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.TCCAATTTATCGAGTGATTTAAACAATTTAGCAATGACCCGTCTATTCCGTCAATGGCGTCAAAATAAGTGTGTTTACGAAGACACAGACTTCTTTTTGCCGGCACAACCTAGTACTCCGTACCTACCTAACTACTGATAACTTCCTGCTACCAATCATCACTTTATAGTTTATACAGGTCGAAACCTTCTCATTTCTGATTTCACCTCTTTCTCACTCTATAATCCCCAAGTTCAATTCTTTGTTCTTCGTATCAGTTTAATCTTCAGGTAACTGTTTAACCCTTTATGCTTTGGTTCTATTTTCGATTATTTTTGCTATTTTTATACTTTCATCTGCTATGATCTGGCTTCAATTGTCAAATTGATCTGGGTATCGTTATATTATTCCAAAATTTGGGGTTTACTTTCATAATCGATAGAACAATTTGAATAATGTATGTTGTTTTTCTTGACGATGAGCATAGTATTAGGATGTTATATGCTTGATGGATTCATTTTGATGAGGAAATTTGGTTGAAAGTTGATTATCTATGTTAAGTAAATAACTACTCTTGCAAAAATTTGCTACTGTTTATTCAATATAAATTGAGTGCTATGAGTGCTAGGGATCCCTTTGAGGTCGAGCCGGCGAGCTGTCATCATTCCTACACAATTATAACACAAAGTGGCAACGGAACTAGTTACATAGCTAATGAGTAATGAGTAGTGAACTCGTGATCAATATAGGAGTAATATTAGTAAAACATTGAAGTTGCTCAATCCTTCTTCCTGTAAACCAAAGAAAATGTGAGTATGTATTGAAGCTTCATTTTTCCGGAGTTGTATTTGTAATTTTTACTTGAATTGAAACCAAGGGAAGTGTGTATTTGTTGATTATTGTTGTTTTGTCCGCTTTGATAGCCCTGAGAGGAGCTAATAGTGTTGGAGTTGACTTTAATTACCACAATTTGTATGGTTAAGCTTTGAGTTGGTTCCTTAGAGAAGCATTTTCACAGAGAAGGTAACCCTAAGCCTCCATTCCTGATAAAAGGGAAGTTATTTTCTACTTTTCTAGTAAAGGAAAGATATTGGGAGCAACTCTTCAAGTAACTATATTTCTGTCATTCCTTAACTTCAAAACGTCCCTAGATAAACAACTTTACAAAAGACTTTGACGGCCCATTTGTTAACTGGTAATAAGTAGTGGCAATGGAATGAATTGAAGTATAGTTTGACAAGCAAAATAACATTATAATCTCCTTGGTAACACAATCTCATCTCCTAACTTGTGTTTTTATTCATAAATTTTCATTCCTACACAATACCACACAATACCACTCCCATTTGCTAATAGATGGTAATGAGAAGTTGTGAAGAAAAAGAGACAATTTGGGGGTGAACTAGCATTACCACGAGAATGAACATTAATCTTCCTTACAAATTCATTCCCATTAACACAATTTATTACTGGCTACCAAACGGGCCGTGAGAGGCGGACATCTAATAGAAAAGCAAAGGGTTTGCATGTCTTTGTGACATAACAATTTATGCTTTCAGGGTCCAGTGACATTGATTTTGATAATTGGGATGGCGGGATATGGACTAATGCAAAGAATTTAAATTCTGTGTTGGGTACTTGGGTTATAAGCCTCTTAATGATGACGGGGGTGGGGGGGGGGGGGGNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNNGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGGAAGCCTCCAATATTGGTTGGAGTTGTTAGGATCTTAGAGAGATTCATGCAGGATTTTCTCTTATCTAGGGCTGGTGATTTGAAAAGGGTTCAGTTATTGCTGTGATTTCCTATCTAAGCCCATGAAATCATCTACAAGACTTCTTTTCTTGGGCATGAGAAACCTTTTTGGATTCTTCGTTTCCTGCATTTATCATTTGTCCACTTTACATGATATTTCTGTTTCATTGTTTATGGTTCAAAGGCACATAACTTGTTTTGGCAACATTAAGATAGAGAGGGCTTCATCTGAGAACCTAGATTGCCTGTTCTTCTGCTGACTTTTTCTGCATGCCTTTCGGTAAGGATGTCTATTTGGAAGAACAAAGGCCCATATGGAGGTAAGGGATTTAGAGTTGAAAACCATTTTAGATAAGATAAACTACAACCTCCTTGATGGGTTGGTAATGGGAGTAGTAAACATCAAAGAATACTTTAGAGGTGTGTGTTTCTGGCAGTAATTGGGTGTTATGGTTTGAGCAAAATGAAGGTGTTTGTAATAGAGCTAAAGGGGCTGAGATGTTGAGGAATTGTATGGTGTTTGTAACCTGTATTTGTCGGATGGTTTTTTTTACGTTACATGCTTTCTGATATCCAGTATGGTTGCATGGTTTCTTGCAGTTCTTTCCTGTTTTAAAAAGGATATGTTGTCCTGTGGCTACAATATATTGCAGTTTCTCTATCAAACTTGTCCTTATCTAGATCATCAATTTTAAAGGAGGAAGAAACACTAGTTGAGAAAGTGGTTGAGCTTTGCTCTATGTTCATTGGTTTTTCTTTTTTGTATTTTGTTGGGTTGTGCTCTGAGACTAGTCTTTCTGTCTGCTTCAATACTTCTCAGATCAATTTGTGAGGACCAATGCTCGTGACTTTCAGGAGAAAGCGACCGTGCTTTCATTTCTTATTGTTGTTTTCTACGATATTGAGTTCTTTCAGCAGTGGGCATGCTGGGGTAACTAGTGCGTACATACGATCAGAATGGCCTTCTGTTGACATTCCTCTTGATAATGAAGTTTTTGCAGTTCCAGAGGGTCACAATATTCCTCAGCAGGTTCGTAGTTTGTTCTTTAACATTCTAAGCCTCCTTACTTTTTATGAATTAGCGCACAAATATATGCTTTGCTGCACCCTTTTTAAATCTAATATCTGTCTTTGTTAAACATGATTGTTGTGGTAAAATAGTTCATTTGTAACAACAGTAAAGATTCTGAACATGGTACAAAAGAAGCATCGAGTGCCTCGTTTATCCCAAGTGTGTCAAATTCATGGTTTTGATGCTCAGAGTAAAGGAATTTAAGATTTCTGTTGCTATCTAAAAGGGTCTGTTACTCTGTTCATCCCCACTTTCAACATGTACTGTTTCTCACTGAAAGAGGAACAATAGATCATTTTTGTTTAGTTTACGTCTAACTGTATAAGATTGTTGTTGCTTGTTATTGCTTGTTATGCATACACGTTCCTTTTTTCATACAATTCTGATTAAATACAATTCTGATTAAATACAATTCTGGTTACATTCATTAATGTCTCCTTAATGAAATCTCTTGCTAATGACCATTTCTAAACATTTTCTGTGATAAACAGGTTCATATAACCCAGGGAGATTATGATGGAAAGTCTGTCATAATATCATGGGTTACACCTGATGAACCAGGCCCTCGTAAGCTACAGTATGGAAAATCCAAGGACTACAAACTTAGTGCTGATAGCACTGTAACTAACTACACTTTCTATAAATACAATTCTGGTTACATTCATTATTGTCTCCTTAATGCTCTTGAGGTATGTCACTTTACTTTCTCTTTAAACTGTCCTTTAAAGGATCCTATGAAAACTATATTAATGAATACTGAGCGACTGTTTGATACGCATATGAGTATATAATATAATCAATAGATGAAACTCTTAACTTAACAAGTTTTGATATATATTTTATTGCATCACTCCAACTTCCATATTAGACTGGTCAAGCTGAACGCTTGAACCCTTTAAGTTAGTAATTGAAATTCAAAGTCTTAATTGATTATTGTTCATCCCCTCGTAGCAGTCGTAACTGCATTCTAGGAGTAGCTATCATTGACAAACTACATGTGTAAGATTGTTGCCAGTTTTCCTGTTTTGGGTGATCAATGATTTTTTTCTCAAGACACCTGTTATAACTTATAACTGTATGGAAATTTTGATAATATCTCTACATCAGAAAGAAAGAAGTAAAAGCTCCCAATTCTATGTTTCTATCGTTAACTAGTTTCTTTTCCATTCTCTTTAGAAATAGTGGTGCTTTAAAAATTATAGTTTATTGCTGTTTCATTGGCATTAAATATGTGCTGATACCATGGTGTCTTAAATTTTTTAGATCATTACTTTGTGAGGAAAATTAAATTTGTTTCTGTTCTTACTCAATGTTTTGCTAGCCGTTCTTTCCCTCGTCTCATTAGTCATTACAGATGATATAACTACATCATACTTTATTAATCTGCATGTCTATGATGTTGATGTAATCTAATTTATAAATTATAAATATGATTTCGTGAATTATTCTTTTCTATCCTTTCAAATCCTTACCAGTTTTCATATCCTTATTTTACAGTACAGCACAAAATACTATTACAAGATTGAAGCAAGAGACTCGTCTCGAGAATTTTGGTTTCAAACACCTCCAAGGATCCATCCTGATGCTCCCTACACTTTTGGAATTATTGGTAAGTATCGTATGCAGAGGCAGACTGGTTAGTATTGTAGGAAGTTCCTTCAACTGATGTGTGCATAACACTGGTGCTGATGCCTGAACTAATAAGACTTTTTTTGCAAATACAAGTCGTACAATACTGATTGAGCGCAGATGTTATTTTCTAAAGGAGTATCAATGGTGTGGTTAGTAATTGGTATATGGCTGTACGATGTTTTCTAAACAGATGGTGTATTGGTGTGTTGTTCACACAAATCTAGAATACAGTAGCATGGAGCCCAATCACTGGCGGACCCAGCTAAGGGCCGGGGGGCACGTGCCACCCCCGGGAAAAAAAAACTGAAAATCTTAGTAATATCATTTAATACGGTTATATAATAAATTATGTGCAGTATTAACGGAAGTTGCAAAATAGCGCAGTGGTTTCTAGGCAGAAGTGCTTTTACAAGTGGTATGGGGTTCGACAACCAGTTGAAACAAACTGATCTTTTTTTGTTTATTTTTTATAAATAAAAGCATTTTTTTTGCCTTTTTCACCTTCATATACTTCATACTGCAGTATATAGTTGCATTTTCTTTTTCTTTTTGGTAGTTCTTACTACTTTGTACATATTTAATCGGACTACGTTTTTTTAATAAAAACAATTCACTTTCATAAGGAACAAAGTAACTTCCTTCAACTATTATTTTATCATAATATTTTTTTTTTAAAAAAATTCTCTTGATGCCCACAACCAATTACGGAGTACACGAATATGATGCATTATCATGAAAAAAACTACAGTTAACCACTTTTTTTATCCGATTATAATAATTATATACTAGCAATCTCTCGTATGATTTTTCGTGCCATCCCTGGCCAATAATCCTGGGTCTGCCTTTGAGCCCAATAGGCATTTTGGTGAAAGTAAACATAAGTCGGTTGAGTACATCTAACGGTCTAAGGTATCTTAAATAATGGAAAAGCCAAAAGTGTGGCCATTAAATACATCCCACCCAGCATTCACATCATTTTAAACTACATGCATTTTCTGACCCTTTCCAGTAGCAGTTTGCTAGTATTGCTGAATGTTTGTTGCAGTTTTACCCATTGATATTAATTGGAGAGGCATAAATTCACCTTTTGGGTATCTTTGAGTTATAGATGATGTACTATGGAACATCCTCTCTGTTATGATATCTTCTTGTTGCTTAGTTTTCTGTTGATGCATACAGCTGGATACTTAATTAACTCATGCCTACTTATTTTCCTGCATTAGGTGACTTAGGTCAAACATACAACTCTCTTTCCACTCTCCAGCATTACAAGCAAACTGGAGCACAAACTGTACTATTCGTGGGCGATCTTTCTTATGCAGATCAGTATAAATACAATAATATTGGGGTTAGGTGGGATTCTTGGGGTCGTTTCATTGAGCCAATTGCCGCATACCAACCATGGATTTGGACGGCTGGAAATCACGAGATAGAGTATATGCCAGACTTGGTAAGATTTTGGTAAGATTTTGGTTGCAGATGCACGCAGATGCACACAATGTGTTTGGATAGGTAATTTGGAGGGAAAGGGAGGGGGGAGAAAGTGTGGGATTTTTAAGTTTGTGTGAACGCAAGGTTCTTTTTGTGCTGATATTCGGTCTAAACTGGAGTGTGTCTTACATTATCAATGCTGCTGATGTAGAATTGGTGCTGTAGCTGCACATATTCAGGTGGAATGCGTCCTAATTTTGGTGTCTTTTGAGGTTGATTGGTATTATTTGATAACCATCGTACAGCTGTGAAACTGTGAATATAGAGTTGTTCTTGCAGTTGGAAGATGTTTTGCATGCCTCTGTATCTCTGTGTTTTTCATTTTTCATGGTTGTGACTTGTGTGGTGTTATTAGTCAGTACACTTGCAATTTGACTATCGCGATTCGTGAAACATGAGAGGTAGATAGCTGATTTTCTGCTCTCGTTCTGTATTGCTTATAAGATTTCTGTAATTCATGGCTTCATGCTATGCTATATTTTTCAGGGGGAACTTACTACGTTCAAAAATTATCTACATAGATATCCTACACCCCATGCCGCCTCCAAAAGTAGTAGCCCTCTCTGGTATTCTGTTCGCCGTGCATCTGCTCATATCATTGTGCTATCCAGTTATTCTCCATTTGGTAGTTTCTTCTTCCTTCTTTTCTTTTCACGAAGATCTGTTTACTTAGTTATATTTTGATATAATCCTCGCATTTGATTAATGAATTTTTGTCAAGAGTCAAGATTGTATTGAGCTTGCATGGGGCTAAAAAAAAGAACTGAAAGTACAAGATGACTAGAACGTTAGGTGGTCAGTTTTATTAACCTTTGTTTGAACTTGTTCCATCAGAGTGCTCTTGAAACATTGTAGCTTGAATTTGAGTTTGTGACTCTTGGTGTCAACGTTACGTTTTCATTCTATGTCATATATTAGGTGAGGAGACGATCATTATTATAAATATTTTGCAAAGTGATCCCCAGGAATGGATGGATTTCTTTACCTACTTCTTTTGTTTTGATCTAGTTACTATCCAATGAAGAAATATCAAATATGTCCCATATTTTGTAATTTGAATGTCAATTGAGGTTTGGATGATTGTTTTATATCATTGTTTTAGCTTTTGCTTTCATATTGTCTAAGATGTAGCCTTAAATGTTCTGTTTCATTATTTAATTAACTTTTCACGGAAAGAGTTTATAAGTGTCAATGTAAATCTGTTTTCCTCCCTTTTTCCGACTGGAAAATAATATTGCAACATTTCGTAATAGCTATATTCCTATTAGGTTTACTGTTTCTATTTTTCTACTTGCTGCTAGTTGAACACTGCATTTTACTATCAAGGGTTTTCTATCCTTGGACAATGCTTGAATAAAGCTTGAGTAATGCCAGTTTCAGAACTCCGCATTTGCTGATCTACTTTGTCTTCATCTTGAACAGTTAAATATACTCCTCAATGGATGTGGCTCAGAGAAGAACTCCAGAGGGTGAATAGAGAAATAACACCTTGGCTTATTGTTCTAATGCATGCCCCCATTTACAGTAGTAATGTAGGCCATTATATGGAGGGTGAAAGTATGCGTTCTGTGTTCGAGAGCTGGTTTGTTCAGTACAGAGTTGACTTTGTCTTTTCTGGCCATGTCCATGCGTATGAAAGATCAGTATGTATATTCTCTTCCTTTCTTCAACTATTCAATAGTGCTCATGCTCTACTTTCTTATATTCATTATTCAATGTTAAAACTGAATTTAGACTTCCCTTGCTTTGTACGGAGTATATAGGACACAAATCTTTGATATCTATAATCTGTACACCAATAAAACTTGGTAAACTTCTGATGACACCTCAAGCTCTGAGCCTCTGAGATTCCAATATGGTTCGACGTCGTTCTGGATTAAACAAAAACTGCGGAAAGTATGGGGGAGGGTCATACTGCTCTACCCAAATGGTCGGACTTCAGGCATTGAAACTTTTGTTTTAGGTTCAGGATTGAATTTAATCCCATCAGATTTGCAAGTGTGCTGTTTTCCTGGTAGTTGTTGATGGGTCAATGTGGGTAGAGGGTGCGGCCCGTGTAGGAACCTTATAGAATATGGGCTGCCAGGGTTGGTCAATCTAAGAAGCCCTGATTCTTGCCCGACACAAAAACAAAAAATGTTAATAAAGTTATAACCCAGTGCTTGCTGAATATTGTAAACTCCGAATGGGAGCTTTCCCATTTTACTGTCATTTTTCAAAAGAATATTTTACCTTGAGGGAAAATGGGAAACTCTGTGTGGGACTCTGAAGTTGTAGGACACTAATATTGGCGACAATTTTTTGAGGCATGTAAAAATTGGACATGTATAGTAACCTACTAACCCGTAATTTTTAATGCAAATACTTCCTCATTCCCCAAATATCGCACCAATTTGACTTTTACACTATTCTCACTATTTGACCATCTTATCTTTTGTAATTTATACATAAGAAAAAATGTGATCATGTGGCTCTTGTTAGATTCATGTCGATATATACTTTCTAAATATCAATATTTTTATAACTTTTACTTATGCATAATTCGAGATATTAAGATTCAAAATCATGTGTTCGGGAGCGTAAAAGTTAACATGTTGCAATATCTAAGGAGCGGAGAAAGTATTTAAATTGGGTATCGATGAGCTAAAAATCTGATTTCCAATGCAAGCTGTGACCATTCATTAGTAAAATCTCTCAATAAAACCCATGCTGCATCTCCAATGTGTTAATTTATTAATTTTTTATGCGATAAGCGGAATTTGGGAGGGAAACCTTGCATTTTTTGAGGAAGAAATGAAGGTGAAGGCTTTACAAATTTCGTGCATAATTGTTAAAAGTATGCCTTTTATTTTTGGGTTGAAAAAAACTATATGCTTTAATTTGTAGCCCCAATATTATGTATTCTGGATATTACAAAATTTACTTTCTTTTGTTGCTCCTGTTTATAACTTTAAAAATTTAAGTATTCAAAAAGAAGATTTTTATCTTCTTATTGTACTGGTCAAAAGCCCAGCATTGGGGTTTGAATGAAAGACTTGATGCCTAATAGAAAAGCTATTTTTGTTTGTTTCAGTATCGGATGTCTAATATACACTACAATGTAACTTCTGGTGATCGATATCCTGTACCAAATAAGGCAGCTCCGGTTTACATAACCGTTGGAGACGGTGGAAATCGAGAAGGTCTAGCTGCCAAGTAAGTAACTAAGTATGATGCATCATTTTTACATGTTGGATATCTTCGTTGATGACCATGGTCGTGTTTCTGAGGGTTATAAATGAATATACAGGTTTTGGGATCCACAACCTGACTATTCTGCGTTCCGAGAAGCCAGTTATGGACACTCCACGCTGGAGGTCCATAACAGAACCCATGCAATTTATCGATGGAACCGCAATGATGATGGGAAAAGTATACCAACCGATTCTGTGGTATTCCACAATCAATACTGGTATGTTTTGCTGCTCTTTTCTGGTCTTAGCATTCTGTGGCCAATGTGTAGGAAGCACTCTTGTTGTTCTCTAATTCAGGAAGGAGTGTTTATATTTGCTGTTGGTAGAATCAGGATTTTACTACTTTGGTATAATAGTTATGTGCTCCGATCCCCCTTATTGTCTCTGTGGTGTTCTTATCTTTGAAAATATACTCTGGTATTAATTCCAGGGCTAGCAACCTGCGCCGCAGGAGACGAGGAGGCTGAGATAGGGACGTGTTAGTTTAGGTACCGATGTCAACTGTCGCATCTCACATGCCTTTTAGATTCGTAAAGCTCGTCTTATTCTTGAAATCATTGAAGCCTTGAAGGGTGGCTGCACTTGAATTGAAGGCAGTTTTGATTTCTTGCAGTCACTGAAGATGGATGGGAACCTGATAGGCTGATCTAGGGCATCGTTATTATAGTTAGACATGTAAATACAACGATTTAAGCCTTCGGTATTATAGAATGATTCAATTCTTTGCTTTCTTTTTTGGGTGCGAATGAGCCACAGGTAAATATTCTTTGCTTTGTATATTGTACTCCGTAATAAAGAATGCTTAATATTGGGTCAGTGTGTGTGACAGACATGATGAGTTAATACCAATGTTAATTTGATTTATATATTGGTCTTATTTTTGTTGTTTGTTTGAGCCGTAAAGCTACTGTAGAAAATTCGCCATATTCTGTCTATTAGGAAGGATCGGAACACACAAGTAGTGAGAAGATTTTCTATGTATA