Sequences
The following sequences are available for this feature:
Gene sequence (with intron)
Legend: polypeptide CDS exon three_prime_UTR
Hold the cursor over a type above to highlight its positions in the sequence below.
ATGTGGGTTGCAGCAACCCCATTGAATTACTCGCGCTTCTTCATAATCAAACGCTGCAATCGTTCTCAATTTCGTGTTCAATGTTCAGATAATCCTCGTGGATTCGGCTCTCAAGATGATTCTAATAGT GTAACCCCTTTACTTTACTTTTTATTTATTAGTTAAAATACTTCAATCATGGGTACTTGAAATTTTGCTGATTGCATTTTTTTCATTTTCTTGGCTGAGTTGGGTGTTTAATCTTTTCAGACGAAAAAATGGAGCACTTCAAAGCAAAG GTTAGTTAATTACTCCGTAGTTATGGTGAAATTTCTAAGTCTAATGATGTATATGTGCTTTTGAGTGGGTTGTAAGTTGGTTAATGCATGAATGAGTTGTAAGTTGGTTAATGCATGAATCATGAATAAGTTGTAAGTTGGTTAATGCATGAATGAGTTGTAAGTTGGTTAATGCATGAATGAGTTGTGTGCAATTATAATGCTGTTTCAGTGGTTTGTTTCCTACTACTCTACTAGAATGATTAAAGAAGCGAATGCACAAAAACAATATATGAGGAAGTCTAAACCATAATGCTTGCATCCTAAATAAACGCGAGTGACTCTTATTGATAATATTAAGTGTTTTACTGGTACCAATGAGTACCAAATAGAAGTGTATTTGTATCGTTAAAACATACGAAGTAACTTTAAGTTGGTACCAATAAAAAAGTAATGATATCTGTCTCAATTTAGGTGTTACATATGCTTTATAGTTTATACTGAAAAAGTTGAAGGAAGAAAATTAGTGAGTGAATTTGGGGATCAACTACGGAGAAAAGGAAGAGAGAAAAGTATGCCATAAAGAAGTAACAACTGAATTCAGATGTCCCGAATAGGATTGTGTAGCGAGTAGTTTGGGTCGGAGGGAGTATCAATGAAGAGTTGAAGACAACTTCTCTTGTATCATCTGAGGTTTTTGATGTTTGTTAGAATGTAAAATGTTGGCAACGTGGCATAGGTGAGATTCACAATCCTTGTCTACTCTAAAGAAACTTAAAATTGTTTTGAAATGATACTAGGATATATGTGACGAATTTTATTTCTTGTTATTATGCTAGTTATTACTTGGACTCGGATTGAGGGGGCAAGGATTCGGTCAGGTGGACGTGTGGTTTATTGTTTTGAGTATTTTGGCACTACTATATTCTGGGAGTTCTATGTCTCTCAATTTTGAATTTAGGTGTTTTCTTATTCTCATACATTCATATGTTTCTGGAAGTTTCAAGGATTGGACTTATGTGTATAGTATAGAATCTGTGCAAAGTATTTTTGTGGAAAGAGAAGAAACAAACAGTGTCTTGTAGACACCAAAGTCTATTTGATGATTTGATTATGAAGATTATTCCCAATAAGTTGCTTTTATCTTTTTTGATAATGTTACCTGTGGATTTTTCATAGCACTTTCTTATCCTTTCTATCTTCTTTGATGCAGCAAATCAGCAAATACGAAACCTAGCTCCATGCCTGGTC GTAAGTGGGTCTTACCTCTTTACTTGTTTTGAATAGAAGCATTTACCTATTACAAAAGATAATTGCAAGAGGATTTTCTCAAAGTCGGAGCTTTAATTGTATGATGCTTCCATTTTGAGAAGTTCGGTGTCTTTTTTCCTGTGTCGGATTATTTTCCTTTCCTAGGTCATTATATGAGGACTATTGTGTAGACATCTTTTTGCCAATAAACATATTACGTCCTTATAATAAATTTCTATTAAGAAGTTAATCTAATTATTTACTACGTGGCGTACTTTCTTTCCATGTTCCTTTTTCTACATTGCCTTCACTTAAATCATAGGTTGTGGTTTTTGTAGAAGCACCAGGAGTGGGTTCAAAGCCTGAAAAAAAGTATACGCAAACGTTTTCTGATTTGGAGTTCGAGGGAAAGCTTCAAGCTGTCAAAAG