Cucsat.G19977.T20 (mRNA) Cucumber (B10) v3
Overview
Sequences
The following sequences are available for this feature:
Legend: exonCDSpolypeptide Hold the cursor over a type above to highlight its positions in the sequence below.ACAAAATAAGCAATGGGCACAAAAAAGGGAAACGGAAATAATTATAATAATTTATAGAAACGGCTTCCAAAGCCGAACTTCAGTACGCTGGTCCCTCACATTACAGAGATTCGACTCTTCAGAGCTTCGGAGAAGAAGACGAGAGAGAGAGAGAGCTAAATTTTCTACTGCCATTCTTCAAACCTCCGAATCACCATCATTTTCATTCTCCTCAAAGAAGGAAGCCATTTTGGCAATGGATTCCGTGTTCGTTAGAGCCTACCGAAGTCATCTTACAATTACCGCAGGTACGCCTCAAAAGTGACTTCAGACTGCTTCAGTGTTCAATCTTCGATTTCTCCGCTGGAACTTCTGCATCGTGTTTTAGCTTCTTCTTTTTCTTTTTGTTGATTGGTGCATTTTTGTTATCGAGTCTGTTTTCTTTTTCTTTTTCTGTTTTGATGATTCATTTTTATTTGCGCTTGACGAGTAACTCGATTATGTTCTCGCGATTTTCATCTTATTTGGTTGATTGAAGCTAATTTGTTGTTTCTGTTTCAGTTGGTGGGATTGGAAACGGGTGGACGAATCGTGACGTCAACAACGTCCGGCTTCCAGGTAAGATTAATTCGTTTTTTAACCTTTATTTTCTTTGCATTTATCGCTTTCGCCTTTCGTCTTCGTTCGTATCTTTAATTCGTCAGTGGCATTTTCGCTCGTTTCTTCGAATTTCATGTCTCGTATTGCAATTTTTGAAAGAATTTGTTGTTGATTGTGGAAGTTGGATGAATTGAACTGGTGGAGGGGATTATCTAGGCGGCGAATTCCCATGTAACCTTTGGAGGGGCTATTTGAGAGTTGAGAACAATGGTTTTTTTTTTTTCTTCTTTCCATTGCAATAAAAATTAAATCATTTTTTATAAAATTTAATTTGGAGTGTGTATATGTATATTGAAGGGAATTTGGAAAGTATTATATGAACTCACCTGCCAATCAGCGCCAGTGGCAATTAAAATTCTGGAAAGTGTTTTCTTTGTTCCATAGGAATAATAGATTTGAATCTCTTGATCGTCGACGTCATTTCACTGCAATTTCAGTTTAAAACTGAAATTAAAAAAAAAAAATTACAGTTCTCAAAATTACATTTTCTTTAGAAACAAAATCAATATTTGTAATATATTTTTCTATAATAATGTTTTTGGCATTTTCTTTTGGACCAAATTGCGAATATTTGGATGCCAAAGATGATAAATGAATAGTTTAATATTGATTGAGTGGCCATTTTTCGTTTGGAAGTCATTAATATATCTCCAAGGAGTTTCAAACGAACCACGAGAGATGGAAGAGGGCAAAATACAATTTGATAGTATATTAGTTTATTAATAATTGTATTTCTTTTGCTTGAGAAAGAAGTATCCCACAATCGTGTTTGTTGTGTTGGCAGCAGCATGAACCACGAAATTTTAAAGCATAGATCAACTAGATTTTCACCCTTTTTTAGAAGAAAAGACTTCGACCTCATTTAAATGGCAGCTCTGAAGGAAAAAAAGTGAATTACTAAAGATTATGAATGTCCTCGAATAATAAATTTCCATCTTTGACCTCATAAATGTGGGAGAACACTGCATTGAACCTAAGTTGCCTAATGTCTGACGTGATTGACGCAAGTAGGACACGTTTGATAGCGAATGTTCGAACGCTGGTCCATTAACAGAAGTGCCTGCATGCGAGATATTGCCCTTCTGTCACTGACTAGTGGCACATGGCGTATCGTAATTTAGTTCCAAGTCCATGACCGAAAAGGAAACTAGAAAGCAACGAAGAAAATCAGGAAAGATAATAGGAGAAAAGATTCTTATACGCGCATATGTATGTTGGGAAAAACTTCCCAATATGGCAGAATAAACAGAAAAGTAACAGTACTGTAAAAAAAATAAACCTTGGGAAATTGTAAAAAAAATGATAATAATAGAGAAATAACAAAAATAGTAAAATTGATAACAAAAAGTTATCTGAGAAAACTTCAAATTCAAAAAGGAATATCGATCATAAAGGAACTTTACTACGTGAAAAGTCACCACAATTACAAAAAAAAAAACTCATGTTTAAAGGTATAGACTCTTTTTATGGTGTTAGGAGCCTATCACTTTCTTGAATTTTTCAATGTGAGATTATTAGACTCTTAATGCCAAAACACGTGTGAATCTGACATAGTATTTCAACTACATATGCCGTCTTGCATGTGTACATCTCTGTGCCATAAGAGTGGGAAGGTGCGGATCAATACTAAAGAAGTATATGCTTATAAAGTAGATCTAAGGAAGACCTTACTTTAACCTTACATGGACTTGATCTACTCTATTACTCGTACTTGTTCTATAATTTGTACAACTGTGCTGATTCTACAGAGATTTTGGAAATCTCAAGGCCGGTGTCCAGGATCTGGAAACAATTCTTCTAGCAGGAACAAGATCTTGCACTTGTGTAAACCAAAAGTTGGACTTTTCATCCAAATGATTACTCTCTCAAATGAGTTGAGAAATGTTGTATTCATGTAGAAATATGAGTACAAGTTCCAAACTATCTTTCTAATTAACTTTCTAACTTCCCTTTTTTAAAAACAAGCAACTCTCTTTTAATACAAGTAACTCTCACTCTCTCGGGTACACCATATTCCACCCCTTCGAAAATCAAACTCGTCTTCAAGGGTGTGACTATTTAGAATCCCAATTGTGTAACACTTTAAAAAGCCCCAGCTGTCTGCTTACAGGAATTCTAGCTTTGCATAGATGAATTATTACAAAGTTAACCACCCTTCGAGATTTAACCCAAGCCAAGAAATGGGTTATTTTACTAAATCGATCTGCCACAACCATCACGACATTATACCCTCGCTGAAATTTTGGAAACTCATCAAACAAATTCTGCATTTCTTGATGAACTTCACCATTTTTTTTATTTTCTACAATTTTAACTACTACAAGGCCCAATCTACCTCCCTTTCTTTATCAAACTTTTTGCAATGTATTTGAGGATTAAAATCTCCTTTGAGAGCAATCTGCATCGTTAGGAGAAGACAAGACATCCTACCACCTTCATCCGTGGACCGCGTCAATATAATTGGTTTCTTTCTCATTATCTTCACTGCATCCAGCCAACAAATTCTCTTTTTCTTCATCCATATATGTTCCTGTTTTATGTTGGGGACACTCAGTAGACAAGTGCCTCACTTGGTTACCCACTTAAACATTTTTCCAATATAGGCCAATTATAAAGATTTTGAACTTTCTGCTTGCAAACAACCTCTTTTCTTTCTCACCAACCTCTTCTTGCTCTTCTTTATCCATTTCCTTTAACAACTTCTTTACACTGATTATGACAAACAAATGATTGCATCTACTCTTCTTGGAATTAACACTTTCATTTTCCTTCTGGGTCTGAGGCAACAATACAATCTTTTTATCCATCCATTGAAATTCATAAGCATTCTCTCTCCCATTATGTAAGGCTTGCGTATCGTATCGCCATGATCTCTCCAATAGAATGTGACACACATCCATCTCCAAAACGTCACAAACTATTTGATCTTTGTAGCTATTCCAATTGTCAATGGAACGGTGCATATCTCATTAACTTGAGCTTCTCCTCTTTTCTTCTAGGCATTTGGATGAGACTCAGTTTTCAAATTCAAGGCTGCCACTAACTTCTTGGCAATGAAATTCTTACTACTTCATCTATGATGACATTGCAAACTTTGTTGTTGATTGTGCATATTGTCTTGAAAAGACAATGCCGTTGAGGATGTAATTCTCCCTTTTGGTGTGATCAAGACTCTTTGAAGAACACAAGAAACTTGATCTCTATCATCCGCTCCAATCATCTCCGCTTCTTCTTCACTTTCTTTATTGTTCTCGAATGAATCTTCATTTTCTTCATCAACAAATGCCATTGTTTTACATTGAGGACAAGCACTGGAAGGGTGCCCCGTTTGGCCACACCTATAGCAAACACTCTTAAAGGGTCGAACATAAGGATTTTGGTCAGTCTTCTTGCCATTTGCTTCTTGATTGTCTTTTCCCACCTCTTTGCCTTTATTTGTAGCTGTTTGATATTTGATGGACAATCTCCTTGTTCTTGCTACTAAAGTTGGTTTTCTACCTGTGGATGCTTCCCATGTTGTCTTTCTTGAAGCATTCTTGGAATGAATCTCATTAATTTCTTCCACTATTTCACCAAAACAAATTGGTTCAGAAAGCCGATTAAAAGATTGGAGTTTTACCTTCTCCTTGATATCCATGCGTTCTGTTTTTGTGAGAATTTTACACACAAAACAAAAGGATGCTTAATAATCTTTAAAAAGTGTGTGAGCTGTGGGAAATTATTGTTAGTTTTTTTCTTCCTGGAGTAGACTCTTTTTTTAAAACATATTTTTAAATAACTGGTGACCTTTATTAGGTCTTCTTTTTGTGAGTTTTGTATACAAACGACATTGTTACCACCTTTTAAAAGCATTGTGGATGTACTTCCTAAAGACTAAAAAAGGGAGGGTTTTTTTTTTTTTTTATTTATTATAAATATTATCATTTTGCTCTCTTCTTTTGATATATGCATCTGTCTTATTTTGTTTTTTATTTGTAACGTAGTATAATTAAGGAAATTGGTAGAAAATGCTTACTCATCTGTTCACATGTTACAATTGAAGGTCCAAGGCCTGGAGCATTGAAGATTTCTAAAAGGCACTGTTGTGTTGAATCTGAATATGAATCACATCATTGTGAATTTGTTTTTAGAAGACATCGGGAAAGGTACACCTTCTATCAGAAAAAAGATGATAGAATCCAAGTTAGAAAAGCAGCCTCTAATCAGCCTTTTGAAACTGAATCCGAAGCCTTGAGTTCCAAAAATTATGGTGATTCTGTAAGGAGTTTTTTAGATGCTTTTTACAGGTTTTCACGGCCGCACACAGTTATTGGTACAGTTACGTTTTTTCAAACTCATGTCCTTTTAGACCAATAACTTATTTTTACATTTCTCTTCATGAGGGAAAATTCTTTGATGTAGCTAGCAGCTGCAACATCGTGGCTGCTACCCTCTAAATGATTCGACGTACAGTGAAAATTACTTTCGATTCTTAGCTTACGCTTTCCTTTCATGCTTCTAGGCGTTGAGCATTGTATCAGTTTCTCTACTAGCAGTTGAGAAACTATCCGACTTGTCACCATTATTTTTAACTGGAGTGTTGGAGGTGATGTTTCAAACAAAATGTACAATTTGAATTCTGACAGCGTTCGTAAATATATTTAACACATTTGCAATTTTTTTTTTCAGGCTATAGTTGCGGCCCTCTTTATGAATATTTACATTGTAGGTCTGAATCAATTATTTGACATTGAAATAGACAAGGTACTTCTGTTGTATTCTTTTTCCCACCGAAGCATATTAAATTAGGCATGCTGAACTTCATAATTTTTAGGGACTTGAGAGTGGATCACATTATATGTGAGTGCAGTCATGGATTAGTACCCGTTTTTACATTGAAGGCATTTCTTGCAGAATATCATGCCCATTTCTGCAGTGTTCTCCTTATTGGGCACTTTATCATAATCTTTTATAGTTCACTAGTATGAGCATTTCATATATAATTCTTTAATGTGTGAGTGGAAGCACCTTAAGTCTGCAGAAAAAGCTATCATATAATCTGACCTTCACTGGATAGCGTTGAATAATAATAAAAGGGAAGTTCACGATTTTCTTTCTTGTTGGCATGAAAGAAGACCAAACTTAATGGTTCCAATGTGTTTTAATTGCAGATTAACAAGCCATATCTTCCATTAGCATCGGGAGAATATTCTTTTGGAACAGGCGTTGCAATTGTCTCCACGTTTTCCATTATGGTAGTATTTTTTGTGTCACATCATTGCAAGACCATTTGTTAGAGTTTTTATTTAATATCTTTTGAGTGTTATTTGATTAACTTATACAGGAATATATATTTACTATTTCTTTATTTTTCGGGAAAAAAACATCTTTTTGGTCCATAGACCTTTTAGTTTTTTAAACCTAGAGACCAAATGAAACCTAGGAACCAAATAAAAATAAAACTTAAATTCAGGAGTAAAAATGTAATATTTTGAAACTTAAGAATCAGTGCAAACTAAACAAGATATGCCCATGTTGGATCACTAATTCATTGGCAGGTCTTCTTTCTATCCCTAGAAACATCAACTCTCCCCTTCCATCTGCCATTGCTTCTTGCCACCTGCCTATCATTGACTCTTCCTCATCCTTCACTCATTTGCAGGATGTTTGTTTTGCTCCGTTAAATATATGTCTCTGCCATTCCTCAACCTTCTCACCTTGTTTGGTCTGAACATTCTTTGGTTGAGTTAACAAAGGGTGCTGTTTTTTCACAATTTCTTTAAGCTGGAGAGGAATGATTTTTTAAAATTGTTTTTTAATAAATAATCACTTTTGTTGAGAAACAAATGAAAGAATACCCGGATGTACAAATAACCTTGTCCACAAAACATTGCCCTCTACAAGTAGGAGCTCTAACTATGTAAAATTACACCTATAGAATAGTTACAAAAGATATTTGAAACCGAAGTCCACAAAGCAAAGTGAAAGCGAACAAGGGACAAAACCTCGCTAGGGTCCTGTTCACCTCTCTAAAAATCTTGCTATTCCACTCACCCAACAAAACCCATAAAATCACACACACTAGTGCATGCTACAGAAAAGCGACCCTTCTCCCCTTGAGGTAAATGGAGGAGGTACTCCTCAATCATAGCACTAACTCCCCTCTATCATGCCAACGCAAAGCCATACGTTTGGAAGAACCGCTCCCAAACCGAACTAGCAAACTTGCAGCGCCAAAGAATACGATCCATACCTTCCTTTTCCTTTTGAGAAAAGATGCAATAGAACGCTCATAGCAAGGGGAACTTTTTGGTGAGATGGTCTATCGTGTTTGCACGACCATGTAAAACTTGCCAGGTGAAGAATCTCACTTTCCTAGGAACCTGACTGACCAAAAGGACTGAAAAGAAAAAATTACCTAAGGAGAATGGTCCTTGAGACTATGAATTTATAACTTGAACCCCTCCAAAGGATTGGGTCTCCAGACCCTCACATCCCTTATCCCACGCTTAAAAGAGTAGTTCTCGAGCAAAGAACCAAATTTGTTGTCTCCCTATTGGAAAGGGAACGAAGAAACCATAAGAGAAAGAACAAGAGCTCCCTGACCACATAAGAAAGTCATCAACAAAGTGATTTTTGAGAGACAACAAATGACAAAGTCTAGGATATAAAGCAGAGAGGTCTCTCACTCACCTAGTGATCCTTCCAAAAGTAAGTATTCTTCCCCTCCCCGCCGTACAATGGACTTAAGTATTAATATAACTAGATTATTCTTAGGTGATATTATTCTGGAAATATTATTTGATATTATTTCCTTAAGTGTATTTCTCTATGGTTATATATAAACTTGTACCTCTACTAAATAATTAATGAAATAGAGATTAATTCCATAAAATCAACATTAAGTTCACAAAAGATGGGAGCTCTTTTGAGATATTCTTCTATAATTTCTGGTCAGTACCAAAAATCCCCTAGGACAACCACTCAAAAGGATGAGGACCGTATTTGCATAACATAATCTTATGCCACATCTCAGAAGAGAAGCACCACAACCACTTAGCTAGTGAGGCCTTGTCACACAGCCTAAGATTCTCGATGTCAAGACCCCCGCTATCAATAGGGCTCTCAATAAGCTTTCATCTAATCAAATGTGAACCCTTACTTTACCCTTCATCATCCCCTTCCAAAGAAAATCACACATCAACCCTGAGAGGGATGAATTTGGTACCACTAGCATACATAAGGGGTGTTCTTTGTCCAATTGGATAACTGAGTGCGTCATGAGACCAATCACTAGCCGAATAATGCCCATTAGTGTGCCTGTTGGTCTTTTTAAGTGTGGTGGTCTAACTTTTGGGTTATGTTGAAGGTTTTTATCTCCAATTTTAATAACTTTAAGTTTTATGTGAATGCTCCATCCAACTCAAGTGATCCTCCCAAGGTGTTCTCCCATCCAAGTGCTCCAAGTTCTTTGTGGAATTTCAAAAGAAAAAGAAGTGATTGATTTGGTTTGCAATTTTCTCATGGTGATCTCCCAGTTGAATGTCATCAATGATGACTGAAAGGTGAGGAAGTCATTGAAAATCACTGGCTGACAAAGCTTTATTACAAATGGATGATGGTAGGATTCTTGGGAGACATGGCTCTAATGGAAAATGGATGCACATTGGGCCTTTTTCTTTGAAATTTGAGGATTAGATTACCACAAAACATAACCGACTTGAATTTTGTGTAGGTTATGGTGGATGGATTCAGAATAAGAATATACCTTTGCACTATTAGAACTTGCAGACTTTCAAAGTTATTGGTGAACATTTTGCGGGTTTGATTATGGTTGCTTCTAAAACCCCAAGTATTGTTGGATTATAGTTCTCTTTTATTGAGGTTTTCTAATTCCTACTTCCATTGAAATTCGAGACAAGTTTTTAGGTAACTCTATCTTAATTTGGAGATATAATTTCTAATGAACCTTCTCCTTTTGAACAATCTCGTGGAGGAATCTTGAACTCTAGTGATTTGTTTAACCCTTTGGATTTGGTTCGTATTAATAGAGTAATTGAAGACTATTAAAAGCGGTAAAGAAAATAGGCATCGAGTTACGTGGAAATCCGAGTACCGAGAGAAAAACCATGATCTGACTTTCTTATTAATTTCTCATATTAACAAAAGATACAAAGGAGAAAATAAGTAGACAACAAGCTTATGATAAAAAAGGAAAGGAAATTAGGGTAAATCCTTCCTTGGGCCAAGTCCCCCTAATTCTAACAAAGACAAAAAGTAATGTATGTTGAAGTAGTTCTTAAATCACCCTTTGAACCAAAAGCTTAAGCTGATGGATAAAGGTAAATTTAATTATTTATCATCTAACAATCCCCTTCACTTGACTTCATTAAGGTTATTATTAGTGTGCCTGTTGACCTCAATATTTCAATAAGTAGTCCTCGCAGCAACAAAGTATATTTCAGACTATTGCTTTCCAGAAGCTCTAGTTTCTTTGTTTCAAGATTGTGCTTAGTAGTATTCTCTTCATCTGTCCTCAGTTCTAAGCAACTTTGATTATCTTATTGCAGCTTGTGGTTTTTTTTTTCATTTCTTTCCCTTTTTTTAGCAGCTTGTAGACTTAAGTTGCGTGAAATTTCTATCTTTGTTGATGGAACTGATGGACAGGCTTAATAATATCTTTTTGCAGTTTCCTATCATTGATTTTTACTTGAAGTTATTTATTTCCTTCCCAAGGCTTTTGGATCAGTGTTTTTGTGCCTGTTGAAGAGTTTTATTTTGGTTGTCATGTAGCTTCAGCTCTTTGTTTGCCTTGTGGCTGTTTTCGATTTTGGAGTTTGGGTCCCTACTATCTTGGTTTTTGGTTCCTTGTTGCCTCCAAGTTCGATTTTTGTTGCTTTTTAATTTTGAATCTTACTGCAGTTTTATTGGTCGTTTCTAATAATGTGTTCGGTTTTCTTTAGTTTCTTCTGTGACCTTCAGTTTGTTTTCTTTTACGCATTAGACTTCTTTGTATGGAAGTAATGTCATAATTAAATTTACCGTAACCCATTAAACTCAATTGGTGATTTAACATGGTATTAGAGTAGGAGGTCATGTGTTTGTAATGTCATTTTCCTGGCCATATAATATGGTTTCTACTTGTTGGATGTTCTATAAATGGTCCAAAAGTGAGTGGGAGTGTTGAAGTATTGATATAATTAGATTTACCATAACCCATTTGCTCAAGATTTTGGGTTGATTGATAATGTAACACCTTGTTTTCTTTCTCTCTCCCTCGAAGAGATTGAATCCCTGAGTGTTAGTCCATTTTTTATTTCATTGATGAAAAGTTTTATTTTTTTGTTAGACAAAATAAAAACTAAACTTAAACTTTAGGGATAAAAGTGTAACATTTTAAAATCTAGGGGACTAAAAGGGTTTTCTTTTTCTTGTTCAACATGTGTTATACTTCTTATGGTTATTTTCATGGGAAATTGTATTGGGTGGCAAATTAGTTTAGGCATTTTACAAAAATGTCTTTAAGGTTTGTGATTTTGCAAATATAGCAAAAAATAATCAAATCCAAGCTTTTATATGTGTGGGTTGGGTTTTGTTTTTGCCATTTTCGCAAATAATAAAATATGTGTGCTATAGACTTAATTATGATAACTTGTTTTGCCATTTTTGCAAGTGCCTCTATTTCCATTTGTGCATCTGAACTACAAATAATTGACGCCAAGATTCCATTCTGAAACTACTTTACTCCCAATGCTTTTGTGCAGAGTTTTTGGCTAGGATGGGTTGTTCGTTCATGGCCATTGTTTTGGGCTCTTTTCGTCAGCTTTATTCTCGGGACTGCTTATTCCATTGATGTAAGTGGGTTTCTTTATCTTATCATTTATTTCCAGCTTCGTATCTGTCAAAAAAACAAATCTAGCATGCGTATCTTACTGGCTACTATATGTACATGCTGAAATTTTGATTTGACATATTATCTTATGGCTCCAAAAAGAAAAGTTTGACCTGGAAAAGAGGTAAAACTTCCTTATCAAATTTATTATCACGTAGACTCAAATATCCATGCCACATTTGGTTGAAGTTTTATGCTTGCATATATTCTTCGTTAGCTCAGTAACTTTGCAAACTGATCACCATATGAAGGTATTGGTCTGGTTGGATTATTTAGGGCTGATTATGAACCTTCAATTGGAGTGTTGATACTAATCTTTCCATAATTAAAGCGTGAGGTACCAATAATTATTATTGCACAGGACCCAAATGGGTAATCAATTTTCACATTCTTTTCCTTTTCATGACCATTTGTCTCTCTTTAACCCAATAGAGTTGTTAGATAGGAGTAAGATTTTCGAAACTAAAAAAACGAGAGCAAACTCTTGTCTTCCTCTCTTTCTCAGTGCTCTGTCCCTTGTAATTGGGGTGTACGGAAAGTAGATTGATAAATGACAGGCTAGATAAGACACCTTGACTATGGTATAAGGTCTACGGACCTATCTTTAGAAAGGCAAAGATTCTTAAGGTCCCATCTTCTAAACTTTCTTCTTCTACCTTTTGTAATTCTTCACCATTTATCAGCTATCAAAAATTGGACCAACAATTTGTCTATCACCTACAAATCCATTCTAGAAGGTGACTGTAGAAGGCAACACTTTTTCCAATCTCTCTACCAAGCCTCTGGAAACCACAAATTTTCTTTTTAAGAATTTAACAGGTCAATAGGATTTTGGTTATCTCATACATCGGTTTATAATCTTTCTATTTACTCCATATACTAAAACAATTTACAATAGATCCCTTAACTGTTATGGTCGTATCTGTAAAGTCAAACTTTAAACATTTCTAATAAGTTTTGAAACTTTCAATTTTATGTACAATAACCACTCATGTTAAATGCTTACATGGCACGTGTATTATTGAAGGATTAATCCAAAATCAGTCTGCTACATTATTCTTAAATAATAGATCATCAATATGTCATGTAAGTATTAAACAAATTCATGAAAGGAGCTGTTAGTTACAAAATTGAATTCTTGGATATTTTGCTTGTTTATTTTTGAGAAATTGTAAAAAAAAGACAAATTTGACAAAACACTTACGAAATATATCAAAATTTCACATTCTATCATTGATAGATATTGCTAGACACCTATAGGTTTCTATCAATTTCTATCGGTGACATTCATAGACACGAATAGAAGTCTATCAATATCTATCAATGTATATCATTAATTAATCTAAAATTTTGCTATATTTTGTTGATATTTTAGTTCATTTTCTTATATTTTTAAAATGTCGCTTTATCTTTCGTAATATTAAATTTTATTATTGCTATTATTATTTTAAAAAAAAACTATAAAAACCAAATAGGCATAACCATAAAAGGTCATGGATTCTATGAACTTTTAAAAGTAGGGTCGTTGTAATGGATAGCTATTTGAGGAATAATAATTAAGGATATAGCAACATTTAAAAAAATTGCAAATATAGCAAAACTATCGTTGATAGACTTGTATCGCTGATAGGCTCGTTATGGTCTATGAGTGATAAACCAATATTTACAACATGGTCTATCGGTGATAGAATTTGACAAATTTTGCTATATTTGCAAATTTTTTAAAATGTTGCAATATACTTAATTATTTTGAATCTAATTGCTAAATTTGCAACTATCCCTTAAAAGTATAATGACCGAATAATACTGGACCCAATTTGTAATTAACGATATGTTTTTTTATTATAAAAAAAGTGCTTACGTTTGCATAAAGTGACAACAGAATCATTCCTTAGACTGATTCTGAACTCGGACCCTTCAAATTCTGGACGAAAAGGATCTATTAGCCCCTTTCAGTTTAATTAATAATTTACTTTTTAAAGAAGAAATCAATTTATATGATAAAACTTAGTAGGTTGAATTAATTAAATCTCTAAATAATAATTGTATCAAATTAAAAACCACAGCTTTAATAAGTGAATCAATTTTGATCCTTTAACAAGATTTTGTTTTAAAATTGTTAATGCATAATTTTCATGTGTAACATTTCTTTAAAGGAAAGGTTTAACATAATATTAGATGGAAATATCAGAATCAAGTGGGCAATGGGTGCTTCCATTATATGAGTCATTTTTCATAATATCTTCTTCATGTAATTTTTCTGGTACTTGGTAGAATTATGGGAGAAAAATAATTTTATTTACGTTCTTTTAGTTGATTTTAAATTAGAATTAAGTGAAAGTAGTTGTGCATCGATAATAAACGGCCTGAATTGATTCACTTGCGAAATTTTTGGGTTTTAATTGATTCACCCAGCAAGTTAGTGTGTTATCAAAAGAAAAAAAAAAATCGATTAACCCAGCAAAATTTAGAGGATATATTGACTTTTTCCCTTCTTGGTCACTGAAAATTCTTCCTCCTCAACTTTTATGTTCTATATTGTGATTCTAGATGATGAAAACAGATAGTATTGTGAGCATAGTAAATGTATGAAAGAAACTTGGCTTTGATTAAGAGCTTGATGGTCTTTAACTTTTCTGTTACTTCAGCTGCCACTGTTGAGATGGAAGAGATTTGCTGTCGTTGCCGCTATGTGTATACTAGCTGTTAGAGCCGTGATTGTTCAACTTGCCTTTTTTCTACACATGCAGGTCTAAAGATTCCACTTATGAATAAATAATTGTTGCTATCTATTGTAGGTAGAGATGTAGAACAGACACAAATTTACATGGAAACCCTAGTTCAAGGAAAGAAACTAC CAAAATAAGCAATGGGCACAAAAAAGGGAAACGGAAATAATTATAATAATTTATAGAAACGGCTTCCAAAGCCGAACTTCAGTACGCTGGTCCCTCACATTACAGAGATTCGACTCTTCAGAGCTTCGGAGAAGAAGACGAGAGAGAGAGAGAGCTAAATTTTCTACTGCCATTCTTCAAACCTCCGAATCACCATCATTTTCATTCTCCTCAAAGAAGGAAGCCATTTTGGCAATGGATTCCGTGTTCGTTAGAGCCTACCGAAGTCATCTTACAATTACCGCAGTTGGTGGGATTGGAAACGGGTGGACGAATCGTGACGTCAACAACGTCCGGCTTCCAGGTCCAAGGCCTGGAGCATTGAAGATTTCTAAAAGGCACTGTTGTGTTGAATCTGAATATGAATCACATCATTGTGAATTTGTTTTTAGAAGACATCGGGAAAGGTACACCTTCTATCAGAAAAAAGATGATAGAATCCAAGTTAGAAAAGCAGCCTCTAATCAGCCTTTTGAAACTGAATCCGAAGCCTTGAGTTCCAAAAATTATGGTGATTCTGTAAGGAGTTTTTTAGATGCTTTTTACAGGTTTTCACGGCCGCACACAGTTATTGGTACAGCGTTGAGCATTGTATCAGTTTCTCTACTAGCAGTTGAGAAACTATCCGACTTGTCACCATTATTTTTAACTGGAGTGTTGGAGGCTATAGTTGCGGCCCTCTTTATGAATATTTACATTGTAGGTCTGAATCAATTATTTGACATTGAAATAGACAAGATTAACAAGCCATATCTTCCATTAGCATCGGGAGAATATTCTTTTGGAACAGGCGTTGCAATTGTCTCCACGTTTTCCATTATGAGTTTTTGGCTAGGATGGGTTGTTCGTTCATGGCCATTGTTTTGGGCTCTTTTCGTCAGCTTTATTCTCGGGACTGCTTATTCCATTGATCTGCCACTGTTGAGATGGAAGAGATTTGCTGTCGTTGCCGCTATGTGTATACTAGCTGTTAGAGCCGTGATTGTTCAACTTGCCTTTTTTCTACACATGCAGGTCTAA QNKQWAQKRETEIIIIIYRNGFQSRTSVRWSLTLQRFDSSELRRRRRERERAKFSTAILQTSESPSFSFSSKKEAILAMDSVFVRAYRSHLTITAVGGIGNGWTNRDVNNVRLPGPRPGALKISKRHCCVESEYESHHCEFVFRRHRERYTFYQKKDDRIQVRKAASNQPFETESEALSSKNYGDSVRSFLDAFYRFSRPHTVIGTALSIVSVSLLAVEKLSDLSPLFLTGVLEAIVAALFMNIYIVGLNQLFDIEIDKINKPYLPLASGEYSFGTGVAIVSTFSIMSFWLGWVVRSWPLFWALFVSFILGTAYSIDLPLLRWKRFAVVAAMCILAVRAVIVQLAFFLHMQV Homology
