CmUC11G205810 (gene) Watermelon (USVL531) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.ATGGGCAAGGTTGCGGTGGGAGCGGCGGTGGTTTGTGCGGCTGCGGTTTGCGCAGCAGCGGCGCTAGTGGTGCGTCACCGAATGAGAAACTCTGGGAAGTGGGCGCGAGCAATGGCCATTCTGAGAGAGTTTGAGGAAAAGTGTGGAACCCCTATTGGGAAACTGAGGCAGGTGGCCGACGCCATGACCGTCGAGATGCACGCCGGCCTCGCATCCGAAGGCGGTAGCAAGCTCAAGATGCTGATTAGCTACGTTGATAATCTCCCAACCGGGTACACCAAATTATTCTTTATTCTGTTCCTTTTTTATTTGCCTTCTGAATTTTATTAGATCTATTTGTTCGGTGGCTGTGTCTGTCAGTGGTGTTTTGTTCGAGACGTTTCAATATAATGAAGCCTTTTATTTGTTTGAACAAGTTCCAACCTTTGCTGAATGGTTCAATTGCTGATCTTGAACCAAAAAATTCATTGGATATTTTTCTCCTTTCATTTTGAACTTGTTTTTTAAGCTCATGCAAAGGCCTTCGAAAGACCACGAAGCATTTGATGTTCATTTTGTGATTTAGAGAGTTTGAAGTTTCTAATTTTTATATGTACTATCATGCAGTCCTTCCCTACATCTATCTTGAGGTTTTTATCTAATATTCATGCTGTCCTTTTTAATTGTTGGTCTGTTGAATTTACATTAGTTCTTTCATTTTGTTACTATGACCTGTATAAATGTTACTCTTTAGTTTGTTCATTTATTCTATCCCTCATGTTATTGTTATCTTCATTTTTGTTTTTGAAGTTGTTTCAAATCTCGATTGGTTTTACCCTCTTTAAGTTATCCCAATCAACTCCTTTTATTTAGAATAGTAAATTGATGCCTACACTTCGAATGCAAGATGCATAGTTCACTGGGGTACGAAATTTTAGTAGATTAGTTTGAATCTAATTGTATATGGTATATACCACCATGGATGATGTCTTTTAAAATGACACTTTCCTCATAAATTTAGAAATGAAAAGGGGCTCTTCTATGCATTGGATCTTGGTGGTACAAATTTTCGAGTGTTGCGTGTGCAGTTGGGAGGGACAGACAACCGAGTTGTCAAGCAAGAATTTGAGGAGGTTTCGATACCTCCACACTTGATGACTGGGTCTTCAGAAGTTAGTATTCTCCTCTTGAATTTATACTCTGAATTTCCTTAGGATGGAACATATGCTGAAGTATCTGGTGCTGGTTCTGTCAGGCTCTATTTGATTTTATAGCTCAAGCACTTGCAAAGTTTGTTGCTGAAGAAGGTGAAGGCTTTCACCCAGCCCCGGGTAGGCAAAGGGAACTGGGTTTTACTTTCTCCTTCCCTGTGAGACAAACATCAATATCATCGGGGACACTTATTAAATGGACGAAAGGCTTCAACATTGAAGACACGGTTAATCCTAATTCCTTGAGCTTTATTCTTTAATGTTGATAGGTACCCATTTTTTGTACCTTTTAATCTATTGTAATATTGTCGTTTCATCATTGTCTTGAGAAAGTGGCATCAAAACCATACTGTCATTGTCAATGAAAAAGAGTCGATTAGCTTCTTTAGGGTGCTCTTGTTGAATTTGCATTGTGTTATACGGCAGAATTATACTCTTGTCCCTGTTATGGAATTCTTTGCTACCTAATTCTCTGAGATGAGGAAAGATGAAGAGATTTTACTATTGCAGTGCTAGACTTCAAATTTAGCAATGATGTGCGTCATGCTGGCAATATAATGTTTCGAATTAGAGGAGGATTTATTCAAATGAAAATTAAGATAATCGCATTGAGAACATGCCACAACTCCTTGAGAAGTAAAATCGTCTAACCCTGCTATCAATATAGATTAGTTAGTTTCTTAAGGGATTGTTGTTGGATCACGGATTTCGAATCTATTATCCATACAAGAAGTTCACATTTAGATAAATCATATTTGACTCTGGGCTGTTCATTGAATAAAAGGTTCAATGGGTAAGAGTAAATGATTGTTATATAAGTAGGTATAAGAGTTTTCCATGCACCTGAAACTTTGATTTTAAGTATCGGATCTTTATTGAAAGTTGACATTTAGTTGTCTCTTGCCTGATACTATTTCAGGTTGGGGAAGATGTGGTCGGTGAATTAACTAAAGCCATGGAAAAACTGAAACTCGACATGCGTGTAACAGCATTGGTAATTCCCATGGTTCTCCTTCAAGTTCTTTTTTTCCCTTTGTTCCTTTTTCTGATGCTAGCACTCAATGTTCAGTTTTACAATATCATTGCACAATTTCATATTTCTTGCTGAGTTGGGGGGGTGTGGTGGGTGTGGGTGCATGTATTTTTTGTGCTGACTTTGTTCTTTCTGAGATATAGGTAAACGACACAATTGGAACATTAGCAGGAGGTAGATACCATGATAACGATGTAATTGCTGCTGTGATTTTAGGCACCGGAACAAATGCAGCTTATGTAGAGCGTGCCCATGCAATTCCCAAGTGGCACGGGCTACTTCCTAAATCAGGAGAAATGGTTAGTGAATTGTGAAATTTGTTATTTGTTCTCTGACAAGCTAATAATCCTGCAAGCTTCTTCTGCACTCTCCACTAAATCAGGAGAAATGGTTAATGGATTGTGAGATTTACTATTAGTTCTTTAATCATTATAATTGTAAAATCCAAAGGTGTGTGCACAACTTTATCAATGTATTGATACCTGGGACATCTATATTAATGCAGGTAATTAACATGGAATGGGGTAACTTCCGGTCCTCACATCTGTCACTTACAGAATATGATCAAGCATTGGATGTTGAGAGTTTAAACCCTGGAGAACAGGTAAAGTAATTCTTACTACATACTTCATCTCGGTATCACTCAAAGAAATGGTTTTCTGAAAATGCATTGAATAATTATCTCATCGCTACCTGCAGATCTTTGAGAAGTTGATTTCTGGTATGTACTTGGGAGAAATTGTACGTAGAGTATTGTTCAAGATGGCTGAAGAAGCGGCTCTCTTCGGTGAAACTGTTCCTCCCAAACTGAAAATTCCATTTATATTGAGGTATACAGATTACCATCTGGGCATGTCATTTGTGAAAAGATACAATCCATTGTCCATGATCATATTTTGTTTCCTCGTAACCATCTACATTGATTTTGTAGTTTACATTCTGTAATAATATTCCAAATCCGAAATAACAATCATTGCTAGTTTGTATATTAGCTGACACTGGCTAGCCAATAATGGATACTCATCGCCATCCCCTCTGTTTCTGACTGATGTTGGATCTAAAAGTTTTTCAAAACCTGAAGCTTAAATTTCCTCCCTCATAAATGATTTAGATCGTATTATGGCTTCCACGTTTGGCTTATGTTAATGTACTTGGTTGTTGCTTTTCAAAAACAAATGCTTTCCTTTTCTACCTGTTCAGGGTTAACTTCAGATTTGAATAGACCACTTAAAAAATCATCCCGTAGTACCATTTTAGTTTAATCTCAGAAGAATTCTCATTCAACTTGCAAATGTAAATCTTTTGTTGCTCAAACAATTTGCAGGACTCCTCACATGTCTGCCATGCATCATGACACGTCGCCTGACCTCAAAGTTGTTGGAAGAAAACTGAAGGATATCTTGGAGGTTAGACATCCACCCAGAAAATCTGTGATTTCAAGAAGTTCTCTTTGCTTTTAACAAGGATTACTCACTCTATGCCTTTTGATTTACTGCCAGATATCTAATACCTCCTTGAAAACAAGAAAAATCATAGTGGAGCTCTGTGACATAGTTGCGACACGGGGTGCCCGCCTCTCTGCTGCTGGTATCTTAGGAATCCTGAAGAAACTGGGAAGAGACACAGTCCGGGATGGTGAGAAGCAGAAGTCCGTTGTAGCATTGGATGGAGGGTTGTATGAGCACTACACTAAATTTAGAACAACCATGGAAGATACACTGAAGGAGCTACTCGGAGATGGGGTAGCTGGAAACGTCTTCATCGAGCATTCAAACGATGGTTCTGGCATCGGAGCTGCACTGCTTGCAGCCTCTCACTCTCAATATCTTGAGGTAGATGACCCCTAAGGAAAAAGTGAGGATCCATATCAAATTACAAATAGTATATTATGGAGTGGCAGAAGCTTTAGATTTTTGTTGAATTTTCTGCTCTCCTTTGCATGTTATCACTTTCTGATGCCTTAGACCCTAGCTCAAGAGTTCTCTCCCAATCCTTTTATTTATGGTTATTGAGAGCATACAAAAATTGAGTCAAGTTTCTGGTCGGATGAACTTTTGAAAAGTAGCCAAAAGAGAGGGAGAGTGCAAAATTGATGCTCTAAGGATCATTTTTCGTGGTTGCTATGCAAATAAACATGGCACAAGCATAAGCAAAGCAATGTTGTTGTACTGCTATTGAATTTCTGGGTGTTGTAACCAAAACATCCAAGTGCCTTTGCATATTAGGTTTATCTTTAATTTGAGGTATAGGAAATATTTCCATCATTTTCTTCCTCATTATTTATGAGCCATTTTTCAAATTTGATTACATGGTAGTTTTGATATAGTGAAGACTTCTTTTAATGTAACGTTTTTTCTTTTTTGGCAAAAAGTAGGCAAGAATTTTTTAGTTCAACAATTGCAGTGTGGAAGATAGAATCATCGATCTCTAGTATCATTTCTTAGTAAATCATAAGGTTTTCCTTTATTTGTAATCCAACACATTCTATTATAATGCAATATATGAGCCATGTCCAATCTTCAGATGCCTCAAAATTCACCATCTACGCACAGACAATACTTATAAAGATAATTTTGCAAAACCAATAAACCCAAGCTCACACACGAACTTCACAAGTTTGTTATTTCTAAATCATAGGAAACAACAAAATGGCCATAAAACAACCACAATGTGAAAAGGCCAAATGTACAAAGTGACCACATTTGTCCACTAGCGTAACTAAATTGCTTAGAATCATGGCCTTTGCACCTAAACGGGCGGCAGAGACGGTGGCAAAGTCAAGAAGAACCACCACCGCCACCACCGGCGGCGACAGATTCAAGTGAAACATTATTCAGCCGTTCCAGAGATAAAATCAAGGCCTGTGTGCCCAAATTTCCCTCCCCATGAGCCTTAAGTGACACATAAAGCTGCTGAGCCAATGCCAATCCAGGCAGAGCAAGCCCCATATTCTGACATTCCTTCAAGCAAATTCCTAAATCCTTCACAAAATGATTCACAAAAAACCCAGGTTCAAAATCCCTCTTCAGAATCCTACTTCCATACAAATCCAGCGATTTTGATCCTGCTGCTCCTGTTGATATGGCGTTCAAGAACAAACCCACGTCAAGCCCTGCTTTGTGAGCGTAAATCATACCTTCCACCAGTCCCACCATTGTCGAAGCTATGGTGATCTGATTCGCCAGCTTCGCAAATTGCCCTTTCCCACTTTCTCCCATGTAATTCACTTTCCCTAGCAGGGAGAATAACGGGCTCAATCGCCGGACTTCGCCTTCATCGCCGCCGGCAAAGATCGCCAGAGTGGCGTTCTTGGCGCCCCGATCGCCGCCTGATACTGGAGCGTCAATTGCCCCACAGCCTTTGGCGGTTGCAGCGGCGGCGATTTCAGAGGCGAGTGAGGGTTCAGAAGTGGTCATGTCGACGAGGACGCCGCCGGGGCGAAGGCCGGCGAGGGCGCCGGAGGTGGGGTCGAGGAGGACGGAGCGGACGTCGGAGGGGTAGCCGACGATGGAGAAAACGACGTCGGATTGGGCGGCGACGGCGAGAGGGGAAGAGGCCAAATTGGCGCCCAAATCGAGAAGGGGTTGGGCTTTTGAGATGGTGCGATTGAAGACGGTGAGTTTGAAGCCGGCTTTGATGATGTGAGAGCACATGGAGCAGCCCATAACGCCGGTACCGATCCAGCCGACGCGGGTGGTTGAAGGGCTGACGATATCGCCGGAAGTAGCCATTGTGCGGCGGAGGAAAGAGAGGTAGGGAAGGGATAGGGTGGGGTGGGCTGTGGGGGTTAGTTTGTGGGATTGAGTGTATAGAGATCGAAGAGTGATTTGCAGTGGCATCTCTATTTTTCTTTTCTTTTCTTTAAAAAAAGGGTATATTTGGAGACTTTTCGGGCAAATGAAAAGGATTATTTTATTTTATTTTTTATTTATATATATTTTTTTAAGCTAAGATATTAAACTTCTTACTTATAAATTGTTAACTTTATTAAAAAAAAAAAAATTTAAAAGGTGGTTGATTTTAAAAAAGTAATAATAAGAAAAAATAAAGACTTTAAGAAGGTAGTTTTTTTTTTTTTTTTTTTTTTTAAATTTTCCTTATTGAATAATTTGGGGAGTTATTTATTCCCAAACTTCTAACTAAATAGCATTGACTATTGAGCATGAAGCATGTTTTAACTCACATCCGGTTAATTTAAAGAATAATGTACTTTTAAAAAAATAATGAGAAAAATAGGGCGGTTTAGAAACTAATGACAAAAATAGGGTGGTTTGGAAAGTTATTTGGGAAATGTGGTGGTGAAATCGTGTACCCGGTACACGATTTCAGTGAAGTTGCTGATAGGGCAGCTGACGTGGAAGCCGAACTCGTAGACAGGGTCCACGACTTCCGTCCAACTCGTCCGGTTTTTTTCCCATGATAAATAACTTAATTAATTAATTATCCACTTAAATGAAAATTTACTTCTTACTTGTGTTCTTATTCAATTATTGTATTAGTTTCATTGTTTCTTAATTTTTCAAAATGTAATGGAAAATCATTAATTCATTTAGTTAAAGATAAAAGTTAATACAAATCAGAAAATTTAAAATATAGCGGGGCAGTGGGCTGGCAGGGTAATCGTGTACTTGGTATTTATTTCCCCCACCCTATTTTTAGAATTATTTATTAAAAAAACATTATTTAAAAAAAAAATTACTAATATCCTTATTAAACCTTTCTTTTGGGTATTACATAAAGTGAAATCTTACTTATTTTCAATAATTCTTTCCTTGAACAGTGATCTCCGAACCAATGGGTCAAGTTAACCATTTTGAGCTTAAACCTACTCTTTTTTTTTTATTTTTTTTTATTTTAGAAACCTCCTACCAATAATTAAAATATTGTTATTATAGGCTTAACATACTTGTAAAATGCTTCCTAGTAATATATGCCGAGAATCTACTAACATTTAGAACAAACCATGGAAGATACTCTGAAGGAGCTACTCGGAGATGTGGTAGCTGGAAACATTTTCATCCAGCATTTGAACGATGGTTTTGGCATCGGAGCTACACTGCTTGCAGCCTCTCACTCTCAATATCTTGAGGTAGGTGACCCCTAAGGAAAAAATGAGGATCCATGTCAAATTACAAATAGTATATTATGGAGTGGCAAAAGCTTTAGATTTTTGTTGAATTTTCTGCTCTCCTTTGCATGTTATCACTTTCTGATGCCTTAGACTCTAGCTCAACAGTTCTCTCCCAATCCTTTTATTTATAGTTATCGATAGCATACAATCCTTTTATTTATAGTTATCAACAGCATATTAGGTTTATCTTTAATTTGAGATAGAGGAAATATTTCCATCATTTTCTTCCTCATTATTTATGAGCCATTTTCCAAATTTGATTATGTAATAGTTTTGAAATGTTGTTTTTTTTAGTTCAACAATTATACGGTGGAAGATTGAAACATCGATTTTCAAAATGATGATCGATGTGTGTAATCTACCATATCTTCACCATAAGCTTACTTGGTTTTACTTTATTTGTTACCCAACACAAATTCTATAGTAATGCAATATGTGAGCAGCAGTCTAAACATAATTTTCCAAAACCATTAAGCCCAAACTCACGTGGAAATTTCACAAGTTTCTTATTTCTTGAATCTAAATCGTAGGAAACAACAAAATGGCCATAAAACAACCACAATGTACAAAGTAACCACATTTATCCATTGGTATAACCAAATTGCTTGGAACCATGACCTTTGCACCTAAACGGGCGGCAGAGACGGTGGCAAAGTCAAGAAGAACCACCACCGCCACCACCGGCGGCGACAGATTCAAGTGAAACATTATTCAGCCGTTCCAGAGATAAAATCAAGGCCTGTGTGCCCAAATTTCCCTCCCCATGAGCCTTAAGTGACACATAAAGCTGCTGAGCCAATGCCAATCCAGGCAGAGCAAGCCCCATATTCTGACATTCCTTCAAGCAAATTCCTAAATCCTTCACAAAATGATTCACAAAAAACCCAGGTTCAAAATCCCTCTTCAGAATCCTACTTCCATACAAATCCAGCGATTTTGATCCTGCTGCTCCTGTTGATATGGCGTTCAAGAACAAACCCACGTCAAGCCCTGCTTTGTGAGCGTAAATCATACCTTCCACCAGTCCCACCATTGTCGAAGCTATGGTGATCTGATTCGCCAGCTTCGCAAATTGCCCTTTCCCACTTTCTCCCATGTAATTCACTTTCCCTAGCAGGGAGAATAACGGGCTCAATCGCCGGACTTCGCCTTCATCGCCGCCGGCAAAGATCGCCAGAGTGGCGTTCTTGGCGCCCCGATCGCCGCCTGATACTGGAGCGTCAATTGCCCCACAGCCTTTGGCGGTTGCAGCGGCGGCGATTTCAGAGGCGAGTGAGGGTTCAGAAGTGGTCATGTCGACGAGGACGCCGCCGGGGCGAAGGCCGGCGAGGGCGCCGGAGGTGGGGTCGAGGAGGACGGAGCGGACGTCGGAGGGGTGGCCGACGATGGAGAAAACGACGTCGGATTGGGCGGCGACGGCGAGAGGGGAAGAGGCCAAATTGGCGCCCAAATCGAGAAGGGGTTGGGCTTTTGAGATGGTGCGATTGAAGACGGTTAGTTTGAAGCCGGCTTTGATGATGTGAGAGCACATATAGCAGCCCATAATGCCGGTACCGATCCAGCCGACGCGGGTGGTTGAAGGGCTGACGATGTCGCCGGAAGTAGACATTGTGCGGCGGAGGAAAGAGAGGAAGGGAAGGAGTCAAGATTTAGAATAACAAGAGGAAAGAAGAAGAAATAGTGTGGAATATCCTTCCCTGTATTATAGTCGTGTATCTTTCTTCATAGATATGAAGGTCTG ATGGGCAAGGTTGCGGTGGGAGCGGCGGTGGTTTGTGCGGCTGCGGTTTGCGCAGCAGCGGCGCTAGTGGTGCGTCACCGAATGAGAAACTCTGGGAAGTGGGCGCGAGCAATGGCCATTCTGAGAGAGTTTGAGGAAAAGTGTGGAACCCCTATTGGGAAACTGAGGCAGGTGGCCGACGCCATGACCGTCGAGATGCACGCCGGCCTCGCATCCGAAGGCGGTAGCAAGCTCAAGATGCTGATTAGCTACGTTGATAATCTCCCAACCGGAAATGAAAAGGGGCTCTTCTATGCATTGGATCTTGGTGGTACAAATTTTCGAGTGTTGCGTGTGCAGTTGGGAGGGACAGACAACCGAGTTGTCAAGCAAGAATTTGAGGAGGTTTCGATACCTCCACACTTGATGACTGGGTCTTCAGAAGCTCTATTTGATTTTATAGCTCAAGCACTTGCAAAGTTTGTTGCTGAAGAAGGTGAAGGCTTTCACCCAGCCCCGGGTAGGCAAAGGGAACTGGGTTTTACTTTCTCCTTCCCTGTGAGACAAACATCAATATCATCGGGGACACTTATTAAATGGACGAAAGGCTTCAACATTGAAGACACGGTTGGGGAAGATGTGGTCGGTGAATTAACTAAAGCCATGGAAAAACTGAAACTCGACATGCGTGTAACAGCATTGGTAAACGACACAATTGGAACATTAGCAGGAGGTAGATACCATGATAACGATGTAATTGCTGCTGTGATTTTAGGCACCGGAACAAATGCAGCTTATGTAGAGCGTGCCCATGCAATTCCCAAGTGGCACGGGCTACTTCCTAAATCAGGAGAAATGGTAATTAACATGGAATGGGGTAACTTCCGGTCCTCACATCTGTCACTTACAGAATATGATCAAGCATTGGATGTTGAGAGTTTAAACCCTGGAGAACAGATCTTTGAGAAGTTGATTTCTGGTATGTACTTGGGAGAAATTGTACGTAGAGTATTGTTCAAGATGGCTGAAGAAGCGGCTCTCTTCGGTGAAACTGTTCCTCCCAAACTGAAAATTCCATTTATATTGAGGACTCCTCACATGTCTGCCATGCATCATGACACGTCGCCTGACCTCAAAGTTGTTGGAAGAAAACTGAAGGATATCTTGGAGATATCTAATACCTCCTTGAAAACAAGAAAAATCATAGTGGAGCTCTGTGACATAGTTGCGACACGGGGTGCCCGCCTCTCTGCTGCTGGTATCTTAGGAATCCTGAAGAAACTGGGAAGAGACACAGTCCGGGATGGTGAGAAGCAGAAGTCCGTTGTAGCATTGGATGGAGGGTTGTATGAGCACTACACTAAATTTAGAACAACCATGGAAGATACACTGAAGGAGCTACTCGGAGATGGGGTAGCTGGAAACGTCTTCATCGAGCATTCAAACGATGGTTCTGGCATCGGAGCTGCACTGCTTGCAGCCTCTCACTCTCAATATCTTGAGGTAGATGACCCCTAAGGAAAAAGTGAGGATCCATATCAAATTACAAATAGTATATTATGGAGTGGCAGAAGCTTTAGATTTTTGTTGAATTTTCTGCTCTCCTTTGCATGTTATCACTTTCTGATGCCTTAGACCCTAGCTCAAGAGTTCTCTCCCAATCCTTTTATTTATGGTTATTGAGAGCATACAAAAATTGAGTCAAGTTTCTGGTCGGATGAACTTTTGAAAAGTAGCCAAAAGAGAGGGAGAGTGCAAAATTGATGCTCTAAGGATCATTTTTCGTGGTTGCTATGCAAATAAACATGGCACAAGCATAAGCAAAGCAATGTTGTTGTACTGCTATTGAATTTCTGGGTGTTGTAACCAAAACATCCAAGTGCCTTTGCATATTAGGTTTATCTTTAATTTGAGGTATAGGAAATATTTCCATCATTTTCTTCCTCATTATTTATGAGCCATTTTTCAAATTTGATTACATGGTAGTTTTGATATAGTGAAGACTTCTTTTAATGTAACGTTTTTTCTTTTTTGGCAAAAAGTAGGCAAGAATTTTTTAGTTCAACAATTGCAGTGTGGAAGATAGAATCATCGATCTCTAGTATCATTTCTTAGTAAATCATAAGGTTTTCCTTTATTTGTAATCCAACACATTCTATTATAATGCAATATATGAGCCATGTCCAATCTTCAGATGCCTCAAAATTCACCATCTACGCACAGACAATACTTATAAAGATAATTTTGCAAAACCAATAAACCCAAGCTCACACACGAACTTCACAAGTTTGTTATTTCTAAATCATAGGAAACAACAAAATGGCCATAAAACAACCACAATGTGAAAAGGCCAAATGTACAAAGTGACCACATTTGTCCACTAGCGTAACTAAATTGCTTAGAATCATGGCCTTTGCACCTAAACGGGCGGCAGAGACGGTGGCAAAGTCAAGAAGAACCACCACCGCCACCACCGGCGGCGACAGATTCAAGTGAAACATTATTCAGCCGTTCCAGAGATAAAATCAAGGCCTGTGTGCCCAAATTTCCCTCCCCATGAGCCTTAAGTGACACATAAAGCTGCTGAGCCAATGCCAATCCAGGCAGAGCAAGCCCCATATTCTGACATTCCTTCAAGCAAATTCCTAAATCCTTCACAAAATGATTCACAAAAAACCCAGGTTCAAAATCCCTCTTCAGAATCCTACTTCCATACAAATCCAGCGATTTTGATCCTGCTGCTCCTGTTGATATGGCGTTCAAGAACAAACCCACGTCAAGCCCTGCTTTGTGAGCGTAAATCATACCTTCCACCAGTCCCACCATTGTCGAAGCTATGGTGATCTGATTCGCCAGCTTCGCAAATTGCCCTTTCCCACTTTCTCCCATGTAATTCACTTTCCCTAGCAGGGAGAATAACGGGCTCAATCGCCGGACTTCGCCTTCATCGCCGCCGGCAAAGATCGCCAGAGTGGCGTTCTTGGCGCCCCGATCGCCGCCTGATACTGGAGCGTCAATTGCCCCACAGCCTTTGGCGGTTGCAGCGGCGGCGATTTCAGAGGCGAGTGAGGGTTCAGAAGTGGTCATGTCGACGAGGACGCCGCCGGGGCGAAGGCCGGCGAGGGCGCCGGAGGTGGGGTCGAGGAGGACGGAGCGGACGTCGGAGGGGTGGCCGACGATGGAGAAAACGACGTCGGATTGGGCGGCGACGGCGAGAGGGGAAGAGGCCAAATTGGCGCCCAAATCGAGAAGGGGTTGGGCTTTTGAGATGGTGCGATTGAAGACGGTTAGTTTGAAGCCGGCTTTGATGATGTGAGAGCACATATAGCAGCCCATAATGCCGGTACCGATCCAGCCGACGCGGGTGGTTGAAGGGCTGACGATGTCGCCGGAAGTAGACATTGTGCGGCGGAGGAAAGAGAGGAAGGGAAGGAGTCAAGATTTAGAATAACAAGAGGAAAGAAGAAGAAATAGTGTGGAATATCCTTCCCTGTATTATAGTCGTGTATCTTTCTTCATAGATATGAAGGTCTG