GTGCAATCTTCTGGCATTTTACCTACTTTTACAGTTGGTGGTTGTTGGAAGCATCTGGACTTTAGTTTCAAAAACAATTTTGGTTAGTTAATTAATATTAGAACTGCATCAGTGATATTCAGCATCTGAAAATGAACCTTGTGTTTTCTGAGCCAGTAACGTCTTGTACTCCGCAATGCATCCTTGTAGCATATGGGTTCTCTGTCTTGAGTTGTGATTGTTTTTTATCAAACGTTCTTAGTACATATGTCCAAGTTTCCAATTAATAACCGATGTAATAAAATGAATACTTAGTTATTTCTCTTAGGAAAATTTATTTAATTAAACCGAGTCTTAATTTGATTTTTTATACTGGGACTCTGGGAGTACATCGGAGGGAAATGCACTTCTGAAGTCCAATTTTCTGATTGTGGTTGGTACAAATATTGTTATTCTCATCTCTCCCGGTCCCACTTTTTGGAGCACTGTTGGATTTTCTACGTAGGTGTCAGATGATGAGGCTTGGTTAACCTATGTTCCTGAAGGGGTATCAACTTTTCTCTCTCTAGTTCCTCTTGTTGCTATTAGTCTATTACTAATGTTTTCAAGATCTAGCAAAAGTTAACAGTTGCATTCTTGGCATTGCTAGTTGACGAAAAAGATTATTCTAGACCATGAAATGATGACTTGTGTGGATAATGAATTATCGGGAGTGAAATCGTTACTATGGCAACTTGTCGTTCCTCGGGAATATACAATGTGATTGTTTTTAAGTTATTTTTAAGATTTTAAGCTGTAATTTAAACATAATTCTGAATGTCTAAGATAAAAATCTTTAAAACCTTACTTCTTAGACTTTCAGTCTATGCTGCCACGTATGCTATGAAGTACAACAACTTTGTTCCTTTGTATTGATGAATTAAAATGTTGTCAGTTTCTGTTTGTGATAAGATAATGCTTCTTTCCTTTCATTTCTGGGGTTCTCTTTCCCATTTGCTTCATCCTGCGGAAGAATCTTAATATGTAGTTCTGATTTATTATTAGGTCAGCTCTTGAAAAGAAAGAATCAGAGACGACGATAGAGTATGGGGCAATTGATTATGATGCACCAATGGAGCCAAAGCAGAAAACAATTGGGCTCGGGACAAAG GTTTGAGTTGGAAAATTGTCTCATGCATTTGTTAGAGCATTGGTAGAGTTCCCGCGAGTGCTATGCTTTTTCTGAATGAAATTTGAAACTATGATAGATCGGAGTTGGAATTGCTGTTGTGGTCTTTGGCCTTGTTTTTGCTCTGGGAGACTTTCTACCATCTGGAAG GTACTAATACTATAGCATCATTAAGATTTGCTCCTGTTATTGGAAGTTGTGTTTTGTTTAGGTGTGGGATTTTTCTTCATTTTGTCTCAGAGAAATTTGAGCTAATCAAGTCTAAAATCCTTCTTTAGTTAGAGTATTACTATTGGTTTTTCTTTGTACATTCACATTCACATCCACATTCTTTTAGTATCTGAACAAGTCTACTATTATATGCTGTTTAGCAATTTATATGTACTATTTATACAGTGGATTAGTGGAATGTAGTTTTCTGTGTGTGTTCATTCTTTGTGCTAGATGGTCTCAAGAAGTGAATCCAGACATCTATTGGCTTTGATTTCATGATGCTTATGCTCTGTATGTTTTGGCTTCTTTGATATACACATGTGTGCCAATAGATATGTATACATCTGTCTTTTGTGGATACTGTCCATTTAAATTTACCATTAGTGCATCTTAGTGAATTTTTTTTGTCTTGGTGTTTTTTTGCTTCTCCCTAATTTTGCAGCCTAAATTCCAGTGAAGACAATGGCCCAGTCAGTAAAAAGCTGTCTAAAGAAGAGACAGCATATCTTCAG GTAAACAGCGAAAGGTCATTTTCAGCTTACTGTCCCTTGTATAACTTCAAGTAAAATAATGCAAGGCTATAACTTAATGTTCATGAATATCCTTGAGCCAGTTAATTGAATATTGATATTTCTTGGCTTGTTGATAATTATGAGTTGCTACTGCTAGTCCTGGCTGCCCTAGTTAAGCGTTACATATCTGGTTTAAATCTAAGACAGCTCTTAGGAATAGTCATTCCAAAAGTGTTTGTGGACCCTTGGGCCTAAGGCCTGCACTCTATTTCTAGCTTGTATCGTACTCATTTATCAGGCCATGCCAAAGCTTCTGAACTAGGTTGGTTACCAGTAAGTTGTTAGTTGTCAAATGCCAAGGCTGACATGGTGCAACTCTTTGTTTCAACTTTCAAGTTAATGCGTCACTAGGCTACTAGGTGGCCTTTTTTTTTCTGGAGGAAGTGGGCTCTTCTGCGGTGCTTACTTCAAACGCAACAACCTGTTATATGTCCCTGTCCCTTCCTCCTCCTAAGCTCCAACTTGCCAAGGCCTAATCTGAGTTGCCAGTCTGTCCAAATTACGCCATGGGAGTGTTTTCAGGGTTTGATCTTTTGGTTCAGTTGTGAAACTGGCAATGATAACAAGTGAGGCTAATGCTCATGTTAGTAAACTTTCAATTTGTTTGCACTGTAGTAAAAGTGGCATATGTTACAATGTGTTCTTGCTGTTCAATCCAAAGCATGTAATCATCTTTCTGACTTATATTTAAGCAATCCAAAGCACGTAATCATCTTTCAAGTTAACGCGTCACTAGGCTACTAGCTAATCAATCATCTTTGGGTGGTCCCTTAGACCCTAAACCCTAAAACCACGGAGCAGATTATAAGATTTATAACTGTATAAGCAGTAGCTGGTTGTCCATGGTTTCTCATGATTGCTTTGCCCAAGGTTTATGCTTCGCCATGGTTTAACATTATCTTGTATTCTTGCCACAACCTGCTTCTGTTGATCATGTTGAAACTGTTTGGAGGAATTTATCAAAGTTTCTTCCCTCTTGACAAGGGTTTATTTTTGTATGTTGGCAGAGTAGGCTTCAGCAGTATGAGGCAACCCTGAGCTCTTCGCCTAAAGATCCTGTTGCTCTTGAA