Overview
Sequences
The following sequences are available for this feature:
Legend: polypeptideexonCDS Hold the cursor over a type above to highlight its positions in the sequence below.ATGGTGGATCCAAACCCCATTGTTTCATCTAGGGGGATTAATAGGCTTCAAGAAGCAGGCATTGAAGTAGTTGTTGGAGTTGAGGAAGATTTATGCAACAAGCTCAATGAAGCATTTATTCACAAAATGATTTCTGGGAAGCCTTTTGTTACTCTCAGGTAAAGCTTATTTAATAGTGATGATTTGTACTGAGTATGATAAGAACATGAATCCATGAGTTAATTTTTGTTATGTAAGGAGAAGTTGTGGAAAGGACAGGTTAAGCACTATGTGTCTCCTTCGGTGTTGAGAAACTTGAATCGACGCGTCAAATTTACTGTGTTTTTCTCTACTCATTAAATGATTACAGGTTTTGAAATTTTGATATATCATCTGCTGCGTTCGTGAGCTTGAAACACATCAAATAATGCAATTTGTCTAATTTGATGCTTTTTTAAATAAAGCTAAGCAAATGAGACTCTTTTTACTTCCACAAAAGCATGGTAAGGCGTGATAATACTGTCCTGCTGGCAGTAGTGGTTAGCAGCTCGTAGTGCAGTGGACTAGCAGTGTAAGAGCATGGTAAGGTGTAGTGTGTGTGGGTCATGTTTTGGGTGTGTGCAGGACGTACTGTAGGTCATGTTGGGTGTTTGCAGGTTATCTTGGGTTTGTACACGTTGTTTTTGGTGTATGCTGGTTTCATGAGTACTTGCTGTGTATGGTGCAGGTGTGTGAGGGTATGTGAGACTGTCGAATTGTGTGTTTGTAAGTGTGACATTACAGGCAAGATTATGTTGTGAATTTGTTGAGTACCATACGGGTGTCTAGTATTGTTTGTAAATTAGAGTTAGTCGCTTTGTGAAGTTCTTTAGGATAGAAATTAAGTTTAGCTCAATGGTCAGTAATTTTTGTTGTCTGATATTTGTCACCCATGAGTTGTTTTAGAACTGGTGTCTCTTCGTTGTTTGAATTCTTTGATGTTTGATGTATGAGTAAGCTATAGTACTTTCAACATATACTTTATGGCTTTCCTCTGCGTTAATCTTGGTCGTATTTATATTGACGTTCTGAGTTTGTCTAATATGGCTTGATTTGGTTTAATATACTTTCGGTTAGTAAACCTGCATTTTTGGCAGATGTTTCTGATACACTGTTTTGGCAGGTATTATGCATCATGGAATTTTACCAACCCGATATATAGATAATACACTTGTTTGGCTATAATTTGATCCCTATTCCAGATCATAAAATAGGTTAAGGTCAAAGGAGTGATGCCTCAGAGCTCACCACATATAGTTTTAGTTGTTTGTGTAATAGATATTCACATTAGAGGATAGATAAAGAATAACAGGCATGTAAGTGATGGAGGAATAGGTCGTTTGATTTTAGACTACAAAGCCTTTCTGGTTTGTCTTGTTCAGAAACACACTCTTTACTGGTTCCCAAAATATTATGATTTGCTAAAAGAATCAGCAAATAACAATTCTTAAATTGCAGCCCTTAATATTGCCGCTACCCAAATGAGCCTTTTTTGGGCGCAGCAAATCAACATTATTTTAGTAGTGTTGCCATCTAAAAGTTGGTTCACTGGCGCTTTCTTATTACTATTCCATTTGAATTTCTTTGTACATGACACAAATTTTGGAAGCTTTCTTCGGGGTTTGTATATGTTTTGCATGTAGCTAATGGTTACTACTAATCGACTTGCAGATATTCCATCTCCGTTAATGCCGTGCTTTCAGATCAACTGGGGGATAAAGTTGCAGAGAGTGGAGGATATTACTCTCAATTGCTACAAGAATATGATGCAGTAATACATGCAGCAACCACCAAGATGGACAAAGAGATGTCATTCCTTAAATCACAAGAATCAAATGCCCGTCAACCTCAACAAATATTTATGGCTAAGAAGTCTGATATCCTTAACTGGAATTTGGAACTACTTGTAGAAGCAGACTGTAAACCAATTATATTTGTGGACAAGGAAGTAACACTATCACAGGAAATGTCTCGGAAGGGTTTTGAAACAGTTGTTATGGACGACATCAGTTTGGATGCTGTTTTGGAGTATTGTAGTAGACAAGGAATGTGTAATGTATTGGTAGATTTGAGGGGGAAACTAAGCGTTTGGGAAGACATTTTGGAGAAAGGTTTTCTAACGAATTCAGTACAAAAGGTGGTAGTGGAGGTACTACCTCTTTGGGTAGGGAATGATGTTAATCTTTCTTCCTCAACAATGATGAGTCTGACCCAAAGTAAGAGGTTGAAGAACTTATCAGCTAGGATTACACGAGACACTGTGTTACTTGAGGGATATTTTTGATCTTTATATAGTATTCATTGACTTAATTTCTCATATAAGAGAATTGTTATGATTTTGTCAGAGAATTACAAGTGTTTTTACAGAATCAACTAAATAAAATTATATGGAATATCAAGAGCAAAATTTTTATAAAAAGAGGTAGCATGTTTGTTTTTAATACAGATGTCTACCGGTCATATTTATGAGTTATGTACAAACAGGATTCCGGCTGGTCACCGAGTTCTAAGACACGGAGATGGGCTGTGGTTGGGGACACAGGAGAGAGTTTGGATGCTGGTTCTAGGTTTGTTGTAGATAATGTTGATGATGCTATTTAGACAATGACAATGATGATGAACATTCTCCCGTTGATTCTTTGGATGAAAATGAGGTAATTCCTAGTGTTTTTATGATGATGATGAACAAGCTCCCATTGATTCCTTTGTTTCTTTTTTTATATTTTCTCCGAATGGAATTACTTGTTATTTCCTCCGACTGGAATTAATTGTCAAGCCGGTCGACGAAATTTAAACCAGTAATACGCAACCGAATCCGGAGAGAGTATATAACTATATACAAGTACCGATGGTTTTGATAATGTTATTTAGCCTTATTTTATGTTATTGTTGTTTGAAGTGTGGGATTATTTTCCATTGAATCATATTGAAATCTAGTTAGTTCAATGCTTGAAATTGGTTTCAAATTGTTATTGGAAATAATTAACTGGGGAGTTCTTTGAGATCATTTGTGAATTTTGTTCCTAATATTTTGAATATCTTCATAAGTAGATCAAAACAAGTATTCCTGTTATTCGGATTTAATAGCCGTGTTAATAGTGTAACTTGAACTAGTAATATGAATTAAATTGGTAGGGAGGGAGTATGATTAATGGGGTTCAGTAGGAAAGTTTCACTTTCCTGGATGTAGGGCCGGGTTCACAAATGAGGTGTTGTAATTTTTGGATAATCTCAGTAACAGTATTTGAGAGTTGATGGAGGGAGTTAAAAAATGACATGAAGTAAATGGATTTGCAAGAGCATGTAATATTAGATTGGAATGAATGAAGGAAAAGATCATGTGGATGTCCACAGGAGATATATGCTTGGTTCATGTAGTCGACCCTATCCATTTAGGAATAAGGCTTTGTTTTTGTTGTGCATGACCGAGGTAATAGAACATAGCTTACAGTAGAGAGTGATATATATGAGCATTTGCGATAACAAAGCAATCGACTTTCTTTGTTATGATACTGTGTCAGTAGTGTGCGACTTTGAAGATCAAGGACCTCAAGCTTCAGTTGCTTGTCATCTTTGGATTCATTTGCTTATAGTTTAAGATGCCGTAGAGTGTATCCATGCGACTTGAACCCCACTTCACAATGGACTGAACATGTTCCCAGTAAGAAGAGATTTGATTTGTTGGTTAACTTCATTGAGTAGGATTGTAGCCTAGCAACTCTTCATCAGAACTAACATGCTTGCTTGTTTCCAGTAAGATTATCATTGTATCTGTTTATGCTTTAAACTCTCGTGCAGAATGTTCTTTTGTGTTTTACACGGAGTACATTACAGTCTAACAACTCTTTCAAATGGTTTTGAGGTTCTCAATTCTAGTTGCATTCTTGATGTTTTTATTTCCTGCTTTCAGGTTGTACAGACAATCCCAAAGCTTCCGGAACATGATTATGCTGGAACACCTTATGTCCCTATTTATGTGATGTTAGTAAGATTAATTTTTTTTATTTTTATATCTCCTAATACACGGGAGAGAGAGAGAGGGGTTGTATGGTTAACAACTCTTTTCAACAAGATTTGGGGAAGTAATAGGATGCCAGTAGAGTGGAGGAAAAGTACTATCATCCCCTTGTACAAGAATAAGGGTGATGTCCAGGATTGTGCCAACTATCGAGGAATCAAACTAATGAGTCATACTATGAAACTTAGGGAGCGGATTATTGAGCAAAGACTGAGGAGAATTGTGAAAATTTCGGAGAACTAGTTTGGATTTATGCCTGGGAGATCGACTATGGAGGCCATTCATCTTATAAGGCAACTAATGGAAAATTATCGAGATAAGAAGAAGGATTTACATATGGTTTTCATTGATTTGGAGAAGGCGTATGATAAGGTACCAAGGGAAATTCTTTGGTGGGCATTAAGTAGGAAAGGAATTCCGAGGAAGTATATTGATATCATCAAGGACATGTATGAGGGAGTTAGCACAAGTGTGAGAACTAGTGTTGGTAAGACCGAAAAATTCCCCATTACGATTGGAGTGCATCAAGGTTCCGCACTTAGCCCGTTTCTTTTTGCTATAGTCATGGACGAATTGACGAGGTCAATCCAAGATGGTATACCCTGGTGCATGATGTTTGCAGATGATATTGTGTTGATTGATGAAACAAAAGAAGGAGTGGAAAGTAAGTTGGAGTTATGGAGACAAACTTTGGAATCTCGGGGTTTTAGGCTGAGTAGAAACAAGACGGAATATATGCAGTGTAAGTTTAGTGGAGTCCAAGATAGAGAGACAGGGGGGATTACCTTAGATGGGAAAATTGTCCAAGGCTCTGAAATGTTCCGTTATTAAGGATCTATTATCCAAAAGGATGGAGAATTGGATGGCGATGTGGCCCATAGAATCAAAGCAGGTTGGTTGAAGTGGAAAAGTGCCACAGGGTTCCTATGTGATTCAGGCATGCCCCAAAGATTGAAGTGAAAATTTTACCGCACGGCAATTCGACCGGCTTTGTTATACGGCACGGAATGTTGGGCAGTGAAACATTGTCACGTGCACAAGATGAATGTGGCGGAGATGCGCATGTTACGTTGGATGTGTGGGCATACAAGAAAGGATCGTTTGAGGAATGAGATTATTAGGAAGAAAGTAGGGGTTGCACCGATTGAGTTTAAGATGATGGAAAATCGTTTAAGATGGTTTGGACATGTAAGCAGAAGATCAAGTGATGCCCCGGTTAGGAGGATAGAAGGGTGGCAAAATGATAGAATTGCAAGGGGTAGGGGAAGACCTAAGAAAATTTGGAGGAAGGTGGTTGAGCACGATATGAGCTTTCTTGGGATTGAGGAAAATATGGCGTTGGATAGGATATCGTGGAGGGAGAGAATATATATTGATGACTTCATTTGATTTATACAACTTTCATTTTTTTTTTTTTAAAATTTAATTTTGATAAGGAAATAAAACTAGGCGGACTGCCTAGCTCACCCTTTCGGGTGACCCATCCTTTCGGATGAAATACAGACTCCGAGAAGAAGAAACGAAATCGAAGAGAACAAAGATACTACACTCTAACCTCATACTACCCACCTCATACTACCCAGCCCCGGTTCCAAGAAAACTTGGTGAATAGACTACAATGGCAAATGATAAGTCGAGCGATACAAGATAAACTCTTCGACCTCACCGATACTCGAAAGTCCAAACCCAATACCTAAACTTAATCAAAGAAAACCTACCAAAAACAAATTAAAAATTGAAATAATACAAACCAAAAGAAGAAATGAATTAGCACAGATTTACAAATTTAAATGACCCAAGCAATATACATAACTGGTTGGAGAAGATACAACAAGAGGCTCGGATCCACCATCTCGATCTAGCGGCTTACCTTCAAGGATCTTAGGCTAAAGCCGATTGAGGCACCTAGGATCATCGGGCTAAAGCGATGAGTCAATGACGACTGACGAAATTAGCAGACTTGAACGGAGCTAAAGTGTTGCCGGAGAAACGTCACTAGAGTTGGCTACTAGTGGATACTTCTAGCCGACAAACGCCTCACAGAAATTTCCGGAAGCCTTTCAAACAAAGGTCGCCGGCATGGCGGCATCGAATTGACTGAGAAACCAAGGTCGGCATTTTTGGATATAAACGAAAGAAATTGGGGCAAATGAACCCAGTAACCCACAATAGACTTTCGAAAAAATAACTCAAACTTCTTCGAGAATTGATAAATTTTTGGCTAAAGAAAACCTTACTCTTGGAATAGATAAGCTAACTTCACTGGAATTTGCTTAGATTTGAATGCCTTTGGTTAGAGGTTAGGGGTGGCGGCTATGGCCATTAGGGTTTTTTCTAGGGTTTTTCTAGAGAGAGAAACATAGCCCCTCTCTCTTGGGGTATCTACTTATACAACTTTCATGTTTCTGTTTCTTTCTTTTTTTTAATTTATTTTTATTTTTATTTTTATTTTATTTTTTATTTTATCTTTAAAATTCTTTTGAGTTTTTTATTTTTAAATGTTATTTTAAAATTTACTTATTTTACTTATTCATTTATTTTAAACTTTACTTATTTTTTATTATCGTCTTACAATATTTCTTCTATATTATTTATATTTATTTTTCTCTTATCTTACTTTCATTAATTCCACCTTCTCTTCCTTGCTTTTTCTTTTTACTTCATGCTCCTTTCTGGTTTTATTGGTGACAATGACGATCTCCTACGACGATTCATGTTAGCCGACCCCAAATCATTTTGGGACTAAGGCTTTGTTGTTGTTGTTGTATCTCCTAATACACGATGCCTCCTCGCTTTGCATCAATCTGCCAATGACTTCCAATGATGTTTTTCATAGTCTCCCTAGTCCCTAATTGCACCTGCATGTAGGCTTCCACTTTCTCTCTTTTTATCTCTTTTTCCTATCATTGACTTGCTGAATATCTCTTGCTCATATTTTCTATGTTACAGTCAAATACCATTGATATGAACTGTGAAGTGGATCCACACAACCTCACGGAGCAACTCAAAATTTTGAAGTTGAATAATGTTGATGGTGTTATGGTTGATTGTTGGTGGGGCATAGTGGAAGCAGTGGACCACAGAAATATAATTGGAGTGGTTACAGGAAACTGTTTCAGGTCGTGCGTAATCTTGGACTTAAATTACAGGTATTTCCCATACTCTTGTCTATGAAAGTATGAAGGACATGTGGCTTGTTATTCAAGCTGCATGTCTGATTTCTTGGTACTTACTTACTGCAGGGGTATTTAAGACTAGTGGGATTCTAACCGCTTGACATTAATAAGCTTCATACACTTTAGATACATATCATAAGCAACTTTATGTCTTGAATTGAAACATGAATTGATTTTCATGCCATTGAATACTCGAGTAAACCAGACTCGAGTTAATTTGGCTAGTTTCTAACTAAAATGTATCCATGTGAAATGACCTTTTTTTTATAGCTAAATTTGAGTGAGAATTAAAAAATTTGTCTGAGATGCTTATCTCCATGAGGTTATCTTCCTCTGCTTCCTGCAGTATCATGCAATCTTACTCCTGATGAAATTGAAGGCTACTACCTAGAAAACCACATTGAGAAATTGTTAAATACGGGCCTGGGCCGCGCACGTCACCAAGAGAGAGAGCCCACTTAACAAGTCCAAAGGAGGTTCCACCTTAAAACCATATGGCAATAAGGGGAGTAGCCCCTTGGCCTTATTAAGTGTTTAACTCTCTTCTCTTTTATCAATGTGGGACTCTCACACGTGATGTTTCATGGGTCAGATCTTAACAGAAATTATTAAACCGGTAGGTTTTAGACTGAGTCTATATATTTTTTTCATGAAAGGATTTGTGTCCATATCAGTTCACCTTGATAGTGAATTTAACAGGCAATCATTTCACCTTCATCGTGAATTTAACGGGCAAACTCTGAAATGGTTGTTCTGTCATAGGTTGTTATGTCTTTCCATGCATGTTCAGGAAATGTTGGGGATGATGTGCATATTCCCCTCCCACATTGGATCACAGAAATTGGTGAAACTAATCCCGATATATATTTCACGGATCAAGATGGTAGGCGCAATACTGAAAGCCTCTCTTGGGGAATAGACAAAGAGCGTGTTTTAAGAGGCCGTACAGCAGTTGAGGTATAATGTTTTACTGAATATTTCAATTTCAGTTTGCTTCTGGTTCTTTTCATTTCTAAGTACTGTTTTTTTTATTCCCTTCTTTTGGGTGGGGTTGGGTAGATGGAAAATATATGTGGGTATCCTTTTTATAGCCGAGTTTAGTTACACCGAAATTGCATCACAAAAGTAACGTGTTCATGAAAATGCGGTAGTCTACTGTGAACTCCCTAGTTTGGATGGGTTTGTGAACCACACTTCTGAATCTTATCCTGGTGACAAGTCAGGTTTACTTTGATTATATGCGAAGCTTCCAAGTGGAATTCAACGTTTTTTTTTTTTGAAGGTGGAACCATATCTGAGATTGAGGTTGGGCTAGGTGCATGTGGGGAGCTACGTTATCCATCCTATCCTGCAAATCATGGTTGCAAGTATCCAGGCATCGGTGAATTTCAGGTAAAAACATATCTGCATACTGTAAGAAGTTTTCTACACAGCTGCATTTTGTTAAATATTTTCTCATAGATTCCCATTACCCCTCGTCCCAACAGTTTCTGAATGCTTCAACTGCTGGAACTCCTGCAAGAATATAAAATTAAACAAAAGAAAGAAAAAACTGGGAATACTCTTATTATCGCAAAAAGAGATGCTGGTAGGATATTCTTAAATGGGATAGTATGATTCATGATATGTACAGAAGAAACCTTTGACATGATTTAGGACAATGCCTTCTGCAGTGCCATGACAAGTATCTAATGAAGAGTCTGGAGAAGGCAGCTGAAGTGAGGGGACATTTATCTTGGGGCAGAGCTGAGAATACAGGTTCTTATAATTCTTGGCCACACAAGACAGGTTTTTTTCGTGATGGTGGTGACTATGACAGCTATTATGGCAGATTTTTCCTGAATTGGTATTCAAAGGTTCTGATTGATCATGGAGATCGCGTACTTTCCCTGGCCAACCTAGCCTTTGAAGGCTTCCCCATTTCTTCAAAGGTGAGGAAGCAAAGTTTCAGGCCCAGTATACAGACAATATAATTTTGATTTCAAAGGGTAATCTATGGTTGAAAGTTGGAGGTCCTCTTTATTACTGAAGTCAAGACTTAATTGGTTATTGGTGCTTCTCTCAAAAAACAAAAAAATTGGTTATTGGTGCGGTATTCATTGGTGGTACAAGACAGCCAGTCATGCTGCTGAGCTGACCGCTGGGTTCTACAACTCTTGCAATCGTGATGGCTATGCTTCGATTGCAGCAATGTTCAAGAAACATGAAGCTGCTTTGAAGTTTGAACTTTACATGTGTGGAATTGCGCACAATGGACCAGCATGAGGTATACCCAGAGGCACTAGCAGACCCCGAGGGCTTGGTTTGGCAGGTTAGCTAATATTACAGTTCAACTAGCCACTTTCGATCCTTTTGTTTTAGTCCTCCGAATTTCCAAGCAGAAATTGTGAAAATTGTAAGTTTTAGACGTTTGTAAATTTTGTAGATCCTTTACACTTGCTGTTGACTTTCAGGTCCTGAATGCTGCATGGGATTTTTGCATACCAGTAGCCAGTGAGAATGCTCTTGTTTGTTATAACAGAGAAGGCTATAACAAAACACTAGTAAATGCTAAGCCTCATAACGATCTTGACGGGAAACATCTATCAGCTTTCACTTATCTCAGGCTTAATCCTGATTTAATGGAAGAATCTAACTTCACAGAGTTTGTAAGATTTGTTAAAAGAATGCATGGTACAGTACTAATCCTTCCTGTGCAATTTCATCAATATATTCACGCTCGTATGCACTGA