGTTGTAATTTAACATTTTTATCAGGATCGATGAAGCTACAAATAATACGGAATTATGAAAGACCAATTTTATGAAAATATAAGCTTTTTTGTTCTCTTTATTAGCTGGATTTTGATACATGCCAATAATTGCCTAAAGATATGTATTTTCAAAAACTTAAAAAGGGCAAAGGGCCAAGGGGCCATGGGTTCAATCTATGGTGGCCACCTATGTAGGATTTAATATCTTACGAGTTTTCTTAACACCCAAATGTTGTAGGGTCAGACGGGTTGTCCGTGAGACTAGTCGAGGTGCGCGTAAGCTGACCCGAACACTCACGGATATTAAAAAAAAAAAAAAAAAATAGTAAAACTGTGAATGATGTTTTCTTCCTTTGTACTCCTCTCCTAAAACTTAGTCATGGATTGTTGATCACCTTTCTAGTACTTTTGTATAGAAAGCAGATGAAGAAAGCGGATGACTTTTCTCTTTCCCCAATAGATTTTGGGGTGCCGATGCTTAATATCTTCCTCGACCTTTTTTTCCCTCCTATTTTCATTTATGTTTTGGAAATTACAAGGTTCTTAATAATTTTACATCTTGACCACTTGTATATGCTGCAAGAATTTGTCTTCTTCATGTTTGTAGTGTTTTTGTTTTTGGGGCCTCTCTTCACTGGTTTGCTTATTTCCAGGCATATGTGCGGATATAGCAATCTCAAAACATGAGTATTGGTCTTCTTTAGCTCCTTTGCCATTCGAAGTTGTAATTTCTGCAGGACAGAAGGCTAAGGAGGAGCCTGAAGGTTGATTCAACTCTTGGCTCCCGTTGTTTGATATCATGCAATGCTTTTATCTAGTCCTCCCTACTTGATCAATAAAAATAATGTTGGGCATCCATGTTTCAGGTCGAAATGATCAAGATAGGAGTAAGCTCATCCAGGACTTAAATGATCTCTCCGGGGAAGGAAATATTGAGAGTATGCTTTCAGTTGAAATGGGATTGAGAGAATTAGCATCTCTAAAGGTTTTCTTTTCCAAACTTCGTTATTGTCTATTTCTCCCCTACTTATCTACCTCCTCCATNTTTAAAGTAATTTCTGCATCTTGGAATCTCCACATCTCAATCACTGAACTATTTTTGTTTTACTATTGAGACTAGTGACTCCTTTGTTCACCATCTTTGATATTACCAATTCTATTGGTAGGATATAAAATTTCATTCCCAAGTTCTCTTCATGAGAATCTAGAACAAGAGTTGAGTGCAGCTTCTATTGTGCAAGATTTGGTACCGGGAGAGATGTATAAAAAGAAATTAAAAGGATGAAAAATCGAAAACAAAAAATTTTGAACCACCTTAAACACCGTAAAAGTGATGCATATCTCTTCATGTATTTGATTATTAGCATATAACACAAAATTATGAATGCAAATCAACTTGTCAATAATTTACCGTAGTTGTCAATCTCTATTAGATTGATTCAAGAATTTGACTGTTAGTATATTGCAGATGCAGACCTTTATGTAAAAAAAATTCACTCAAAACTCAACATTATGACCTTTTCTAAGAGACTAACCAATGAAGGAAAACCATTTTCGTGGATCATTAATTTATTTTGGGCTCTTTGAGCTAAGTTACGACTTTTACCGATATGTAATGTCAACATAGCTATATGTGATTTGCCACTCACATTTGTACTTATACTTCACCTTTTCTTTATGGAACTACTGTAGGTTTCAGAACCTTGTGCTTGCTCTTAAAGGAGGAAAAAAGAACAAAAAAAAGGAAAAAAAGAAAAAGAAAGAAAAGATAATTTCAATATTTTCATTTCAGGTTGCAGAGCTAATGGCATCCATAGCAAAAAATCCTGGTCTTTCATACTATAAAGTGCTAGAAGTAATTGCTGAGACAACTGCACCATTGACTCCCCTGGAGGATCTTCTTAAAAAAATACCATCTAAAGTTGCAAATGCTTTCCCAGAGAAGGTCAGTTGTTTCTGTATGTAAAAGGGGAAGAAATTCCTCATAAGAATTCATACAATGTTTCATGGTTCTAAAACATACTCATTTTCTGTTCTTAGTTTTAACAGTTCATGATAACCTGCAGAAAATAATTTTGGCAGAACAGCTTCATATCTACATGAGTATATTATTTAGATTTGCCAGTACATCTGGACTCAGCACAGCAATTATCAAAACTTATCCTTCTGATTCATGAAGATTGGGAAACTGTGATAGAAACCAGAGAACTGAAATAATATAGAAATATGAAAGTTAAAAGAACCACAAAAAACCCCGAGAGTCTAAAATAGTAGTGATTCTCCCTCTCTTGAGTATTCTTATTTAAGCTTAAAGCCACTAGAGAATTCTCTATGTTTAATATATCTCCCTAACAACTTTTCTAACTGATTACTTAATACCCTAATAATATTCCTAATTTTATCCTAAATAGTATTCCTATCAAACTGATTATTCAGAAACCTGAATCAACAAGCTTACCTAATTTTTTTTTTTTTTTAAATGACAAAAAGTAGACCAATCAAATTCCTTGCTGACTAAAAGTCTAAAACCAATCTTTCTTTTCCTTCAAAAAGACCAACACTAACTTAGTCTAGTCTAATTGACTGCTCTTATTTTGTTGTTTTTTCAAATTGACTTTACGCCCTTATTTGTTTGCATATTTTATAATTAACTCGATAGGAAATCTAAAATGTGTTTCAATTCACAAATGATCTCCCAAATACTTCATGAAATTAAATGCTTGCTGGATCTGTGCTAGGAATATGGTGCTGTACGAACTGTTGATCCATCACCAAAACAGTCGAGCATTGCCAAAGAAAAGGAATCAGCTGAAGCAAATGTGACAGAACAGCCACCCCCTCAAAGTGTTTCATCAGAACAGTTGAGCATCGCAAAGGAGAAGGAATCAGCTGTAGCAAATGTTACAAAACAGTCATCATCACCCTACATTGCGTAAGACAATATGGAAGTGGAAGAGGCTGATCTATATTTCTTGAACTTTTCTTTTCTCCATATGCAGAGCAAATGTCCAAGCATCATGCTCAAATGCCTAGGTTAACAGCTAATAAGATAGTAAGAAAGATAAATGAAGTCTGACTTGGTAGGTTATTTCTCCAGTATATATATGATTATAGTGTCCTCTTATGACTGATTTGTCATTCACACCAAAGATGATAAGTCACTGAAGAAAGATTGTTATTTCAGTCCATGAATTTGCCAAGACCGTAGGCTCTGTGAAAATGATATATTATCCTTGGCAGTTATCTTATATTGTGTCTTCTTCCAGGTATGAGGATTTAAAACCTCCAACGTCTCCTACTCCAGCTGCACCTGTTGGGAAAATAGATTTAAATGTTGTTGAAGGAGTCTCATCTGGTGCTCAAACTATTTCAGCAGAGGCACCAACTGAAATTGCCGAGGCAAATCCCGCACCTGCACCTGCCCCTGAAAAAGCAGTGACATTGAAACCTCTCTCCCCTTATGTAGCGTAAGGGTCTTATATTCACGAACTTCATAGTGAAATTCTATGGTCCAAAAAAGAAAGAACCTCATTCCAAGTTAGTTTCAACTGCTCACATTAGAATCAACAACCACATGCAAAGTCCTGAGGAGATGTAGAGTTCAACGTTCTTGTATTTGCTTACTGGATGACAAGATTTTTTTATCATTCTGATTTCATTAGTTTGTATCTTCTTACTGATCTTGCACTTTCGCTGATTGCCTGATATACATATCACTTCTTCCAGATATGAAGATTTAAAGCCTCCTGCATCACCATCTCCTAGTGCACCTTCCCTATCATTTTCTTCAACAACTCCCTCAAATGGTCCACCTGAGCCCGCTACCTCCACCGTAAATAGCACATTGCCGATTCCAGAGGCAGAAGACTCAAAGAGTGAAGCACATCTTCCCAAGCCGAAGAAGCAACAACCGTTATCACCTTTTACCATGTAAGCTCCTTCCTAGTTTTTATTTTTTATTTTTTATTTTTTATTATTTTTTATTTTTTATTATTTTTTTTATCTGCCTTAGTTGATTTCCTGATATACATATCTTAGTTGATTTCCTGATATATACACCACTTCTTCCAGATATGAAGATTTAAAGCCTCCGACATCACCATCTCCTAGTGCACCTTCCCTATCATTTTCTTCTTCATCTCCCTCAAACAGTCCACCTGAGCCCGCTACCTCCACCGTAAATAGCACATTGCCGATTCCAGAGGCAGAAGACTCAAAGAGTGAAGCACATCTTCCCAAGCCGAAGAAGCAACAACCGCTATCACCTTTTACCATGTAAGCTCCTTCCTAGTGTTTTTTTTATCTGCCTTAGTTGATTTCCCTGAAAATTATACAAATTTCAACCAGCTGATAGGGATAGTTTTTGTTTAGCACATAGATTGAGGTTGAACACCAAAAAGTGCAAAGTGAATTCTGTGTTATTGATTAAAATAAGGTTAAAAAGTTAGGGATATATTTTTCTTAAATTACCGATTGACCAAACAACTTAAGCTGCAAATTTAATATTATATTATCTAACCGTTTTCTCAATTTTTATTTGATCGAACCAGGTATGAGGATTTGAAGCCTCCAGCATCTCCAACGCCCTCTCTTTGAAAGCCTTAAAAAAGATCTTTCAGTTTTCTGCTAGTTTCAATCTGGACAGAGACAAACAATTGATGAGTGGTGATACCACCAGAGTATACATCTTATTATGTAATAATACCAACTTTTTGTGTCTGAAGAACATTTGTTCTTTTTTCCTGTCCAGATTCCATGGACGACGACACTGTTGAATGTGCTTTTGCAACCTCAAAGTTGCTTATTTTGGCTGTAATTTCAATCGAAGTAACAATTTTGATGGCATTACCTTCATTTTGGTCGTTGAACTATTGTGAATCTTTCCAAAATACCATGACTTCTGAAGAGAAGCCAATCAATGGTGTTCGATAAAAATTGGAAGACATCCATTGGGTTTTGATCGATTCTAATTCTTTTGAAAATCGACAAATGATAAATGTAAAGTCAATTGAAATCTTGGATTTGGGTGTTTACTGTTATAATCCAATGATGAAGAAGTTTTATCAGAATTCAACTTCTTGTCTTCTTCATTCACGTGTTCATCAGAAATGAGATTTTTCTTTTACGATTTCCATATGGTATGAAGCAAAATTGGTCATCTCTCCCAATGGACTGGCAGCCCATTAAACTTCACTGGAAGCCCCTTTGAACTGGTCTGCCATCCAACAACGAAAGGCCCAATTGAAGATCAGTAGTTTAGGGTTTGTTTATACCCATTTCCACTTGATTGCAATTTGCAATCGAAGAGGGGAGTGGATATCCGACTTCAATTTTCAATTGAGGAAGTTCATATGGGTACGGACCAAAATCCCAAATCCGCTCAGAGTGAAAGCGTTGCTCCTGCAACTGCTTTGGCATACCTTGATCCTAAATACTGGTCAAATTTTCTCTGATTATTCTTCCTCTCGTGTCTGCTTCTGATTTCTTCTTCGTACGTTTCTGATGATGGGTGTGTGTGTTTCAGGGACGAGCGTTTTTCTAAGGAAGAGCATTATGAGTGGTTTAAGGATTATTCTCATTTTCGTCATCTCATACTTCCTCTTCTCAAACCCGATTCATCAGTACTTTCTCTCTCTCCCTCCCTCCCTCCTTCTCTCTCTCTCTCTCTCTCTCTCTCTCTCTGCTGCATATTCTGATTATATATGTTTACTAACCAGGCTGCCATTATCAGGTAGCTTAGAACGTCTTCATTGATTAGTTTTTTAACCTTTTTGCGATTGTTTTGATTGCTTGAATGAACTTTCACTGTAATAATCTTGCTTTCTTGGTAATGAGATTGAATTTTTATCGTTGTAGGTATTGGAATTGGGTAGTGGAAATTCGAAACTTTCTGAGGAATTGTACAACGATGGAATCACCGATATAACATGCATTGATTTGTCTGCTGTGGCCGTTGAGAAGATGCAAAGACGTTTACATTTGAAGGGTATGAAAGGTGAGCTCGTAGTCATCATCAAAATACGCATTTAGTTCATCTCCTTCTTCTCTTATTCTTTGTTATGGAAATTCACTTTCCTGAGTAGTGGGGATTTGAGCTTTATCTTCTGTTTGGCATAAATGTCAGTCCCTGTGGAATGTGTTCTCTTCCAGTGAGATATCTTACTTCTTTCTGTTACTTTTCGTGGGTTGAAATCAAATATGAATTGCAAGTCTAGAAGAACATCATTCTACTATCATATATTACTAAATCTTATGTAACGTGGTAGATGGACAGATAAAAATATGTTTTACAAGTCCTTTGGCTTTGTAGCTATAGAACAATTTTTTTTAGTCTTCACCAATATGTAGGGTGGGAGATTCGAACCTCTCACCTCTTGATCGAAGATATATGTTTTATGCCAGTTAAGTTGTGCTCATGTTAACTAGCTATAGAACAATTTGAAGTGAATGATTGTGGTTTTTGTAGTTAAGATGTTATTGTTGATTCTTATATCTCATTGTTGATTTTTAATGATATCCGATTGATGGTTTATGAATCTTCTGATGCTAACTGTCTTAGTGTCAAGTAGATACGGACACTTAACTCAAATGTATGAAGAGATAAAGTTAGAAGGAAATGATCTTCTTTACATGAAAAACTGCGTGCTTTTTCTCACCTCATTCATTTTCTCTCTTATCACCTCAATTGTCAGAAATAAAGGTATTAGAAGCTGACATGCTAGACATGCCTTTTGGTGATGAGTGTTTTGATGTCGTTGTCGAGAAAGGAACCATGGTAACTACTCAACTTGTTGTGGTTTCGTTTTACCTCCAGATATTGAAATTTGCATTTGTTGTATTAATTTATCATTTCATCTGCTGTTCGTAACTTGAAAGGATGTTCTGTTTGTGGACGGTGGCGACCCATGGAATCCTCAACCATCCACGCGAGCGAAGGTCATGGCAATGCTGGAAGGTGTCCATAGGGTTTTGAAGAAAGATGGCATTTTTGTCTCAATTACATTTGGCCAGGTTTTAGAATGAAATTCGTGGAACTCATTATCCTTCTTGGCTTTTACACTACTCGTTTATAATATGATTTGTTTCCTCTCCAGCCGCATTTCAGGCGTCCCTTATTTAATGCTCCAGAGTTTACATGGTCATTTGAGTGCAATACTTTTGGCGATGGATTTCACTACTTCTTCTATACCTTGCGCAAGGTTAGCACAGATGTTTTTCCTTCAATTGCTTGTGTTGGGTCTGGGTGGATTTAGGATAGGACCTAGATGACCTATTTGATTTGTTGCACAAAGACAAGAAGAACAATGGCCACTAAGCTGTTCAAGATCACTCAAACTTGCTCTCTTACATTCTAGGCCAAAATACAACAAGATTAGTGGCCGCAAAGCTCTTTGAGATCACTCGAACTCACTCTTGTTACAGTCTAGGCCAAAATGCAACAGTAATGGCAACCGATCTCTTCAAGAGCCCATTAACTCACTGACCTTACATTCTAGGCCAAAATACAAAACCAGAAATTCTATATAGGACGAACACAAATGCGTAACCTATGTTCTCTACACGCTCATTTAACTAACAACTGATTGCTGTTTGTAACCTTTTCTCCTCACAGAAAAAATGCACCAGATGTCTAGCATTCACATCAGTTTGGTGTTCATGTTTTGAACACCCGTATTTACCTTTTCATCTAGTTTCAAAGTGATCCTATTGACTTATCAAAGATCTGGAAACCATCAGTTTGATTGACTAATAAACTATGAACCTTACTTTAGCATGCAACTTGCAAGTCTTCCTTTTATAGAAGCCTAGTGAGTAGTTTAGACACGAAGGTTTTGATTCCTCCTGTGAAGCATAGATTGGACGTTCAACAACCCGAGTTTGGGTTTTTGTGTCCATCAAAAGTGTTACATTTTCGAGAAAGAATTCTTCTGTAAACTCTAGGGAGACAGTCGTCTTTATGAGTACGTTTAGACATTCTTGACTTGATTATGCATCCTTCAGCAATGGCAACAAAAGTTCATGTATATCTTTCGTTTCTGAAATGTTAAATGGAATTGATGTTACCAGGGAAGGCGATTGTTTGGCGATAAAGGTGAAGGTGAGAGGTCTGATATGCCATCGATCTGTTTACTTCAAGACGAGCTAGAGGGTGAAGATTACATGTTCAGAACCAATGTTGATGAGCTGAATTGCTAGAAAGTAGTATTATTGTATCCATTTTTGTTTAATGAATTGTACATTAAAATCAATCATAGTTCCATTAAACTGTTACTTTTGCTGACCATTAGCTTTTTTCCTCTGCGTATTAAATTGTGTATGGCCTTTATATATTGCAATTCATATTTATATTTGTACAGTTTCGTGCTTCAAT ATGTATGAGAGAGGAGAAAACAGAATCATAGAAATGAAGAAAGGGAAAGATAGGAATAAGAGAATGGAAACTGAAGGGAGAAATACAGCAATTCAGTTGTACAATATTTCTGGTGTAAATGGTCCAGAGTATGTGATTCTGGGTTTGATTCTATTTTATTACTGTTCTATGTATTGTTCTTTTGGTGGAGCTCTCCTAGCTTTCAATGCATCAGCTGTAAAACTCTTGTATTTAGCCTCCTTAAAGTTCTTGAGGTTAAAAACAACTGTGGCAAAAGTGAAGCACTTTGTTCTGCTTACGTCCCTGGGAACCAACAAGATCGGATTTCCTGCTGCCATTCTCAATTTGTTTTGGGGAGTCCTATTATGGAAAAGGAAGGCAGAAGAAGCATTGATTGCAAGTGGCATATGTGCGGATATAGCAATCTCAAAACATGAGTATTGGTCTTCTTTAGCTCCTTTGCCATTCGAAGTTGTAATTTCTGCAGGACAGAAGGCTAAGGAGGAGCCTGAAGGTCGAAATGATCAAGATAGGAGTAAGCTCATCCAGGACTTAAATGATCTCTCCGGGGAAGGAAATATTGAGAGTATGCTTTCAGTTGAAATGGGATTGAGAGAATTAGCATCTCTAAAGGTTGCAGAGCTAATGGCATCCATAGCAAAAAATCCTGGTCTTTCATACTATAAAGTGCTAGAAGTAATTGCTGAGACAACTGCACCATTGACTCCCCTGGAGGATCTTCTTAAAAAAATACCATCTAAAGTTGCAAATGCTTTCCCAGAGAAGGGGAAGAAATTCCTCATAAGAATTCATACAATGTTTCATGGTTCTAAAACATACTCATTTTCTGTTCTTATTCATGATAACCTGCAGAAAATAATTTTGGCAGAACAGCTTCATATCTACATGAATTTGCCAGTACATCTGGACTCAGCACAGCAATTATCAAAACTTATCCTTCTGATTCATGAAGATTGGGAAACTGAATATGGTGCTGTACGAACTGTTGATCCATCACCAAAACAGTCGAGCATTGCCAAAGAAAAGGAATCAGCTGAAGCAAATGTGACAGAACAGCCACCCCCTCAAAGTGTTTCATCAGAACAGTTGAGCATCGCAAAGGAGAAGGAATCAGCTGTAGCAAATGTTACAAAACAGTCATCATCACCCTACATTGCGTATGAGGATTTAAAACCTCCAACGTCTCCTACTCCAGCTGCACCTGTTGGGAAAATAGATTTAAATGTTGTTGAAGGAGTCTCATCTGGTGCTCAAACTATTTCAGCAGAGGCACCAACTGAAATTGCCGAGGCAAATCCCGCACCTGCACCTGCCCCTGAAAAAGCAGTGACATTGAAACCTCTCTCCCCTTATGTAGCATATGAAGATTTAAAGCCTCCTGCATCACCATCTCCTAGTGCACCTTCCCTATCATTTTCTTCAACAACTCCCTCAAATGGTCCACCTGAGCCCGCTACCTCCACCGTAAATAGCACATTGCCGATTCCAGAGGCAGAAGACTCAAAGAGTGAAGCACATCTTCCCAAGCCGAAGAAGCAACAACCGTTATCACCTTTTACCATATATGAAGATTTAAAGCCTCCGACATCACCATCTCCTAGTGCACCTTCCCTATCATTTTCTTCTTCATCTCCCTCAAACAGTCCACCTGAGCCCGCTACCTCCACCGTAAATAGCACATTGCCGATTCCAGAGGCAGAAGACTCAAAGAGTGAAGCACATCTTCCCAAGCCGAAGAAGCAACAACCGCTATCACCTTTTACCATCAAAATTGGTCATCTCTCCCAATGGACTGGCAGCCCATTAAACTTCACTGGAAGCCCCTTTGAACTGGTCTGCCATCCAACAACGAAAGGCCCAATTGAAGATCAGGTTTGTTTATACCCATTTCCACTTGATTGCAATTTGCAATCGAAGAGGGGAGTGGATATCCGACTTCAATTTTCAATTGAGGAAGTTCATATGGGTACGGACCAAAATCCCAAATCCGCTCAGAGTGAAAGCGTTGCTCCTGCAACTGCTTTGGCATACCTTGATCCTAAATACTGGGACGAGCGTTTTTCTAAGGAAGAGCATTATGAGTGGTTTAAGGATTATTCTCATTTTCGTCATCTCATACTTCCTCTTCTCAAACCCGATTCATCAGTATTGGAATTGGGTAGTGGAAATTCGAAACTTTCTGAGGAATTGTACAACGATGGAATCACCGATATAACATGCATTGATTTGTCTGCTGTGGCCGTTGAGAAGATGCAAAGACGTTTACATTTGAAGGGTATGAAAGAAATAAAGGTATTAGAAGCTGACATGCTAGACATGCCTTTTGGTGATGAGTGTTTTGATGTCGTTGTCGAGAAAGGAACCATGGTAACTACTCAACTTGTTGTGGTTTCGTTTTACCTCCAGATATTGAAATTTGCATTTGTTGATGTTCTGTTTGTGGACGGTGGCGACCCATGGAATCCTCAACCATCCACGCGAGCGAAGGTCATGGCAATGCTGGAAGGTGTCCATAGGGTTTTGAAGAAAGATGGCATTTTTGTCTCAATTACATTTGGCCAGCCGCATTTCAGGCGTCCCTTATTTAATGCTCCAGAGTTTACATGGTCATTTGAGTGCAATACTTTTGGCGATGGATTTCACTACTTCTTCTATACCTTGCGCAAGGGAAGGCGATTGTTTGGCGATAAAGGTGAAGGTGAGAGGTCTGATATGCCATCGATCTGTTTACTTCAAGACGAGCTAGAGGGTGAAGATTACATGTTCAGAACCAATGTTGATGAGCTGAATTGCTAGAAAGTAGTATTATTGTATCCATTTTTGTTTAATGAATTGTACATTAAAATCAATCATAGTTCCATTAAACTGTTACTTTTGCTGACCATTAGCTTTTTTCCTCTGCGTATTAAATTGTGTATGGCCTTTATATATTGCAATTCATATTTATATTTGTACAGTTTCGTGCTTCAAT ATGTATGAGAGAGGAGAAAACAGAATCATAGAAATGAAGAAAGGGAAAGATAGGAATAAGAGAATGGAAACTGAAGGGAGAAATACAGCAATTCAGTTGTACAATATTTCTGGTGTAAATGGTCCAGAGTATGTGATTCTGGGTTTGATTCTATTTTATTACTGTTCTATGTATTGTTCTTTTGGTGGAGCTCTCCTAGCTTTCAATGCATCAGCTGTAAAACTCTTGTATTTAGCCTCCTTAAAGTTCTTGAGGTTAAAAACAACTGTGGCAAAAGTGAAGCACTTTGTTCTGCTTACGTCCCTGGGAACCAACAAGATCGGATTTCCTGCTGCCATTCTCAATTTGTTTTGGGGAGTCCTATTATGGAAAAGGAAGGCAGAAGAAGCATTGATTGCAAGTGGCATATGTGCGGATATAGCAATCTCAAAACATGAGTATTGGTCTTCTTTAGCTCCTTTGCCATTCGAAGTTGTAATTTCTGCAGGACAGAAGGCTAAGGAGGAGCCTGAAGGTCGAAATGATCAAGATAGGAGTAAGCTCATCCAGGACTTAAATGATCTCTCCGGGGAAGGAAATATTGAGAGTATGCTTTCAGTTGAAATGGGATTGAGAGAATTAGCATCTCTAAAGGTTGCAGAGCTAATGGCATCCATAGCAAAAAATCCTGGTCTTTCATACTATAAAGTGCTAGAAGTAATTGCTGAGACAACTGCACCATTGACTCCCCTGGAGGATCTTCTTAAAAAAATACCATCTAAAGTTGCAAATGCTTTCCCAGAGAAGGGGAAGAAATTCCTCATAAGAATTCATACAATGTTTCATGGTTCTAAAACATACTCATTTTCTGTTCTTATTCATGATAACCTGCAGAAAATAATTTTGGCAGAACAGCTTCATATCTACATGAATTTGCCAGTACATCTGGACTCAGCACAGCAATTATCAAAACTTATCCTTCTGATTCATGAAGATTGGGAAACTGAATATGGTGCTGTACGAACTGTTGATCCATCACCAAAACAGTCGAGCATTGCCAAAGAAAAGGAATCAGCTGAAGCAAATGTGACAGAACAGCCACCCCCTCAAAGTGTTTCATCAGAACAGTTGAGCATCGCAAAGGAGAAGGAATCAGCTGTAGCAAATGTTACAAAACAGTCATCATCACCCTACATTGCGTATGAGGATTTAAAACCTCCAACGTCTCCTACTCCAGCTGCACCTGTTGGGAAAATAGATTTAAATGTTGTTGAAGGAGTCTCATCTGGTGCTCAAACTATTTCAGCAGAGGCACCAACTGAAATTGCCGAGGCAAATCCCGCACCTGCACCTGCCCCTGAAAAAGCAGTGACATTGAAACCTCTCTCCCCTTATGTAGCATATGAAGATTTAAAGCCTCCTGCATCACCATCTCCTAGTGCACCTTCCCTATCATTTTCTTCAACAACTCCCTCAAATGGTCCACCTGAGCCCGCTACCTCCACCGTAAATAGCACATTGCCGATTCCAGAGGCAGAAGACTCAAAGAGTGAAGCACATCTTCCCAAGCCGAAGAAGCAACAACCGTTATCACCTTTTACCATATATGAAGATTTAAAGCCTCCGACATCACCATCTCCTAGTGCACCTTCCCTATCATTTTCTTCTTCATCTCCCTCAAACAGTCCACCTGAGCCCGCTACCTCCACCGTAAATAGCACATTGCCGATTCCAGAGGCAGAAGACTCAAAGAGTGAAGCACATCTTCCCAAGCCGAAGAAGCAACAACCGCTATCACCTTTTACCATCAAAATTGGTCATCTCTCCCAATGGACTGGCAGCCCATTAAACTTCACTGGAAGCCCCTTTGAACTGGTCTGCCATCCAACAACGAAAGGCCCAATTGAAGATCAGGTTTGTTTATACCCATTTCCACTTGATTGCAATTTGCAATCGAAGAGGGGAGTGGATATCCGACTTCAATTTTCAATTGAGGAAGTTCATATGGGTACGGACCAAAATCCCAAATCCGCTCAGAGTGAAAGCGTTGCTCCTGCAACTGCTTTGGCATACCTTGATCCTAAATACTGGGACGAGCGTTTTTCTAAGGAAGAGCATTATGAGTGGTTTAAGGATTATTCTCATTTTCGTCATCTCATACTTCCTCTTCTCAAACCCGATTCATCAGTATTGGAATTGGGTAGTGGAAATTCGAAACTTTCTGAGGAATTGTACAACGATGGAATCACCGATATAACATGCATTGATTTGTCTGCTGTGGCCGTTGAGAAGATGCAAAGACGTTTACATTTGAAGGGTATGAAAGAAATAAAGGTATTAGAAGCTGACATGCTAGACATGCCTTTTGGTGATGAGTGTTTTGATGTCGTTGTCGAGAAAGGAACCATGGTAACTACTCAACTTGTTGTGGTTTCGTTTTACCTCCAGATATTGAAATTTGCATTTGTTGATGTTCTGTTTGTGGACGGTGGCGACCCATGGAATCCTCAACCATCCACGCGAGCGAAGGTCATGGCAATGCTGGAAGGTGTCCATAGGGTTTTGAAGAAAGATGGCATTTTTGTCTCAATTACATTTGGCCAGCCGCATTTCAGGCGTCCCTTATTTAATGCTCCAGAGTTTACATGGTCATTTGAGTGCAATACTTTTGGCGATGGATTTCACTACTTCTTCTATACCTTGCGCAAGGGAAGGCGATTGTTTGGCGATAAAGGTGAAGGTGAGAGGTCTGATATGCCATCGATCTGTTTACTTCAAGACGAGCTAGAGGGTGAAGATTACATGTTCAGAACCAATGTTGATGAGCTGAATTGCTAG MYERGENRIIEMKKGKDRNKRMETEGRNTAIQLYNISGVNGPEYVILGLILFYYCSMYCSFGGALLAFNASAVKLLYLASLKFLRLKTTVAKVKHFVLLTSLGTNKIGFPAAILNLFWGVLLWKRKAEEALIASGICADIAISKHEYWSSLAPLPFEVVISAGQKAKEEPEGRNDQDRSKLIQDLNDLSGEGNIESMLSVEMGLRELASLKVAELMASIAKNPGLSYYKVLEVIAETTAPLTPLEDLLKKIPSKVANAFPEKGKKFLIRIHTMFHGSKTYSFSVLIHDNLQKIILAEQLHIYMNLPVHLDSAQQLSKLILLIHEDWETEYGAVRTVDPSPKQSSIAKEKESAEANVTEQPPPQSVSSEQLSIAKEKESAVANVTKQSSSPYIAYEDLKPPTSPTPAAPVGKIDLNVVEGVSSGAQTISAEAPTEIAEANPAPAPAPEKAVTLKPLSPYVAYEDLKPPASPSPSAPSLSFSSTTPSNGPPEPATSTVNSTLPIPEAEDSKSEAHLPKPKKQQPLSPFTIYEDLKPPTSPSPSAPSLSFSSSSPSNSPPEPATSTVNSTLPIPEAEDSKSEAHLPKPKKQQPLSPFTIKIGHLSQWTGSPLNFTGSPFELVCHPTTKGPIEDQVCLYPFPLDCNLQSKRGVDIRLQFSIEEVHMGTDQNPKSAQSESVAPATALAYLDPKYWDERFSKEEHYEWFKDYSHFRHLILPLLKPDSSVLELGSGNSKLSEELYNDGITDITCIDLSAVAVEKMQRRLHLKGMKEIKVLEADMLDMPFGDECFDVVVEKGTMVTTQLVVVSFYLQILKFAFVDVLFVDGGDPWNPQPSTRAKVMAMLEGVHRVLKKDGIFVSITFGQPHFRRPLFNAPEFTWSFECNTFGDGFHYFFYTLRKGRRLFGDKGEGERSDMPSICLLQDELEGEDYMFRTNVDELNC Homology
BLAST of CaUC02G031670 vs. NCBI nr
Match: KAG7011687.1 (Protein TIC 62, chloroplastic [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 717.2 bits (1850), Expect = 1.8e-202 Identity = 466/862 (54.06%), Postives = 498/862 (57.77%), Query Frame = 0
BLAST of CaUC02G031670 vs. NCBI nr
Match: XP_038887689.1 (EEF1A lysine methyltransferase 4 [Benincasa hispida]) HSP 1 Score: 505.0 bits (1299), Expect = 1.4e-138 Identity = 246/277 (88.81%), Postives = 251/277 (90.61%), Query Frame = 0
BLAST of CaUC02G031670 vs. NCBI nr
Match: KZM90545.1 (hypothetical protein DCAR_022090 [Daucus carota subsp. sativus]) HSP 1 Score: 496.9 bits (1278), Expect = 3.8e-136 Identity = 346/861 (40.19%), Postives = 444/861 (51.57%), Query Frame = 0
BLAST of CaUC02G031670 vs. NCBI nr
Match: XP_023554027.1 (methyltransferase-like protein 13 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 496.1 bits (1276), Expect = 6.5e-136 Identity = 242/277 (87.36%), Postives = 249/277 (89.89%), Query Frame = 0
BLAST of CaUC02G031670 vs. NCBI nr
Match: XP_031744871.1 (EEF1A lysine methyltransferase 4 isoform X1 [Cucumis sativus]) HSP 1 Score: 496.1 bits (1276), Expect = 6.5e-136 Identity = 242/277 (87.36%), Postives = 249/277 (89.89%), Query Frame = 0
BLAST of CaUC02G031670 vs. ExPASy Swiss-Prot
Match: Q8SKU2 (Protein TIC 62, chloroplastic OS=Pisum sativum OX=3888 GN=TIC62 PE=1 SV=2) HSP 1 Score: 195.3 bits (495), Expect = 3.1e-48 Identity = 168/459 (36.60%), Postives = 219/459 (47.71%), Query Frame = 0
BLAST of CaUC02G031670 vs. ExPASy Swiss-Prot
Match: Q8H0U5 (Protein TIC 62, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=TIC62 PE=1 SV=1) HSP 1 Score: 155.6 bits (392), Expect = 2.7e-36 Identity = 181/569 (31.81%), Postives = 241/569 (42.36%), Query Frame = 0
BLAST of CaUC02G031670 vs. ExPASy Swiss-Prot
Match: Q10A77 (Protein TIC 62, chloroplastic OS=Oryza sativa subsp. japonica OX=39947 GN=TIC62 PE=1 SV=1) HSP 1 Score: 139.8 bits (351), Expect = 1.6e-31 Identity = 138/457 (30.20%), Postives = 194/457 (42.45%), Query Frame = 0
BLAST of CaUC02G031670 vs. ExPASy Swiss-Prot
Match: P0DPE0 (EEF1A lysine methyltransferase 4 OS=Mus musculus OX=10090 GN=Eef1akmt4 PE=2 SV=1) HSP 1 Score: 136.7 bits (343), Expect = 1.3e-30 Identity = 90/272 (33.09%), Postives = 128/272 (47.06%), Query Frame = 0
BLAST of CaUC02G031670 vs. ExPASy Swiss-Prot
Match: P0DPD7 (EEF1A lysine methyltransferase 4 OS=Homo sapiens OX=9606 GN=EEF1AKMT4 PE=1 SV=1) HSP 1 Score: 131.3 bits (329), Expect = 5.6e-29 Identity = 86/271 (31.73%), Postives = 127/271 (46.86%), Query Frame = 0
BLAST of CaUC02G031670 vs. ExPASy TrEMBL
Match: A0A164VLU0 (Uncharacterized protein OS=Daucus carota subsp. sativus OX=79200 GN=DCAR_022090 PE=4 SV=1) HSP 1 Score: 496.9 bits (1278), Expect = 1.9e-136 Identity = 346/861 (40.19%), Postives = 444/861 (51.57%), Query Frame = 0
