CmUC10G194110 (gene) Watermelon (USVL531) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRCDSpolypeptidethree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.AGGAATGGAAGGCAAAAAATGAAGATAAATTGAGTGAGTGAGTGAGGTAAAAGATCTACCTATCCATCTCCAATGGCGGATATTTCGAGATCACTCGGGTCCAGATGGGTCGTATTCTTCTCCAATCTCTTCTTACTCAGCACCCATTTCTCCCTTTCTCAGCTCAGAATGTTCTCTGATTTCTCTTCTTTCATCTTACTCCCTTCTCTCTAACCTCTTCTCTTTTTTCTTTTTCTTTTTCTTTTCATTTTTTGCTTCTGGGGGTTCTCCATTCTTCTTCCTCTTTTTCTCAACCTCCCCATGACTGTGGCTCTACCTATGGCTTCTTGGACTTCTGGGCTTCACTCCACTTCCACTTCTTGGACCCTCAAATCTTCTGAAACCCGTTTTGCTAATGCCCTTTTCACCAAGACCTCCATTCCTTTTCAGACCAAATGTTTCTGCCTACTCCAAAGGGGAAGGTATGACTTTCAATTGCTTGATTTTGTATGTTTTTTTTGCTTATTTTTATCATACATACCCTTGTCAATTTGGATTCAGACCGACGATATTTGGGTTGTTGCCTTGCTTCATGCTTCAATTTCTCATTGCATGTAACAGTAATACGTTTCTGAATTTCTGGCCGGTTAGTTAGTAGAATTGAACAAGACCCAATTGTTCTCTATTAATTAAGAACTTGTTGATGTGAAATCATCACTAGATTTTAAGCTTAAGCCGATACATTATTTCAATTATTAATGTTAATCAATTGGGGGAGAAAATTACATAACAAGGATTAGAAACACAGTAACTTCGCCTTTAGCTCTATGTTAGTTTATCATTAATTCCAAAAGCTTAATCTAATTGGTAATAAGCCCTTGCATTTTCAGCTGTAAGGGTTTTGATGAGTTGAAGATTATTATGATTTCTTTCGCTTTGAATAACGTATCTGGGTTTCTTCATTGGTTTACATTACATAATTGAATTTAGTTTCGTGCTTGAGGGTTTCTTTAATTCTAGTTTGTATGGAGGCATTTCATTTTTATGAAATTATGTTTATAAGTTTGCTACCGATCCTTATCCAGATGGTCTTCTTCCAACATGAAGAGTATTCCACGAGCATCATCAGCTACAGCTGTTGAGGTACTAAAGGTATCGATGCATATGATTTGTGATTGTTGCGTGCTTGTTCTTAATTTTTGTTGGACCTCTCTCTCTCTTGGGAGTGGTTGCACAACAGGATGGAAGTAACGGTGATACTGATACAATTCCAACGCCCATAGTTATAATAGACCAGGACTCTGATCAAGATGCAACTGTGGTGGAGATAACCTTTGGCGATCGGCTTGGAGCTCTCCTTGACACGGTATAAAGCTAATTTTTCACATTAACAAAGTCATCTTTAGCATTCCATTCCTTAGAGCTTCTTTCTAAGTTATGATACCAAAGGATAATGCTTTCTGAGTTGTCTTGTTTCGTCGTCATTTCCCATGATACCCATTAAAAATGCATTGTTTATAGATGAATGCTCTGAAAAACCTGGGGCTGAATGTTGTCAAGGCGAATGTCTTTTTGGATTCTTCTGGAAAACACAACAGATTTTCCATCACAAAAGCGTAAGTATCGCTTATTACATTTACACGCTCCATGATGGTCTTTTACATTACTGAATGGTAGGTTGTCATAGTAGTGGGTTTCTAGAATTCTGGATATGGTCTATAATTTTTATTAGAATGATAAAACTATTGCATTGATTGTTGATCGTTAATTCATTACTATATACATGGCTATGCTAATTGGTTGGAAGGTCGAATTGGAGCAATTTTTTTAGAAAATGATACCTGCTCCTTAAAACTCAAGGACACAGTTGTACAACCTATAGAACAATCGCGTTCAAGTAAGGTCGCAACAAAATTATAAAAGCTCCTTTAAACTCTCAGTAGTATGTCAATTTAATATGGGCCTCTGGCAATAGTGGATCAGCCTACGCAACCCTTCGGTTATGTGGACCTTCCAAACATGAACACCAATACCTTGTATTAGATTTGGTCTTAAAGTTGTTCCATTGTGATTTTGATTTTTTATTGCTTTGCTACGATGCAGAGATACTGGAAGAAAGGTAGATGATCCAGAGTTGCTCGAGGCAATTCGTCTGACAATTATAAATAACTTGATTCAGTATCATCCGGTATGATCTTATCTAGATTTATTCCTGGATCTAGAAATAACGTTTTGGTGGATCCCTATTTAGAGACCTGTTTTGGTAAGTCCCTAAAGTTTAAGTTGGTGGTTCAGGAATCGAGTGCTCAGTTAGCAATGGGAGCAGCCTTTGGAGTTGTGCCACCGCAACAACAGGTCTTGAATAACTTTCCATTTCATAACTGCTTATACTATGGAGCTTTTTCTATGTACTATATCCGCTGTTGCATGGTAGCCTGATAGGACATTGAGTAGAAACCTGCAGAACATTTTCCCTTTGTGTCAGAGATAAGAGTATGCTTTCCTGTTTTACTTTTCAATGCTTGTCGTGTCACTCAATCTAACTATTCGTGTCAACATTTAATATTCATCATTTCCTAGCTTTTGTACTTCTATTTTGCCTGTACCATGGATCCGTTTGGTAGGTTACTTGATTGAAATGATGTTTTTGCTCCTTTGCCTGATTTATTATATGTTATAATTTCTCAGGTTGATGTGGACATTGCTACCCACATCAACATACAAGATGACGGTCCAGACCGAAGGTAATGTTCGTCTGTTTCCTCTGTTAGCAATGGGGAGAAAATAATCGGCATGATGGGAATGGTTTTCATGAATTAACTTACACAAGCTCATCAATCCTGCATATATGAAGTGAGAGTGCAAATTTTCAATTCTTTTCCTTTTTTCCCTTGACAGCTTACTGTATGTGGAGACAGCTGATCGACCAGGATTATTGGTAGATCTTGTAAAGATTATCACCGACATAAATGTCGCAGTTGAATCTGGAGAATTCGACACCGAGGTGACTATTTTCGGAGTTAAATTTTCAGACCTTAAGAGTTAATTGACTTCCATGGTAATTGCAAGTTTCTTTTGTCCTGGCTACAGGGATTGTTGGCTAAGGCCAAGTTTCATGTCAACTATAGGGGCAAAGCCCTCATCAAACCTCTTCAGCAGGTTGGTAAACATTTAGATTACTGGTTATGTTGTATAATATTGTTGGTTACTGAAGCCAATGGAGAATTTTCGTCAAATTTTACAGGTTATTTCAAATAGTTTGCGATATTTCTTGAGGCGACCTACGACAGAGGAGGCGAGTTTTTGAGCCGAGTGAGGTAAACCAAAACCAGGATAATTAGACTACAAGAAATATTGTGCATTCATGGTGTACCATTTACGCCCTGTTGTTGTTGTAACATATCTTACCATGCTCATTCATACTAGATTTGAACCTCACCATTAACGTTATGAATTTGCAAGAAATGTTCCAGTTTGATGTTCAATACCCGACCATGTCACGATGGTTTGATACTTTGACAGAACATATTGCAAGATAAATCTTAAATTTTCTGGTAAGTTTCGAACAAGGAAAAAAGAAAAGAAAAAATTGTATGCTAAAACTTATATATATATATATAAAGTGCTTCTAAAGATGACTTGTAAGATAGATTATTGTCAATACTAGCAAACTAAACATAGACTACTTAATAAAATCTTAATTAAACAATTGCCATTTTTATTCTCCCCAAGTAATCTTTTGTTTCTCTCTTGTTTTTATCTTTTCTTTTAGTTCACCCCCAAGTAATTTAAACTTTAATTATATTCTAAAAACTAGATTTCTACGCAATTTTGGGACAATTTTAATTTTTTGTGCGTTCTAAAATTAGATTTATTCATATTATTTTATAATTAAAATAATAAAAAAATCAATCCAAATCTAATATTATATTTAAAAATTTTATTTTTGGAATAAACATTAATCAAACTGTGTATATCATTAAATTCTGGTTGTCATTTAATGATTTTTTTATTCATTGTTAAATTCAGGTTGTAATTTAATAATTTTTTTATTTTATTTATTAACTAATATGGTATGAAATAATAACTAAAATATGAAAAAAAAAGATTAGTTTTTGTTTATAAAGTATATCTTTTCCAATCAGTACGAGTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTTACAGATTTCATATGTTGATTTTAGGAGTATTTGTATTTTAAGGATATTTTTCTTCCAATTGGTTACAAATATTCTTTTTTACAAATTTTGAATTTTGACTTAAAATTCAAAATCCCTATTTCAAATATATACGAAATTATTTTTAAATGTATTTAGAACAAGTATGAAGGTAAGGTTGTTATATAATATATATATTGCATATTTTAATTCTAATTTCATTTCTATTAAGATATATACATTCCACATGATACACATATAAGAAATTGAGATATATATTCCATATGCTTTGTAATATATACACATATATATTATACTAAGATAGATGACATCCTCAGATTGTTTGAAATAAATCTATATATATTTTATATTGAAAATAAAATGTACAAATAAACTTTATATATATTATATATTATAGCTCACGTGACTTGAGAGCGTAATTATGATATATTCTTTCAAAGTTTTGATTTTGAAGATAAAACAGTTTTGGAAAAAATCATTTAATGCGCTCAAATATGGTATATTTTCTATTTCATGTGTGCCTTTTCTTATTTCTATATTTTTCCTTATTATTATTTTTCAAAATTTCTAAAATTCATCATTTGGATGTTTGAGCCATATTTTTTTTTGTAATATTTCATCTCATTTCATGAAAAAATAGAAAGTTTAAGACAATTTTGTAGTTAGGCCTATGTAACTAGGCCTAAAATTTTCATTTATTTGAACCCAACTCAACCCAAATGAATTGCTAACCAACCCAAATTGTGCAGGTTGAGTTGGGTTGATCTGGTTTCTTGGATCATCAGGCTTTTTGAACACTTCTATTTTTAAATATCCAATTTTAGTTCTTACATTTTCAATAAATCTTAAATGTAAGTTCTAACGCTAGTTTATTATTGATTGTTTTGACAAAATTTATCATCTATTAACATTTTCACTATAAATTTTAAAAATACATCCATATATTGTATTTTATTACATGATAATTATTATTACTATTTAACCAACTTTGATAAAAATCAATTTTGAGGGTCTAACTTATGTTGCCTATAATGGTCTATTTAGATTATATGTATTTGATTTAAAATCAACTTTTCATACTTATTGTTGTAGTTAAATTGTCTCAAGTTTAATTTTTTTTAGATTAAATTTCAAATTTAGTATCTATAGTTTGAAAAAAGTTAGAATTTAATCCGTAAAATTCAAAATTAGAATTTAGTTTTTATGGTTTGATAAAATTCTCATAAATAGTACTTAAAGTAGTGATTAAATTCTAATTTTTTTCTAAACCATGGGACTAAATTCTAATTTTCTCTAAATCTTAAGGAGTAAATTCAAACTCTTAAAATCATAGGGATTAAATTCTATTTTTTTTCAAACTATAGGGACCAAATTCATAATGTAATTATTTTTTATTTAATTGTAATGGATCCAATAATTTAAATAACATTATAATTGATGAGTGATTTGGTGCAATCACCATTATGTATGCAGCTATTATACTAATGGAGTTATAATAGTTGATGATGATTTTTTTGTATTAGACTCAAAAAAGATGATTTTTGCAATTTCCCTTAGATTCTAAAACCAGAAAAAAAAAAAAAATTAAGACAGGCAATTAATATTATATATATGGGAGTCGAAACTCGAAATCACTTTCTTTATATATAGGAAATGATGTAGAGAGCTTAGTCTTTAGGTAGTAAATACAACTCCAACAAGTTCCCATATACAATCAATACAACTTTTTTCTTTTTTCTTTTTTCTTTTTTTTTAAAAAAAAGATAATAACAAGAGAGAGAGAGGGAAAATAAAAAATAAAAAACTTGCATTATCATTTAGCATTGAGTGAGTATGGTGAAATTGCAAAAAAGAAAAAAAGAAAATTAATTAGAATTTGGAAAACCAGCTGCCAATTTTGCCCTCAACTCCTTCCTCAAGATCTTGCCTGAGGGCGATTTGGGAATTGCATCTATGAAAAATACCCGGTTGATTCTTTTGTAGAAAACCACCTGCATTGTATCATTCAAAAATTTCAAAATTGACATGACTTTCCATCCAAAATCTTTGGAGAGAACAATTATTTTAAATGACAAAATTGTTTAACAAAAGTTCATTTTATCATATTTAAAAACAACTATATATATATTTTTTTAATGAAAATCTAATACAATAATAACTTTCTAAATGTGTGTTATGTTTTTTTAGTTGCTAATACATTTAATATTGCATATTAAAGTCAAACACTAGCTCAACTATATATATATATATATATATATATATATATATATATTTTTTTTTTTTCAAATTTAGAAGGATAAAGTAAATTAAATTAAAATTTTGAAAGGGGTTAAAAGGTACCTGTTTTGAAACAAATAGTTTAATTTCATCCTCAGTGACTTCAGAATTCTTCAATTTCACGACGAACGCAACGGGAACCTCTCCAGCTTGTTCATCTTTCATTCTGCAATTCAATTCACACAATAAAGAATTAACCCAACAATCATCATCCACCATTTTTCACTTACCGGAATCCAAATTCAATTCATTCTTACGGTACGACGGCCGCATCCGAAATCACCGGATGAGTCAGCAACAGAGCTTCAAGTTCCGCCGGAGCCACTTGAAATCCCTTGTACTTTATCAGTTCCTTCAACCGATCCACGATGAACAGCTCGTCATCGTCGTCGATGAATCCGATGTCACCGGTGTGCAACCACCCGTCCTTGTCGATTGTCGCCGCCGTCGCCTCCGGATTGTTCAGATACCCTTTCATGATTTGATCGCCTCTGATGCAGATCTCTCCCGGCGTGTTTCGAGGCAATGAGCTGCCGGTTTCGGTGTCGACGATCTTCATCTCGGCGTTTCTCACGACGGTGCCACAGGCGCCGGGTTTCATCGGAAATGGCTCCTTTGCAAATGCTAATCCCATTGTTAGGACTGGACCCGCCTCCGTCATTCCGTATCCCTACAATCAACGCAATTTTTCTCTCAATCAATCTTCACGATCCAACGACTACCATTATGCCTCGTCGAAAATATATTTGTCTAAACATTAATTTAAAGTTTTAATGGCATGTTTGGGAATTATTAAATTTGTAATATTACTTTTATTATTTTTAAAATTATTTCGAAATATGTATTTTAATGATATGAAATGTGTAAAATCAAATATTAAATTTATTTTGTGTGATTAAACTAGAAGTTTAAAGTAGTTTTGAATCTCAAAAAAGTAATTTTAACAATTTTAGAATTATCTACAAATATGTCATAAAGTTGTCTCAAACTTTAATTTTGTGCCTAAAAAGTCTATTGAACTCTAAAATTGTTTAGTACGTTTATTTTGCATGGTAATGATTTCATCTTTCTATTTTTGTTTCCTCTTTATTTATCAACAATAGTTTTCACATTTATTTAAATTCCTAATCAAATTTTATAAAAAAACAAATTTTTGAAAACTCTCAGTTAGTTTTCAAAATGCATTAATTTTAAAATATTAGTAAAAGGTGAATTACATAACATCAAATTTATGAACGTATGATAGGAGCATTGTTTATAAGTTTAGTTTTTTTTAAAAAAAAAATTATTTTTATTTAATAAGCCTCTTACCAATTTTTTTTTAAAAATTATAACATATATTAGAAATAAAATTGAATTTCGTATTTAAGAAAACTGATGTAACCTTTCCATCTCTTTATCTGAATAGATTCGTAAATTTAATTTTAGTATAGCTCAATGTCGGAGGTTAAAATCTCTACGCTTACATGTTTAGTTTAAAAAAGAAAAAGAAAAAAAAAAATCTGCTTTAAAAATGTGTTCAAACTTCGAATCGTTCTTCCCATTTTTGATTCAAGCTTTTAGGTGAAAACTTTACCAACTTGATTTTGCTTTTTGTTGTTTAGGTGGACGAAACCTTTCATGCACTAATTAGGAAATGGAAAAATTAAATTAAATTAAATTAAAATTTATGTTCAAAAATTGAAAATTCAATTAATTAATTTTTTCGTAACTAAAAATTACACGCCGACTTCTCTTCTGCTTTGACTTGGCTGTCATTCCGTCTCGACTTAAAAGACTTTCTTCACATCATCAATTTTGACTAATTATCCATAAAAAATAATAAAAAAATTATTTTAAATGATAAAACTGTTGAAAATATTTATAAATAATTATAAAATATCACAATCTTTCTGCAATAAGATAGAGTAAAACTTTGTTATATTTTATAAATATTTTAGTTCTTTTTTCTATATTTAAAAATATTTATATTTTTTTTAACTAAATACCCATTTAAAAGGATCTTAATTATTAATTACGTCAAAGAATTAATTACATTTAATAAAAACTAATCTTTGTGATTAAATCTTAGTATTCTTTAATAAAATAAATATATGTCAATTACCATTAAGTTATACAATTAATTATCAAATATTAAGTTACAAGATTTTTAACTTTAAAAAATACTAATAAACCTCAAACATTCAACTTATAAAAGTGACTCAAACTTGTGTGTAACCATCCAATTTTTGTATGCTCATTTCAACACACATAGAATTTGTTTTTTAAAAAAGTATATTAATAAAAAGGAATAAGAAATTTGTTATATGACTAATTATGATTGGAGAACTAAGTAGCTACACAAAACTAGAGCAGCTTAGAATGTGATCGAAGTTTTTTTTTTTTTCTTTTTAAAAATATAAAAACTTTTGATTTTGTCATTTAACTTATTGAATCTTTTGAAAAATTAGAGAAGTTGAAAGTATTATTCGACACCAAATTTAGTTATTTTAAAGATGAAATTAGGTATTCGTCCTAAACTTTGAAATTTGTTCAATTTTAATATTTATATTTTTAATTGTCCAATTTTAGTTCTTATACTTTTAATAAATCTTAAATTTAATCCTTCAAGAATAATTTTTAAAATAATTTTTACCGAAATTAGTTAAATAATAACAATAATATTTATGCAAGAAAATATAATATGTAAATATGTTTTCAAAATTTATAGTAAATATGTTAAAAGATGATAATTTAAAAAAAAAAAATCAACAACAAATTGACTAAATTTTAGATTTATTGAAAACATAAACACTAAAATTGAATAATCAAAAGTAAATAATTAGAATTAAATAAGTATAGAAACCAAAATGATATTTTAACATTTTAAATAAATTTGCTTAAATTTCCAAAAATTTAACAAATAAGAGACAAAATTTGGAGGCTAAATTATAAAAGATACTGTTGAACTTTACAAATAATATCCTTAAACTTTAAGAAATTAAAAAGATACTCTTATTACTAGTTTTTGAATAAAAATCATTTAATGTTTTTGTTTAAAAACACCCTCTTGAACTTTTAAAATTTTGAAAAATACCCTTCACCTTATATCATAGTATTTATAGGGTTTTGAATTTGTTGTACGATACCTGGCCGAGCACGGCCTTAGGAAACTTGGCTCTCACGGTATCTTCAAGCTCCTTCCCAAGCGGAGCGCCGCCGCATTTGATCACTCTGATGGACGAAAGATCATACTTCTCAAGGTCCGGCGACTTGGCAATAGCCAAAACAATGGGCGGCACAATCGGCGCAATGGACACTCTGTATCTCTCCACCAATTGCAAAAGCAAACCGATCTCAAATTTGGGCATAATCAAAATCGCAGCGCCGGCTCGTAATCCACAGAGCAAAACCGAATTAAGCGAATAAATATGAAACAACGGCAAAACACACAAAATCACATCCTCATTTCCATAATACAGATTCGGATTTTCTCCATCCACTTGCTGAGCCACACTCGTAACCAAACTTTTATGTGTAAGCATCACGCCTTTCGGTAATCCGGTTGTTCCAGAGGAATACGGCAGCGCAACGACGTCGTCTGGGTCGATTTCCACCCTCGGAGTATCTCCTTCCTCGGCTTTGATTAGATCGCCGAACCATAAACAACCCTCTGGTGGAGAATCGACCGTCATGATTTTAACGTCGGCTAATTCCTCTGTTATTTCCTTTACTTTTTCGTAATACGACGATTGCGTTACGATTAATTTTGATTTTGATCCTTTTGCTTGCTTTGCGATTTCCGCTGCTGTGAAGAAAGGATTCGCCGCCGTCATAATTGCGCCGAGGTATGACGCGCCGAGGAAAGCGAAGACGAATTCCGGTGAATTTGGGAGGAGCAGCATAATTACATCGCCTTTTGTAATGCCGAGCTTGTTTAATCCGGCGGCGACTTTGCGTGAGGACAGATCGACGTCGTTGTAGGTGAAGGATTCGCCGGTGACGCCGTTGATTAGACAAGTCCGGTCGCCGATTTTGGCGGCGTTTTCGTGTAGGCAGTAAGAGTGAAGAGGAAGGTGCTTTGGGATGTAGATGTCCGGCAGTTTTGACCGGAAAATGACGTCATTCTGAACTGTTTCAATGCCCATTTCAATGCCGAATTGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAACAGATAAAACTTTAAATTTTTTTTTTTCCCTTTTTGAAGATTCTATTGTTCTTCCGAGTTCGAAGAGGGGAAATTTTAGTTGAAGATA AGGAATGGAAGGCAAAAAATGAAGATAAATTGAGTGAGTGAGTGAGGTAAAAGATCTACCTATCCATCTCCAATGGCGGATATTTCGAGATCACTCGGGTCCAGATGGGTCGTATTCTTCTCCAATCTCTTCTTACTCAGCACCCATTTCTCCCTTTCTCAGCTCAGAATGTTCTCTGATTTCTCTTCTTTCATCTTACTCCCTTCTCTCTAACCTCTTCTCTTTTTTCTTTTTCTTTTTCTTTTCATTTTTTGCTTCTGGGGGTTCTCCATTCTTCTTCCTCTTTTTCTCAACCTCCCCATGACTGTGGCTCTACCTATGGCTTCTTGGACTTCTGGGCTTCACTCCACTTCCACTTCTTGGACCCTCAAATCTTCTGAAACCCGTTTTGCTAATGCCCTTTTCACCAAGACCTCCATTCCTTTTCAGACCAAATGTTTCTGCCTACTCCAAAGGGGAAGATGGTCTTCTTCCAACATGAAGAGTATTCCACGAGCATCATCAGCTACAGCTGTTGAGGTACTAAAGGATGGAAGTAACGGTGATACTGATACAATTCCAACGCCCATAGTTATAATAGACCAGGACTCTGATCAAGATGCAACTGTGGTGGAGATAACCTTTGGCGATCGGCTTGGAGCTCTCCTTGACACGATGAATGCTCTGAAAAACCTGGGGCTGAATGTTGTCAAGGCGAATGTCTTTTTGGATTCTTCTGGAAAACACAACAGATTTTCCATCACAAAAGCAGATACTGGAAGAAAGGTAGATGATCCAGAGTTGCTCGAGGCAATTCGTCTGACAATTATAAATAACTTGATTCAGTATCATCCGGAATCGAGTGCTCAGTTAGCAATGGGAGCAGCCTTTGGAGTTGTGCCACCGCAACAACAGGTTGATGTGGACATTGCTACCCACATCAACATACAAGATGACGGTCCAGACCGAAGCTTACTGTATGTGGAGACAGCTGATCGACCAGGATTATTGGTAGATCTTGTAAAGATTATCACCGACATAAATGTCGCAGTTGAATCTGGAGAATTCGACACCGAGGGATTGTTGGCTAAGGCCAAGTTTCATGTCAACTATAGGGGCAAAGCCCTCATCAAACCTCTTCAGCAGGTTATTTCAAATAGTTTGCGATATTTCTTGAGGCGACCTACGACAGAGGAGGCGAGTTTTTGAGCCGAGTGAGGTAAACCAAAACCAGGATAATTAGACTACAAGAAATATTGTGCATTCATGGTGTACCATTTACGCCCTGTTGTTGTTGTAACATATCTTACCATGCTCATTCATACTAGATTTGAACCTCACCATTAACGTTATGAATTTGCAAGAAATGTTCCAGTTTGATGTTCAATACCCGACCATGTCACGATGGTTTGATACTTTGACAGAACATATTGCAAGATAAATCTTAAATTTTCTGTGACTTCAGAATTCTTCAATTTCACGACGAACGCAACGGGAACCTCTCCAGCTTGTTCATCTTTCATTGGTACGACGGCCGCATCCGAAATCACCGGATGAGTCAGCAACAGAGCTTCAAGTTCCGCCGGAGCCACTTGAAATCCCTTGTACTTTATCAGTTCCTTCAACCGATCCACGATGAACAGCTCGTCATCGTCGTCGATGAATCCGATGTCACCGGTGTGCAACCACCCGTCCTTGTCGATTGTCGCCGCCGTCGCCTCCGGATTGTTCAGATACCCTTTCATGATTTGATCGCCTCTGATGCAGATCTCTCCCGGCGTGTTTCGAGGCAATGAGCTGCCGGTTTCGGTGTCGACGATCTTCATCTCGGCGTTTCTCACGACGGTGCCACAGGCGCCGGGTTTCATCGGAAATGGCTCCTTTGCAAATGCTAATCCCATTGTTAGGACTGGACCCGCCTCCGTCATTCCGTATCCCTGGCCGAGCACGGCCTTAGGAAACTTGGCTCTCACGGTATCTTCAAGCTCCTTCCCAAGCGGAGCGCCGCCGCATTTGATCACTCTGATGGACGAAAGATCATACTTCTCAAGGTCCGGCGACTTGGCAATAGCCAAAACAATGGGCGGCACAATCGGCGCAATGGACACTCTGTATCTCTCCACCAATTGCAAAAGCAAACCGATCTCAAATTTGGGCATAATCAAAATCGCAGCGCCGGCTCGTAATCCACAGAGCAAAACCGAATTAAGCGAATAAATATGAAACAACGGCAAAACACACAAAATCACATCCTCATTTCCATAATACAGATTCGGATTTTCTCCATCCACTTGCTGAGCCACACTCGTAACCAAACTTTTATGTGTAAGCATCACGCCTTTCGGTAATCCGGTTGTTCCAGAGGAATACGGCAGCGCAACGACGTCGTCTGGGTCGATTTCCACCCTCGGAGTATCTCCTTCCTCGGCTTTGATTAGATCGCCGAACCATAAACAACCCTCTGGTGGAGAATCGACCGTCATGATTTTAACGTCGGCTAATTCCTCTGTTATTTCCTTTACTTTTTCGTAATACGACGATTGCGTTACGATTAATTTTGATTTTGATCCTTTTGCTTGCTTTGCGATTTCCGCTGCTGTGAAGAAAGGATTCGCCGCCGTCATAATTGCGCCGAGGTATGACGCGCCGAGGAAAGCGAAGACGAATTCCGGTGAATTTGGGAGGAGCAGCATAATTACATCGCCTTTTGTAATGCCGAGCTTGTTTAATCCGGCGGCGACTTTGCGTGAGGACAGATCGACGTCGTTGTAGGTGAAGGATTCGCCGGTGACGCCGTTGATTAGACAAGTCCGGTCGCCGATTTTGGCGGCGTTTTCGTGTAGGCAGTAAGAGTGAAGAGGAAGGTGCTTTGGGATGTAGATGTCCGGCAGTTTTGACCGGAAAATGACGTCATTCTGAACTGTTTCAATGCCCATTTCAATGCCGAATTGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAAGAACAGATAAAACTTTAAATTTTTTTTTTTCCCTTTTTGAAGATTCTATTGTTCTTCCGAGTTCGAAGAGGGGAAATTTTAGTTGAAGATA ATGACTGTGGCTCTACCTATGGCTTCTTGGACTTCTGGGCTTCACTCCACTTCCACTTCTTGGACCCTCAAATCTTCTGAAACCCGTTTTGCTAATGCCCTTTTCACCAAGACCTCCATTCCTTTTCAGACCAAATGTTTCTGCCTACTCCAAAGGGGAAGATGGTCTTCTTCCAACATGAAGAGTATTCCACGAGCATCATCAGCTACAGCTGTTGAGGTACTAAAGGATGGAAGTAACGGTGATACTGATACAATTCCAACGCCCATAGTTATAATAGACCAGGACTCTGATCAAGATGCAACTGTGGTGGAGATAACCTTTGGCGATCGGCTTGGAGCTCTCCTTGACACGATGAATGCTCTGAAAAACCTGGGGCTGAATGTTGTCAAGGCGAATGTCTTTTTGGATTCTTCTGGAAAACACAACAGATTTTCCATCACAAAAGCAGATACTGGAAGAAAGGTAGATGATCCAGAGTTGCTCGAGGCAATTCGTCTGACAATTATAAATAACTTGATTCAGTATCATCCGGAATCGAGTGCTCAGTTAGCAATGGGAGCAGCCTTTGGAGTTGTGCCACCGCAACAACAGGTTGATGTGGACATTGCTACCCACATCAACATACAAGATGACGGTCCAGACCGAAGCTTACTGTATGTGGAGACAGCTGATCGACCAGGATTATTGGTAGATCTTGTAAAGATTATCACCGACATAAATGTCGCAGTTGAATCTGGAGAATTCGACACCGAGGGATTGTTGGCTAAGGCCAAGTTTCATGTCAACTATAGGGGCAAAGCCCTCATCAAACCTCTTCAGCAGGTTATTTCAAATAGTTTGCGATATTTCTTGAGGCGACCTACGACAGAGGAGGCGAGTTTTTGA MTVALPMASWTSGLHSTSTSWTLKSSETRFANALFTKTSIPFQTKCFCLLQRGRWSSSNMKSIPRASSATAVEVLKDGSNGDTDTIPTPIVIIDQDSDQDATVVEITFGDRLGALLDTMNALKNLGLNVVKANVFLDSSGKHNRFSITKADTGRKVDDPELLEAIRLTIINNLIQYHPESSAQLAMGAAFGVVPPQQQVDVDIATHINIQDDGPDRSLLYVETADRPGLLVDLVKIITDINVAVESGEFDTEGLLAKAKFHVNYRGKALIKPLQQVISNSLRYFLRRPTTEEASF Homology
BLAST of CmUC10G194110 vs. NCBI nr
Match: XP_038904389.1 (ACT domain-containing protein ACR11 [Benincasa hispida]) HSP 1 Score: 538.1 bits (1385), Expect = 4.7e-149 Identity = 279/295 (94.58%), Postives = 286/295 (96.95%), Query Frame = 0