ATGGTGGATCCAAACCCCATTGTTTCATCTAGGGGGATTAATAGGCTTCAAGAAGCAGGCATTGAAGTAGTTGTTGGAGTTGAGGAAGATTTATGCAACAAGCTCAATGAAGCATTTATTCACAAAATGATTTCTGGGAAGCCTTTTGTTACTCTCAGATATTCCATCTCCGTTAATGCCGTGCTTTCAGATCAACTGGGGGATAAAGTTGCAGAGAGTGGAGGATATTACTCTCAATTGCTACAAGAATATGATGCAGTAATACATGCAGCAACCACCAAGATGGACAAAGAGATGTCATTCCTTAAATCACAAGAATCAAATGCCCGTCAACCTCAACAAATATTTATGGCTAAGAAGTCTGATATCCTTAACTGGAATTTGGAACTACTTGTAGAAGCAGACTGTAAACCAATTATATTTGTGGACAAGGAAGTAACACTATCACAGGAAATGTCTCGGAAGGGTTTTGAAACAGTTGTTATGGACGACATCAGTTTGGATGCTGTTTTGGAGTATTGTAGTAGACAAGGAATGTGTAATGTATTGGTAGATTTGAGGGGGAAACTAAGCGTTTGGGAAGACATTTTGGAGAAAGGTTTTCTAACGAATTCAGTACAAAAGGTGGTAGTGGAGGTACTACCTCTTTGGGTAGGGAATGATGTTAATCTTTCTTCCTCAACAATGATGAGTCTGACCCAAAACAATGACAATGATGATGAACATTCTCCCGTTGATTCTTTGGATGAAAATGAGGTTGTACAGACAATCCCAAAGCTTCCGGAACATGATTATGCTGGAACACCTTATGTCCCTATTTATGTGATTGGAAGCAGTGGACCACAGAAATATAATTGGAGTGGTTACAGGAAACTGTTTCAGGTCGTGCGTAATCTTGGACTTAAATTACAGGTTGTTATGTCTTTCCATGCATGTTCAGGAAATGTTGGGGATGATGTGCATATTCCCCTCCCACATTGGATCACAGAAATTGGTGAAACTAATCCCGATATATATTTCACGGATCAAGATGGTAGGCGCAATACTGAAAGCCTCTCTTGGGGAATAGACAAAGAGCGTGTTTTAAGAGGCCGTACAGCAGTTGAGGTTGGGCTAGGTGCATGTGGGGAGCTACGTTATCCATCCTATCCTGCAAATCATGGTTGCAAGTATCCAGGCATCGGTGAATTTCAGTGCCATGACAAGTATCTAATGAAGAGTCTGGAGAAGGCAGCTGAAGTGAGGGGACATTTATCTTGGGGCAGAGCTGAGAATACAGGTTCTTATAATTCTTGGCCACACAAGACAGGTTTTTTTCGTGATGGTGGTGACTATGACAGCTATTATGGCAGATTTTTCCTGAATTGGTATTCAAAGGTTCTGATTGATCATGGAGATCGCGTACTTTCCCTGGCCAACCTAGCCTTTGAAGGCTTCCCCATTTCTTCAAAGCATGAGGTATACCCAGAGGCACTAGCAGACCCCGAGGGCTTGGTTTGGCAGGTCCTGAATGCTGCATGGGATTTTTGCATACCAGTAGCCAGTGAGAATGCTCTTGTTTGTTATAACAGAGAAGGCTATAACAAAACACTAGTAAATGCTAAGCCTCATAACGATCTTGACGGGAAACATCTATCAGCTTTCACTTATCTCAGGCTTAATCCTGATTTAATGGAAGAATCTAACTTCACAGAGTTTGTAAGATTTGTTAAAAGAATGCATGGTACAGTACTAATCCTTCCTGTGCAATTTCATCAATATATTCACGCTCGTATGCACTGA ATGGTGGATCCAAACCCCATTGTTTCATCTAGGGGGATTAATAGGCTTCAAGAAGCAGGCATTGAAGTAGTTGTTGGAGTTGAGGAAGATTTATGCAACAAGCTCAATGAAGCATTTATTCACAAAATGATTTCTGGGAAGCCTTTTGTTACTCTCAGATATTCCATCTCCGTTAATGCCGTGCTTTCAGATCAACTGGGGGATAAAGTTGCAGAGAGTGGAGGATATTACTCTCAATTGCTACAAGAATATGATGCAGTAATACATGCAGCAACCACCAAGATGGACAAAGAGATGTCATTCCTTAAATCACAAGAATCAAATGCCCGTCAACCTCAACAAATATTTATGGCTAAGAAGTCTGATATCCTTAACTGGAATTTGGAACTACTTGTAGAAGCAGACTGTAAACCAATTATATTTGTGGACAAGGAAGTAACACTATCACAGGAAATGTCTCGGAAGGGTTTTGAAACAGTTGTTATGGACGACATCAGTTTGGATGCTGTTTTGGAGTATTGTAGTAGACAAGGAATGTGTAATGTATTGGTAGATTTGAGGGGGAAACTAAGCGTTTGGGAAGACATTTTGGAGAAAGGTTTTCTAACGAATTCAGTACAAAAGGTGGTAGTGGAGGTACTACCTCTTTGGGTAGGGAATGATGTTAATCTTTCTTCCTCAACAATGATGAGTCTGACCCAAAACAATGACAATGATGATGAACATTCTCCCGTTGATTCTTTGGATGAAAATGAGGTTGTACAGACAATCCCAAAGCTTCCGGAACATGATTATGCTGGAACACCTTATGTCCCTATTTATGTGATTGGAAGCAGTGGACCACAGAAATATAATTGGAGTGGTTACAGGAAACTGTTTCAGGTCGTGCGTAATCTTGGACTTAAATTACAGGTTGTTATGTCTTTCCATGCATGTTCAGGAAATGTTGGGGATGATGTGCATATTCCCCTCCCACATTGGATCACAGAAATTGGTGAAACTAATCCCGATATATATTTCACGGATCAAGATGGTAGGCGCAATACTGAAAGCCTCTCTTGGGGAATAGACAAAGAGCGTGTTTTAAGAGGCCGTACAGCAGTTGAGGTTGGGCTAGGTGCATGTGGGGAGCTACGTTATCCATCCTATCCTGCAAATCATGGTTGCAAGTATCCAGGCATCGGTGAATTTCAGTGCCATGACAAGTATCTAATGAAGAGTCTGGAGAAGGCAGCTGAAGTGAGGGGACATTTATCTTGGGGCAGAGCTGAGAATACAGGTTCTTATAATTCTTGGCCACACAAGACAGGTTTTTTTCGTGATGGTGGTGACTATGACAGCTATTATGGCAGATTTTTCCTGAATTGGTATTCAAAGGTTCTGATTGATCATGGAGATCGCGTACTTTCCCTGGCCAACCTAGCCTTTGAAGGCTTCCCCATTTCTTCAAAGCATGAGGTATACCCAGAGGCACTAGCAGACCCCGAGGGCTTGGTTTGGCAGGTCCTGAATGCTGCATGGGATTTTTGCATACCAGTAGCCAGTGAGAATGCTCTTGTTTGTTATAACAGAGAAGGCTATAACAAAACACTAGTAAATGCTAAGCCTCATAACGATCTTGACGGGAAACATCTATCAGCTTTCACTTATCTCAGGCTTAATCCTGATTTAATGGAAGAATCTAACTTCACAGAGTTTGTAAGATTTGTTAAAAGAATGCATGGTACAGTACTAATCCTTCCTGTGCAATTTCATCAATATATTCACGCTCGTATGCACTGA MVDPNPIVSSRGINRLQEAGIEVVVGVEEDLCNKLNEAFIHKMISGKPFVTLRYSISVNAVLSDQLGDKVAESGGYYSQLLQEYDAVIHAATTKMDKEMSFLKSQESNARQPQQIFMAKKSDILNWNLELLVEADCKPIIFVDKEVTLSQEMSRKGFETVVMDDISLDAVLEYCSRQGMCNVLVDLRGKLSVWEDILEKGFLTNSVQKVVVEVLPLWVGNDVNLSSSTMMSLTQNNDNDDEHSPVDSLDENEVVQTIPKLPEHDYAGTPYVPIYVIGSSGPQKYNWSGYRKLFQVVRNLGLKLQVVMSFHACSGNVGDDVHIPLPHWITEIGETNPDIYFTDQDGRRNTESLSWGIDKERVLRGRTAVEVGLGACGELRYPSYPANHGCKYPGIGEFQCHDKYLMKSLEKAAEVRGHLSWGRAENTGSYNSWPHKTGFFRDGGDYDSYYGRFFLNWYSKVLIDHGDRVLSLANLAFEGFPISSKHEVYPEALADPEGLVWQVLNAAWDFCIPVASENALVCYNREGYNKTLVNAKPHNDLDGKHLSAFTYLRLNPDLMEESNFTEFVRFVKRMHGTVLILPVQFHQYIHARMH Relationships
The following mRNA feature(s) are a part of this gene:
Homology
BLAST of Spo30021.1 vs. NCBI nr
Match: gi|902186265|gb|KNA10650.1| (hypothetical protein SOVF_142390, partial [Spinacia oleracea]) HSP 1 Score: 1219.9 bits (3155), Expect = 0.000e+0 Identity = 590/593 (99.49%), Postives = 593/593 (100.00%), Query Frame = 1
BLAST of Spo30021.1 vs. NCBI nr
Match: gi|590722138|ref|XP_007051813.1| (Beta-amylase 2 isoform 4 [Theobroma cacao]) HSP 1 Score: 455.7 bits (1171), Expect = 1.300e-124 Identity = 222/328 (67.68%), Postives = 248/328 (75.61%), Query Frame = 1
BLAST of Spo30021.1 vs. NCBI nr
Match: gi|734396041|gb|KHN29360.1| (Beta-amylase 7 [Glycine soja]) HSP 1 Score: 439.5 bits (1129), Expect = 9.300e-120 Identity = 208/351 (59.26%), Postives = 249/351 (70.94%), Query Frame = 1
BLAST of Spo30021.1 vs. NCBI nr
Match: gi|902217148|gb|KNA17627.1| (hypothetical protein SOVF_078490 [Spinacia oleracea]) HSP 1 Score: 426.0 bits (1094), Expect = 1.100e-115 Identity = 216/235 (91.91%), Postives = 224/235 (95.32%), Query Frame = 1
BLAST of Spo30021.1 vs. NCBI nr
Match: gi|902225431|gb|KNA20074.1| (hypothetical protein SOVF_055720 [Spinacia oleracea]) HSP 1 Score: 411.8 bits (1057), Expect = 2.100e-111 Identity = 195/237 (82.28%), Postives = 206/237 (86.92%), Query Frame = 1
BLAST of Spo30021.1 vs. UniProtKB/TrEMBL
Match: A0A0K9QTT0_SPIOL (Beta-amylase (Fragment) OS=Spinacia oleracea GN=SOVF_142390 PE=3 SV=1) HSP 1 Score: 1219.9 bits (3155), Expect = 0.000e+0 Identity = 590/593 (99.49%), Postives = 593/593 (100.00%), Query Frame = 1
BLAST of Spo30021.1 vs. UniProtKB/TrEMBL
Match: A0A061DTA3_THECC (Beta-amylase OS=Theobroma cacao GN=TCM_005334 PE=3 SV=1) HSP 1 Score: 455.7 bits (1171), Expect = 8.700e-125 Identity = 222/328 (67.68%), Postives = 248/328 (75.61%), Query Frame = 1
BLAST of Spo30021.1 vs. UniProtKB/TrEMBL
Match: A0A0B2R700_GLYSO (Beta-amylase OS=Glycine soja GN=glysoja_005084 PE=3 SV=1) HSP 1 Score: 439.5 bits (1129), Expect = 6.500e-120 Identity = 208/351 (59.26%), Postives = 249/351 (70.94%), Query Frame = 1
BLAST of Spo30021.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RFM9_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_078490 PE=4 SV=1) HSP 1 Score: 426.0 bits (1094), Expect = 7.400e-116 Identity = 216/235 (91.91%), Postives = 224/235 (95.32%), Query Frame = 1
BLAST of Spo30021.1 vs. UniProtKB/TrEMBL
Match: A0A0K9RMA7_SPIOL (Beta-amylase OS=Spinacia oleracea GN=SOVF_055720 PE=3 SV=1) HSP 1 Score: 411.8 bits (1057), Expect = 1.400e-111 Identity = 195/237 (82.28%), Postives = 206/237 (86.92%), Query Frame = 1
BLAST of Spo30021.1 vs. ExPASy Swiss-Prot
Match: BAM2_ARATH (Beta-amylase 2, chloroplastic OS=Arabidopsis thaliana GN=BAM2 PE=1 SV=2) HSP 1 Score: 345.1 bits (884), Expect = 1.500e-93 Identity = 171/291 (58.76%), Postives = 200/291 (68.73%), Query Frame = 1
BLAST of Spo30021.1 vs. ExPASy Swiss-Prot
