PI0014443 (gene) Melon (PI 482460) v1
Overview
Sequences
The following sequences are available for this feature:
Legend: five_prime_UTRexonpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.AGACGGCTGGTTCGCCTCAAATCTCCAGCAAAAGCAAAGCAAAGCAACATCTTTCACTCTCAGCTCCCAAGCCCCCGCCCCAAAAATCTCTCATCCATTTCTCTCCTTCGACCTCACTCTCCAGAATCGATCATCTTTCTCTCTCTCCCCCCCACTCGCATTCAAGGTTTGTTCTCCATTCATTATTTCTTTTTACATTTTGCTTAAACTCCATCTCCCTCTTACTCATGTTTCACAATGTGAAATATCATACTGTAATTGTGCTATCAATGTTTCATTTCTTCTACCCAAAATCCAAATCCCTCGTCTTCTCTCTATAATTTTTTCGATTCTCTATTTCTTTGTTCTATTAATGATGATACAATTTCAAACTTCTAAGACATTAACCATCTACGTGTACATCATGAAGGTTATGGAGTATTAGCATCCCTTTCACTTTCTCTATGTTATTTTAGTCTTAAAAGACATTGCATTATTTCTGAGCTTTTCTCAACTGATTGAGCGTTCTTTAGTGTATACTTTGTTTCAACCTCAAGAGGACACTAAGCCATGGCAATTACTTCACAAACCCTTGATATATTGGGTGAGCGCCAATCTGGTCAGGATGTTCGTACTCAAAATGGTAAAGCTTAAACCTTTTCACCCCTTTCTTTCTTCTTCTTACTTCTTATTAGTCACTCTCTCTCTCTCTCTCTCTTTTTTTATAATTATACATTTGTGTTCTTTATTTATCTTAAACTGGTAATAAACAATGTGTATTACTCATTTGAGTTGTTTGGTGGGTTCAGTTGTAGCGTGCCAAGCAGTTGCCAACATTGTGAAATCCTCGCTTGGACCTGTAGGCCTTGATAAGGTATTGTGTCACTTTTCAATTTCTCATACTACGAGGTTGCAGATTAACATACTGATAGTCTGCTAGTCGAGAAGCTTTCAACTTAGAGGAGGAATATTTACAATTTTTGAATCTTTTAGGAACCTGTTTTGTATAATTAATGAATGGGATTGAAACAATGGTTCTTGCTAACCTTACCCATCTCTCATTTAGAAACCTTCTTATCATTCAATTTAGGTGTTGAAAGGGTCTAATGACTAATATGAACTATTAATTTGCTTTAAAAATATGTATCAGATGCTTGTGGATGATATTGGGGACGTTACCATCACTAATGACGGTGCAACAATTCTCAAGATGTTAGAAGTAGAGCACCCTGCTGCAAAGGTGGGCAAACAGCCTTGTTGATTACAGATTTGTGTAAACTCATATGGTAAATGCTGATCTTATGGGTTTTTAGGTGCTAGTGGAGTTGGCTGAACTCCAAGATCGTGAAGTTGGTGATGGCACAACTTCGGTAGTCATTGTGGCAGCCGAGTTGCTCAAGGTAAGTGTACTTAACGTGCTTCAAATTAAGAAAGTATCATTTATTATCAGGAACGCCTAGAACATCATTTTCCCCTTGTGACTTTTCAGAGAGCTAATGATTTGGTGAGAAACAAGATTCATCCAACTTCTATAATTAGTGGGTACAGGGTAAGCAAGTTTCTTTCTTTTATTCCATTCTAGTGGAAGTTTGTTCATTTTTTTAAATTTTTTTTAAAGAGATGTCTGTAGCATTCATTTTCTATTGGTTTTTAGTTGTATTTTTTGATGTTCTGATTTTAATATTTATATGCTTTAATATTTCTTTATGTTGAAAGCTTGCCATGAGGGAAGCATGCAAGTATGTCGAGGAAAAGTTGGCTGTAAAGGTGAGTTATTTCTAGTATAATATCTTTGCATAATTGTTGAAACTGATTTATATTTATATTTTTAGATATATTATGTAAATCATATGCATTTCACCTCTGATGTCATTTGTGGACTTGGGTGCAATGTTGTTCACCGGCTTTTCTTTGTGGGTTAAGAAATATTTCCATAAGGAGGTGCAAACATTGATTAAATGCAAAAACTACATTCATATAAATGTTTAATCATGTAATTATGTTATCGAGTACTATTACTTCTTACAAAAGTCATGCCCAACTCCTTGTTGCCTTTTCTTAAAGAGGTTTTTTTAAAGTTTTTAACATTGTTGCTAATAATACGGATTAACTCATTCATCTCTTGTCTTTGATGTTTCTATAGTCTAGGGTTTATTTAGTTTTACTTTCTGGGAGTCATTGGGTTGAGTTGGTGGACTATTTTTTTTAGTTTAACTTCTGTATTCTCTCTGCATCTTTTTTTAAAGGATTTATCCAATTAACACCAATTTGATCAAGTATTTTCTTTAAGCTCCCTTGGTTGTGGAGTGGGCTCAAATCCTTTTTGTATATATTTCTTTCGTACTTTGTACTAACATAGATTAGTTAACAGTCTCGTCAAAGGGTTTTTCTGATATCTGTTGATGTGGATGGTCAGGTTGAAAAGTTGGGAAAAGACTCGCTTATAAATTGTGCTAAGACGAGCATGTCTTCTAAGTTGATTACAAGTGATAGCGACTTCTTTGCAAACTTGGTAAGTTCTTGGGCTCTTTTGTTGTTACTAAGTTTAAGTATTTTATTCAAGGTTCGACGTCATCCTTTATAATTTTATGTGGTGATCTTGATGACTTTTATGTAAAATAATGTTGCCTGTGGTTCATTTACTAATGTCTATACACGGTTACATTACTAAGTGTTATAAAGTATCAGATTAGCTTAACTTATACTTGCTAAGATAATGGAATAATGACAATGTCTTCTGATCTTCATTTGATTGCTCAAGTCTTGTGTATATCTTTGGGTCTGTAGGTTGTAGAAGCGGTGCAAGCAGTCAAGATGACCAATGCAAGGGGAGAAATTAAATACCCAATTAAGGTTTGTGACTTTTTGGTTTATTTTTCCAACCTGGCTTTTGGAAATCCGATGTTTACTTATTTCCTTTCTGGATTGTTCTTTAAGTTTAAGTTAGGCAATAAAGATTTAGAATTGGCTCTATATGTGTGATGTTTCTGGGTCACATACAAATGTTTATTAATTATGTCTTCCAACTTACTTTTGGCTCCTTGCCAATTTGAGCATAGCCTAACTAGTTAAAACACATACTCTCAGCTAAGAGATCAGATGTTTGAATCTCCTCAAGTCTACATGTCTTTACGCTCCAAGAAAAAAAATTACATTTAACTCCTTTAGAGAGAAGGCTATTGAAACTTGGAATCATTCACATGTTTTCCGTTCTTTTGAGGATTTTTAGGTTCACGTTCACATAGAACATTCTTCCTAAATGCTTTCTCTTCATGTCTTCCCCTTTATGACTTCGGAAATCAATTCAAATGGATTCTTAATTTATTTGTTCTTGAAAGCATATATTATGATGATCTTCTAATTCTTGTTCTCTAATGCATTGGTGACCATTGCACTATTTTCAGCCTTCCTTTCACCCAAATTATCCTGGTTTTATTCATTCAACCCCTTCTTAACCTTCATGTTTTCGGCAACAGCGACGTGAATCTGTAGAAAGAGATAATTGGCTATTTATTTAAAAATCTTCTAGTTTGAAGTGCATGTTCTCATGGAGTAAAGCTAGATTTCGTGATAAAAGAGTGGAAGTTAATTTTTTGAACTAGAATTTAGTCTTTTTTTTGTGTATGTGTTTCAGGGAATCAACATTTTGAAAGCTCATGGAAAGAGTGCAAAAGATAGCTATCTGTTGAATGGTTATGCTTTAAATACTGGCCGAGCAGCTCAAGGGATGCCAGTAAGAGTTGCACCAGCAAGGATTGCTTGCCTTGATTTCAATCTTCAAAAGACAAAAATGCAGCTGGGTGTGCAGGTTCTTGTTACCGACCCTCGAGAACTTGAGAAAATTCGTCAGAGGTAATGGATCACACTCAAATTTCTTTTTAGCTTGATGCATCCAAACAATCTGTTGAGTTGAATTATGGTTAATTCCTAAAGTTTCTCTTCACTGCCATTACAATTTGAAATTTTCACATGTTATATACTTCTTTTCTTTAAGGAAAATTTTTAAGTATTGTGTAATTGTTTCTTGATTGATTAAAATTTAGAGTTCTTGTTGTATTGTTTAACCTTCTTTTATTTGGCAATTATTGCACATCTTGTTCATAGGGAATCTGATATGATGAAAGAACGTATCGAAAAGCTTTTGAAAGCTGGGGCAAATGTTGTTCTCACCACGAAAGGGATTGATGACATGGCACTCAAGGCAAGCTTCTTGTTTTTGTTCTCATTTAGCTGTTCTCTGCTATACCCTAATAATTCACTACTCTTCGGGATTATTTTCTGATGTTTGTTATGTTAGCTGACCTGTGTTTAAATTTAGTGCATCTCATTTATGTTGATTAAAAACCTGCTCCCATCAAAATAAATGAAATGCATTCACGCGTATCTGGTGTAAATATTTTTTCCTATTTTGCTTTGCTGATTGTATGAGGATTATGTTTTCTGTTGTATTTGTATAGTTCGTTGATGTATAGAATTTTTTTAATAATTGTTGATATATTTTGTAATTTTCTCAAGTATGTTATTTTCTAATCATTTTTGTTTCTCTACTGTCAGTATTTTGTGGAAGCAGGTGCTATTGCTGTTAGGCGAGTCAAAAAGGAGGACATGCGCCACGTCGCTAAGGCTACTGGGGCAACCATGGTATGCTAATATCTACCTTCCTTCTATACAATCTATCCATTTTCATCTAACCTGCCAGTCTGTTTTATTGTAGATGGTTTTCCCGAATATTGGTTGATTGTCTTCACTGTTATATGGGCAGCACACTGTTATGGTTGCTTGTGCTTAGATCAGATTTCTAAATAGAAAACTAAAGTTTTTACATGATTCTCTTTGCATGCTTAGATCTCTTTTTTGTGCACTGGGTGGGAGAGAGGTCTCTTTGTTCTTTGTTCCCTCGGCTGTACTATTTTTCTACGCTTAACAATCACATGGTGGCTGATTTCCTTGTGTGGTCTGGGAGCCATTGTTCTTTTTCTTTCAGGTTTTGTCGTGTTCTTTCCAATAGGGAAGCGACAGAGGTGGCGACTCTTCTTTCTCTCCTTGAGGGTTTCTCTTCTAGAAGTTGGATAAGGGATGTGAGGATCTGGAGCCTTGGCCCTTTAGAAGAGTTCTCATGTAACTCTTTCTTTGGTTGACCCTTCTTCCTTGGGTCTATTGGTCTTTTCGGTGCTTTGGAAGATTTACATTCCTAGGAGAGTGGGTTTTTTACTTGACAAATTTTACACGGTTGTGCTAACACAATGGATTGGATTAAGAGGAACTTGCCTTTGCTCGTGGGTATTTTTTGCTGTATACTTTGTCGGAAGGCAAAGGAAGACCGGTACCGTACCTTTGGTGTTGTGATTTTGCCAATTTCGTTTGTGATTCTTTCTCTTAGTTGTTTGGCATTGTGGTTGCCCGACGCAGAGATGTTTGTGCTTTGATCGAGGAGCCTCTTCTCAACCCGTCCCATGGGGAGAAGGGCCACTTTCTATGTTTTGTTGGGGTCTGCACTATTTTATGGGTCCTTTGGGGTGAGCTGTGAGCGCAATAGTAGGGTCTTTAGAGGAGTGGAGAGGGGTTGTTGTGAGGTTTAATCCCTCGTTTGTTTCCATGTTTCTTTTGTAGGCTTCAATTTCAAAGGATTTTGTAATTACTCTATAGGTGCTATTTTTCTAGTTGGAGCCCCTTCTTGTAGAGGGAGCTCCTTTCTTTTGTGGGCTGGTTTTTTATGCCCTTTTATTCTTTCATTTTTTTTACTCAATGAAAGGGGTTTTAAAAATATCCCTTTTTCTGTGTATTGTGCTTTCTTTAGTGTTTTGGGGAAGTTGGCACTAGCATTTTGGACTGTTTTAGGCAGTTGCACGATCAATGAGTGTTGTAGCCCTCAATTGTCTTGTCTTTGAGAGGAAGGTTAGAATCATAAGCCGGTATAGAGCGTTTGGAATATTTCGGAGATTTGGAGTGAGATTTTAAAAAGATTTGGATATGACATTTCTTTTGATTTTACCTCACTTTCTAAATTCTAACACAGATTACATTTACACCCCTTTTCTAATTTATGCCAACTGGATAATTTTCTTCTTTTTGTAATTACAGTTGATATGTAGGTGTTAGGATTCTTCCTCCTGAAATTCAGAAGATCCCAACAAAATAGAGAAATAGAGACGGTATTCTGTTACAATTTATTGAATGGAAATCAACAAGAGTTTCCCACACATATATCAACCCAAGAACAAGGAAAAAAGAAATAACAAGCAACAACAAAGAAATATAAAAGATATCGTCTCCAACTCCTTTGAGAAGGCTGGTTTCTTCTCCCTTTAAAGCTCATAGCAGCTTTCTCCAAAATAAAACCTACTTTTGGCAATCCCAAAACATTTTTTAAATACTCACACCTCAAATGGGCCCCTTAAGCGCTATTCTGCTCTCCTTTAATATCCCTAGGTGCTGCCTTCTGTGCATTACCAAATTTACCCTTGCGTCTGTAGGTATGGATGATCGGAGGCCTAACAGTAGGATATGTTAAATAAATAATACACTTCATTGTGTATCAGAATTTTTTTTTTGAAGAGGAAACATGTCTCTTTTATTAATAAATTTAAAACATCCAGCAAAACACCCAGCAAAACTAGACTTAATTGCAACATGAAATTTAATAAAGAGACAAAAGATATTAATACAAGAGGATTATACAATGAGTGGAAAGAGAAACGGATTGGCAGACACACCCGGGCATCTCAACTAGGTTGACACCTACACTTCATTGTGTATCAGAATATTATTCCTTCTTACCTTGAAAAAACCATGTAGGAGTTTCCTGACACTATTTGTGTTATTGTATCGTTTCTCATGGGATCTCTTTTGGTTTGACTTTCTTTTTAGTCTAGTTGGAACCTTATTTTTTCCCTGGTGGTTAGGTCTTTATCTACATTTTTTTGGGTCCATTGAGACATTTTGACAAGTTGATTCATTATATAATTTCATGTTGCATTTAAGTATGGTTTTGCTGGGTGTTTTAAGTTCAATCTAAAACCACCATTTTTGTTATTTTGGAGGTAGGTCATATTGGCTTTCTCGATTGGTTTTGTTTAGTTTTAGTTCGACCAAACCAGTGAACTGATGAATGCAGCCTTATATATTATTGGGACCAAATCAAACCAATTGTTAACGGACCTAACTGAACCAAAGTGGCTTTAATCATGCCGGATGCCGGTTACTGGACTGAGGGGGTGAGTGAAATCTGTGGCACGAGCAGATCAGTAGCAAGATTGAGAGTAAAAGGTTATGGTTTCGAGCAGCAACATCAAGCAAAGATGAAATTGGGAAGAAGAAAATTGGTTGGAGGGTCTGTCCATGTGATGAGGCAGACTGATGAAGGATTTCATTTTGTCCAAAGTTAGTGGCTAGGGTTTTATGAAGAGAAAAGGAAGATAGAATTTAGTTTCACATCATTTTAAGTGGCAAATGCAAATATAGCAATCTGGCTCTTAGTATAGCAAATATAATACGATGCGAAAGAATTTGCATTTGCAACTATGACAAAATTTAGATCCAACTATCGCAGTCTGTTAATGATAGACTATATCATTGGTAGGTGTATCTAGCATACCTGCGGAGGAGTATTCCTAATATATTTTGCTATACTTGCAATTTTTTTAAAATGATGCTAAAACATTTCATCCAAAACTAAAGTCACTTGAGTCTTCTATGTGAACTTCATTTCAGTGAAATGAAGCTCCTGAGGAATTTCATTTGTCTGAGCTACTGCGCCTAATGTTTTTGGACTTTCTGCCTTACTTTTGTTGTACAGTGTCTAATAGCTTATGATAATATCTTATGTTTAGAGTGAGAAATCTACAATATTATTATTATTATTAATTGGTATTAATTGTTATCCTTTCTGTTCATGGACTTGGGGCTGCAGGTTTCAACGTTTGCTGACATGGAGGGGGAGGAAACTTTTGAGCCATCACTTCTTGGATATGCTGATGAGGTCGTAGAAGAAAGAATTGCTGATGATGATGTTGTTATGATAAAAGGTTCTAAAACTACAAGTGCGGTGAGTGATTTTGTCCTAGCTTTAACTGTTGGTGAAGTCAACTTCCGGCCTAATTGTTTTAGATTACTAATTCTAGTGTTGTTGAGGCGCAGCCGGGCGCTTGCCTGAGGCGAGGCGAGACCTTAACGCCTGGCAAGTACCCAAGGCGAGCATTTTTAGTAAGGCGCTCCCCTTCTGCGCCTTTCAATCGCCTTGAACATACGTTCAAGGTGACCAGGAGCTCACTCTAGTTCGATTCCTTAACTTATTTTGAGGAAAAAAAATGAACATTCTTCTCCAATAGGATTAAAAGGAAGTGTCAAAGTTTGTAAAGGTAGAATTAAAGAAAAATCAAAGAAAGAAACAAGAATTGAAGAAGCAAAAGAGTCAAAGTAGAAACAAAATCATTTTTATTTCTATATCTTTTTTCAAATTTTTTTTCCTCAAGATTATTTGGGTTAATTTCTTTCTAATCTTATGCATTTTTTATTTTTATTAACTGTGCCTCGCTTCAATCAGGCGACACCTTTTTATCACCTCTTGCCTTGATGCGATTAAAAAAGTTTGTCATCTTAGAGTGCTCCTTGCACTTTGAAAACACTGACTAATTCTTTGGGTGATGGCGTTAAACTGTTGGGTATTAGTTCATACATTATTCACATTGTTACCTGTGGTTTAAAAATATCTAACTCGAAATAGGTTTTGCGACTAGATAAAATTTTGCATAATTGCTGAACAATGGGAAATATTTGTTTTGTGAATATTATTGTTCGTAAAATAATAATAATTCGTTTCTTAAAAAATTTGCATGGTGATGTAATTTAATTTTTTAAAAATATTATTCTCTAGGTCTCCTTGATCCTTAGAGGCGCCAATGACTATATGCTTGACGAGATGGAGAGGGCTTTGCATGATGCATTATCTATTGTCAAGAGGACTCTTGAGTCCAATACGGTAATATGTTATGTGCTGTTTTTGTTTCAATTTCTACCAACCAGTAGCAGCAGACACCACTTCATTTTTGACACATTTAAATTAACCATAGATAATTGGGTGATATATTGGCATTGGCAACAAGAACCAGAAACTTATATTTGTCGATTAGTCAGTTTCCCAATATTTATCATTAAATGTGTTGATCATGCAGGTGGTAGCAGGTGGTGGTGCAGTTGAATCTGCATTGTCGGTGTATTTGGAGTACCTTGCAACAACTCTAGGCTCCCGTGAGCAGTTGGCAATTGCTGAGTTTGCCGAATCTTTGTTAATTATTCCGAAGGTATAGTGATAATGGTGCAAATTTTGGAAGTGTTTTGGGATGTCCTCAATGTCACTTGCATGTTTTTTGTGTAGGTACTTGCAGTTAATGCTGCTAAGGATGCTACTGAGTTAGTTGCCAAACTACGAGCTTACCACCACACAGCACAAACGAAGGCAGATAAGAAACATCTCTCTAGGTACTATAATGATTGGATTAGTATACTTAATTTGTCCTGCTTATTTTCTTTCATTGGGAGGATTTTTTTTTTATCTTGCACCTTCAATATGCATCATATTGTCGTTATTGATAAAGGCTAAGAAGCATGGATACAAATGTGATGTTACTTTGAATCTGTGACACATCACCTTCTGAAAAAGTAGATCAGACTTGTTAGGCACTTTTTCTCTCATCCTCTGATGCGAGAGTTTGAGAGAGATCCAATTGACTGGTTTTAACAATTAAACTCTAAACCCTGGTTCTGAAATATTACAATCCATCTTATATTACATCACATCATCCTCTTTTTTTAAATGTGTAAACATTTGCTAAAAAAATGTGTAAATATGTGTATTCGATAGGGGTGAGCATGATAGACCGAAAAATTGAGCTGACTGACCAAACCGAAGTCGGTTTGGAAAAGTTTCAAATCGAGAATTTCCAAAAAATATTATCGAGTGTTAAACCGATCCGACCCAATGGAAACCAACAAAACCCGACCGACCAATACTAACCAATCGAAGGTTGATGTTGGTTTGAACATTTAATAAACCAACTATGGTCGGTCGGTGGCGGTTTGATAAAAAAACCGACTCCGACTGACCGATGATCACCTCTAATTGATACATTAAAAATACTTCAAATCAGCCACGCCAGCAGAATCCCAGCTATTGAAAACAGAACCACGCAGCCACTCAAGAGGACTACAATTTTGGTGTCCAAATTATCTCATCTCCACAACAAACTTTCTTAGATTTTGGACACTACAGTGCACTAGACTAAACAAAACCAATCTACTTTCTTCCCAATGAATAGTACCTGGGAGAAGAGATAATTTGGACACCAAAATTGCAGTCCCCTCTTGAATGGCCGCGTGGTTCTGTTTTCAATAGCTGGGATTCTGCTGAGAGGAGGCATATAAAGGGATTTGGGAGACTTGGCATGCAAGTTTTCTTATTCTTCTGTCTTATTAACATACATTTTTTTGTTTCTTGGTGGAGGCATTACTAGAATAGTTGACATTTTATATTGATTTATAGTGCACTGTCACTTACACAATGAGTCTGTAAATGAAGACATTAGGTCAAACTTTTATTTAACTAAAGATAAAACGGCCACCAAATATGAGTTAGTTTTATAACTATTACGCATCTCTTCTTTTGATTCTGTTTGAGATGGGATTACACTGGTTTGTTTTAGTTTTAACCTGTTAAAATATGTTTAATACCTTCCATTATTTGAACAGCATGGGACTCGATCTAACCAATGGATCTATTCGCAATAACTTGGAAGCTGGTGTTATTGAACCTGCCATGAGCAAAGTAAAGATAATTCAGGTAAACGACTTTTAAATTTGCTCTAATGTATGTTTTTATTTCAACCTTATTCATAATTCATTTTCCTCTCCCAGTTTGCAACTGAAGCAGCAATTACAATTCTTCGTATCGATGATATGATCAAACTTTACAAGGATGAAACACAAAACGAAGAATAGGTTGGTTTTTCACGATTCTGGATAGAGGATTACCTACATTGATATTCTTCATAGTTAGCGAGCCTGCTTATTAGTGGCTTTAAGTTTATTATAAAGTAGATTTGTATCCAGGTGGTGAAGTGTGCATTTCTATCTACTGTGTTATTATGTTGACAATGATGAGAGCTATGATTCGATCCGCTGCACCTTCTGATGCACTTTCTGATGTCAGTGGGTCTTTTTGGAGAAATTTTGGCTGGCTTGGTTTGAGAAGATTTTTATTTGATAATCTCACCTTATTTAGATATCTATTTTCTTGTAATTTTTAGCACTGGTTTTTGGACTTAGGAGCCTGTGTTAATATAATATGTTTTGATTGTCATTATGGGAATGTTGAGAACTATTTTGATCATATTGTTCATTCACCTCCCATCCTTTGCAATCATGAGTCATTCTTTCCTTGCAAAAACTTATGCTCAAAGTCTTTAATAGAAGTTCTCTTAGCAATTGAATCATATGGATATTGGTTCAACATTTTATCCTTAATTTATACACCATAGATTTCTAGTTTACCTT AGACGGCTGGTTCGCCTCAAATCTCCAGCAAAAGCAAAGCAAAGCAACATCTTTCACTCTCAGCTCCCAAGCCCCCGCCCCAAAAATCTCTCATCCATTTCTCTCCTTCGACCTCACTCTCCAGAATCGATCATCTTTCTCTCTCTCCCCCCCACTCGCATTCAAGTGTATACTTTGTTTCAACCTCAAGAGGACACTAAGCCATGGCAATTACTTCACAAACCCTTGATATATTGGGTGAGCGCCAATCTGGTCAGGATGTTCGTACTCAAAATGTTGTAGCGTGCCAAGCAGTTGCCAACATTGTGAAATCCTCGCTTGGACCTGTAGGCCTTGATAAGATGCTTGTGGATGATATTGGGGACGTTACCATCACTAATGACGGTGCAACAATTCTCAAGATGTTAGAAGTAGAGCACCCTGCTGCAAAGGTGCTAGTGGAGTTGGCTGAACTCCAAGATCGTGAAGTTGGTGATGGCACAACTTCGGTAGTCATTGTGGCAGCCGAGTTGCTCAAGAGAGCTAATGATTTGGTGAGAAACAAGATTCATCCAACTTCTATAATTAGTGGGTACAGGCTTGCCATGAGGGAAGCATGCAAGTATGTCGAGGAAAAGTTGGCTGTAAAGGTTGAAAAGTTGGGAAAAGACTCGCTTATAAATTGTGCTAAGACGAGCATGTCTTCTAAGTTGATTACAAGTGATAGCGACTTCTTTGCAAACTTGGTTGTAGAAGCGGTGCAAGCAGTCAAGATGACCAATGCAAGGGGAGAAATTAAATACCCAATTAAGGGAATCAACATTTTGAAAGCTCATGGAAAGAGTGCAAAAGATAGCTATCTGTTGAATGGTTATGCTTTAAATACTGGCCGAGCAGCTCAAGGGATGCCAGTAAGAGTTGCACCAGCAAGGATTGCTTGCCTTGATTTCAATCTTCAAAAGACAAAAATGCAGCTGGGTGTGCAGGTTCTTGTTACCGACCCTCGAGAACTTGAGAAAATTCGTCAGAGGGAATCTGATATGATGAAAGAACGTATCGAAAAGCTTTTGAAAGCTGGGGCAAATGTTGTTCTCACCACGAAAGGGATTGATGACATGGCACTCAAGTATTTTGTGGAAGCAGGTGCTATTGCTGTTAGGCGAGTCAAAAAGGAGGACATGCGCCACGTCGCTAAGGCTACTGGGGCAACCATGGTTTCAACGTTTGCTGACATGGAGGGGGAGGAAACTTTTGAGCCATCACTTCTTGGATATGCTGATGAGGTCGTAGAAGAAAGAATTGCTGATGATGATGTTGTTATGATAAAAGGTTCTAAAACTACAAGTGCGGTCTCCTTGATCCTTAGAGGCGCCAATGACTATATGCTTGACGAGATGGAGAGGGCTTTGCATGATGCATTATCTATTGTCAAGAGGACTCTTGAGTCCAATACGGTGGTAGCAGGTGGTGGTGCAGTTGAATCTGCATTGTCGGTGTATTTGGAGTACCTTGCAACAACTCTAGGCTCCCGTGAGCAGTTGGCAATTGCTGAGTTTGCCGAATCTTTGTTAATTATTCCGAAGGTACTTGCAGTTAATGCTGCTAAGGATGCTACTGAGTTAGTTGCCAAACTACGAGCTTACCACCACACAGCACAAACGAAGGCAGATAAGAAACATCTCTCTAGCATGGGACTCGATCTAACCAATGGATCTATTCGCAATAACTTGGAAGCTGGTGTTATTGAACCTGCCATGAGCAAAGTAAAGATAATTCAGTTTGCAACTGAAGCAGCAATTACAATTCTTCGTATCGATGATATGATCAAACTTTACAAGGATGAAACACAAAACGAAGAATAGGTTGGTTTTTCACGATTCTGGATAGAGGATTACCTACATTGATATTCTTCATAGTTAGCGAGCCTGCTTATTAGTGGCTTTAAGTTTATTATAAAGTAGATTTGTATCCAGGTGGTGAAGTGTGCATTTCTATCTACTGTGTTATTATGTTGACAATGATGAGAGCTATGATTCGATCCGCTGCACCTTCTGATGCACTTTCTGATGTCAGTGGGTCTTTTTGGAGAAATTTTGGCTGGCTTGGTTTGAGAAGATTTTTATTTGATAATCTCACCTTATTTAGATATCTATTTTCTTGTAATTTTTAGCACTGGTTTTTGGACTTAGGAGCCTGTGTTAATATAATATGTTTTGATTGTCATTATGGGAATGTTGAGAACTATTTTGATCATATTGTTCATTCACCTCCCATCCTTTGCAATCATGAGTCATTCTTTCCTTGCAAAAACTTATGCTCAAAGTCTTTAATAGAAGTTCTCTTAGCAATTGAATCATATGGATATTGGTTCAACATTTTATCCTTAATTTATACACCATAGATTTCTAGTTTACCTT ATGGCAATTACTTCACAAACCCTTGATATATTGGGTGAGCGCCAATCTGGTCAGGATGTTCGTACTCAAAATGTTGTAGCGTGCCAAGCAGTTGCCAACATTGTGAAATCCTCGCTTGGACCTGTAGGCCTTGATAAGATGCTTGTGGATGATATTGGGGACGTTACCATCACTAATGACGGTGCAACAATTCTCAAGATGTTAGAAGTAGAGCACCCTGCTGCAAAGGTGCTAGTGGAGTTGGCTGAACTCCAAGATCGTGAAGTTGGTGATGGCACAACTTCGGTAGTCATTGTGGCAGCCGAGTTGCTCAAGAGAGCTAATGATTTGGTGAGAAACAAGATTCATCCAACTTCTATAATTAGTGGGTACAGGCTTGCCATGAGGGAAGCATGCAAGTATGTCGAGGAAAAGTTGGCTGTAAAGGTTGAAAAGTTGGGAAAAGACTCGCTTATAAATTGTGCTAAGACGAGCATGTCTTCTAAGTTGATTACAAGTGATAGCGACTTCTTTGCAAACTTGGTTGTAGAAGCGGTGCAAGCAGTCAAGATGACCAATGCAAGGGGAGAAATTAAATACCCAATTAAGGGAATCAACATTTTGAAAGCTCATGGAAAGAGTGCAAAAGATAGCTATCTGTTGAATGGTTATGCTTTAAATACTGGCCGAGCAGCTCAAGGGATGCCAGTAAGAGTTGCACCAGCAAGGATTGCTTGCCTTGATTTCAATCTTCAAAAGACAAAAATGCAGCTGGGTGTGCAGGTTCTTGTTACCGACCCTCGAGAACTTGAGAAAATTCGTCAGAGGGAATCTGATATGATGAAAGAACGTATCGAAAAGCTTTTGAAAGCTGGGGCAAATGTTGTTCTCACCACGAAAGGGATTGATGACATGGCACTCAAGTATTTTGTGGAAGCAGGTGCTATTGCTGTTAGGCGAGTCAAAAAGGAGGACATGCGCCACGTCGCTAAGGCTACTGGGGCAACCATGGTTTCAACGTTTGCTGACATGGAGGGGGAGGAAACTTTTGAGCCATCACTTCTTGGATATGCTGATGAGGTCGTAGAAGAAAGAATTGCTGATGATGATGTTGTTATGATAAAAGGTTCTAAAACTACAAGTGCGGTCTCCTTGATCCTTAGAGGCGCCAATGACTATATGCTTGACGAGATGGAGAGGGCTTTGCATGATGCATTATCTATTGTCAAGAGGACTCTTGAGTCCAATACGGTGGTAGCAGGTGGTGGTGCAGTTGAATCTGCATTGTCGGTGTATTTGGAGTACCTTGCAACAACTCTAGGCTCCCGTGAGCAGTTGGCAATTGCTGAGTTTGCCGAATCTTTGTTAATTATTCCGAAGGTACTTGCAGTTAATGCTGCTAAGGATGCTACTGAGTTAGTTGCCAAACTACGAGCTTACCACCACACAGCACAAACGAAGGCAGATAAGAAACATCTCTCTAGCATGGGACTCGATCTAACCAATGGATCTATTCGCAATAACTTGGAAGCTGGTGTTATTGAACCTGCCATGAGCAAAGTAAAGATAATTCAGTTTGCAACTGAAGCAGCAATTACAATTCTTCGTATCGATGATATGATCAAACTTTACAAGGATGAAACACAAAACGAAGAATAG MAITSQTLDILGERQSGQDVRTQNVVACQAVANIVKSSLGPVGLDKMLVDDIGDVTITNDGATILKMLEVEHPAAKVLVELAELQDREVGDGTTSVVIVAAELLKRANDLVRNKIHPTSIISGYRLAMREACKYVEEKLAVKVEKLGKDSLINCAKTSMSSKLITSDSDFFANLVVEAVQAVKMTNARGEIKYPIKGINILKAHGKSAKDSYLLNGYALNTGRAAQGMPVRVAPARIACLDFNLQKTKMQLGVQVLVTDPRELEKIRQRESDMMKERIEKLLKAGANVVLTTKGIDDMALKYFVEAGAIAVRRVKKEDMRHVAKATGATMVSTFADMEGEETFEPSLLGYADEVVEERIADDDVVMIKGSKTTSAVSLILRGANDYMLDEMERALHDALSIVKRTLESNTVVAGGGAVESALSVYLEYLATTLGSREQLAIAEFAESLLIIPKVLAVNAAKDATELVAKLRAYHHTAQTKADKKHLSSMGLDLTNGSIRNNLEAGVIEPAMSKVKIIQFATEAAITILRIDDMIKLYKDETQNEE Homology