BLAST of CmUC10G194110 vs. NCBI nr
Match: XP_008462956.1 (PREDICTED: ACT domain-containing protein ACR11 [Cucumis melo] >TYK21304.1 ACT domain-containing protein ACR11 [Cucumis melo var. makuwa]) HSP 1 Score: 537.0 bits (1382), Expect = 1.1e-148 Identity = 280/295 (94.92%), Postives = 284/295 (96.27%), Query Frame = 0
BLAST of CmUC10G194110 vs. NCBI nr
Match: XP_031738404.1 (ACT domain-containing protein ACR11 isoform X1 [Cucumis sativus]) HSP 1 Score: 536.6 bits (1381), Expect = 1.4e-148 Identity = 278/295 (94.24%), Postives = 284/295 (96.27%), Query Frame = 0
BLAST of CmUC10G194110 vs. NCBI nr
Match: XP_004137645.1 (ACT domain-containing protein ACR11 isoform X2 [Cucumis sativus] >KGN58640.1 hypothetical protein Csa_001946 [Cucumis sativus]) HSP 1 Score: 526.2 bits (1354), Expect = 1.9e-145 Identity = 275/295 (93.22%), Postives = 281/295 (95.25%), Query Frame = 0
BLAST of CmUC10G194110 vs. NCBI nr
Match: XP_022998472.1 (ACT domain-containing protein ACR11-like [Cucurbita maxima]) HSP 1 Score: 513.1 bits (1320), Expect = 1.6e-141 Identity = 264/295 (89.49%), Postives = 280/295 (94.92%), Query Frame = 0
BLAST of CmUC10G194110 vs. ExPASy Swiss-Prot
Match: Q9FZ47 (ACT domain-containing protein ACR11 OS=Arabidopsis thaliana OX=3702 GN=ACR11 PE=1 SV=1) HSP 1 Score: 375.9 bits (964), Expect = 4.1e-103 Identity = 186/232 (80.17%), Postives = 220/232 (94.83%), Query Frame = 0
BLAST of CmUC10G194110 vs. ExPASy Swiss-Prot
Match: P83643 (ACT domain-containing protein DS12, chloroplastic OS=Oryza sativa subsp. indica OX=39946 GN=OsI_027381 PE=1 SV=2) HSP 1 Score: 355.5 bits (911), Expect = 5.7e-97 Identity = 182/239 (76.15%), Postives = 208/239 (87.03%), Query Frame = 0
BLAST of CmUC10G194110 vs. ExPASy Swiss-Prot
Match: Q0J709 (ACT domain-containing protein DS12, chloroplastic OS=Oryza sativa subsp. japonica OX=39947 GN=Os08g0242700 PE=4 SV=2) HSP 1 Score: 355.5 bits (911), Expect = 5.7e-97 Identity = 182/239 (76.15%), Postives = 208/239 (87.03%), Query Frame = 0
BLAST of CmUC10G194110 vs. ExPASy Swiss-Prot
Match: Q9LZ23 (ACT domain-containing protein ACR12 OS=Arabidopsis thaliana OX=3702 GN=ACR12 PE=2 SV=1) HSP 1 Score: 282.3 bits (721), Expect = 6.1e-75 Identity = 133/217 (61.29%), Postives = 179/217 (82.49%), Query Frame = 0
BLAST of CmUC10G194110 vs. ExPASy Swiss-Prot
Match: Q9SGA0 (ACT domain-containing protein ACR6 OS=Arabidopsis thaliana OX=3702 GN=ACR6 PE=1 SV=1) HSP 1 Score: 63.9 bits (154), Expect = 3.4e-09 Identity = 48/188 (25.53%), Postives = 89/188 (47.34%), Query Frame = 0
