Sed0000557 (gene) Chayote v1
Overview
Sequences
The following sequences are available for this feature:
Legend: exonfive_prime_UTRpolypeptideCDSthree_prime_UTR Hold the cursor over a type above to highlight its positions in the sequence below.GGGGCTAATTTCAACGGTTGAAACGCAAGGCGAGGTGGAGAGACAGTTTGTCGGACTCGCAAGCTTGTTGATTAATTGTGGCTGAAGTTCAACCAGTAGCCATCACAGCAGGTTGAAGAAGAAGAAGAAGAAGCGGCTGAGGTTCAAGCTCGGATCTCTCTTCTCCAATGGCAGCGGCCTTCACCTCTTCCCTCTCCCTCCCTCTCCAACTCAAACCCTCGTTCCAATCTCGCCGCCGGCTTTCTTCTCCGCCGCTCTCCGTTTCCTTCCCCGCCAAATTCCCCCGCCGATTCCCCGCCCTAACCGTCTCCGCCTCCGACGACGACTTTGCGCAGCCGCAGCCGCAACCGCAGCCGTCTTTTTCGTCCAAGGTTTGGTTGATTTATGCTTGTGTTTTGTTTTTATTCAATCGGAAAATATTGATTGCCGCAGCGTTTAATTGGACGGTTGATTGATTCATATTTCATTTATCGTACGGATAGTTTATGGAATTAGCTGTTTCTTGCTTCGATTTGGTTCTCTTCCATTGGAATTAGTGGAAGTATTGGATAAGCTTTTGCCTGTTTGTCTTTTTTTTTTTCCGGATATCCATGAATGTCCCGGTCAGTTTGTGGGATAAGATATATCGACTGACCTTAAAATATTTGGATTGAACCCATGGGAAATTAATTTATAGGTTACCATTTTTTTTTTAAAACCGGGAAAATACCCCGAGACACCACTAGTCCATCCTTAGACACCATCGGAATACTTTGAAGGGTATTCTACCATGAATTGAACTCTTCACCTCTTAGTTTCTCCGGTATCTTTTGGCTACTAAGCCATTCCGTGATGGTTAGGTATTGCCCGCATATAGATGTGTGTGCAACAAAATTTGGTTTAGAGTTGAGAAGTTTTAGTTTCATGTTGTTAAAATGCGTTTGGGAATAACCTTGTATTGTGTTTTAGTCAAACGGAAAATATTGTGTACCGAGCGTTTAATTGGAAAGAAGATCGATTCTTTGTGTAAGTTGGTGGAATTAGCTGTTGCTTGCTTGGATTTAGTTCTGGAATTAGTGGAAGTATTGGACCGAAGAATTGGATAAGGTCTTGCTTGATTATAGATGTATGTGTACCAAAATTTTGTTTACCGTTGAGAAGTTTTAGTTTCGTGTTTGTAAAATCCGTTTGGGAATGTCCTTAAGAGGTGCCACATTGGTTGAAAACTTGAGCTTTGAGGGTATGCTCCCCTCAAGGTCCCAGGTTCGAGACTCAGCTGTGACATTACTCCTTCGATGTCTCTCGGTGCCTGGCCTAGGGACGGGAATGGTTACCCTTGTTTCAAAAAAAAAAAAAAAAAATCCTTTTGGGAAAGAGTACTTTGTAGAAAAAGCTTTCTCAGGGGCTAATAATATTCGGTAGTAATCAGCCAATAAGAACATGACTTTAGCGACATCTTGTATAACATAGTAGCTATGAAGTTACAGGTTCAAATTCTCATTCCCTAAATGTTTTTTGGATAAGAATTCCCTGAATGTTGTTGAATCAAAAAACAAAATTGATAGTAGTCATGTGAATCGCCAAACCTAGCTTTCACTTCTTCATGTTCATGCTAGTCACTGGGCTTCTATTCTGTTGTGTGGGTTCAACCCCTGCCCTATACACCAGTTAGCACGGCAGTCCTCTAAAATTCATAGCTTCCTTGACAACCAAATGTAGTAGGTTAGATAGTCGTCTCGTGAAATAAGATTAAGTGCGCGCAAGCTAGCCGAGACGTGTGATGAATTTTGATATCTTTTCATTATAATTTCTTTTGTTGACATGTTATTTTTCATTTTTCAGAAATCTGTGCTCTCATCTTTGATACAAGAGATAGAGCCATTAGATGTTAGCATAATTCAAAAAGATGTTCCACCTACCACTGTGGATGCCATGAAAAGGACTATCTCGGGCATGCTGGGCTTACTTCCATCTGACCAGTTTCAAGTTTTAGTTGAAGCTTTATGGGAACCAGTTTCCAAGTTATTAGTTTCTTCAATAATGACCGGGTAAATTAACTATCTCAATTTGTGTCTTTACGCTTTCTTAGATTCCTTGAGAAAGCAGGGAAGGGGCAATTTCTTCACTGGAAATTTTGTATGTTTTTGTTGCAATGAACCAACGGTTGAACATCTTTAACTGTACTTTATATATTTCTTCTTATAGGCATTTGTTTTTTAAAAAAATTAACTCTTGCTTAACTGCTGATAAGGTTGAGTTCAGTCATCATGTCCTCGTTTCTGATATCAAATTCACGATGTTGAATCATGTTAAATCATCAATCAACTCAAAAGTTAAGCCGATAGGTTAAGGTAAATTTAATTATATCAACCAACACTCTTCCTCACTTGTGGGTTTGGAAATTAGAGAAATGCTACAAGTGGGATTCAATTTTAATTGGAGAGAAAAAGTTTTGGCAGGGACTTGAACTCAAGACATCTTGCTCTGATACCATGTTAAATCATATTAAATTACCAATCAACCCAAAAGTTGCCAACAAGAGAAGTAGCTTAGCGACATTAGTGTATACTCATTAACCATGAGGTCATGGATTCGATTTCCCCTACCCCCAATTGTTGTAATCTAAAAAAAGAACCAATCAACCCAAAAGGTTAAGCTGATGGGTTGAGGTAAATTTAATTATATCAACCAATACATGAAGAATGCGATATTTACTTTCTCCTTTTTAATTCCCATTATATATTAGCACATCTTGATGGTATTTCTCTTTGTTCTGATGTTATTTCAGGTACACATTGCGTAATGCTGAGTATAGACTTTGCCTGGAAAGAAATCTCGACTTTGATGATGAAAATAATGAAAAACAAACAATTGATAATTGTAGAGTAGATCTACATGAAATGTTGCTTGATAGTGCAAATTTAGCTAACATTTCAGATGAAAATGAGTCTTCTTCGAAATGTGGGGAATCTTTGGACGAACCATTTGAAAACGTTAATATTCAAGGCATTGGTGAAACTTCTCCAGAAGTTCAACAACATATTCTTCATTTACAGTTTCAACTATCTTCATTTAAAAAGGTAAGTGTCCTGTAAGTTTTGCAACCCTCTCTCTACTTTATTTAACTAACCCAGCCCCAAATGTGCTAGTTATAATCACCAGTGCTGATAGATAATGATTTAAGGAAAGTTTATCATGTTATCCATCAGATATGGTGACAGCTGAAAATTTATTTTGCCTATTGGCAACTGTCACTTAGTTAAAAGTTAAAACAAGGTTTATATTTTCGTATTGGCCTTTTTTATGTATTGGGTTAGATGTTGTATTAGGATTTTATGAGAGTGCACTCCATAAACTCTCTTAAAATCCTAGTCTCGTTCAACCGAGTATTTGTTTTCTTATTTCCTTAATAAAACAGTTCTCTTATGTTTGTAGACGTAGACATAGCTTGCATACCTTTAGTAAATCACGCAAATCTCTATGTCATTTGTCTCGCGTTTTCTTTATTTTTCTTAATTGTTGTTTCCGTTTTTCATAGCACTTTTGTTTTTCCATTTCTAATTTACTTTTCTGTATTAATTTGATGAAGGAACTCCATGAGGTCAAGAGGAAAACTGCAGCGCTTCAGATGCAACAGTTTGTTGGGGAGGAGAAAAATGATCTGTTAGACTATCTGAGATCATTACAGCCAGAAAAGGTGTGTTTATTTTTTCAAGAACAATCAAACTCTGGTTTTCGATTTAAGATCTTCTAGATGACGTGTGCACACATATCTATAATTTACCGTGAAGACATTTACTGAAAGTTGCAATATAGGTTCACAAAGTAGCGTGTTATTTGCATGTTTATTGATTTTTTGCGTTAGGTTATTTATATGAAGGTTTTTGTATCCTTCTTTTATTTTGTTATTAAGGAACGTGCAAGAAAACGTTTGCTTACTCTGCATATTTTTACAACAATAGATAATAAGGCAACACATGGCATCCCCAAGGGGCAGCTTTATTGGTTGAGACTTGGGGCTTTCAAGGCATGCTTTTTTTAAGGTTTCAAGTTCGAGCTCCCGAGTGAGCTTATGTAAAATTCCTTGTCGTCTCCTATGTTTGGGCTTTAGGATGGGCGCGAATGCTTCGGGTATAGTGGAGCACAGTTCCAATTTCCCAATTTCAAAAAAATAAAATAAGGCAAAACAGGCATCACAAGGAGCAAATGTTAGATTTTTATTTCCCTTTCAAATATAGATGTGATTACTGTCTAGTACTGAGAAATAAGGATATGGATATGAGACACGGATATGAGTCATATGACATGGACTCGTTAACTTGACATCATTTTTATATAAGAAGGAAATAAAGAAGTCAATAAATTTATGCATTTATATTCTTAAAAGTAATTGATGCATTGTACACCCAAAATTTGTTACATTTGTCCTATATTATCATGTGTTTATTCAGTATGTGTCTAAAAAGATGTTGGCCATCCATTTTGACTTTGGCTATAAGGGTCTAACACATTTTTTGTGCTAACTGCTAACAAATGTTCTGACTCGTGTTCACACAAACACTCTAGCCAATTTAAATTGTCCGTGCTTCTTAGGTCGTCTAGTACGACCTGACTATTGACATGATAAAATAATGCGGTGTCGTTCACCATAAGTGATAGATATTATGATATCTAATCATCCTATTTTCTCAATTTGTTCTACAGTAAGAACTATTGCTGCTTCTATGTTAGGCCACCAATTAGAGCAGTATATTAGAAGAGGGACAGAGAGAACATTTCAGACTCAAGTCCATTTGTTATGGGTCAGGTTTGTAGGGGTGAGTGTTTTTATTGGGGACTACTGACTTTCAGGGAATGTGGGGTACTAGTCGTGACTTTCAGGCCAATACCAAGCTTGTGCTGTCAAATTCCTCATTGTTTCATCCAAATGGACGTGGGCAGTCCTGATCTGCCCGTACTGACAACTTCTGCAATGTACGTGCCAATGAACGTGGGTGGTCTTGATGTGCTTATTCACAGTCGAGTACGACGACGTCTACACCACCGATCAGTTCTTAGGATATTTTACTTGGAATTTTTATGTTTGTGTGGTTTTCACTCTTGATCTCTTTCATTTGTATCTTTTCTTTTGGTCCTTGTTTCTACGGGCTTATTGTCTCTTTTTCATATTATCAATCAAAAGGGTCTTGATTTTGATACGATCCGGCCTTGGCATTTTAGGAATATTAGTATTTATTAATTGCTATTTTAAATGTATTGGGCTTGGGCCTATTATTAGTCTTTTATTAATTAGGTCAAATTAGGGTTTAGGGTTATAAATAGGAGTTGTTAGGTCATTGTCAATCATCCAATTGAATTGTCGTCATTGTACTTTGGCTCTTTGAGAGATCCTCTCGAGAGAATTATCGTAGTTTAATAAAAAGTGTGGTAGATTCTATCATTTTGGTATCAGAGCCATTTGCTGATCCGGGAATGGTGACTACTAAGATGGAAACAAGGATGCAAGAATGTGAAGAAGGAACGACCGACTTGGCAAGAAAGTTACAAGAAACTAATGCGAAGATGGAAGCGATGGAAGAACGATTGGGAAAAAGGTTGGATTCACAAGATTTGAAAATCGAGAGCATCAACCTAATCTAGAGTTGTTGATGGAGTCGCTCCGAGCGGACAAAGGGAAGGGTTTATTAATCGACGCCAGCCAGAAGGGCGGAAAAGCGAAGCGGCAAATGGTCGGCGCCGGTTTGGCGGAGGCGTGGCGCCGCAGGAGCGACAGCGGCGGTCGGCGAGGGGGGCGAGGCGAGCGGGAACGGGCACGAGGGCGCTGGGACTCGGATGAGTGCGGATGGGCGTGACGGCGTGGGGGCGTGGAGCTCCGAGGGTGCGCGCGCGGGGCGTGGGCTGGGGCGAGCCGGGAGTGGGCGGCTTGGGTGGTCCGGGCCGAGGCTCGGGTGAGTCTGACTCGGGTGGGCCGAGTCGGGGTGGGCGGGTCGGACCGGGTCGGGGTGGGCCAGTCGGGTTGGACCGGAGGGTGGAATTTCAAGGAATTTTTGACGGGGACACTTGCACTGGCCGGATTTTGGTCGACGAGAAGAACCTAGGAACGACTGGGGGGGGAAGCAGTTTCCGAGGAGAGGAGAGGAGAGTGCGCATAGGTTTCGATAGACCGATAGCGCATGACGGTTAGAACGATCGGGGCCAAAATTGGGTTGACGATTTACAGGGACCAGAGTTCGGCCAAAGGGGGGATCCAAGGGTCGTGGAGAGAAAAAACAGGGTTCTGGAGGAGAGAAGGTTGCGCATGGGCTTTGATAGGTCGTTGGCGCATGACGGTTGGAATGATCGTGGGTGGAGTGACAATGTTCGAAGTAGGGGACGAGATTTCGGGTGGGGAGGAGAAGAAAGATTTGAACGGGGAGGTCAGAGAGTAGGAGGAAGGGAGGGACCGGGATGTGACAGGAGATTTAGAAAATTGGAGATGCCGATTTTCAAGGGTCTTGTTGATGAGGATCTGGTAGGATGGTTGAGTCGGGTCGAGCATTATTCCTGGTAAACAAGTTGACTGAATATGAAGGGGTTGAGGCAGCAGGGTTATGTTTAGAAGGGGAGGCATTGGAGTGGCTTCAGTATGAGGAGGACCGTGCCCCTTTTCGTTCCTGGAACGAATTCAAAGATGGGTTGTTGGAGCGTTTCCAAACGGTGGCCCAGGCCAATAAGTATGCCAACTTCATGAGTTTGAAGCAAATAGGAACGGTGAAGGAATATCATCGGAGCTTTGAGCGCTTTGCTAAGGGAATGCGCGATATCAGTATGAGTGCATTGGAGGGGAAGTGGGAAAGTGGGAAAGTGGACTGAAAGAGGAGATACGGAGCGCGATGCGTAAACTACGACCAGTGGGCATTGAAGAGAAAATGTTTATGGCCCAAGTGATTGAGGATGATTTTGCTTTTCAGGCTGCCCAAAACGAGGGAAGTACTTCTCGCAATGATCAAGGCTAAAGCGAGAACGATTGTATCGGGAAACTGGAAGCACAAAGATTTTGTCCCACAGACTACAACCGCTTCACCCGACGCCTTGTAAAAACTCATCAAGCCGAAATTCGAGCTAGGAAGGACAAAGGGTTATGCTTCCGCTGCGATGAACAATTTGTCCCAGGACATCGTTGTCAGAAGAAGGAGCTCCAAAACTTGGGTGTGTGGGTCGTTCGGGATGCGCACGAGTGCCAGGATGTTGATGTGATGATTTTTGCCGTAAGACGGTCAGAAAAGATGGCACCAGAGATGGAACACCTTGAGGACAAGGCTCTTGGGGGGGAAAGTATTGATACGATCCGGCCTTGGCATTTTAAGAATATTAGTATTTATTAATTGCTATTTTAAATGTATTGGGCTTGGGCCTATTATTAGTCTTTTATTAATTAGGTCAAATTAGGGTTTAGGGTTATAAATAGGAGTTGTTAGGTCATTGTCAATCATCCAATTGAATTGTCGTCATTGTACTTTGGCTCTTTGAGAAATCCTCTCGAGAGAATTATCGTAGTTTAATAAAAAGTGTGGTGGATTCTATCAGATTCCTATAAAAAAAACAAAACAAACAAACCTTCAGCTCCTTCCTTGGTTGACTTCAAGTATGAAAAGTTTGCATTCCCTTCCATGCTTATCATTTTTCTTCTAACTTGTGTCTTGGGTTTTAGGTAAGAGGTTTGGCTTTTGGTTAAACCGTTGGATTCGAGTGCAACTTATCAGGTTACAATAACACACCATGATTTTTGTTGCTCTTTTTACATTTTTGAAGCATATATAGTTTATTAAATTGTTACTTTTTATTTATTTTGATTCTATAAGATTGTATGCCTTTGTGAATGAGATTGTGGATCATATGATTATGTTTGGCTTCATGATGATATTTTTTTGCTTACTTCCAATTATCTATGATAAATAGGTGGCTGAGCTGTCTGAACCTACATCCCCTGATTCAAAAGAAGCCATACATTCTGTAGTTCATGGACTTCTTGCTACCCTTTCCCCAAAGATACATTCCAAAGTTCCTTCTCAATCAGAAAATATTGGAACAAGCACGACAAATATTGGTAATGAAGATTGTGCAGAACTTGTTGAAAATACTTCTCTTCAATTCCAACCGCTCTTAACGTTAACTCGAGACTATCTGGCTCGTCTACTTTTCTGGTTAGACAACTTATCATTTTCTTCTTTTTCATGGTGTACTCTGCATTTAATTTGATTAGTTTCATTAATTACATGTTTAAGATATTTTCCTGGAACAGAAAATTCTAACCATGTGCGCTTAAAGAGGGTAGTCACAGTCCCCAAGGGTGGCCTAGTGGTTGAAGACTTGGGATTTGAGGGTATGCTCTCCTCAAGGTCTCAAGTTCGAGACTCAGCTGTGAAACTACTCCTTTGATGTCTTCGGTGCCTGGCCTAGGGACAGGTGTGGTTACCATGTTTTAAAAAAAAGAGGGTAGTCACATACTCGTGAAATAATTTACTACCAATTTTCTTGACAACCAAATGAAGTAGGTAGGGTCATATGGCGTCCTCTAAGATTAGTCAATGTGCGCGTTGACTAGGACTCTAACGGATCATTAGAAAGTCGTTTATCCTGAAAGCCAAAATGACGACTTTTGTTTGTTTAATGCCGGGGTTTTGTGTTGGTTATCTTTTTCTGAATACCTAAAAAAAGTACACGATTGGCCCAGAACAGTTCTTCCGAACTTCCTTTTTTTAGTTCAACACTAATTTAGGGGAATCGATTGTATGACCTCTTGGTTTATGGACATTCGTTGATGTTGTTGAACTATGCTCTTGTTGGCCAATTCTTCCATACTTGATTATCAAGATTCGAGAATTCCTTGCTGATATATTTATCAAGATTCGAGAACCATCATAGAGTGACTTAGTGGTCAAGAGGGCCTTGGAGAACTAAGAGGAGATGAGTTCAATCTATGGTGGCCACCTACCTATGAATTAATTTCCTACTGTTTCCTTGACATAAAAATGTTGTAGGGTTGACGGTAATGTTCCGTGATATTAGTCGAGGTGCGCTGCAAGCTGGTCCAGACAGTCATATGTTTTAAAAAAAAGAAGAAAAAAGATATATTTATGGTGCCTTTTAATTATCTTAGAGACTAAATATTTATATTAAGTACGAGTTTGTGTGCATGAGAGGAAGCTATTTGTTATGAAATAGACAATTAACAAACAATCGAAAATAAAGAAAACAAGAAAGAAACTGATAAGACCCGTTTAGGAGTAGGATAAGGAATGGTCAATCCTATTAGGAGTAGGATAAAGAATGACCAATCCTATTAGGAGTAGGATAAACATATTAGACTATAAATAAGAGAGGATAGAAAAGTTAGGAGATATTGAAAAGTATTGAGATAGTGAGTATCTAGGGCTTGAGAGTGATCTCAAGATCGGGAGGGTCCAAGTACCTTTAACACTTGGGTTAATTAGTATCTTTATTATCTTTATATTATAATATATATTTGGTTCTTTTCAATTTGGTATCAGAGCACTTCGATCCATGGATCGGGACTCCTATCTTGACCAATTGATTTACAAATTAAGTGACAAAAGTTTTATTGAATGAATTACTCAAAAAGTAGTAGAGGCATTTACGAAATCTTGGGATGAGAAAAAGAAAGAAAAGGAAGCGGCATGGGATTTGGCATTCCAACCTCTACAAGATAGTTTTAAAATGAAGGAAGAACATGAGGAATATTTGGTTGGAACAAATGAAGAAGCATTAGAGAAAGAGGAGAAATTGAATAAAGAATCCACTTACTCGGGTGAGAAAGATTCAAGAAAATTCTATGAAGAAGTCAAGAAAGTGGTAACGACAAACAATGGTGAGAGTGATGCAAATCTAGAAGATTATTATGCTATTTCTATGGGAAGAGCATCAAATCTTGATGAAGAAATCGAGGGTCAAGATGGAAGTAATGTTGAAACAAATGAAGCATTGTTATTAGAGAAACACAAGAGAAGGGATGGTGGGAAGAAACCAAAGAACACTACTCGAACAACCGGCTTGTTAAAGAAGACACTTTTTCAAAATATGCAATGGTCAAAAGTGGTAGTTTTGGAAAAATTCGAAAAAAAGAAACTAAGGCAAGAATTCATTGCATTGAAGACGTTAATCCAAGAACGAAGAAGAAGAAATTCGTCGATGAAGAAAAGAAAGAATGGACAAATGCAAAACCACCAAAGAATACAATTATGGGAGAGAAAAATAAAATTCATTCGACAAGTGAGGAGACGAAAGAAGCAACGTAAGCTCATGACGAAGAAGGATCAAGAACATCAAATGACCATTGTCGCCACCTATGATCACCCGCCACCACCGCCGGCGCCACCTCCAATCATTGTTTATTTTTGTTCTTTTGTAATAAACACCTTGAGGACAAGGTGTATTTTGGGGGCCGGGTAATGATAAGGCCCGTTTAGGAGTAGGATAAGGAATGGTCAATCCTATTAGGAGTAGGATAAGGAATGACCAATCCTATTAGGAGTAGGATAAACATATTAGACTATAAATAAGAGAGGATAGAAAAGTTAGGAGATATTGAGAAGTATTGAGATAGTGAGTATCTAGGGCTTGAGAGTGGTCTCAAGATCGGGAGGGTCCAAGTACCTTTAACACTTGGGTTAATTAGTATCTTTATTATCTTTATATTATAATATATATTTGGTTCTTATCAGAAACAAACACAGAATTTACATGGTTCACTAACGTTGTGTTAGTTAGTTTATAGGCAGAGAGAGAGAGTACGATATTATCAAGGAGAATGGCGGAAATACAGAATGAATATCATCGGGGCTAGAGTTTAATTCAAGTTAAATATGCACTCTCATTAAACCCTATTACAGATAAAGCCCAAAAAATGCATAAATGTACCATTACAAAATAGAAAAGTCATTACATATTTCGTTTAGGTTTCAGGGGCATTGCCCCTGAATCCCCACCAGTAGCCTCGCCCCTGGGACTCTGACTCGTTGACTGAGCAATGAGGCCTCCGACTAACTAATCGTAGGACATTAAGTCGTTTAAAGCATATCTCAACACTATTGATTCTAACTTAATATTGCACTAATTATGTTTTAAGGTGCATGCTGTTGGGGCATTACCTGAGAGGCCTGGAATACAGAATGGAGCTGATGAATCTTCTTTCCCTCTCCAGCAATGTTGAAAATACAGAGACAGAGTTGTAAAGGGAAAGTTTCATTTCTTCCGCAAAGTAGATATACAAAACAGCTTTCAAGTAAAGGTGATTATTTCTTCTTTTTTGTTGGTTATTTTACCTAAGGGAAGATAGATTTTGTTTTTCTTTTTTTGTTTTGTTTTGTTTTTTCTTTTTCTTTTTTGTTTGGCACAACACTACAAATATTGTACATGTACAAATATTGGTCGTCAAATAATGTTTTTTTTTTGGTTTTTGTTTGATTATTTAAGTTGAATCTTCCTG GGGGCTAATTTCAACGGTTGAAACGCAAGGCGAGGTGGAGAGACAGTTTGTCGGACTCGCAAGCTTGTTGATTAATTGTGGCTGAAGTTCAACCAGTAGCCATCACAGCAGGTTGAAGAAGAAGAAGAAGAAGCGGCTGAGGTTCAAGCTCGGATCTCTCTTCTCCAATGGCAGCGGCCTTCACCTCTTCCCTCTCCCTCCCTCTCCAACTCAAACCCTCGTTCCAATCTCGCCGCCGGCTTTCTTCTCCGCCGCTCTCCGTTTCCTTCCCCGCCAAATTCCCCCGCCGATTCCCCGCCCTAACCGTCTCCGCCTCCGACGACGACTTTGCGCAGCCGCAGCCGCAACCGCAGCCGTCTTTTTCGTCCAAGAAATCTGTGCTCTCATCTTTGATACAAGAGATAGAGCCATTAGATGTTAGCATAATTCAAAAAGATGTTCCACCTACCACTGTGGATGCCATGAAAAGGACTATCTCGGGCATGCTGGGCTTACTTCCATCTGACCAGTTTCAAGTTTTAGTTGAAGCTTTATGGGAACCAGTTTCCAAGTTATTAGTTTCTTCAATAATGACCGGGTACACATTGCGTAATGCTGAGTATAGACTTTGCCTGGAAAGAAATCTCGACTTTGATGATGAAAATAATGAAAAACAAACAATTGATAATTGTAGAGTAGATCTACATGAAATGTTGCTTGATAGTGCAAATTTAGCTAACATTTCAGATGAAAATGAGTCTTCTTCGAAATGTGGGGAATCTTTGGACGAACCATTTGAAAACGTTAATATTCAAGGCATTGGTGAAACTTCTCCAGAAGTTCAACAACATATTCTTCATTTACAGTTTCAACTATCTTCATTTAAAAAGGAACTCCATGAGGTCAAGAGGAAAACTGCAGCGCTTCAGATGCAACAGTTTGTTGGGGAGGAGAAAAATGATCTGTTAGACTATCTGAGATCATTACAGCCAGAAAAGGTGGCTGAGCTGTCTGAACCTACATCCCCTGATTCAAAAGAAGCCATACATTCTGTAGTTCATGGACTTCTTGCTACCCTTTCCCCAAAGATACATTCCAAAGTTCCTTCTCAATCAGAAAATATTGGAACAAGCACGACAAATATTGGTAATGAAGATTGTGCAGAACTTGTTGAAAATACTTCTCTTCAATTCCAACCGCTCTTAACGTTAACTCGAGACTATCTGGCTCGTCTACTTTTCTGGTGCATGCTGTTGGGGCATTACCTGAGAGGCCTGGAATACAGAATGGAGCTGATGAATCTTCTTTCCCTCTCCAGCAATGTTGAAAATACAGAGACAGAGTTGTAAAGGGAAAGTTTCATTTCTTCCGCAAAGTAGATATACAAAACAGCTTTCAAGTAAAGGTGATTATTTCTTCTTTTTTGTTGGTTATTTTACCTAAGGGAAGATAGATTTTGTTTTTCTTTTTTTGTTTTGTTTTGTTTTTTCTTTTTCTTTTTTGTTTGGCACAACACTACAAATATTGTACATGTACAAATATTGGTCGTCAAATAATGTTTTTTTTTTGGTTTTTGTTTGATTATTTAAGTTGAATCTTCCTG ATGGCAGCGGCCTTCACCTCTTCCCTCTCCCTCCCTCTCCAACTCAAACCCTCGTTCCAATCTCGCCGCCGGCTTTCTTCTCCGCCGCTCTCCGTTTCCTTCCCCGCCAAATTCCCCCGCCGATTCCCCGCCCTAACCGTCTCCGCCTCCGACGACGACTTTGCGCAGCCGCAGCCGCAACCGCAGCCGTCTTTTTCGTCCAAGAAATCTGTGCTCTCATCTTTGATACAAGAGATAGAGCCATTAGATGTTAGCATAATTCAAAAAGATGTTCCACCTACCACTGTGGATGCCATGAAAAGGACTATCTCGGGCATGCTGGGCTTACTTCCATCTGACCAGTTTCAAGTTTTAGTTGAAGCTTTATGGGAACCAGTTTCCAAGTTATTAGTTTCTTCAATAATGACCGGGTACACATTGCGTAATGCTGAGTATAGACTTTGCCTGGAAAGAAATCTCGACTTTGATGATGAAAATAATGAAAAACAAACAATTGATAATTGTAGAGTAGATCTACATGAAATGTTGCTTGATAGTGCAAATTTAGCTAACATTTCAGATGAAAATGAGTCTTCTTCGAAATGTGGGGAATCTTTGGACGAACCATTTGAAAACGTTAATATTCAAGGCATTGGTGAAACTTCTCCAGAAGTTCAACAACATATTCTTCATTTACAGTTTCAACTATCTTCATTTAAAAAGGAACTCCATGAGGTCAAGAGGAAAACTGCAGCGCTTCAGATGCAACAGTTTGTTGGGGAGGAGAAAAATGATCTGTTAGACTATCTGAGATCATTACAGCCAGAAAAGGTGGCTGAGCTGTCTGAACCTACATCCCCTGATTCAAAAGAAGCCATACATTCTGTAGTTCATGGACTTCTTGCTACCCTTTCCCCAAAGATACATTCCAAAGTTCCTTCTCAATCAGAAAATATTGGAACAAGCACGACAAATATTGGTAATGAAGATTGTGCAGAACTTGTTGAAAATACTTCTCTTCAATTCCAACCGCTCTTAACGTTAACTCGAGACTATCTGGCTCGTCTACTTTTCTGGTGCATGCTGTTGGGGCATTACCTGAGAGGCCTGGAATACAGAATGGAGCTGATGAATCTTCTTTCCCTCTCCAGCAATGTTGAAAATACAGAGACAGAGTTGTAA MAAAFTSSLSLPLQLKPSFQSRRRLSSPPLSVSFPAKFPRRFPALTVSASDDDFAQPQPQPQPSFSSKKSVLSSLIQEIEPLDVSIIQKDVPPTTVDAMKRTISGMLGLLPSDQFQVLVEALWEPVSKLLVSSIMTGYTLRNAEYRLCLERNLDFDDENNEKQTIDNCRVDLHEMLLDSANLANISDENESSSKCGESLDEPFENVNIQGIGETSPEVQQHILHLQFQLSSFKKELHEVKRKTAALQMQQFVGEEKNDLLDYLRSLQPEKVAELSEPTSPDSKEAIHSVVHGLLATLSPKIHSKVPSQSENIGTSTTNIGNEDCAELVENTSLQFQPLLTLTRDYLARLLFWCMLLGHYLRGLEYRMELMNLLSLSSNVENTETEL Homology
BLAST of Sed0000557 vs. NCBI nr
Match: KAG7022484.1 (hypothetical protein SDJN02_16215 [Cucurbita argyrosperma subsp. argyrosperma]) HSP 1 Score: 621.3 bits (1601), Expect = 5.6e-174 Identity = 338/389 (86.89%), Postives = 353/389 (90.75%), Query Frame = 0
BLAST of Sed0000557 vs. NCBI nr