BLAST of PI0014443 vs. ExPASy Swiss-Prot
Match: P28769 (T-complex protein 1 subunit alpha OS=Arabidopsis thaliana OX=3702 GN=CCT1 PE=1 SV=1) HSP 1 Score: 933.3 bits (2411), Expect = 1.2e-270 Identity = 492/545 (90.28%), Postives = 526/545 (96.51%), Query Frame = 0
BLAST of PI0014443 vs. ExPASy Swiss-Prot
Match: P18279 (T-complex protein 1 subunit alpha OS=Cricetulus griseus OX=10029 GN=TCP1 PE=2 SV=1) HSP 1 Score: 701.8 bits (1810), Expect = 6.0e-201 Identity = 358/538 (66.54%), Postives = 458/538 (85.13%), Query Frame = 0
BLAST of PI0014443 vs. ExPASy Swiss-Prot
Match: P17987 (T-complex protein 1 subunit alpha OS=Homo sapiens OX=9606 GN=TCP1 PE=1 SV=1) HSP 1 Score: 701.8 bits (1810), Expect = 6.0e-201 Identity = 355/537 (66.11%), Postives = 456/537 (84.92%), Query Frame = 0
BLAST of PI0014443 vs. ExPASy Swiss-Prot
Match: Q9XT06 (T-complex protein 1 subunit alpha OS=Monodelphis domestica OX=13616 GN=TCP1 PE=2 SV=1) HSP 1 Score: 701.4 bits (1809), Expect = 7.8e-201 Identity = 357/537 (66.48%), Postives = 452/537 (84.17%), Query Frame = 0
BLAST of PI0014443 vs. ExPASy Swiss-Prot
Match: Q32L40 (T-complex protein 1 subunit alpha OS=Bos taurus OX=9913 GN=TCP1 PE=1 SV=1) HSP 1 Score: 701.0 bits (1808), Expect = 1.0e-200 Identity = 356/537 (66.29%), Postives = 454/537 (84.54%), Query Frame = 0
BLAST of PI0014443 vs. ExPASy TrEMBL
Match: A0A5D3DFG1 (CCT-alpha OS=Cucumis melo var. makuwa OX=1194695 GN=E5676_scaffold333G00750 PE=3 SV=1) HSP 1 Score: 1008.1 bits (2605), Expect = 1.4e-290 Identity = 540/545 (99.08%), Postives = 542/545 (99.45%), Query Frame = 0
BLAST of PI0014443 vs. ExPASy TrEMBL
Match: A0A1S3B4R0 (CCT-alpha OS=Cucumis melo OX=3656 GN=LOC103485803 PE=3 SV=1) HSP 1 Score: 1008.1 bits (2605), Expect = 1.4e-290 Identity = 540/545 (99.08%), Postives = 542/545 (99.45%), Query Frame = 0
BLAST of PI0014443 vs. ExPASy TrEMBL
Match: A0A0A0LN13 (CCT-alpha OS=Cucumis sativus OX=3659 GN=Csa_2G099450 PE=3 SV=1) HSP 1 Score: 1005.7 bits (2599), Expect = 7.2e-290 Identity = 539/545 (98.90%), Postives = 542/545 (99.45%), Query Frame = 0
BLAST of PI0014443 vs. ExPASy TrEMBL
Match: A0A5A7U8G8 (CCT-alpha OS=Cucumis melo var. makuwa OX=1194695 GN=E6C27_scaffold55G002210 PE=3 SV=1) HSP 1 Score: 1002.3 bits (2590), Expect = 7.9e-289 Identity = 540/549 (98.36%), Postives = 542/549 (98.72%), Query Frame = 0
BLAST of PI0014443 vs. ExPASy TrEMBL
Match: A0A6J1CTJ9 (CCT-alpha OS=Momordica charantia OX=3673 GN=LOC111014169 PE=3 SV=1) HSP 1 Score: 1001.5 bits (2588), Expect = 1.3e-288 Identity = 536/545 (98.35%), Postives = 541/545 (99.27%), Query Frame = 0