TCCAATTTATCGAGTGATTTAAACAATTTAGCAATGACCCGTCTATTCCGTCAATGGCGTCAAAATAAGTGTGTTTACGAAGACACAGACTTCTTTTTGCCGGCACAACCTAGTACTCCGTACCTACCTAACTACTGATAACTTCCTGCTACCAATCATCACTTTATAGTTTATACAGGTCGAAACCTTCTCATTTCTGATTTCACCTCTTTCTCACTCTATAATCCCCAAGTTCAATTCTTTGTTCTTCGTATCAGTTTAATCTTCAGATCAATTTGTGAGGACCAATGCTCGTGACTTTCAGGAGAAAGCGACCGTGCTTTCATTTCTTATTGTTGTTTTCTACGATATTGAGTTCTTTCAGCAGTGGGCATGCTGGGGTAACTAGTGCGTACATACGATCAGAATGGCCTTCTGTTGACATTCCTCTTGATAATGAAGTTTTTGCAGTTCCAGAGGGTCACAATATTCCTCAGCAGGTTCATATAACCCAGGGAGATTATGATGGAAAGTCTGTCATAATATCATGGGTTACACCTGATGAACCAGGCCCTCGTAAGCTACAGTATGGAAAATCCAAGGACTACAAACTTAGTGCTGATAGCACTGTAACTAACTACACTTTCTATAAATACAATTCTGGTTACATTCATTATTGTCTCCTTAATGCTCTTGAGTACAGCACAAAATACTATTACAAGATTGAAGCAAGAGACTCGTCTCGAGAATTTTGGTTTCAAACACCTCCAAGGATCCATCCTGATGCTCCCTACACTTTTGGAATTATTGGTGACTTAGGTCAAACATACAACTCTCTTTCCACTCTCCAGCATTACAAGCAAACTGGAGCACAAACTGTACTATTCGTGGGCGATCTTTCTTATGCAGATCAGTATAAATACAATAATATTGGGGTTAGGTGGGATTCTTGGGGTCGTTTCATTGAGCCAATTGCCGCATACCAACCATGGATTTGGACGGCTGGAAATCACGAGATAGAGTATATGCCAGACTTGGGGGAACTTACTACGTTCAAAAATTATCTACATAGATATCCTACACCCCATGCCGCCTCCAAAAGTAGTAGCCCTCTCTGGTATTCTGTTCGCCGTGCATCTGCTCATATCATTGTGCTATCCAGTTATTCTCCATTTGTTAAATATACTCCTCAATGGATGTGGCTCAGAGAAGAACTCCAGAGGGTGAATAGAGAAATAACACCTTGGCTTATTGTTCTAATGCATGCCCCCATTTACAGTAGTAATGTAGGCCATTATATGGAGGGTGAAAGTATGCGTTCTGTGTTCGAGAGCTGGTTTGTTCAGTACAGAGTTGACTTTGTCTTTTCTGGCCATGTCCATGCGTATGAAAGATCATATCGGATGTCTAATATACACTACAATGTAACTTCTGGTGATCGATATCCTGTACCAAATAAGGCAGCTCCGGTTTACATAACCGTTGGAGACGGTGGAAATCGAGAAGGTCTAGCTGCCAAGTTTTGGGATCCACAACCTGACTATTCTGCGTTCCGAGAAGCCAGTTATGGACACTCCACGCTGGAGGTCCATAACAGAACCCATGCAATTTATCGATGGAACCGCAATGATGATGGGAAAAGTATACCAACCGATTCTGTGGTATTCCACAATCAATACTGGGCTAGCAACCTGCGCCGCAGGAGACGAGGAGGCTGAGATAGGGACGTGTTAGTTTAGTCACTGAAGATGGATGGGAACCTGATAGGCTGATCTAGGGCATCGTTATTATAGTTAGACATGTAAATACAACGATTTAAGCCTTCGGTATTATAGAATGATTCAATTCTTTGCTTTCTTTTTTGGGTGCGAATGAGCCACAGGTAAATATTCTTTGCTTTGTATATTGTACTCCGTAATAAAGAATGCTTAATATTGGGTCAGTGTGTGTGACAGACATGATGAGTTAATACCAATGTTAATTTGATTTATATATTGGTCTTATTTTTGTTGTTTGTTTGAGCCGTAAAGCTACTGTAGAAAATTCGCCATATTCTGTCTATTAGGAAGGATCGGAACACACAAGTAGTGAGAAGATTTTCTATGTATA