BLAST of Cucsat.G19977.T20 vs. ExPASy Swiss-Prot
Match: Q8VWJ1 (Homogentisate phytyltransferase 1, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=HPT1 PE=1 SV=1) HSP 1 Score: 275.8 bits (704), Expect = 6.8e-73 Identity = 146/199 (73.37%), Postives = 167/199 (83.92%), Query Frame = 0
BLAST of Cucsat.G19977.T20 vs. ExPASy Swiss-Prot
Match: B7FA90 (Probable homogentisate phytyltransferase 1, chloroplastic OS=Oryza sativa subsp. japonica OX=39947 GN=HPT1 PE=2 SV=1) HSP 1 Score: 267.3 bits (682), Expect = 2.4e-70 Identity = 146/186 (78.49%), Postives = 161/186 (86.56%), Query Frame = 0
BLAST of Cucsat.G19977.T20 vs. ExPASy Swiss-Prot
Match: Q7XB13 (Homogentisate geranylgeranyltransferase OS=Triticum aestivum OX=4565 GN=HGGT PE=2 SV=1) HSP 1 Score: 188.3 bits (477), Expect = 1.4e-46 Identity = 107/181 (59.12%), Postives = 132/181 (72.93%), Query Frame = 0
BLAST of Cucsat.G19977.T20 vs. ExPASy Swiss-Prot
Match: B9A1Q4 (Glycinol 4-dimethylallyltransferase OS=Glycine max OX=3847 GN=G4DT PE=1 SV=1) HSP 1 Score: 185.7 bits (470), Expect = 9.3e-46 Identity = 102/190 (53.68%), Postives = 134/190 (70.53%), Query Frame = 0
BLAST of Cucsat.G19977.T20 vs. ExPASy Swiss-Prot
Match: Q7XB14 (Homogentisate geranylgeranyltransferase OS=Hordeum vulgare OX=4513 GN=HGGT PE=1 SV=1) HSP 1 Score: 183.3 bits (464), Expect = 4.6e-45 Identity = 102/168 (60.71%), Postives = 125/168 (74.40%), Query Frame = 0
BLAST of Cucsat.G19977.T20 vs. NCBI nr
Match: XP_004148327.1 (homogentisate phytyltransferase 1, chloroplastic isoform X1 [Cucumis sativus] >KGN61152.1 hypothetical protein Csa_021364 [Cucumis sativus]) HSP 1 Score: 532 bits (1371), Expect = 5.92e-187 Identity = 273/273 (100.00%), Postives = 273/273 (100.00%), Query Frame = 0
BLAST of Cucsat.G19977.T20 vs. NCBI nr
Match: XP_038889435.1 (homogentisate phytyltransferase 1, chloroplastic isoform X1 [Benincasa hispida]) HSP 1 Score: 499 bits (1285), Expect = 7.07e-174 Identity = 257/273 (94.14%), Postives = 263/273 (96.34%), Query Frame = 0
BLAST of Cucsat.G19977.T20 vs. NCBI nr
Match: XP_008451585.1 (PREDICTED: homogentisate phytyltransferase 1, chloroplastic isoform X1 [Cucumis melo]) HSP 1 Score: 499 bits (1285), Expect = 7.07e-174 Identity = 255/273 (93.41%), Postives = 264/273 (96.70%), Query Frame = 0
BLAST of Cucsat.G19977.T20 vs. NCBI nr