GTGAGTGATGAATTCTTCTAATTTTTTGTTCCTAATTTAAAATTTCCGTCTTATGTGTATATGCTTGTCTTTTCCTGAACTTGTTATTCTTGATTCTGGACATTTTTTAAAATCGAGTGACTGTTTTTCTACCAAAAACCTTACCATTGATTTTATGCCAAGTTTTGTTGGCTTCTTATGCGTTCTCCATTTTAATTTGGCACAAATTTGTGGGAGTTCTAGTTAAGGAAAAAGGTTATTAAACACATAGTTCATTTAATCAGGTTTGACTTGTCAGCCTTTGCAGCCGAACGAAATCTTGATATTTTCAGCAAAATCAGTCACTTATTTTTGCATTTCAGCCTAAAATAATATCTGGCAATTATTGTTATAATCCTAAGTTGCTGTTCAGGGAGCTACAGTGACATTAGCAGAACTTGGAGAATATGCTCGGGCTGCTACTTATCTCGAGGATTTGACAAAG GTTGTTTGTTAGTTGTTGTTGATATACTCGTTAAGTGTTTCAAATGACTTTGACAATTTGAAGTATGCACTATGTTGTTCTGACTCTTCAGGAGAAACCAAGTGACCCAGATGTCTTTCGCCTGCTGGGGGAGATAAAATACGAGCTCAAAGATTATGATGGAAGTATTGCAGCTTACAAAAGTTCAGCAAAG GTTTTTATGCTTAAATATTATTTTTAGCTTTCTTTTGGTATTTCCTGTTAGCTGTAGGTTGTACAAATAATACAAAATCCTTTTATCTAGCAATTAAATTAAGGATAGCTACTTCTTAAGTATTCCTTCCCGAAAGGACTTCGCACACTATATTGGGGTGTTCCTCTAAAAAATATTCAGTTTCCGTCTTAAGCTTTATTGGTTGATAAGGCAATTTTCTGTTTCAGTATTTAAGAGTTAAGATGCATGCATGAACGTTCACTTCTGGTTGTGAATTTTCTTTTTTCTGCACTCATTTATAATTAGTTTAATTGGAGAAGGGGTTCTTATATGCTATGACACCAGCTATTCCCTCTCTAGGTTAACTTAAACAATGTATAGGGAACTGGAATTCAATTCTCTACTTCTCATGAAACGGAATACATGTAGTGACGCCATAATTTATTGAGCCCTGAACTATAACTTAATATAAGTTTCAAAGTGTAACGATGATATATGAAACCAGAACTGCCGAGCATGCTTCTTTTGTAACACTAACTATATTGCATTATGCTCATCAACTCATCATAGGTGAAAATGAGTCTCTTTAGATAGAGAGTGCTGGAAGCCTAGAAGGAAAAACAATGTGCTATTACAAAACATCAACATTTTTCTAATAACGTAGGAAAATTAATGGCTGTTTCACTTTTATTGTTCTGGGTACTCAGAGAGTCAGAGATGCAACCTCCTTTGTATTTAATTTAATTTCAATGAAGATTTATAATTGTCTTATATAGGAAATACCATAATACGTTTAATTTTTGTTGGTGCTATTTAGCTATATGCATGCTGACAGTAAAAAGCTCTGTTTCCTTAAAGGTGACCAAAGGTATAGATTTTGAAGTTCTGCGCGGCCTTACGAATACGTTACTTGCTGCTAAGAAGCCAGACGAG GTTTGTCATCTGGTTCAATCATATATTAGTTGTTTCTTTCTGTTGTGTAGAGTAACTCGATATACAGTATTCCATGACGGTCTTACTTCAGCATCTTAAACAATATTAATTGGAATAAATTTTAAAATCCCAGGTCTTAAAGATGGTATTGTTACGCTAAGATACCCAATCTTCCTCAATTTGTACACACGAGTGCATCTAGCCATCAATTATTGGATGGAGATTCATGGCTTAACTTATATACTTTATCCTTCGAGGAGTTGTAGGTTTTGGTGTAATTCAATATTGGAGAAGGTCATCTAGAGTGCTTGATTCAAGACTTTGTAGTATACAGTCTGCAGTCTTGTTCAATATTGGAAAAGGCATGTTCCTATCTTAGTGATCCACAATGCACACTGATATGCATTTTTTGGACATTTGTGAAAGCATTCTTTAGCCAAGAGACCCTTGATTTATGCATCATAATCCAAACTTAGATTTTGCTCAATCTGATGTTTGTAAGGATTATTGTATAATTTGTTACTAGTAATTAAACTGGATTTTGTTATTATGCATCATTATTGTTGTAGCTGAATACATGTAGCTAGCACCATATTTTGTTTCTGAATATTTAAGTGTCTTGAGCAACGAGACTTTGATGTTAAAATCATTGCATGAATCATTTCATTCGAGACTTTGTCAGAAAAACTGAATCGTTCATCTGTCTTTTGTTTTTGTTTTTGTTTTACTTCTAATACGTAACTTATATCTCTATGTTGACTTTGTTTTATTTCTATTTCTGGATGTAGGCTGTTCAGGTCCTTCTGGATTCCCGTGAACGTCTCAATAACGGAAAATTAAGTGATAGCACTATCAAGACTGAAAAGACTTCAGAGGGAAATGACACCCTGGATGTGGATCCAATCCAA