ATGGGCAAGGTTGCGGTGGGAGCGGCGGTGGTTTGTGCGGCTGCGGTTTGCGCAGCAGCGGCGCTAGTGGTGCGTCACCGAATGAGAAACTCTGGGAAGTGGGCGCGAGCAATGGCCATTCTGAGAGAGTTTGAGGAAAAGTGTGGAACCCCTATTGGGAAACTGAGGCAGGTGGCCGACGCCATGACCGTCGAGATGCACGCCGGCCTCGCATCCGAAGGCGGTAGCAAGCTCAAGATGCTGATTAGCTACGTTGATAATCTCCCAACCGGAAATGAAAAGGGGCTCTTCTATGCATTGGATCTTGGTGGTACAAATTTTCGAGTGTTGCGTGTGCAGTTGGGAGGGACAGACAACCGAGTTGTCAAGCAAGAATTTGAGGAGGTTTCGATACCTCCACACTTGATGACTGGGTCTTCAGAAGCTCTATTTGATTTTATAGCTCAAGCACTTGCAAAGTTTGTTGCTGAAGAAGGTGAAGGCTTTCACCCAGCCCCGGGTAGGCAAAGGGAACTGGGTTTTACTTTCTCCTTCCCTGTGAGACAAACATCAATATCATCGGGGACACTTATTAAATGGACGAAAGGCTTCAACATTGAAGACACGGTTGGGGAAGATGTGGTCGGTGAATTAACTAAAGCCATGGAAAAACTGAAACTCGACATGCGTGTAACAGCATTGGTAAACGACACAATTGGAACATTAGCAGGAGGTAGATACCATGATAACGATGTAATTGCTGCTGTGATTTTAGGCACCGGAACAAATGCAGCTTATGTAGAGCGTGCCCATGCAATTCCCAAGTGGCACGGGCTACTTCCTAAATCAGGAGAAATGGTAATTAACATGGAATGGGGTAACTTCCGGTCCTCACATCTGTCACTTACAGAATATGATCAAGCATTGGATGTTGAGAGTTTAAACCCTGGAGAACAGATCTTTGAGAAGTTGATTTCTGGTATGTACTTGGGAGAAATTGTACGTAGAGTATTGTTCAAGATGGCTGAAGAAGCGGCTCTCTTCGGTGAAACTGTTCCTCCCAAACTGAAAATTCCATTTATATTGAGGACTCCTCACATGTCTGCCATGCATCATGACACGTCGCCTGACCTCAAAGTTGTTGGAAGAAAACTGAAGGATATCTTGGAGATATCTAATACCTCCTTGAAAACAAGAAAAATCATAGTGGAGCTCTGTGACATAGTTGCGACACGGGGTGCCCGCCTCTCTGCTGCTGGTATCTTAGGAATCCTGAAGAAACTGGGAAGAGACACAGTCCGGGATGGTGAGAAGCAGAAGTCCGTTGTAGCATTGGATGGAGGGTTGTATGAGCACTACACTAAATTTAGAACAACCATGGAAGATACACTGAAGGAGCTACTCGGAGATGGGGTAGCTGGAAACGTCTTCATCGAGCATTCAAACGATGGTTCTGGCATCGGAGCTGCACTGCTTGCAGCCTCTCACTCTCAATATCTTGAGGTAGATGACCCCTAA MGKVAVGAAVVCAAAVCAAAALVVRHRMRNSGKWARAMAILREFEEKCGTPIGKLRQVADAMTVEMHAGLASEGGSKLKMLISYVDNLPTGNEKGLFYALDLGGTNFRVLRVQLGGTDNRVVKQEFEEVSIPPHLMTGSSEALFDFIAQALAKFVAEEGEGFHPAPGRQRELGFTFSFPVRQTSISSGTLIKWTKGFNIEDTVGEDVVGELTKAMEKLKLDMRVTALVNDTIGTLAGGRYHDNDVIAAVILGTGTNAAYVERAHAIPKWHGLLPKSGEMVINMEWGNFRSSHLSLTEYDQALDVESLNPGEQIFEKLISGMYLGEIVRRVLFKMAEEAALFGETVPPKLKIPFILRTPHMSAMHHDTSPDLKVVGRKLKDILEISNTSLKTRKIIVELCDIVATRGARLSAAGILGILKKLGRDTVRDGEKQKSVVALDGGLYEHYTKFRTTMEDTLKELLGDGVAGNVFIEHSNDGSGIGAALLAASHSQYLEVDDP Homology
BLAST of CmUC11G205810 vs. NCBI nr
Match: XP_038889567.1 (hexokinase-1-like [Benincasa hispida] >XP_038889568.1 hexokinase-1-like [Benincasa hispida] >XP_038889569.1 hexokinase-1-like [Benincasa hispida] >XP_038889570.1 hexokinase-1-like [Benincasa hispida] >XP_038889571.1 hexokinase-1-like [Benincasa hispida]) HSP 1 Score: 954.5 bits (2466), Expect = 3.6e-274 Identity = 485/498 (97.39%), Postives = 491/498 (98.59%), Query Frame = 0