BLAST of CaUC02G031670 vs. ExPASy TrEMBL
Match: A0A6J1I4L7 (methyltransferase-like protein 13 OS=Cucurbita maxima OX=3661 GN=LOC111470938 PE=4 SV=1) HSP 1 Score: 494.6 bits (1272), Expect = 9.2e-136 Identity = 241/277 (87.00%), Postives = 247/277 (89.17%), Query Frame = 0
BLAST of CaUC02G031670 vs. ExPASy TrEMBL
Match: A0A5A7SM21 (Methyltransferase-like protein 13 isoform X2 OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold139G00050 PE=4 SV=1) HSP 1 Score: 492.7 bits (1267), Expect = 3.5e-135 Identity = 241/277 (87.00%), Postives = 248/277 (89.53%), Query Frame = 0
BLAST of CaUC02G031670 vs. ExPASy TrEMBL
Match: A0A1S3C0C3 (methyltransferase-like protein 13 isoform X2 OS=Cucumis melo OX=3656 GN=LOC103495192 PE=4 SV=1) HSP 1 Score: 492.7 bits (1267), Expect = 3.5e-135 Identity = 241/277 (87.00%), Postives = 248/277 (89.53%), Query Frame = 0
BLAST of CaUC02G031670 vs. ExPASy TrEMBL
Match: A0A6J1GLR7 (methyltransferase-like protein 13 OS=Cucurbita moschata OX=3662 GN=LOC111455500 PE=4 SV=1) HSP 1 Score: 491.1 bits (1263), Expect = 1.0e-134 Identity = 241/277 (87.00%), Postives = 247/277 (89.17%), Query Frame = 0
BLAST of CaUC02G031670 vs. TAIR 10
Match: AT4G34360.1 (S-adenosyl-L-methionine-dependent methyltransferases superfamily protein ) HSP 1 Score: 369.0 bits (946), Expect = 1.1e-101 Identity = 180/261 (68.97%), Postives = 202/261 (77.39%), Query Frame = 0
BLAST of CaUC02G031670 vs. TAIR 10
Match: AT3G18890.1 (NAD(P)-binding Rossmann-fold superfamily protein ) HSP 1 Score: 155.6 bits (392), Expect = 2.0e-37 Identity = 181/569 (31.81%), Postives = 241/569 (42.36%), Query Frame = 0
BLAST of CaUC02G031670 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: 118.6 bits (296), Expect = 2.6e-26 Identity = 66/121 (54.55%), Postives = 83/121 (68.60%), Query Frame = 0
BLAST of CaUC02G031670 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: 110.2 bits (274), Expect = 9.4e-24 Identity = 59/97 (60.82%), Postives = 70/97 (72.16%), Query Frame = 0
BLAST of CaUC02G031670 vs. TAIR 10
Match: AT3G48860.1 (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 12232 Blast hits to 9546 proteins in 892 species: Archae - 172; Bacteria - 1174; Metazoa - 6487; Fungi - 1343; Plants - 856; Viruses - 50; Other Eukaryotes - 2150 (source: NCBI BLink). ) HSP 1 Score: 110.2 bits (274), Expect = 9.4e-24 Identity = 59/97 (60.82%), Postives = 70/97 (72.16%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Watermelon (USVL246-FR2) 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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