GTTAGTCTGAATTCATAATTCTTTATGGACATAGAATTTTCGTAAACTTCTAACTTTTTATGGGAGAGTATTTCCTATTTGCACATGCTAATTGCTCTGGAACTGAGAATTAGGATGCTAGTCTGTATTTCAATTCTGTCCAAGGTGAGGCCTTCTTGGTGTGTCTTGCACAGAGTATAAGTGAAGATCTATCTGATATAAACCTACCATGAGCACTGGTTTGTTTTCTTCTGGGATGAGTGTCTGAATTTCTGTTCTGTTTGTTGCCTTTATGTGTTTTTAATCTTATTTTATGTGCTCTCAGAATTATGATCATTTTCTGCATCTTGGTTTTTTCGGTCCAGCTCTCAGCTTGCTGATTCAACTGATTTTTTTTTGGGGGGGGGGGTTATTGCGTTCAACTGTTCCATTTTCTTTTTAGCATGAGAGCTTCTTTCCATTCGAATTGGAATCTACAGTTTTTACTTTATAGTGACTTTACAGATTTATGATATCTGTTGTTCAGGTTGAACTGCTGCTTGGAAAAGCCTACTCAGATTGGGGTCATATCAGCGATGCGATATCTGTTTACGACCAATTGATTTCTAGTCATCCTAGTGACTTTCGGGGTTACTTAGCTAAG GTGATACTTTCAACATCTTCCATGCATTTTGAGAAAGCTGAAATTTATAGACGGCTTTAATTGAACAGTAATTTCTGTTTGTTTTCCTGGTGATTGACTCGCTAAGCGTGTTCTTCTAATAATCTAACTCCGGAATTAAGTCATAATTCGTGGCTTTCATAGTATATTTCTGTAGCTATCTGATTGTTACTCTATCTCAGTTGTTAAGTAATAAGTTGCCTAGTGGCTTCCATGAGCATAAATGATGATGGAAACCTAACACTTGTTATCGCTGGGAAGTGGGAAATGTTATTACTTATTAGTCATGCATGGGATAACCTTGTAATAACCTTATAGCATGTCACTAGAAATTAGAAGTTTGTGGAAAATGATGTCGGGAAGACTTTGCAATTATCAAGGAGTTTCTTAGGGATGCTAGGATCCTGATTGACCATTTGGATGGTATGTTGCGTGAGATTTGGTTATCACCACTGAGAAGCCTACTTTACAGGCTACAACTAGGAAAAGCTCATATCTATCAGTTGGTAAAAAAATGTCATGCTTATATTTGTCTTCAGAATCATCAGATTTCTACACCTATTTACTTTCTCAATAGTAAAAGTACATCAATAAGAAGAATTCATGTGTTTGCAGGGGATATTATTGAAACAAAATGGCATTGTTGGAGATGCAGAGCGGATGTTTATACAAGTAAGACATTTAAGTCCTCTGGTTACATTCTTCCATGTTAGTTGTTTTCCATGCTTATTACCTGGACA GTTTTGGTGCAGCTTTCACTTGAGCATTTTAATCGTGCATATGATAGAACTCTTTAGTCTAACCAAAGACTTTGATCACATAGTCTTTTCATAGTCCCTTCGGAAAAAAAAATCTAGGTTTACTATTCAAAAATATATATTTGTTAAACTTTTTATTTTGGAATTAGAAATTCGACAAGAATGGTAGATGAAAATTATCTTCATTCTAGTGAGCTTTGTGTTCGTGCTTTCCTAATCACTCTTCACCTATGTTTTTTTTTCAAATGATATGGTTGACTTTGTTATATGCAAGTATGATTTGGTTGATCGATCATCAGGTTAAAACCCCTACTAAAATGATATGGTGGACTTTGTTATATGCAAGTATGATTTGGTTGATCGATCATCAGGTTAAAACCCCTACTAGCTCAAAGGTAGTAAAATATACAGAATGCTCTTTAGTTTTGTAGCTAATATGAATCGGCCATGGACAAGGCTTTCCTGATAGAAATTTGAGGACGCACGCGGAAGTTTTGATGGACCTCAATTATATAACAAAATTGCATTGTTGTCATTGATTACATTAATAAGAATTGTACACCACTATTTGTTTTGGTAGAATATTTGTTTCTACCCCTCATATTTTGTGGGAGCTCTATTGATTAGCTCACCTCTAAACTTATGCAAATACAACCTATTTATAGTTGTTGTATTATAGTTTCTAGATTCTTCTACTCCCCTCATTTATCAAGATTTTTCTAAGTATAATTCTAGACATTTTAGTTACTAGATTTTTCTAGGCTAGCTCCTTGATATTTACTAAGATTATTCTAGATATTTACAATCACATATTTCTAGATTTTTATAGATTAATATTTAACATTTCCCTCTTTCAACAGAATGCTTATATATAAATATCACTTTCTTCAAATCAAATGTCTGCAAATTTTAGCGTTCAGGCCAATCTATGGTTTGTTTGTCGTGATTGACATATGATTAAGAGTTTTACCCTATTGTGTTGTCATATGCAGGCACGTTTTTTTGCTCCTGAGAAAGCAAAGGCATTTGTTGATCGTTACTCAAGAAACTAAGAGTAGAT