ATGCTCGTGACTTTCAGGAGAAAGCGACCGTGCTTTCATTTCTTATTGTTGTTTTCTACGATATTGAGTTCTTTCAGCAGTGGGCATGCTGGGGTAACTAGTGCGTACATACGATCAGAATGGCCTTCTGTTGACATTCCTCTTGATAATGAAGTTTTTGCAGTTCCAGAGGGTCACAATATTCCTCAGCAGGTTCATATAACCCAGGGAGATTATGATGGAAAGTCTGTCATAATATCATGGGTTACACCTGATGAACCAGGCCCTCGTAAGCTACAGTATGGAAAATCCAAGGACTACAAACTTAGTGCTGATAGCACTGTAACTAACTACACTTTCTATAAATACAATTCTGGTTACATTCATTATTGTCTCCTTAATGCTCTTGAGTACAGCACAAAATACTATTACAAGATTGAAGCAAGAGACTCGTCTCGAGAATTTTGGTTTCAAACACCTCCAAGGATCCATCCTGATGCTCCCTACACTTTTGGAATTATTGGTGACTTAGGTCAAACATACAACTCTCTTTCCACTCTCCAGCATTACAAGCAAACTGGAGCACAAACTGTACTATTCGTGGGCGATCTTTCTTATGCAGATCAGTATAAATACAATAATATTGGGGTTAGGTGGGATTCTTGGGGTCGTTTCATTGAGCCAATTGCCGCATACCAACCATGGATTTGGACGGCTGGAAATCACGAGATAGAGTATATGCCAGACTTGGGGGAACTTACTACGTTCAAAAATTATCTACATAGATATCCTACACCCCATGCCGCCTCCAAAAGTAGTAGCCCTCTCTGGTATTCTGTTCGCCGTGCATCTGCTCATATCATTGTGCTATCCAGTTATTCTCCATTTGTTAAATATACTCCTCAATGGATGTGGCTCAGAGAAGAACTCCAGAGGGTGAATAGAGAAATAACACCTTGGCTTATTGTTCTAATGCATGCCCCCATTTACAGTAGTAATGTAGGCCATTATATGGAGGGTGAAAGTATGCGTTCTGTGTTCGAGAGCTGGTTTGTTCAGTACAGAGTTGACTTTGTCTTTTCTGGCCATGTCCATGCGTATGAAAGATCATATCGGATGTCTAATATACACTACAATGTAACTTCTGGTGATCGATATCCTGTACCAAATAAGGCAGCTCCGGTTTACATAACCGTTGGAGACGGTGGAAATCGAGAAGGTCTAGCTGCCAAGTTTTGGGATCCACAACCTGACTATTCTGCGTTCCGAGAAGCCAGTTATGGACACTCCACGCTGGAGGTCCATAACAGAACCCATGCAATTTATCGATGGAACCGCAATGATGATGGGAAAAGTATACCAACCGATTCTGTGGTATTCCACAATCAATACTGGGCTAGCAACCTGCGCCGCAGGAGACGAGGAGGCTGA MLVTFRRKRPCFHFLLLFSTILSSFSSGHAGVTSAYIRSEWPSVDIPLDNEVFAVPEGHNIPQQVHITQGDYDGKSVIISWVTPDEPGPRKLQYGKSKDYKLSADSTVTNYTFYKYNSGYIHYCLLNALEYSTKYYYKIEARDSSREFWFQTPPRIHPDAPYTFGIIGDLGQTYNSLSTLQHYKQTGAQTVLFVGDLSYADQYKYNNIGVRWDSWGRFIEPIAAYQPWIWTAGNHEIEYMPDLGELTTFKNYLHRYPTPHAASKSSSPLWYSVRRASAHIIVLSSYSPFVKYTPQWMWLREELQRVNREITPWLIVLMHAPIYSSNVGHYMEGESMRSVFESWFVQYRVDFVFSGHVHAYERSYRMSNIHYNVTSGDRYPVPNKAAPVYITVGDGGNREGLAAKFWDPQPDYSAFREASYGHSTLEVHNRTHAIYRWNRNDDGKSIPTDSVVFHNQYWASNLRRRRRGG Relationships
This mRNA is a part of the following gene feature(s):
The following polypeptide feature(s) derives from this mRNA:
The following exon feature(s) are a part of this mRNA:
The following five_prime_UTR feature(s) are a part of this mRNA:
The following CDS feature(s) are a part of this mRNA:
The following three_prime_UTR feature(s) are a part of this mRNA:
Homology
BLAST of Spo09590.1 vs. NCBI nr
Match: gi|902207395|gb|KNA15689.1| (hypothetical protein SOVF_095930 [Spinacia oleracea]) HSP 1 Score: 995.7 bits (2573), Expect = 2.700e-287 Identity = 469/469 (100.00%), Postives = 469/469 (100.00%), Query Frame = 1
BLAST of Spo09590.1 vs. NCBI nr
Match: gi|731316702|ref|XP_010696563.1| (PREDICTED: bifunctional purple acid phosphatase 26-like [Beta vulgaris subsp. vulgaris]) HSP 1 Score: 886.7 bits (2290), Expect = 1.700e-254 Identity = 416/469 (88.70%), Postives = 441/469 (94.03%), Query Frame = 1