Match: XP_038889438.1 (homogentisate phytyltransferase 1, chloroplastic isoform X3 [Benincasa hispida]) HSP 1 Score: 493 bits (1269), Expect = 1.85e-171 Identity = 256/273 (93.77%), Postives = 262/273 (95.97%), Query Frame = 0
BLAST of Cucsat.G19977.T20 vs. NCBI nr
Match: XP_022997420.1 (homogentisate phytyltransferase 1, chloroplastic-like isoform X1 [Cucurbita maxima]) HSP 1 Score: 462 bits (1190), Expect = 1.68e-159 Identity = 244/273 (89.38%), Postives = 253/273 (92.67%), Query Frame = 0
BLAST of Cucsat.G19977.T20 vs. ExPASy TrEMBL
Match: A0A0A0LKA3 (Uncharacterized protein OS=Cucumis sativus OX=3659 GN=Csa_2G059830 PE=3 SV=1) HSP 1 Score: 532 bits (1371), Expect = 2.87e-187 Identity = 273/273 (100.00%), Postives = 273/273 (100.00%), Query Frame = 0
BLAST of Cucsat.G19977.T20 vs. ExPASy TrEMBL
Match: A0A1S3BRS9 (homogentisate phytyltransferase 1, chloroplastic isoform X1 OS=Cucumis melo OX=3656 GN=LOC103492819 PE=3 SV=1) HSP 1 Score: 499 bits (1285), Expect = 3.42e-174 Identity = 255/273 (93.41%), Postives = 264/273 (96.70%), Query Frame = 0
BLAST of Cucsat.G19977.T20 vs. ExPASy TrEMBL
Match: A0A6J1K9K8 (homogentisate phytyltransferase 1, chloroplastic-like isoform X1 OS=Cucurbita maxima OX=3661 GN=LOC111492342 PE=3 SV=1) HSP 1 Score: 462 bits (1190), Expect = 8.12e-160 Identity = 244/273 (89.38%), Postives = 253/273 (92.67%), Query Frame = 0
BLAST of Cucsat.G19977.T20 vs. ExPASy TrEMBL
Match: A0A6J1K7F2 (homogentisate phytyltransferase 1, chloroplastic-like isoform X2 OS=Cucurbita maxima OX=3661 GN=LOC111492342 PE=3 SV=1) HSP 1 Score: 462 bits (1188), Expect = 1.58e-159 Identity = 244/273 (89.38%), Postives = 252/273 (92.31%), Query Frame = 0
BLAST of Cucsat.G19977.T20 vs. ExPASy TrEMBL
Match: A0A6J1EPF4 (homogentisate phytyltransferase 1, chloroplastic-like isoform X1 OS=Cucurbita moschata OX=3662 GN=LOC111436184 PE=3 SV=1) HSP 1 Score: 458 bits (1178), Expect = 5.40e-158 Identity = 240/273 (87.91%), Postives = 252/273 (92.31%), Query Frame = 0
The following BLAST results are available for this feature:
InterPro
Analysis Name: InterPro Annotations of Cucumber (B10) v3
Date Performed: 2021-10-25
Relationships
This mRNA is a part of the following gene feature(s):
The following exon feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following polypeptide feature(s) derives from this mRNA:
GO Annotation
GO Assignments
This mRNA is annotated with the following GO terms.
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