GTGAGCACAAACATCTTTTTTCTCTCTAACATAATGCTATCATGGATTCGTGGGTTGTGTTTCTTAATTTATTTCTTTGTTTCCCAGAA TATCCTTCGGATTGCATAACGAGGAAGAAATGGAATCAAAGAGATACTCCTTTGTGTCCTAACATACAAGTCAAAAAAACTGATGGTAGAAAACTGTGTGCGCTATGTCATATTTTGGCTCTCACAACAATTATGGTACACTAAAAAAAATCACTACATTATTAAACATTAATGTGCCATGATCGTAATCCTTTCTTGCTCCTGGCCAACCTCTCTGCTCCCGGTGCTGACCACCTCCTCGATTGCAGTGCCAGCAACCCCCCTGTGTTCTTCAACGTTGTTGATCTGATATCTGGTAAAACTTAGTCAGAAGCATTAGATAGTGTTCATAATAAGTGACAATCCTATGTTTTTCATCTGATTTCCAATGTTTTTTGTTTTTATGAATTCTAGAATGAAGATCTATATATATTATGGAATGAATAAAGTGAATGTAAAATTTCTAACCTCGTGTCGCCCGCATTCTGTTTCTGGTTTTGGATATGGTTTTATGAATTTCAAAGCACTTAAACATAATCTCCTCAAAGTCATCCTCTTCACAGGGTATCTTCAGCCCACCCTGTTGCTCAAACCCGAATTCCTCAG mRNA sequence
ATGTGGGTTGCAGCAACCCCATTGAATTACTCGCGCTTCTTCATAATCAAACGCTGCAATCGTTCTCAATTTCGTGTTCAATGTTCAGATAATCCTCGTGGATTCGGCTCTCAAGATGATTCTAATAGTACGAAAAAATGGAGCACTTCAAAGCAAAGCAAATCAGCAAATACGAAACCTAGCTCCATGCCTGGTCAAGCACCAGGAGTGGGTTCAAAGCCTGAAAAAAAGTATACGCAAACGTTTTCTGATTTGGAGTTCGAGGGAAAGCTTCAAGCTGTCAAAAGGTCAGCTCTTGAAAAGAAAGAATCAGAGACGACGATAGAGTATGGGGCAATTGATTATGATGCACCAATGGAGCCAAAGCAGAAAACAATTGGGCTCGGGACAAAGATCGGAGTTGGAATTGCTGTTGTGGTCTTTGGCCTTGTTTTTGCTCTGGGAGACTTTCTACCATCTGGAAGCCTAAATTCCAGTGAAGACAATGGCCCAGTCAGTAAAAAGCTGTCTAAAGAAGAGACAGCATATCTTCAGAGTAGGCTTCAGCAGTATGAGGCAACCCTGAGCTCTTCGCCTAAAGATCCTGTTGCTCTTGAAGGAGCTACAGTGACATTAGCAGAACTTGGAGAATATGCTCGGGCTGCTACTTATCTCGAGGATTTGACAAAGGAGAAACCAAGTGACCCAGATGTCTTTCGCCTGCTGGGGGAGATAAAATACGAGCTCAAAGATTATGATGGAAGTATTGCAGCTTACAAAAGTTCAGCAAAGGTGACCAAAGGTATAGATTTTGAAGTTCTGCGCGGCCTTACGAATACGTTACTTGCTGCTAAGAAGCCAGACGAGGCTGTTCAGGTCCTTCTGGATTCCCGTGAACGTCTCAATAACGGAAAATTAAGTGATAGCACTATCAAGACTGAAAAGACTTCAGAGGGAAATGACACCCTGGATGTGGATCCAATCCAAGTTGAACTGCTGCTTGGAAAAGCCTACTCAGATTGGGGTCATATCAGCGATGCGATATCTGTTTACGACCAATTGATTTCTAGTCATCCTAGTGACTTTCGGGGTTACTTAGCTAAGGGGATATTATTGAAACAAAATGGCATTGTTGGAGATGCAGAGCGGATGTTTATACAAGTAAGACATTTAAGTCCTCTGGTTACATTCTTCCATGTTAGTTGTTTTCCATGCTTATTACCTGGACAGCACGTTTTTTTGCTCCTGAGAAAGCAAAGGCATTTGTTGATCGTTACTCAAGAAACTAAGAGTAGATAATATCCTTCGGATTGCATAACGAGGAAGAAATGGAATCAAAGAGATACTCCTTTGTGTCCTAACATACAAGTCAAAAAAACTGATGGTAGAAAACTGTGTGCGCTATGTCATATTTTGGCTCTCACAACAATTATGGTACACTAAAAAAAATCACTACATTATTAAACATTAATGTGCCATGATCGTAATCCTTTCTTGCTCCTGGCCAACCTCTCTGCTCCCGGTGCTGACCACCTCCTCGATTGCAGTGCCAGCAACCCCCCTGTGTTCTTCAACGTTGTTGATCTGATATCTGGTAAAACTTAGTCAGAAGCATTAGATAGTGTTCATAATAAGTGACAATCCTATGTTTTTCATCTGATTTCCAATGTTTTTTGTTTTTATGAATTCTAGAATGAAGATCTATATATATTATGGAATGAATAAAGTGAATGTAAAATTTCTAACCTCGTGTCGCCCGCATTCTGTTTCTGGTTTTGGATATGGTTTTATGAATTTCAAAGCACTTAAACATAATCTCCTCAAAGTCATCCTCTTCACAGGGTATCTTCAGCCCACCCTGTTGCTCAAACCCGAATTCCTCAG Coding sequence (CDS)