Match: KAG6588700.1 (hypothetical protein SDJN03_17265, partial [Cucurbita argyrosperma subsp. sororia]) HSP 1 Score: 618.6 bits (1594), Expect = 3.6e-173 Identity = 337/389 (86.63%), Postives = 353/389 (90.75%), Query Frame = 0
BLAST of Sed0000557 vs. NCBI nr
Match: XP_022927724.1 (uncharacterized protein LOC111434535 [Cucurbita moschata]) HSP 1 Score: 615.9 bits (1587), Expect = 2.3e-172 Identity = 336/389 (86.38%), Postives = 352/389 (90.49%), Query Frame = 0
BLAST of Sed0000557 vs. NCBI nr
Match: XP_023531193.1 (uncharacterized protein LOC111793513 [Cucurbita pepo subsp. pepo]) HSP 1 Score: 614.4 bits (1583), Expect = 6.8e-172 Identity = 334/389 (85.86%), Postives = 352/389 (90.49%), Query Frame = 0
BLAST of Sed0000557 vs. NCBI nr
Match: XP_022988805.1 (uncharacterized protein LOC111486037 [Cucurbita maxima]) HSP 1 Score: 610.1 bits (1572), Expect = 1.3e-170 Identity = 334/389 (85.86%), Postives = 349/389 (89.72%), Query Frame = 0
BLAST of Sed0000557 vs. ExPASy TrEMBL
Match: A0A6J1EIT0 (uncharacterized protein LOC111434535 OS=Cucurbita moschata OX=3662 GN=LOC111434535 PE=4 SV=1) HSP 1 Score: 615.9 bits (1587), Expect = 1.1e-172 Identity = 336/389 (86.38%), Postives = 352/389 (90.49%), Query Frame = 0
BLAST of Sed0000557 vs. ExPASy TrEMBL
Match: A0A6J1JKL3 (uncharacterized protein LOC111486037 OS=Cucurbita maxima OX=3661 GN=LOC111486037 PE=4 SV=1) HSP 1 Score: 610.1 bits (1572), Expect = 6.2e-171 Identity = 334/389 (85.86%), Postives = 349/389 (89.72%), Query Frame = 0
BLAST of Sed0000557 vs. ExPASy TrEMBL
Match: A0A6J1D578 (uncharacterized protein LOC111017393 OS=Momordica charantia OX=3673 GN=LOC111017393 PE=4 SV=1) HSP 1 Score: 595.5 bits (1534), Expect = 1.6e-166 Identity = 327/383 (85.38%), Postives = 338/383 (88.25%), Query Frame = 0
BLAST of Sed0000557 vs. ExPASy TrEMBL
Match: A0A1S3C144 (uncharacterized protein LOC103495290 OS=Cucumis melo OX=3656 GN=LOC103495290 PE=4 SV=1) HSP 1 Score: 586.3 bits (1510), Expect = 9.6e-164 Identity = 324/385 (84.16%), Postives = 336/385 (87.27%), Query Frame = 0
BLAST of Sed0000557 vs. ExPASy TrEMBL
Match: A0A0A0K2H0 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_7G071590 PE=4 SV=1) HSP 1 Score: 584.3 bits (1505), Expect = 3.6e-163 Identity = 323/385 (83.90%), Postives = 333/385 (86.49%), Query Frame = 0
BLAST of Sed0000557 vs. TAIR 10