BLAST of Spo09590.1 vs. NCBI nr
Match: gi|255548858|ref|XP_002515485.1| (PREDICTED: bifunctional purple acid phosphatase 26 [Ricinus communis]) HSP 1 Score: 780.4 bits (2014), Expect = 1.800e-222 Identity = 345/454 (75.99%), Postives = 403/454 (88.77%), Query Frame = 1
BLAST of Spo09590.1 vs. NCBI nr
Match: gi|425872922|gb|AFY06665.1| (purple acid phosphatase [Citrus trifoliata]) HSP 1 Score: 771.2 bits (1990), Expect = 1.100e-219 Identity = 350/467 (74.95%), Postives = 413/467 (88.44%), Query Frame = 1
BLAST of Spo09590.1 vs. NCBI nr
Match: gi|720079250|ref|XP_010241603.1| (PREDICTED: bifunctional purple acid phosphatase 26 isoform X1 [Nelumbo nucifera]) HSP 1 Score: 767.3 bits (1980), Expect = 1.500e-218 Identity = 346/456 (75.88%), Postives = 399/456 (87.50%), Query Frame = 1
BLAST of Spo09590.1 vs. UniProtKB/TrEMBL
Match: A0A0K9R9M5_SPIOL (Purple acid phosphatase OS=Spinacia oleracea GN=SOVF_095930 PE=3 SV=1) HSP 1 Score: 995.7 bits (2573), Expect = 1.900e-287 Identity = 469/469 (100.00%), Postives = 469/469 (100.00%), Query Frame = 1
BLAST of Spo09590.1 vs. UniProtKB/TrEMBL
Match: A0A0J8D479_BETVU (Purple acid phosphatase OS=Beta vulgaris subsp. vulgaris GN=BVRB_2g030710 PE=3 SV=1) HSP 1 Score: 886.7 bits (2290), Expect = 1.200e-254 Identity = 416/469 (88.70%), Postives = 441/469 (94.03%), Query Frame = 1
BLAST of Spo09590.1 vs. UniProtKB/TrEMBL
Match: B9RP16_RICCO (Purple acid phosphatase OS=Ricinus communis GN=RCOM_0923300 PE=3 SV=1) HSP 1 Score: 780.4 bits (2014), Expect = 1.200e-222 Identity = 345/454 (75.99%), Postives = 403/454 (88.77%), Query Frame = 1
BLAST of Spo09590.1 vs. UniProtKB/TrEMBL
Match: V9LXL9_PONTR (Purple acid phosphatase OS=Poncirus trifoliata GN=pap2 PE=2 SV=1) HSP 1 Score: 771.2 bits (1990), Expect = 7.400e-220 Identity = 350/467 (74.95%), Postives = 413/467 (88.44%), Query Frame = 1
BLAST of Spo09590.1 vs. UniProtKB/TrEMBL
Match: V9NC52_MANES (Purple acid phosphatase OS=Manihot esculenta GN=PAP26-1 PE=2 SV=1) HSP 1 Score: 766.1 bits (1977), Expect = 2.400e-218 Identity = 342/458 (74.67%), Postives = 403/458 (87.99%), Query Frame = 1
BLAST of Spo09590.1 vs. ExPASy Swiss-Prot
Match: PPA26_ARATH (Bifunctional purple acid phosphatase 26 OS=Arabidopsis thaliana GN=PAP26 PE=1 SV=1) HSP 1 Score: 726.5 bits (1874), Expect = 1.900e-208 Identity = 326/456 (71.49%), Postives = 390/456 (85.53%), Query Frame = 1
BLAST of Spo09590.1 vs. ExPASy Swiss-Prot