BLAST of CmUC10G194110 vs. ExPASy TrEMBL
Match: A0A5D3DCJ2 (ACT domain-containing protein ACR11 OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold1199G00120 PE=4 SV=1) HSP 1 Score: 537.0 bits (1382), Expect = 5.1e-149 Identity = 280/295 (94.92%), Postives = 284/295 (96.27%), Query Frame = 0
BLAST of CmUC10G194110 vs. ExPASy TrEMBL
Match: A0A1S3CI34 (ACT domain-containing protein ACR11 OS=Cucumis melo OX=3656 GN=LOC103501217 PE=4 SV=1) HSP 1 Score: 537.0 bits (1382), Expect = 5.1e-149 Identity = 280/295 (94.92%), Postives = 284/295 (96.27%), Query Frame = 0
BLAST of CmUC10G194110 vs. ExPASy TrEMBL
Match: A0A0A0L9L1 (ACT domain-containing protein OS=Cucumis sativus OX=3659 GN=Csa_3G710190 PE=4 SV=1) HSP 1 Score: 526.2 bits (1354), Expect = 9.0e-146 Identity = 275/295 (93.22%), Postives = 281/295 (95.25%), Query Frame = 0
BLAST of CmUC10G194110 vs. ExPASy TrEMBL
Match: A0A6J1K838 (ACT domain-containing protein ACR11-like OS=Cucurbita maxima OX=3661 GN=LOC111493096 PE=4 SV=1) HSP 1 Score: 513.1 bits (1320), Expect = 7.9e-142 Identity = 264/295 (89.49%), Postives = 280/295 (94.92%), Query Frame = 0
BLAST of CmUC10G194110 vs. ExPASy TrEMBL
Match: A0A6J1DIW5 (ACT domain-containing protein ACR11-like isoform X1 OS=Momordica charantia OX=3673 GN=LOC111020942 PE=4 SV=1) HSP 1 Score: 509.6 bits (1311), Expect = 8.7e-141 Identity = 267/299 (89.30%), Postives = 281/299 (93.98%), Query Frame = 0
BLAST of CmUC10G194110 vs. TAIR 10
Match: AT1G16880.1 (uridylyltransferase-related ) HSP 1 Score: 375.9 bits (964), Expect = 2.9e-104 Identity = 186/232 (80.17%), Postives = 220/232 (94.83%), Query Frame = 0
BLAST of CmUC10G194110 vs. TAIR 10
Match: AT5G04740.1 (ACT domain-containing protein ) HSP 1 Score: 282.3 bits (721), Expect = 4.4e-76 Identity = 133/217 (61.29%), Postives = 179/217 (82.49%), Query Frame = 0
BLAST of CmUC10G194110 vs. TAIR 10
Match: AT1G16880.2 (uridylyltransferase-related ) HSP 1 Score: 213.0 bits (541), Expect = 3.2e-55 Identity = 107/136 (78.68%), Postives = 127/136 (93.38%), Query Frame = 0
BLAST of CmUC10G194110 vs. TAIR 10
Match: AT5G04740.2 (ACT domain-containing protein ) HSP 1 Score: 157.1 bits (396), Expect = 2.1e-38 Identity = 71/119 (59.66%), Postives = 98/119 (82.35%), Query Frame = 0
BLAST of CmUC10G194110 vs. TAIR 10
Match: AT3G01990.1 (ACT domain repeat 6 ) HSP 1 Score: 63.9 bits (154), Expect = 2.4e-10 Identity = 48/188 (25.53%), Postives = 89/188 (47.34%), 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:
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