
CmUC02G041850 (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.ATGATTTTCATCCGTTTGAATTGTGTTCGCATTTCGTTCAATATCAGTGAAGCAGGTTTATTTATCATTACGTTTTTGCAAGTTTCATCCCTCATTTCATTAAACACTTAGGTTGTGTGAATTACAGGAGCTATGGATCGGATGAGACCAGTATATACTCGGCAGAAAAGTAACACTGGCACCCCACTGGCTCCAGCGTCGCCATTGGTGTCCCCGTTTCCCCACCATAACCGATCAGGTTCAACTGGAGTGGCAAATGCCAAGAGGGGACAGAACAATGCAGCGAAAGCTGCAGCGCAAAGGCTTGCTAAAGTGATGGCAAGTTCGGCTGATGATGAGGATGAAGAAGATGATCTTTCTTTTGATTACAGTTTGCCGAGTGGCACAGGAAGCATTGGACTAGCAAGTGGAAGATCAGTCAGAGCCCGCTCTCCTATGGTAACGTCGGTGTTAGTTACTAAATATTTGTTCAGGTTTGCGTGACATTGGGTTTGTGAATATAAATATGACCCATTGTGCTTATGTGTGTGATAGTTCTGGCATGAAGGTTAGTGGCCTCGACTGAGAATATGTTAGTTATTAATTTGGAATTTTTCTCCTTTCCAAACAGGAAAGCTATTTTGCCCTGCTTTACAATGGGCAAAACACAGAAATGTAAAGCCCTAATAGTAGTAAACACTTCACAACATCGCCCTAAGAAGGGACAAGTGCCATCTTATTTTTTATGCCAATTTATTGCACACATTTTTGTTTGTCAAAATTCGAGCATGGAAACAATTTAGTTCAAGTCAACTCATAAAACCAATGAACTCTTTGAATTGATAAAGAGGGATTGTTTCTCGTCTGAATATGATCTAATTCTTATTTTGTAGTATTTTGATTATTCATAAACTCCATTACTCGACTAATATTTTAGTTCTAAAAGTCAATTCATAATCTGGAGATCTTCTTGAGCTCTTAGATTGTGCAATTTGCCTATGTTTTTCTTTTACGACAGTTTCCCATTTGCACTATTCTATATGATCATTTTAGCCATCTGTGTTAGACTATTAATAAATGTTATTTCATGTTTTACTTGCAAGACTAATACATGCTTAAATTTTAAATATAGCAATCTGTTCGAACTATTCAAGAACAATCTACTTCAGGACATGTGGGATCGGGCGGTCGAGCATCACAAACTGTGAACCCTACAGAGCAACCAATGTCGGGTCGTTCAACACTAGGACATCGACCAGCTCATTCTGATACTAATGTCGAACAGCCACCCATTACTCGCACTTCAACAGCTAGTCGGTCATCCCAGCTGGTCAACTCCATAGAACAACCTCCATCTACTCGTACATCATCAATTAGTCGTCCAAATTTAGGAGTCAAGACAGTACCATTGGTACCTTCTTCTGTATCCATATCACTTAAACCAACATTGCCAGTAACTCCCAAAGAGAGTCAATCTGATACTAGAACATCACTTAGACCAACCTTGCCGGTAACTCCAAAAGAGGGTCAATTTGATACTAGAACATCACATAGATCAACCTTGCCTGTAACTCCAAAAGAGGGTCAAGTTGATATCAAAACATCACTTAGACCATCCTTGCCCGTAACCCCAAAAGAGGGTCAGTTTGATGCTAAAATATCACTTAGACCAAACTTTCCAGTAACTCCAACGGAGGGTCAGTTAGACACCAAAAGAGATAAGAGGTATTAGACAACTTATTTCTTATGTCATTATCACCACTATTCCTTTTTTTGCTACTATGTTAAAGTCAAACAGCGAAGTAACATTCTTATGGATAATTATCCCCCTACAACTTATTGTTAGATCACCGATTAAAATATGTAATCATCATGAGGACCTAATGCAAAGAGTTTATGTTGATAGTATTTGTATTAAGAAAGCCCTATGATGATTGTTTACTCCAGGCACTGTGGCTTGTTTGGTTACCATAACATGTCGTACTTGTTATGAGTGTTTAGGAGTTTGTCGCCTTGTAAATGTTTTAAAAAAAATTAAGAACTCTTATCTGGGAGTAGAAGCAATGCATCTTGCTATTATCAGAGAAATTGATTTCTATTACCTTCTAGTACGTGCTAAATTTTCATAGATTTAATTTTGCCACTAATATTTGCTATTCGATGATTGTGTTTCTCCCTTGAACAGGCTATCTTTGGATATGGGAAGCATGAACTTCAGAGAAACTAGCAACCAGCCTTCCAGTTCTGCTTTACAGGATGAGGTATAGGGTACCTTTACAATCTATTTGATACCTGAGGTTGATCTTATTAAATTCATAAAAGATCAACATGTCAATTGACTATCAACAACACTGATTTCATCTTCTTCTTTCTTCTCATTTATTTATTTTGATTTTGCAACGTCCAGTCAGAAAAATGTCTTTACCTGACCACTTTCATATGTTTCCCTGCTGACCCAGTTGGTTGGCTGGAAGAATCTAAATAATAGACTTGCTTTCACGTGAATGTATTTGGCCATTCAATTCTAGAGGTCTACTTAGGGTCTAGCCTTTTTCTTGAAAGGAATTAAATTTTGTGTTCTTGTGCTGAACTTTTATTTTATTATTAATTTAAGATCAAGTTAAAGTGCCTAGTTCCAACTTCTTTGACTGAATTTAGATATTAGGATACATGTATAAAGATTTGGCTCTTTTAAGATTATGCTGATGGTGGTGATGATATTGGTGCAGCTTGATATGGTACAGGAGGAAAATGAGAGTTTACTTGAAAAGGTGATGCCGACAACTTTTCTGGTTTTTCTTGTGTGACAGTTATTGGCCGGTTCTTATAGAACTATTGTGTCCCAAGTTCAACAAGAACAATTTATACCTGTAATGGAACATTCTTCTTTTATAAAAGGCCCTATAAATTAAGAGTTCATTCGTTTTTTATATGGAAACTAGTTCAATGCCCATATTCCTTCTAAATTACTTAGTTCAGTCTGCCTAATCAAATTGAAGCACAATACTAACTCCAGATAATGGGATAACATTGATGTAAAAGTGGCTTTTCATTTGTATCATTTGGCATATATCTAATATGTGCCTCCCCAGCTTCGACTTGCAGAAGAAAGATGTGAGGAAGCAGAGGCTAGAGCCCGACAGCTTGAGAGTCAGGTAAAAGCAATTAGTTGGATTATAGTCTTCCACTATTTAGAATTGTTGTTTCACTTAAAAAACGTTTCTCATGACTATGGGAAAATTACCTTTTAGTCTCTCATTTTTCAGGAACGCTCTTTAACATATCTGATAACTTCCATTTACTCTTGTCTAATTCTCTTAATCATTTGTGATGCCTTCGGACAATCTATAGAATAATTCATGCCATCCTGTGTTAGTAGTTCCCTTTTCCCCTTATCTTCTGGTTGTCTTGGTTAGTATTTATAGTGTTAGTAGTTCATTGGAATTATATTTTCATTTCATATGATGTATGTTTCCCGCTATTAGCTAGGATTCTTTTAATGGTTTATGGAACAAGAAAGTCATCTATTTAAATGTTTTTAACGAGTTTCTTTCAGCTGAGACCCAGATAGAAAATTTTTGGAGTAGGTATCTTTCTGAGGAAGCTAATCAGATTGGTTCTTTTCATTTTTAACAGCCTTGTTGCATAAGTATGCTATAGTCAATTTTGTGCTGCACTTCATAGTTGCAGCATAGGCGTTGGTGTATCAGTACAGAAAATTCATATACGTTATAGTGATGGGAACATCTTAACATTGTCAAGTAATTATCAATCCCATCCAACGTACACATTTTTGAAGTATTCAAATGTGGTTTTTAGGTTGCAATGCTTGGAGAAGGTGTGACGCTGGAAGCCCGTCTTTTGAGCAGGCTAGCTCCTGACTTCTATTTCCAGTTTCGATTTGCATGCCACTTCAGTTTTCCTGTGATCTAACGATTCATTATTGTTTTGCTTCCAGGAAGGAGGCAGCTTTGCAGCAGAGAGAGGTTCGTTCTACTAAAACTGGGAATGTTATCAAATTCGTTTTTACTGCATAATTTCAATATATGGGTAAATATTCAGCTGCTTCCATGGGAATGGAGACGGACTATCAGGTTACTATCCCGATATCCTTTTAAGTGGATAGAGTGGATCCGGGAGATGTCACTGCTGAAGTCTCCTACATCCATTATTCTAAGTGCATCTATTATGCCAGTGTGATTCCCATTACCATTCCACACACTCAAGCTAGGATGTCCCAAAAGTACGTAACTTAGACCCCAGGGAACCATGATACATCAAGGATCAATGATAGTTGATAATGTGGATGCTTGTTTGCTGCCAGTGCTGCCTATTCCTGAAACTGTTTGATAATTTAAAATAAAGGAAATTTATTTAAAAGATCGAATCATCGACCTTTGAGATGGTAATGGGTGTCCTTCCATAGTTCATACAGTGAATGTGTATATTAAGTGTTTCATATAAAGAAACCTCTCCATCTGCCCTCCTGTTCATTCTAGTGTGATCCCCAAAGATTTCTTCCGTGCAGTTTCAGAGCCTTCCCATCGTCTAAAAGCGAAATACCCTGCTTTTGAAGAGCTTGTTGGAAGGGTTCGAAAGAAATGCTACTACTTGAAATGACATCATTTATACAAACTAGAGAACAATCTTTCTATGTGATTAATTTCAGTAATTGACACTGTAAAAGAAAAATTAAGAAGTAAATAAGAAGAGAAATAGCTTGAAAAATAGTCCACGTATTAAGTGTTATAACTTATGATTTTTCTTTCTTGAAGCTAGGACAAACGGGTATCAAGTTGCAGTAACTGTTTAATACTAAGATCATAGAGTTTTGAAGTAAGATCATGATTTGCATTGGAGAAAATAAGATACCTGTAGTGATGTATAACACGTGCTTGAATTAAATTTCCTTGCTGTTCTAGTTTCATAATCATGATTTAACTAACTTGTTAGGTTAAATTATGAGTTTGGTTTTTCTGTCTATTTAATTCTTGTACTTCAAAAATAATTTCAAAAAAGGTCTTTCACTTTTCTAGGTTGTGTCTATAAGTTTCAAGGATGTGTTTAATTTGTGAATGTGTTAACTTCATTAATTTAACGATTATACCATTAAATGTATAAACTTATTTGAAATTAGTTTATCATGTAATCCTTAAATAATGGAGTTAGCAATGGAAATTTATTAGAAACTTTTTTGAGGTGCTAGAACCAAATAAACACAATTTTGAAAGTTTTGCAACTTACTAGAAACTTTTTGAAGTATAGACACAACTTCAAAAGTTTTGTGACCATACTTTGTTACTTACAGAGTCTGGCACTAAAAAAGTAATATATCCTTCTCTTTTGGTGGTTGGTCTATTTATATTTAACAAAGGATTATGTCCTCAACACTAAGAAAGTTGTGTCCATCCGCTCCTTGCAGGCTGCTTTGAGAGTTGCATCACAATCTCACGGGAGCAGAGGTACTCATCATATTGCTGCACTTAAAACTGAAGCAGAGGTATACAGAAGTTGAAACCTGTACAAAAGAAACTAGTACCACTAATATGAGTGTTCTATTAAATTTGACCCGTAAGTATTTTGACTCAGACTGCAAGGGATGAGGCAACATCTGCTTTGGAGCACTTGCACGAAGCTGAGGCTGAGTTGCAGTCGCTTAGGATTATGACCCATAGAATGATACTGACTAAAGAAGAAATGGTCTGCAGTTAAAGTTTCATAGTTACTTCCTTTCTGGTCCTATCATAGGCATACTTGTCTAACATGCGTCTTTCATGCTAGGAAGAGGTTGTTTTGAAGAGGTGTTGGCTTGCTCGATACTGGAGCTTATGCGTCCGTTACGGTGACCTTTTTTTCTCTGGAACTTGCATGGTGCTAGTCTTAATGATGTTTCAAAATTTGCATAAATTACAATATATATACGTAGATCCCATATTTTCTGTTGCAGCATATAATCTGGTCCTAAGAGTGAGGTTAGCAGCATATAATCCTCTTTTCTTTGAAATAAAGCTGCAAGTTGAAAAGATAGATATGGGGCCATTTCTATATCTTGGTACTCATATTTTTTGATGTTAAATGATCAACTATCAGGCAGTTAATGAAATTTAGAAGCCTTTTCAAAGATATTGTTTAAAATATTCCTCAAATAGGTACATGGCTTAAGAATCTGCCATGACTTGATGAGCATGATGATATTAATAAAGCCAGACATTAAGGGGCATCATGGGATGGTTATTCATAGGACTTGCCTAGGATCCCAGTTGGAATAAGCAGCTTCTTTTCAATAGATTTGAATAGGCCTTTGGGCATGTTGAAGTTTTGGATCTGTAATCGATGTCCTTATATGTCAAAATTGTCTGTTCATTTTCCAGACACAGCGGTTCCCAATCCAACTAGAACTATTATTAGCTTTCCGTTGAATAATGAATAATGAATATCTTCTGCCATTTGGCATCTAGAAGATATCAACCATCTCTGGACTAACTTAGCGATTAATAGGTTTATTATTTGTTTCTCTTAATATTATTATTAAAAACTTGGCAGGTATTCATGCTGAGGTAGCTGGAGCAAGATCTGAATACTGGTCATCGTTTACTTCAAGTCCTGTTGAAATTGTTTTCGAAGCAGGAAAGAAAGCGAAAGAGGTGACAGGTAAAACTCTTGTAAAGGGATGGAAATGTTGAAGATATCCCACTCCTTATTCCTATATTTGGTTTTTTTTTTTTTTTTTGGGGGGGGGGGGGGGGGGGTGAATGATATTATGAAATCTTTTAACCTTTATGTTGATCATGTTCATTGATCGTGTTACACTTTTTTTTTTTTTGTCTAAATCTCTATTAGCAATCGATGATTTGGAGGGAAGAGATAATGAACGAGACTTGAATGAATTTTCCAGTGAGGCAAATGTCGAGAGCATGCTTTTAGTGGAGAGAGGTTTACGGGAGCTGGCCACATTGAAGGTTCCAGCTATACTCATACACTTGAGATTCTTGCAATTTTTTTTTAAAATTTTTATTTAATGTCATATTCTAGATTTATACAACAAAACAAAGATTTCCAGGATAGAGAGTCTTCTCTATTCAGTGGACTCCAGGAACTGGTCCTTGTGAAATTAAGAAATAAGTACTAGACATCTACGCTAATGTAGAAAAAATTAATAAAAAAAGCACGAGAATATGTACCACAGAAGCTAAGCAAAAGAGAGAGGGCAGATAAAAACGAAACAAAAAGAACACACTCGGAACATGGCTCACTAAAAATCCATGAAAAAACCCAGCAAAAGAGAGTGGGAGGTTGGAATAACTTTTATGTCGGTTACTTAGTCCTAACAGCAAAGAAAATTTGAAAAGGAGAGAGGAACCAAATCCGAGGCCCTGGGCAGCAACAGATTGGTTCTGTTTTGAGTTCCAGCAGCATCTATTTTGCTCCCTTTTTCTGCAAGGAATAAATATAATATGCCTTTTCTAATGTTTGAACTTACACCATAGTGAATATTGCATGAAATCTCTGACTCTTCACAAACGGAAGCAATTAAACATATTAATATACAAATATTTTTTCTTAAAGTGTATTAACAGCACACCCCGTCATTTGTATTCCAGTTTTTAAACAGTTAAAAATGACGTGTCACTTTGTTCATATTTTGTCTATAATTCTGTGCTTGAAAGGGATGAAATATAATATGCTTTTCTTATGCCTGAATTTGCATAAATTGAATATTTCATGAAATTCATGTGTGTCTAAATCTTCACACATGATAGCAATGGAACATATTAAAATATACTTATTTATATTCTGAAAATGTAAATCAGCACATCCCTGTCATTTGTATTTTGGTTTATTGAAAATGGTGTCACTTTGCTCATATCATTCCCGTAATTCTGTGCTTGTTCATAATGTAGCGAAAATGGTATTTTGGGGGTAACATTAGGGTGAGAGATGCAACTCTCTTGGTTAGCATATTTGTACCGGGAAAGTTTATCACAGTACAAGAGTATCTGTACAGGGAAATAGAGTTTCCTATTGTCTAAGGTTCTTTCATTACCAATCCATATCTGTAAAATGATCAGGCATATAATTATATGTCTGGTCTTGTTTTTCTATCTTTAAGAATGCATCTTTGCACTCTCATGGTTTTTAAACTGGAATTATTTTTATATTACCAGACAATTTAACATGAATATACATGAGTGGAAAAAAATGTTTTTCTGTTATGTTGAGTATTTGAAATTCTAATCGCAAATGTAGTTTTCTTTCTAGTTATGGTTGATTCTGAAAACTGTCACTTGACTCACTTCTACTTGTGGTAGCTTGGTTATTATTATTTATTTTTTAATTCTTATGATTATAAGTTTCTAATGAAATTATTCTGAAGGTAGAGGACGCAGTGGCTCTTGCAATGGCTCGCGATCGACGTGCAAATTTGTTAAAACCAGGTGGGATCAGGAAATCATATGGAAAGAAAACACTATTCAATGTATCAGTCGTCAATTTAAGCATGAGATAAATATTGAGAAGACAACACTCCAATGGACTTAGAACTGCATTTGGGGTTACATGAAGCTATATTGAACTTACTTCCAATCCCTTTTAGTTCTAGAATGTTTATGCCAAAGTTCTAGATACATAATAACTAATTTCATGCATGCTTAATCTTTATTGATACTGGTTAGCATTTCTCTTCACTGATATTCTTACATTGATATGTATGTATATTAGCCTACAGATGTTCGATTTTCCATTAATTAATGCTGTCGTAGACTTATGATATGGGATGTGAGAGTTAATATGTGTAGTCTAACAGTGTTTGCACTTTCTTTTTATTGGGTAGATGAAGCAAAGCTCCCTATTGAAGGACAATTTGAAGCATTTGGTACGTTAACTGAAAACACTTTGCCCTATTTTTTTTTCTAGTTTTTTCTGGTCTAAGTTCGGTTTTTATTTAAGTAATGAGATGACTTGTAGCTTGACTTTGAGTACAACTCATTTAGTTGGTAGGAACTTATGATATTATACACAGGTTTGAAAAATGAAAATCAATATGTTAAGAGACGTGCAAATAAATTTGGTCCTTTCTTCTGTATGTTACACTAGTTTTCAGATTGATATTACTAACAGAAAATTTTCCACAGGTAACTAAGTTGAAGCTCGATCACATAATGCATTACAGGAAGTGTATATATGTTGACTTTATTTCAAAGTAAAGTAAATCACAAGCACAAAAATAGAGAAAATATTTACACCAGATTTACCTTCAGTGTAAGGAGGAAAACCACGAGATAACTCTGAAAAACTCAGTGTAAAATAGGTGACAACAGATTTTTTTCCTAGTCAAAACTTGTGGATACAACAAGTCCCTAATCTTCCTGAATTATTTTGGTTCTTATTGCGACTTTGGCTTCTCTCCTGGTTTTCAGTGATAAGAGTTTATGATTGGCTTGTTTCGTTTTCCCTCTCTCACCCCTTCATTTAGAGAACTACTCTGGACAATACTTACATGAACCTTTCCATCGAATGAGTAACTTCTCAAAGAAACCACCAATAAATGTCCCATGGATACAGCAAGTTCCTGGTCCCCTCAATTATTTTGATTTTCTTGTTGCAACTTTTGCTTCTCCCCTAATTTTCATTTTTGAAAGCTTCTGATTGGCTTGTTGATTTGTCGTTTTCCCTCTCACCTTTTCGTTTGGAAAACTAGTCTTGACAATTACTCACGTTGAGCTTTCCATCAAGGGAGCAACTACTCAAAGAAACCACCAACGTTTCATTAATAACACCCTTTTTAGCCAATTGTTTTAATGGATCGTCCTGGTGCCATCTTGGTTGGGATTGATACCAAGACCAAAACAAAAAAAATTTAACTTCTTTTTATGGTACGTTTTAACCATCAATTTTTTGCTTTTCCGATAACAACTTTGGCCCAGACAACGACTGGAAATTATTAAGAAACTGATACTTGATAAGAAACTGAATCATCTCTACTCTTCCATGAAAGAATGGTATATGTTATTTTTCTATTTCATCAAATCCATAATCCTTGCATGCTTACTTGGAATCCCATAATCAGGTCCAACACTATCAATGGCCTCTCTGAACAAGCCCTCATGTTGTGTAAGAACGTGGTATGTCAAGGAATTGCAGCCGATAAGTTCACATTTCCATTTGTCATCAAAGCTTGTACAACTTCCTTTGCCATTGACCTTGGAAAATTAGTTCATGCATTTTTTATCTACTACGGGTTTTTACAAGGGACATTCGTGCAAAACAATCTGAGAGTTTTTTTTCCCTAATCATCGTGCTGGCCAGGATCACCGCTGAAAACGCACATAATTGATGGTTCAAATGTGCCATAAAAAGAAGTTAAAAGTTTTGTTTTTGTCTCGATATTGATCTCAACCCAGATTAAAATAATTAGCCTTAAAAGGTGTTATTTGTGATAGGTAAAAATTTTTTGTGCTATTTTTAGCCATTATCCAAACTTGTGTATCTCATACTTCTCCTTTTCTCCAAAGTGACGCACACTCACACTGCTTCCCAGGCAAGTTTCTCAACAATCTCACTATGCTTTATCCAAAAACAAGCATGTAAAGAATTTAATGTCAAAGCTTTTCATTAATCGGCTATAATGGGCGTAGAATAATAGGCCCCATGTTTAGTCGGGAACCAACATTATCCATAAGCTACTGTGTTGTTGGAGATCCATAACATGATCATGACATTTTTGAAAAGTGATTGTTCGGAGCTCACTAAAGAATGAGAACATTTGTATTATTTGTGAACAGCACACCTCTCTAAAAATGATTTATCATGACCAAGTTGAATTGCAAAAATGCTCTAGTTTTAAATCATAAGCAGTGAGAGGCTAACAATGAACTATTACTGATGTTTGTTTTCTTATATCTTTTAACACGATTCGGATATCTTACCAATGCTATGGATTTATTGTAGTTTTTTTAAGTTGCTTACTTTTTATACTGAAACTATAAATGAAAAGAACTCTTCATTTCTTTATGAAACTTATACAAATTGTGGTTAATGAAATGCAATTACAGAATTAAGCCAAGAGGAGGCAGAGGATGTATCTTTTAAGCAGGTATATATTCAACTCCTCTATTTTTCGTGTGTGTGTGTTAAATTTCTTTTCAACATGTTGCATCTGTCAGGTTTCTTATTTTTTACGTGACTTAAGGGCTAAAATGGTTAGATAGTAGGAGTATGTGGGAGATACTGCGAACACAAAGTCATACTCGGACTTTCTTGTTTCAGAAATTCTGATGGAAAAATTACGTTTGACATTGTGAAGAACTCCCTTTATGGATATTGACTCGGTCAATTGACCATTTAGCAAGAGTTGAAGCGTTATGGTAGATTGTGATTGATTGATAGACATTATGATTTTGGTTATAAGAAAAATGTGTTGGAATAGGTTATTATCAAATTACCCTTAAAGGTTAAAAAAATCAATTGCATGCACTATTGTATGGGTTTGCTTCTTTTAAAAATCACTGAAGAGATTGTTGTTTATTTATTTATTTATTTGTGATGTAGGCTTGGCTCACCTATTTCTGGAGGAGAGCAAAAAATGATGAACTTGAACCAGACATAGCAGATGAACGTCTAGAGTTCTGGATAAACCACAATAACAAATCCACTTCTCATGATGCCGTTGATGGTTCATTCTCTCTCTCACTCACTGCGTTCTTAATTTTTCTAGTTAAAATGTTCTCTATATCAATTTTGGGAGGAAGAGAACTTGTTATCCTAATTCTTGAATCAACTTTAACCACTTAATAGACACTAATTTAGACAAGAACCTAAATTAAGAATAAAAGAAAACTGCGTACGTTTGCCAAAAGAGCCTCCAATGAAGGCTGCTGATGAAAACCTTGAGTAGGGCTACCCAAAGATATTTTGTTTCTTATGAGCTGAGTATGATCAATCTTAAACCAGTTGATATATTAGAATCGAGTATGTTTGATGTTATTGTGCCTTACCAGGATCAAGATCCAAATTGGCCTCCCTCGTCTCCACTGTTAATGCTTGCCAAAAGTTAGAAGTAATAAATTCTTAAAAATTGATTCTTGATTTTGGGAATGGCCATATTCCTTCGTAGGAACAGGTCATTACCATTTTCCATTCCCAAAATTCTTGGTTTTCTTTTCCCTAGTACGACTCTAATCTTGCTATTATCAAAATAGAAAGCAATAGGACAACACTAACTAATCTAGAAGGTTTTTGAAGTATCTACCATATGACATAAATATGTAAATTAGATTTTTCTAGAATTATGTTGTCATATGTAAAATAAATATCTCAAAAGAAAAGATCTAGAAATAGCCTAGACTTTCTTTAGGTTCAAAAAATTCTAGAGAATTCCTTTAAATAAGGATAATCCAAAAAATATGTAGAATACTTGTAGAATCCAATAACAACCTAGAGATCCTTTTACTTGGACTCAAAAGATGTGATGCCTATAAAGAAGAGGTGTGACCTCATATATGAGCCAAGAAAATCAAGAGAGTTAAAAGAAAAACTTAGAGTGAAAAGTGAATGAGTGTATCTTGAGAGAGTGAAAAAATATTCTTTCAAAAGTGTCCATCTTTGTACCTTCTAAATAAAAGCTTCTTTCTTCCAAAATTATTGTCTTTTTTTTTTTTTTGCCAATTTCTTCAACAGCCATATGGGCTGTTTGTAATTTAAGTTGAATGGCATTTGGAAATTGGGATTTTGGTAAACAAAATCAATAATTACATTTGAATGGCTTTATTTTCATTTAAGTTTCGGGAATAATTTTCTCAAACACAATACTATAACTTTTATTAAGACCTCATAATTTCTCGTTTCAAATTAATTGCATTTTAATTGACATCATTCTTTCTTTCTTTTTAATAATAATTGTACATCATTGATCATTCTTAGATGTTTAGTGAATGGGACTTCTTCTTCTTCTTCTTCTTTTTTTCTTTTTTGAAAGAACAAAAAAAATAATAATAATAAAAATAAAATAAAATAAAATAAAAGACTTGATACATTATTTGACTTCAATGATCACTCATTTGGGATGTCTTTCTTTCCTTTCTTTTCATTTCCTTTTGCATCATATGGACAGTTGAGCGTGGCCTGATAGAGCTGAGGAAGCTAGGCATTGAAAACCAGCTATGGGAAAGATCTCGGAGAGGGCTAGAGGTGAACCCTAACCGCAAACCTCGTCAATCTGACTTCTGAAATTACAGTGCAACTCCATTTCCATGGGAATTCATCTCCTCAAAGCATCCGTCTGCATCCACCTGGTAATTTAATATATAAGGTTTAATTTATTGAAAAAATCAGGTCTAGGCAAGTAACTACCACAGGAATGAACTACTTTACATATATACACACACACATAAAAATTTAAACCCTAGTTTGGAACTTTAGATTAATTGTTTTTACCGGCTTTCTGAATTGGTTGTGCTTGGGTTAAAAAAACACTTTTACCCCTAATGTAATAACTACTTTATTTTCAAATTTATAACTATTTAATCCTTATAAAAGATAAATTTCTTGTAACAAACAGCTTAATAAGTTTTCTAATTTACATGAATAAAAAATTTTAATATTTAATAATATTTTACCTACAATATGGATTAAAACATTACACGTTGGTAAAGTAAATAGATTAAACTATTATTTAAAGTTTAGAAATTAACTTATTATAAATTTAAAAGTATAAAAGCTGTGTTATCACCTAAAATTTAAGAACTAAATTGTTACTTCTACAAAAATTTACCGCTAAAAGTATTTCTTTAAATTTCAAACATGACTAGGATTGATACTGTCTATTTAAAATTTTATTGCAAGAAGTGTCTTGTTCATTTCTGTTTTAAACACTCCTTGTAATTGTGCTTCGGAAAATCCTTTCTTAAAAAAAAAAAGAAAAATTGTGTTCTGGTGCAGACAGATGGAAGACGCTCAGAGTTCATATATTACACTCAATCCCTCCATTTTTCTCAACTGGTTTGTCATGAGAATGTTGGTGTTCTTGTGGATCATCAAAACTAATACTTTTAATTCCTCAT ATGATTTTCATCCGTTTGAATTGTGTTCGCATTTCGTTCAATATCAGTGAAGCAGGAGCTATGGATCGGATGAGACCAGTATATACTCGGCAGAAAAGTAACACTGGCACCCCACTGGCTCCAGCGTCGCCATTGGTGTCCCCGTTTCCCCACCATAACCGATCAGGTTCAACTGGAGTGGCAAATGCCAAGAGGGGACAGAACAATGCAGCGAAAGCTGCAGCGCAAAGGCTTGCTAAAGTGATGGCAAGTTCGGCTGATGATGAGGATGAAGAAGATGATCTTTCTTTTGATTACAGTTTGCCGAGTGGCACAGGAAGCATTGGACTAGCAAGTGGAAGATCAGTCAGAGCCCGCTCTCCTATGCAATCTGTTCGAACTATTCAAGAACAATCTACTTCAGGACATGTGGGATCGGGCGGTCGAGCATCACAAACTGTGAACCCTACAGAGCAACCAATGTCGGGTCGTTCAACACTAGGACATCGACCAGCTCATTCTGATACTAATGTCGAACAGCCACCCATTACTCGCACTTCAACAGCTAGTCGGTCATCCCAGCTGGTCAACTCCATAGAACAACCTCCATCTACTCGTACATCATCAATTAGTCGTCCAAATTTAGGAGTCAAGACAGTACCATTGGTACCTTCTTCTGTATCCATATCACTTAAACCAACATTGCCAGTAACTCCCAAAGAGAGTCAATCTGATACTAGAACATCACTTAGACCAACCTTGCCGGTAACTCCAAAAGAGGGTCAATTTGATACTAGAACATCACATAGATCAACCTTGCCTGTAACTCCAAAAGAGGGTCAAGTTGATATCAAAACATCACTTAGACCATCCTTGCCCGTAACCCCAAAAGAGGGTCAGTTTGATGCTAAAATATCACTTAGACCAAACTTTCCAGTAACTCCAACGGAGGGTCAGTTAGACACCAAAAGAGATAAGAGGCTATCTTTGGATATGGGAAGCATGAACTTCAGAGAAACTAGCAACCAGCCTTCCAGTTCTGCTTTACAGGATGAGCTTGATATGGTACAGGAGGAAAATGAGAGTTTACTTGAAAAGAAGAAAGATGTGAGGAAGCAGAGGCTAGAGCCCGACAGCTTGAGAGTCAGTCAATTTTGTGCTGCACTTCATAGTTGCAGCATAGGCGTTGGTGTATCAGTACAGAAAATTCATATACGTTATAGTGATGGGAACATCTTAACATTGTCAAGAAGGAGGCAGCTTTGCAGCAGAGAGAGGTTCGTTCTACTAAAACTGGGAATGTTATCAAATTCGTTTTTACTGCATAATTTCAATATATGGGTAAATATTCAGCTGCTTCCATGGGAATGGAGACGGACTATCAGTGTGATCCCCAAAGATTTCTTCCGTGCAGTTTCAGAGCCTTCCCATCGTCTAAAAGCGAAATACCCTGCTTTTGAAGAGCTTGTTGGAAGGGCTGCTTTGAGAGTTGCATCACAATCTCACGGGAGCAGAGGTACTCATCATATTGCTGCACTTAAAACTGAAGCAGAGACTGCAAGGGATGAGGCAACATCTGCTTTGGAGCACTTGCACGAAGCTGAGGCTGAGTTGCAGTCGCTTAGGATTATGACCCATAGAATGATACTGACTAAAGAAGAAATGGAAGAGGTTGTTTTGAAGAGGTGTTGGCTTGCTCGATACTGGAGCTTATGCGTCCGTTACGGTATTCATGCTGAGGTAGCTGGAGCAAGATCTGAATACTGGTCATCGTTTACTTCAAGTCCTGTTGAAATTGTTTTCGAAGCAGGAAAGAAAGCGAAAGAGGTGACAGCAATCGATGATTTGGAGGGAAGAGATAATGAACGAGACTTGAATGAATTTTCCAGTGAGGCAAATGTCGAGAGCATGCTTTTAGTGGAGAGAGGTTTACGGGAGCTGGCCACATTGAAGGTAGAGGACGCAGTGGCTCTTGCAATGGCTCGCGATCGACGTGCAAATTTGTTAAAACCAGAATTAAGCCAAGAGGAGGCAGAGGATGTATCTTTTAAGCAGGCTTGGCTCACCTATTTCTGGAGGAGAGCAAAAAATGATGAACTTGAACCAGACATAGCAGATGAACGTCTAGAGTTCTGGATAAACCACAATAACAAATCCACTTCTCATGATGCCGTTGATGTTGATATATTAGAATCGAGTATGTTTGATGTTATTGTGCCTTACCAGGATCAAGATCCAAATTGGCCTCCCTCGTCTCCACTGTTAATGCTTGCCAAAATTGAGCGTGGCCTGATAGAGCTGAGGAAGCTAGGCATTGAAAACCAGCTATGGGAAAGATCTCGGAGAGGGCTAGAGGTGAACCCTAACCGCAAACCTCGTCAATCTGACTTCTGAAATTACAGTGCAACTCCATTTCCATGGGAATTCATCTCCTCAAAGCATCCGTCTGCATCCACCTGACAGATGGAAGACGCTCAGAGTTCATATATTACACTCAATCCCTCCATTTTTCTCAACTGGTTTGTCATGAGAATGTTGGTGTTCTTGTGGATCATCAAAACTAATACTTTTAATTCCTCAT ATGATTTTCATCCGTTTGAATTGTGTTCGCATTTCGTTCAATATCAGTGAAGCAGGAGCTATGGATCGGATGAGACCAGTATATACTCGGCAGAAAAGTAACACTGGCACCCCACTGGCTCCAGCGTCGCCATTGGTGTCCCCGTTTCCCCACCATAACCGATCAGGTTCAACTGGAGTGGCAAATGCCAAGAGGGGACAGAACAATGCAGCGAAAGCTGCAGCGCAAAGGCTTGCTAAAGTGATGGCAAGTTCGGCTGATGATGAGGATGAAGAAGATGATCTTTCTTTTGATTACAGTTTGCCGAGTGGCACAGGAAGCATTGGACTAGCAAGTGGAAGATCAGTCAGAGCCCGCTCTCCTATGCAATCTGTTCGAACTATTCAAGAACAATCTACTTCAGGACATGTGGGATCGGGCGGTCGAGCATCACAAACTGTGAACCCTACAGAGCAACCAATGTCGGGTCGTTCAACACTAGGACATCGACCAGCTCATTCTGATACTAATGTCGAACAGCCACCCATTACTCGCACTTCAACAGCTAGTCGGTCATCCCAGCTGGTCAACTCCATAGAACAACCTCCATCTACTCGTACATCATCAATTAGTCGTCCAAATTTAGGAGTCAAGACAGTACCATTGGTACCTTCTTCTGTATCCATATCACTTAAACCAACATTGCCAGTAACTCCCAAAGAGAGTCAATCTGATACTAGAACATCACTTAGACCAACCTTGCCGGTAACTCCAAAAGAGGGTCAATTTGATACTAGAACATCACATAGATCAACCTTGCCTGTAACTCCAAAAGAGGGTCAAGTTGATATCAAAACATCACTTAGACCATCCTTGCCCGTAACCCCAAAAGAGGGTCAGTTTGATGCTAAAATATCACTTAGACCAAACTTTCCAGTAACTCCAACGGAGGGTCAGTTAGACACCAAAAGAGATAAGAGGCTATCTTTGGATATGGGAAGCATGAACTTCAGAGAAACTAGCAACCAGCCTTCCAGTTCTGCTTTACAGGATGAGCTTGATATGGTACAGGAGGAAAATGAGAGTTTACTTGAAAAGAAGAAAGATGTGAGGAAGCAGAGGCTAGAGCCCGACAGCTTGAGAGTCAGTCAATTTTGTGCTGCACTTCATAGTTGCAGCATAGGCGTTGGTGTATCAGTACAGAAAATTCATATACGTTATAGTGATGGGAACATCTTAACATTGTCAAGAAGGAGGCAGCTTTGCAGCAGAGAGAGGTTCGTTCTACTAAAACTGGGAATGTTATCAAATTCGTTTTTACTGCATAATTTCAATATATGGGTAAATATTCAGCTGCTTCCATGGGAATGGAGACGGACTATCAGTGTGATCCCCAAAGATTTCTTCCGTGCAGTTTCAGAGCCTTCCCATCGTCTAAAAGCGAAATACCCTGCTTTTGAAGAGCTTGTTGGAAGGGCTGCTTTGAGAGTTGCATCACAATCTCACGGGAGCAGAGGTACTCATCATATTGCTGCACTTAAAACTGAAGCAGAGACTGCAAGGGATGAGGCAACATCTGCTTTGGAGCACTTGCACGAAGCTGAGGCTGAGTTGCAGTCGCTTAGGATTATGACCCATAGAATGATACTGACTAAAGAAGAAATGGAAGAGGTTGTTTTGAAGAGGTGTTGGCTTGCTCGATACTGGAGCTTATGCGTCCGTTACGGTATTCATGCTGAGGTAGCTGGAGCAAGATCTGAATACTGGTCATCGTTTACTTCAAGTCCTGTTGAAATTGTTTTCGAAGCAGGAAAGAAAGCGAAAGAGGTGACAGCAATCGATGATTTGGAGGGAAGAGATAATGAACGAGACTTGAATGAATTTTCCAGTGAGGCAAATGTCGAGAGCATGCTTTTAGTGGAGAGAGGTTTACGGGAGCTGGCCACATTGAAGGTAGAGGACGCAGTGGCTCTTGCAATGGCTCGCGATCGACGTGCAAATTTGTTAAAACCAGAATTAAGCCAAGAGGAGGCAGAGGATGTATCTTTTAAGCAGGCTTGGCTCACCTATTTCTGGAGGAGAGCAAAAAATGATGAACTTGAACCAGACATAGCAGATGAACGTCTAGAGTTCTGGATAAACCACAATAACAAATCCACTTCTCATGATGCCGTTGATGTTGATATATTAGAATCGAGTATGTTTGATGTTATTGTGCCTTACCAGGATCAAGATCCAAATTGGCCTCCCTCGTCTCCACTGTTAATGCTTGCCAAAATTGAGCGTGGCCTGATAGAGCTGAGGAAGCTAGGCATTGAAAACCAGCTATGGGAAAGATCTCGGAGAGGGCTAGAGGTGAACCCTAACCGCAAACCTCGTCAATCTGACTTCTGA MIFIRLNCVRISFNISEAGAMDRMRPVYTRQKSNTGTPLAPASPLVSPFPHHNRSGSTGVANAKRGQNNAAKAAAQRLAKVMASSADDEDEEDDLSFDYSLPSGTGSIGLASGRSVRARSPMQSVRTIQEQSTSGHVGSGGRASQTVNPTEQPMSGRSTLGHRPAHSDTNVEQPPITRTSTASRSSQLVNSIEQPPSTRTSSISRPNLGVKTVPLVPSSVSISLKPTLPVTPKESQSDTRTSLRPTLPVTPKEGQFDTRTSHRSTLPVTPKEGQVDIKTSLRPSLPVTPKEGQFDAKISLRPNFPVTPTEGQLDTKRDKRLSLDMGSMNFRETSNQPSSSALQDELDMVQEENESLLEKKKDVRKQRLEPDSLRVSQFCAALHSCSIGVGVSVQKIHIRYSDGNILTLSRRRQLCSRERFVLLKLGMLSNSFLLHNFNIWVNIQLLPWEWRRTISVIPKDFFRAVSEPSHRLKAKYPAFEELVGRAALRVASQSHGSRGTHHIAALKTEAETARDEATSALEHLHEAEAELQSLRIMTHRMILTKEEMEEVVLKRCWLARYWSLCVRYGIHAEVAGARSEYWSSFTSSPVEIVFEAGKKAKEVTAIDDLEGRDNERDLNEFSSEANVESMLLVERGLRELATLKVEDAVALAMARDRRANLLKPELSQEEAEDVSFKQAWLTYFWRRAKNDELEPDIADERLEFWINHNNKSTSHDAVDVDILESSMFDVIVPYQDQDPNWPPSSPLLMLAKIERGLIELRKLGIENQLWERSRRGLEVNPNRKPRQSDF Homology
BLAST of CmUC02G041850 vs. NCBI nr
Match: XP_008455538.1 (PREDICTED: coiled-coil domain-containing protein SCD2 isoform X1 [Cucumis melo] >XP_008455544.1 PREDICTED: coiled-coil domain-containing protein SCD2 isoform X1 [Cucumis melo]) HSP 1 Score: 1002.7 bits (2591), Expect = 1.8e-288 Identity = 574/803 (71.48%), Postives = 607/803 (75.59%), Query Frame = 0
BLAST of CmUC02G041850 vs. NCBI nr
Match: XP_038891160.1 (coiled-coil domain-containing protein SCD2-like isoform X1 [Benincasa hispida]) HSP 1 Score: 1002.3 bits (2590), Expect = 2.4e-288 Identity = 574/784 (73.21%), Postives = 606/784 (77.30%), Query Frame = 0
BLAST of CmUC02G041850 vs. NCBI nr
Match: XP_011648785.1 (coiled-coil domain-containing protein SCD2 [Cucumis sativus] >XP_011648786.1 coiled-coil domain-containing protein SCD2 [Cucumis sativus] >XP_031737161.1 coiled-coil domain-containing protein SCD2 [Cucumis sativus] >KAE8651569.1 hypothetical protein Csa_019467 [Cucumis sativus]) HSP 1 Score: 992.6 bits (2565), Expect = 1.9e-285 Identity = 564/784 (71.94%), Postives = 603/784 (76.91%), Query Frame = 0