ATGTGGGTTGCAGCAACCCCATTGAATTACTCGCGCTTCTTCATAATCAAACGCTGCAATCGTTCTCAATTTCGTGTTCAATGTTCAGATAATCCTCGTGGATTCGGCTCTCAAGATGATTCTAATAGTACGAAAAAATGGAGCACTTCAAAGCAAAGCAAATCAGCAAATACGAAACCTAGCTCCATGCCTGGTCAAGCACCAGGAGTGGGTTCAAAGCCTGAAAAAAAGTATACGCAAACGTTTTCTGATTTGGAGTTCGAGGGAAAGCTTCAAGCTGTCAAAAGGTCAGCTCTTGAAAAGAAAGAATCAGAGACGACGATAGAGTATGGGGCAATTGATTATGATGCACCAATGGAGCCAAAGCAGAAAACAATTGGGCTCGGGACAAAGATCGGAGTTGGAATTGCTGTTGTGGTCTTTGGCCTTGTTTTTGCTCTGGGAGACTTTCTACCATCTGGAAGCCTAAATTCCAGTGAAGACAATGGCCCAGTCAGTAAAAAGCTGTCTAAAGAAGAGACAGCATATCTTCAGAGTAGGCTTCAGCAGTATGAGGCAACCCTGAGCTCTTCGCCTAAAGATCCTGTTGCTCTTGAAGGAGCTACAGTGACATTAGCAGAACTTGGAGAATATGCTCGGGCTGCTACTTATCTCGAGGATTTGACAAAGGAGAAACCAAGTGACCCAGATGTCTTTCGCCTGCTGGGGGAGATAAAATACGAGCTCAAAGATTATGATGGAAGTATTGCAGCTTACAAAAGTTCAGCAAAGGTGACCAAAGGTATAGATTTTGAAGTTCTGCGCGGCCTTACGAATACGTTACTTGCTGCTAAGAAGCCAGACGAGGCTGTTCAGGTCCTTCTGGATTCCCGTGAACGTCTCAATAACGGAAAATTAAGTGATAGCACTATCAAGACTGAAAAGACTTCAGAGGGAAATGACACCCTGGATGTGGATCCAATCCAAGTTGAACTGCTGCTTGGAAAAGCCTACTCAGATTGGGGTCATATCAGCGATGCGATATCTGTTTACGACCAATTGATTTCTAGTCATCCTAGTGACTTTCGGGGTTACTTAGCTAAGGGGATATTATTGAAACAAAATGGCATTGTTGGAGATGCAGAGCGGATGTTTATACAAGTAAGACATTTAAGTCCTCTGGTTACATTCTTCCATGTTAGTTGTTTTCCATGCTTATTACCTGGACAGCACGTTTTTTTGCTCCTGAGAAAGCAAAGGCATTTGTTGATCGTTACTCAAGAAACTAAGAGTAGATAA Protein sequence
MWVAATPLNYSRFFIIKRCNRSQFRVQCSDNPRGFGSQDDSNSTKKWSTSKQSKSANTKPSSMPGQAPGVGSKPEKKYTQTFSDLEFEGKLQAVKRSALEKKESETTIEYGAIDYDAPMEPKQKTIGLGTKIGVGIAVVVFGLVFALGDFLPSGSLNSSEDNGPVSKKLSKEETAYLQSRLQQYEATLSSSPKDPVALEGATVTLAELGEYARAATYLEDLTKEKPSDPDVFRLLGEIKYELKDYDGSIAAYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLLDSRERLNNGKLSDSTIKTEKTSEGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLISSHPSDFRGYLAKGILLKQNGIVGDAERMFIQVRHLSPLVTFFHVSCFPCLLPGQHVFLLLRKQRHLLIVTQETKSR
Homology
BLAST of Spo03970.1 vs. NCBI nr
Match:
gi|902225738|gb|KNA20170.1| (hypothetical protein SOVF_054870 [Spinacia oleracea])
HSP 1 Score: 737.3 bits (1902), Expect = 1.500e-209
Identity = 380/386 (98.45%), Postives = 382/386 (98.96%), Query Frame = 1