Match: AT2G14910.1 (unknown protein; LOCATED IN: chloroplast; EXPRESSED IN: 24 plant structures; EXPRESSED DURING: 15 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT5G14970.1); Has 605 Blast hits to 425 proteins in 102 species: Archae - 0; Bacteria - 300; Metazoa - 25; Fungi - 0; Plants - 89; Viruses - 0; Other Eukaryotes - 191 (source: NCBI BLink). ) HSP 1 Score: 386.3 bits (991), Expect = 2.8e-107 Identity = 234/398 (58.79%), Postives = 274/398 (68.84%), Query Frame = 0
BLAST of Sed0000557 vs. TAIR 10
Match: AT2G14910.2 (unknown protein; LOCATED IN: chloroplast; EXPRESSED IN: 24 plant structures; EXPRESSED DURING: 15 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT5G14970.1); Has 35333 Blast hits to 34131 proteins in 2444 species: Archae - 798; Bacteria - 22429; Metazoa - 974; Fungi - 991; Plants - 531; Viruses - 0; Other Eukaryotes - 9610 (source: NCBI BLink). ) HSP 1 Score: 344.0 bits (881), Expect = 1.6e-94 Identity = 212/367 (57.77%), Postives = 248/367 (67.57%), Query Frame = 0
BLAST of Sed0000557 vs. TAIR 10
Match: AT5G14970.1 (unknown protein; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT2G14910.1); Has 579 Blast hits to 397 proteins in 95 species: Archae - 0; Bacteria - 294; Metazoa - 0; Fungi - 0; Plants - 86; Viruses - 0; Other Eukaryotes - 199 (source: NCBI BLink). ) HSP 1 Score: 179.5 bits (454), Expect = 5.2e-45 Identity = 141/395 (35.70%), Postives = 205/395 (51.90%), Query Frame = 0
BLAST of Sed0000557 vs. TAIR 10
Match: AT1G63610.1 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: chloroplast; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT2G14910.1); Has 537 Blast hits to 411 proteins in 100 species: Archae - 0; Bacteria - 231; Metazoa - 0; Fungi - 0; Plants - 94; Viruses - 0; Other Eukaryotes - 212 (source: NCBI BLink). ) HSP 1 Score: 82.4 bits (202), Expect = 8.6e-16 Identity = 95/389 (24.42%), Postives = 169/389 (43.44%), Query Frame = 0
BLAST of Sed0000557 vs. TAIR 10
Match: AT1G63610.2 (unknown protein; FUNCTIONS IN: molecular_function unknown; INVOLVED IN: biological_process unknown; LOCATED IN: chloroplast; EXPRESSED IN: 22 plant structures; EXPRESSED DURING: 13 growth stages; BEST Arabidopsis thaliana protein match is: unknown protein (TAIR:AT2G14910.1); Has 35333 Blast hits to 34131 proteins in 2444 species: Archae - 798; Bacteria - 22429; Metazoa - 974; Fungi - 991; Plants - 531; Viruses - 0; Other Eukaryotes - 9610 (source: NCBI BLink). ) HSP 1 Score: 81.6 bits (200), Expect = 1.5e-15 Identity = 93/388 (23.97%), Postives = 169/388 (43.56%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Chayote (edule) 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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