Match: BAM7_ARATH (Beta-amylase 7 OS=Arabidopsis thaliana GN=BAM7 PE=2 SV=2) HSP 1 Score: 318.5 bits (815), Expect = 1.500e-85 Identity = 149/237 (62.87%), Postives = 173/237 (73.00%), Query Frame = 1
BLAST of Spo30021.1 vs. ExPASy Swiss-Prot
Match: BAM8_ARATH (Beta-amylase 8 OS=Arabidopsis thaliana GN=BAM8 PE=2 SV=1) HSP 1 Score: 261.5 bits (667), Expect = 2.200e-68 Identity = 126/230 (54.78%), Postives = 157/230 (68.26%), Query Frame = 1
BLAST of Spo30021.1 vs. ExPASy Swiss-Prot
Match: AMYB_IPOBA (Beta-amylase OS=Ipomoea batatas GN=BMY1 PE=1 SV=4) HSP 1 Score: 235.7 bits (600), Expect = 1.300e-60 Identity = 121/283 (42.76%), Postives = 163/283 (57.60%), Query Frame = 1
BLAST of Spo30021.1 vs. ExPASy Swiss-Prot
Match: BAM5_ARATH (Beta-amylase 5 OS=Arabidopsis thaliana GN=BAM5 PE=2 SV=1) HSP 1 Score: 235.0 bits (598), Expect = 2.200e-60 Identity = 109/234 (46.58%), Postives = 145/234 (61.97%), Query Frame = 1
BLAST of Spo30021.1 vs. TAIR (Arabidopsis)
Match: AT4G00490.1 (beta-amylase 2) HSP 1 Score: 345.1 bits (884), Expect = 8.400e-95 Identity = 171/291 (58.76%), Postives = 200/291 (68.73%), Query Frame = 1
BLAST of Spo30021.1 vs. TAIR (Arabidopsis)
Match: AT2G45880.1 (beta-amylase 7) HSP 1 Score: 318.5 bits (815), Expect = 8.400e-87 Identity = 149/237 (62.87%), Postives = 173/237 (73.00%), Query Frame = 1
BLAST of Spo30021.1 vs. TAIR (Arabidopsis)
Match: AT5G45300.1 (beta-amylase 2) HSP 1 Score: 261.5 bits (667), Expect = 1.200e-69 Identity = 126/230 (54.78%), Postives = 157/230 (68.26%), Query Frame = 1
BLAST of Spo30021.1 vs. TAIR (Arabidopsis)
Match: AT4G15210.1 (beta-amylase 5) HSP 1 Score: 235.0 bits (598), Expect = 1.200e-61 Identity = 109/234 (46.58%), Postives = 145/234 (61.97%), Query Frame = 1
BLAST of Spo30021.1 vs. TAIR (Arabidopsis)
Match: AT2G32290.1 (beta-amylase 6) HSP 1 Score: 228.8 bits (582), Expect = 8.800e-60 Identity = 119/264 (45.08%), Postives = 155/264 (58.71%), Query Frame = 1
The following BLAST results are available for this feature:
BLAST of Spo30021.1 vs. NCBI nr
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. NCBI nr) Total hits: 5
BLAST of Spo30021.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL) Total hits: 5
BLAST of Spo30021.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (blastp Spinacia oleracea peptides vs. ExPASy SwissProt) Total hits: 5
BLAST of Spo30021.1 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 gene is annotated with the following GO terms.
RNA-Seq Expression
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