BLAST of CmUC11G205810 vs. NCBI nr
Match: TYK10747.1 (hexokinase-1 isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 943.7 bits (2438), Expect = 6.3e-271 Identity = 476/498 (95.58%), Postives = 488/498 (97.99%), Query Frame = 0
BLAST of CmUC11G205810 vs. NCBI nr
Match: XP_008458864.1 (PREDICTED: hexokinase-1 isoform X2 [Cucumis melo]) HSP 1 Score: 943.0 bits (2436), Expect = 1.1e-270 Identity = 476/498 (95.58%), Postives = 487/498 (97.79%), Query Frame = 0
BLAST of CmUC11G205810 vs. NCBI nr
Match: XP_008458849.1 (PREDICTED: hexokinase-1 isoform X1 [Cucumis melo] >KAA0061524.1 hexokinase-1 isoform X1 [Cucumis melo var. makuwa]) HSP 1 Score: 943.0 bits (2436), Expect = 1.1e-270 Identity = 476/498 (95.58%), Postives = 487/498 (97.79%), Query Frame = 0
BLAST of CmUC11G205810 vs. NCBI nr
Match: XP_008458873.1 (PREDICTED: hexokinase-1 isoform X3 [Cucumis melo] >XP_008458879.1 PREDICTED: hexokinase-1 isoform X3 [Cucumis melo] >XP_008458886.1 PREDICTED: hexokinase-1 isoform X3 [Cucumis melo] >XP_008458893.1 PREDICTED: hexokinase-1 isoform X3 [Cucumis melo] >XP_008458902.1 PREDICTED: hexokinase-1 isoform X3 [Cucumis melo] >XP_008458909.1 PREDICTED: hexokinase-1 isoform X3 [Cucumis melo] >XP_008458916.1 PREDICTED: hexokinase-1 isoform X3 [Cucumis melo] >XP_008458936.1 PREDICTED: hexokinase-1 isoform X3 [Cucumis melo]) HSP 1 Score: 943.0 bits (2436), Expect = 1.1e-270 Identity = 476/498 (95.58%), Postives = 487/498 (97.79%), Query Frame = 0
BLAST of CmUC11G205810 vs. ExPASy Swiss-Prot
Match: Q9SEK3 (Hexokinase-1 OS=Spinacia oleracea OX=3562 GN=HXK1 PE=2 SV=1) HSP 1 Score: 797.0 bits (2057), Expect = 1.2e-229 Identity = 398/497 (80.08%), Postives = 445/497 (89.54%), Query Frame = 0
BLAST of CmUC11G205810 vs. ExPASy Swiss-Prot
Match: Q42525 (Hexokinase-1 OS=Arabidopsis thaliana OX=3702 GN=HXK1 PE=1 SV=2) HSP 1 Score: 784.3 bits (2024), Expect = 8.4e-226 Identity = 388/494 (78.54%), Postives = 438/494 (88.66%), Query Frame = 0
BLAST of CmUC11G205810 vs. ExPASy Swiss-Prot
Match: P93834 (Hexokinase-2 OS=Arabidopsis thaliana OX=3702 GN=HXK2 PE=1 SV=1) HSP 1 Score: 775.4 bits (2001), Expect = 3.9e-223 Identity = 384/497 (77.26%), Postives = 436/497 (87.73%), Query Frame = 0
BLAST of CmUC11G205810 vs. ExPASy Swiss-Prot
Match: Q9SEK2 (Hexokinase-1 OS=Nicotiana tabacum OX=4097 GN=HXK1 PE=2 SV=1) HSP 1 Score: 764.2 bits (1972), Expect = 9.0e-220 Identity = 378/494 (76.52%), Postives = 432/494 (87.45%), Query Frame = 0
BLAST of CmUC11G205810 vs. ExPASy Swiss-Prot