Match: PEPP_ALLCE (Phosphoenolpyruvate phosphatase OS=Allium cepa GN=ACPEPP PE=1 SV=1) HSP 1 Score: 707.2 bits (1824), Expect = 1.200e-202 Identity = 328/459 (71.46%), Postives = 380/459 (82.79%), Query Frame = 1
BLAST of Spo09590.1 vs. ExPASy Swiss-Prot
Match: PPAF2_IPOBA (Purple acid phosphatase 2 OS=Ipomoea batatas GN=PAP2 PE=1 SV=1) HSP 1 Score: 550.8 bits (1418), Expect = 1.400e-155 Identity = 252/446 (56.50%), Postives = 334/446 (74.89%), Query Frame = 1
BLAST of Spo09590.1 vs. ExPASy Swiss-Prot
Match: PPAF_SOYBN (Purple acid phosphatase OS=Glycine max GN=PAP PE=1 SV=2) HSP 1 Score: 550.1 bits (1416), Expect = 2.400e-155 Identity = 257/447 (57.49%), Postives = 331/447 (74.05%), Query Frame = 1
BLAST of Spo09590.1 vs. ExPASy Swiss-Prot
Match: PPA12_ARATH (Fe(3+)-Zn(2+) purple acid phosphatase 12 OS=Arabidopsis thaliana GN=PAP12 PE=2 SV=3) HSP 1 Score: 550.1 bits (1416), Expect = 2.400e-155 Identity = 256/447 (57.27%), Postives = 332/447 (74.27%), Query Frame = 1
BLAST of Spo09590.1 vs. TAIR (Arabidopsis)
Match: AT5G34850.1 (purple acid phosphatase 26) HSP 1 Score: 726.5 bits (1874), Expect = 1.100e-209 Identity = 326/456 (71.49%), Postives = 390/456 (85.53%), Query Frame = 1
BLAST of Spo09590.1 vs. TAIR (Arabidopsis)
Match: AT2G27190.1 (purple acid phosphatase 12) HSP 1 Score: 550.1 bits (1416), Expect = 1.400e-156 Identity = 256/447 (57.27%), Postives = 332/447 (74.27%), Query Frame = 1
BLAST of Spo09590.1 vs. TAIR (Arabidopsis)
Match: AT2G16430.2 (purple acid phosphatase 10) HSP 1 Score: 531.9 bits (1369), Expect = 3.800e-151 Identity = 253/455 (55.60%), Postives = 325/455 (71.43%), Query Frame = 1
BLAST of Spo09590.1 vs. TAIR (Arabidopsis)
Match: AT4G36350.1 (purple acid phosphatase 25) HSP 1 Score: 524.2 bits (1349), Expect = 8.000e-149 Identity = 250/451 (55.43%), Postives = 328/451 (72.73%), Query Frame = 1
BLAST of Spo09590.1 vs. TAIR (Arabidopsis)
Match: AT1G56360.1 (purple acid phosphatase 6) HSP 1 Score: 517.3 bits (1331), Expect = 9.800e-147 Identity = 249/453 (54.97%), Postives = 328/453 (72.41%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo09590.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo09590.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo09590.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo09590.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. TAIR) Total hits: 5
InterPro
Analysis Name: InterPro Annotations of S. oleracea
Date Performed: 2018-06-29
GO Annotation
GO Assignments
This mRNA is annotated with the following GO terms.
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