Query: 1 MWVAATPLNYSRFFIIKRCNRSQFRVQCSDNPRGFGSQDDSNSTKKWSTSKQSKSANTKP 60 MWVAATPL YSRFFIIKRCNRSQFRVQCSDNPRGFGSQDDSNSTKKWSTSKQSKSANTKP Sbjct: 1 MWVAATPLYYSRFFIIKRCNRSQFRVQCSDNPRGFGSQDDSNSTKKWSTSKQSKSANTKP 60 Query: 61 SSMPGQAPGVGSKPEKKYTQTFSDLEFEGKLQAVKRSALEKKESETTIEYGAIDYDAPME 120 SSMPGQAPGVGSKPEKKYTQTFSDLEFEGKLQAVKRSALEKKESETTIEYGAIDYDAPME Sbjct: 61 SSMPGQAPGVGSKPEKKYTQTFSDLEFEGKLQAVKRSALEKKESETTIEYGAIDYDAPME 120 Query: 121 PKQKTIGLGTKIGVGIAVVVFGLVFALGDFLPSGSLNSSEDNGPVSKKLSKEETAYLQSR 180 PKQKTIGLGTKIGVGIAVVVFGLVFALGDFLPSGSLNSSEDNGPVSKKLSKEETAYLQSR Sbjct: 121 PKQKTIGLGTKIGVGIAVVVFGLVFALGDFLPSGSLNSSEDNGPVSKKLSKEETAYLQSR 180 Query: 181 LQQYEATLSSSPKDPVALEGATVTLAELGEYARAATYLEDLTKEKPSDPDVFRLLGEIKY 240 LQQYEATLSSSPK+PVALEGATVTLAELGEYARAATYLEDLTKEKPSDPDVFRLLGEIKY Sbjct: 181 LQQYEATLSSSPKNPVALEGATVTLAELGEYARAATYLEDLTKEKPSDPDVFRLLGEIKY 240 Query: 241 ELKDYDGSIAAYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLLDSRERLNNGKLS 300 ELKDYDGSIAAYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLLDSRERLNNGKLS Sbjct: 241 ELKDYDGSIAAYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLLDSRERLNNGKLS 300 Query: 301 DSTIKTEKTSEGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLISSHPSDFRGYLA 360 DSTIKTEKTSEGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLISSHPSDFRGYLA Sbjct: 301 DSTIKTEKTSEGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLISSHPSDFRGYLA 360 Query: 361 KGILLKQNGIVGDAERMFIQVRHLSP 387 KGILLKQNGIVGDAERMFIQ R +P Sbjct: 361 KGILLKQNGIVGDAERMFIQARFFAP 386
BLAST of Spo03970.1 vs. NCBI nr
Match:
gi|731368389|ref|XP_010696121.1| (PREDICTED: uncharacterized protein LOC104908678 [Beta vulgaris subsp. vulgaris])
HSP 1 Score: 588.2 bits (1515), Expect = 1.200e-164
Identity = 309/395 (78.23%), Postives = 340/395 (86.08%), Query Frame = 1
Query: 1 MWVAATPLNYSRFFIIKRCNRSQFRVQCSDNPRGFGSQDDSNSTKKWSTSKQ-------- 60 MWVAATPLNYS F+IKR N S F+V+CSD PRGFGSQDD+N TKKWS+ +Q Sbjct: 1 MWVAATPLNYSHTFLIKRFNYSSFQVRCSDTPRGFGSQDDTN-TKKWSSKQQKGKDIIPQ 60 Query: 61 -SKSANTKPSSMPGQAPGVGSKPEKKYTQTFSDLEFEGKLQAVKRSALEKKESETTIEYG 120 SKSA+ K SSMP QAPGV S+P+KKY QT +DL FE KL AVKRSALEKK+ ET +E+ Sbjct: 61 ESKSASKKSSSMPNQAPGVSSRPDKKYKQTSADLLFEEKLLAVKRSALEKKKPETKLEFR 120 Query: 121 AIDYDAPMEPKQKTIGLGTKIGVGIAVVVFGLVFALGDFLPSGSLNSSEDNGPVSKKLSK 180 AIDYDAP+EPKQ TIGLGTKIGVGIAVVVFGLVFALGDFLPSGS+ S+ED+G VSKKLSK Sbjct: 121 AIDYDAPIEPKQNTIGLGTKIGVGIAVVVFGLVFALGDFLPSGSITSTEDSGAVSKKLSK 180 Query: 181 EETAYLQSRLQQYEATLSSSPKDPVALEGATVTLAELGEYARAATYLEDLTKEKPSDPDV 240 EETA LQ+RLQQYEATLSSSPKDPVALEGA VTL ELG+YARA TYLEDLTKEKPSDPDV Sbjct: 181 EETAVLQARLQQYEATLSSSPKDPVALEGAAVTLTELGDYARAVTYLEDLTKEKPSDPDV 240 Query: 241 FRLLGEIKYELKDYDGSIAAYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLLDSR 300 FRLLGEIKYEL+DY+GS AAYKSSAKV++ DF VLRGLTN LLAAKKPDEAVQVLL+ R Sbjct: 241 FRLLGEIKYELQDYEGSAAAYKSSAKVSEATDFGVLRGLTNALLAAKKPDEAVQVLLEYR 300 Query: 301 ERLNNGKLSDSTIKTEKTSEGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLISSH 360 E LNNGKLSD IK + ++ G D+ DVDPIQVELLLGKAYSDWGHISDA+SVYDQLIS H Sbjct: 301 ENLNNGKLSDGIIKKDSSTVGIDSQDVDPIQVELLLGKAYSDWGHISDAVSVYDQLISGH 360 Query: 361 PSDFRGYLAKGILLKQNGIVGDAERMFIQVRHLSP 387 PSDFRGYLAKGILLKQNG VG+AERMFIQ R +P Sbjct: 361 PSDFRGYLAKGILLKQNGKVGEAERMFIQARFFAP 394