BLAST of PI0014443 vs. NCBI nr
Match: XP_008441727.1 (PREDICTED: T-complex protein 1 subunit alpha [Cucumis melo] >TYK22198.1 T-complex protein 1 subunit alpha [Cucumis melo var. makuwa]) HSP 1 Score: 1008.1 bits (2605), Expect = 3.0e-290 Identity = 540/545 (99.08%), Postives = 542/545 (99.45%), Query Frame = 0
BLAST of PI0014443 vs. NCBI nr
Match: XP_011649041.1 (T-complex protein 1 subunit alpha [Cucumis sativus] >XP_031737090.1 T-complex protein 1 subunit alpha [Cucumis sativus] >KGN61361.1 hypothetical protein Csa_006728 [Cucumis sativus]) HSP 1 Score: 1005.7 bits (2599), Expect = 1.5e-289 Identity = 539/545 (98.90%), Postives = 542/545 (99.45%), Query Frame = 0
BLAST of PI0014443 vs. NCBI nr
Match: XP_038890498.1 (T-complex protein 1 subunit alpha [Benincasa hispida] >XP_038890499.1 T-complex protein 1 subunit alpha [Benincasa hispida]) HSP 1 Score: 1004.2 bits (2595), Expect = 4.3e-289 Identity = 537/545 (98.53%), Postives = 543/545 (99.63%), Query Frame = 0
BLAST of PI0014443 vs. NCBI nr
Match: KAA0051460.1 (T-complex protein 1 subunit alpha [Cucumis melo var. makuwa]) HSP 1 Score: 1002.3 bits (2590), Expect = 1.6e-288 Identity = 540/549 (98.36%), Postives = 542/549 (98.72%), Query Frame = 0
BLAST of PI0014443 vs. NCBI nr
Match: XP_022144491.1 (T-complex protein 1 subunit alpha [Momordica charantia]) HSP 1 Score: 1001.5 bits (2588), Expect = 2.8e-288 Identity = 536/545 (98.35%), Postives = 541/545 (99.27%), Query Frame = 0
BLAST of PI0014443 vs. TAIR 10
Match: AT3G20050.1 (T-complex protein 1 alpha subunit ) HSP 1 Score: 933.3 bits (2411), Expect = 8.7e-272 Identity = 492/545 (90.28%), Postives = 526/545 (96.51%), Query Frame = 0
BLAST of PI0014443 vs. TAIR 10
Match: AT3G11830.1 (TCP-1/cpn60 chaperonin family protein ) HSP 1 Score: 309.3 bits (791), Expect = 6.1e-84 Identity = 189/536 (35.26%), Postives = 313/536 (58.40%), Query Frame = 0
BLAST of PI0014443 vs. TAIR 10
Match: AT3G11830.2 (TCP-1/cpn60 chaperonin family protein ) HSP 1 Score: 305.4 bits (781), Expect = 8.9e-83 Identity = 189/536 (35.26%), Postives = 313/536 (58.40%), Query Frame = 0
BLAST of PI0014443 vs. TAIR 10
Match: AT5G20890.1 (TCP-1/cpn60 chaperonin family protein ) HSP 1 Score: 285.4 bits (729), Expect = 9.5e-77 Identity = 185/527 (35.10%), Postives = 303/527 (57.50%), Query Frame = 0
BLAST of PI0014443 vs. TAIR 10
Match: AT3G18190.1 (TCP-1/cpn60 chaperonin family protein ) HSP 1 Score: 276.6 bits (706), Expect = 4.4e-74 Identity = 186/525 (35.43%), Postives = 289/525 (55.05%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Melon (PI 482460) v1
Date Performed: 2021-10-25
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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