BLAST of CmUC02G041850 vs. NCBI nr
Match: KAG7021132.1 (Coiled-coil domain-containing protein SCD2, partial [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 923.7 bits (2386), Expect = 1.1e-264 Identity = 534/785 (68.03%), Postives = 573/785 (72.99%), Query Frame = 0
BLAST of CmUC02G041850 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: 921.8 bits (2381), Expect = 4.1e-264 Identity = 532/781 (68.12%), Postives = 576/781 (73.75%), Query Frame = 0
BLAST of CmUC02G041850 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: 284.3 bits (726), Expect = 4.3e-75 Identity = 266/794 (33.50%), Postives = 354/794 (44.58%), Query Frame = 0
BLAST of CmUC02G041850 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: 1002.7 bits (2591), Expect = 8.8e-289 Identity = 574/803 (71.48%), Postives = 607/803 (75.59%), Query Frame = 0
BLAST of CmUC02G041850 vs. ExPASy TrEMBL
Match: A0A0A0LJG0 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_2G013280 PE=4 SV=1) HSP 1 Score: 929.9 bits (2402), Expect = 7.2e-267 Identity = 545/785 (69.43%), Postives = 581/785 (74.01%), Query Frame = 0
BLAST of CmUC02G041850 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: 921.8 bits (2381), Expect = 2.0e-264 Identity = 532/781 (68.12%), Postives = 576/781 (73.75%), Query Frame = 0
BLAST of CmUC02G041850 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: 917.9 bits (2371), Expect = 2.8e-263 Identity = 530/784 (67.60%), Postives = 574/784 (73.21%), Query Frame = 0
BLAST of CmUC02G041850 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: 916.0 bits (2366), Expect = 1.1e-262 Identity = 534/803 (66.50%), Postives = 579/803 (72.10%), Query Frame = 0
BLAST of CmUC02G041850 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: 292.7 bits (748), Expect = 8.6e-79 Identity = 262/810 (32.35%), Postives = 367/810 (45.31%), Query Frame = 0
BLAST of CmUC02G041850 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: 284.3 bits (726), Expect = 3.1e-76 Identity = 266/794 (33.50%), Postives = 354/794 (44.58%), Query Frame = 0
BLAST of CmUC02G041850 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: 236.9 bits (603), Expect = 5.6e-62 Identity = 250/785 (31.85%), Postives = 344/785 (43.82%), Query Frame = 0
BLAST of CmUC02G041850 vs. TAIR 10
Match: AT5G23700.1 (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: 214.9 bits (546), Expect = 2.3e-55 Identity = 235/801 (29.34%), Postives = 320/801 (39.95%), Query Frame = 0
BLAST of CmUC02G041850 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: 208.4 bits (529), Expect = 2.1e-53 Identity = 214/667 (32.08%), Postives = 289/667 (43.33%), 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 Position : 0 Zoom : x 1
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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