Match: Q9SQ76 (Hexokinase-2 OS=Solanum tuberosum OX=4113 GN=HXK2 PE=2 SV=1) HSP 1 Score: 754.2 bits (1946), Expect = 9.3e-217 Identity = 377/494 (76.32%), Postives = 430/494 (87.04%), Query Frame = 0
BLAST of CmUC11G205810 vs. ExPASy TrEMBL
Match: A0A5D3CFI1 (Phosphotransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold332G00600 PE=3 SV=1) HSP 1 Score: 943.7 bits (2438), Expect = 3.1e-271 Identity = 476/498 (95.58%), Postives = 488/498 (97.99%), Query Frame = 0
BLAST of CmUC11G205810 vs. ExPASy TrEMBL
Match: A0A1S3C8Z7 (Phosphotransferase OS=Cucumis melo OX=3656 GN=LOC103498127 PE=3 SV=1) HSP 1 Score: 943.0 bits (2436), Expect = 5.2e-271 Identity = 476/498 (95.58%), Postives = 487/498 (97.79%), Query Frame = 0
BLAST of CmUC11G205810 vs. ExPASy TrEMBL
Match: A0A5A7V2P5 (Phosphotransferase OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold41G00850 PE=3 SV=1) HSP 1 Score: 943.0 bits (2436), Expect = 5.2e-271 Identity = 476/498 (95.58%), Postives = 487/498 (97.79%), Query Frame = 0
BLAST of CmUC11G205810 vs. ExPASy TrEMBL
Match: A0A1S3C8E1 (Phosphotransferase OS=Cucumis melo OX=3656 GN=LOC103498127 PE=3 SV=1) HSP 1 Score: 943.0 bits (2436), Expect = 5.2e-271 Identity = 476/498 (95.58%), Postives = 487/498 (97.79%), Query Frame = 0
BLAST of CmUC11G205810 vs. ExPASy TrEMBL
Match: A0A1S3C8X8 (Phosphotransferase OS=Cucumis melo OX=3656 GN=LOC103498127 PE=3 SV=1) HSP 1 Score: 943.0 bits (2436), Expect = 5.2e-271 Identity = 476/498 (95.58%), Postives = 487/498 (97.79%), Query Frame = 0
BLAST of CmUC11G205810 vs. TAIR 10
Match: AT4G29130.1 (hexokinase 1 ) HSP 1 Score: 784.3 bits (2024), Expect = 6.0e-227 Identity = 388/494 (78.54%), Postives = 438/494 (88.66%), Query Frame = 0
BLAST of CmUC11G205810 vs. TAIR 10
Match: AT2G19860.1 (hexokinase 2 ) HSP 1 Score: 775.4 bits (2001), Expect = 2.8e-224 Identity = 384/497 (77.26%), Postives = 436/497 (87.73%), Query Frame = 0
BLAST of CmUC11G205810 vs. TAIR 10
Match: AT2G19860.2 (hexokinase 2 ) HSP 1 Score: 607.4 bits (1565), Expect = 1.0e-173 Identity = 297/388 (76.55%), Postives = 340/388 (87.63%), Query Frame = 0
BLAST of CmUC11G205810 vs. TAIR 10
Match: AT1G50460.1 (hexokinase-like 1 ) HSP 1 Score: 506.9 bits (1304), Expect = 1.8e-143 Identity = 268/498 (53.82%), Postives = 350/498 (70.28%), Query Frame = 0
BLAST of CmUC11G205810 vs. TAIR 10
Match: AT3G20040.1 (Hexokinase ) HSP 1 Score: 491.5 bits (1264), Expect = 8.0e-139 Identity = 254/494 (51.42%), Postives = 341/494 (69.03%), 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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