BLAST of Spo03970.1 vs. NCBI nr
Match:
gi|225443365|ref|XP_002266002.1| (PREDICTED: uncharacterized protein LOC100258138 isoform X1 [Vitis vinifera])
HSP 1 Score: 450.7 bits (1158), Expect = 2.900e-123
Identity = 242/376 (64.36%), Postives = 293/376 (77.93%), Query Frame = 1
Query: 24 FRVQCSDNP---RGFGSQDDSNSTK--KWSTSK--------QSKSANTKPSSMPGQAPGV 83 FR+ CS + RGFG Q K K +TSK Q KS + + S+P QAPG+ Sbjct: 30 FRIHCSSDSKPTRGFGPQPPQRDNKMSKSTTSKEGKGGVLQQRKSTSKQSGSVPTQAPGL 89 Query: 84 GSKPEKKYTQTFSDLEFEGKLQAVKRSALEKKESETTIEYGAIDYDAPMEPKQKTIGLGT 143 S+ K DL+FE +L+AV+R+ALE+K+++ EYGAIDYD P+E ++KTIGLGT Sbjct: 90 SSRSGGKSNDAAIDLDFEERLEAVRRTALEQKKADEKKEYGAIDYDTPVESEEKTIGLGT 149 Query: 144 KIGVGIAVVVFGLVFALGDFLPSGSLNSSEDNGPVSKKLSKEETAYLQSRLQQYEATLSS 203 KIGVG+AVVVFGLVFALGDFLPSGS + SE+ VSKKLS+EE + LQ+RLQQYEATLSS Sbjct: 150 KIGVGVAVVVFGLVFALGDFLPSGSDSPSEEATVVSKKLSEEEKSTLQARLQQYEATLSS 209 Query: 204 SPKDPVALEGATVTLAELGEYARAATYLEDLTKEKPSDPDVFRLLGEIKYELKDYDGSIA 263 SPKD ALE A VTL ELGEY RAA+ LED KEKP+DP+ FRLLGE+K+ LKDY+GS A Sbjct: 210 SPKDQTALEAAAVTLVELGEYTRAASLLEDFVKEKPNDPEAFRLLGEVKFALKDYEGSAA 269 Query: 264 AYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLLDSRERLNNGKLSDSTIKTEKTS 323 AY+SSAKV++ +DFEVLRGLTN LLAAKKPDEAVQVLL SRERLN K S+ IK++ + Sbjct: 270 AYRSSAKVSETVDFEVLRGLTNALLAAKKPDEAVQVLLASRERLNKEKSSNLNIKSDSGT 329 Query: 324 EGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLISSHPSDFRGYLAKGILLKQNGI 383 + ++ +VDP+QVELLLGKAYSDWGHISDA+S+YDQLISSHP DFRGYLAKGI+LK+NG Sbjct: 330 KETESQEVDPVQVELLLGKAYSDWGHISDAVSLYDQLISSHPEDFRGYLAKGIILKENGN 389 Query: 384 VGDAERMFIQVRHLSP 387 +GDAERMFIQ R +P Sbjct: 390 IGDAERMFIQARFFAP 405
BLAST of Spo03970.1 vs. NCBI nr
Match:
gi|566181546|ref|XP_002310923.2| (hypothetical protein POPTR_0008s00440g [Populus trichocarpa])
HSP 1 Score: 448.0 bits (1151), Expect = 1.900e-122
Identity = 246/398 (61.81%), Postives = 300/398 (75.38%), Query Frame = 1
Query: 4 AATPLNYSRFFIIKRCNRSQFRVQCSDNP---RGFGSQDDSNSTKKWSTSK--------- 63 AAT + S F+ +F VQCSDN RGFGS+ D+N+ K S Sbjct: 8 AATMITSSSKFL-------RFGVQCSDNSSPRRGFGSKSDNNTNNKKVRSSSSREEKGMA 67 Query: 64 -QSKSANTKPS--SMPGQAPGVGSKPEKKYTQTFSDLEFEGKLQAVKRSALEKKESETTI 123 Q + + TK S S+P QAPG+ S+ + K ++ +D +FE +LQAV+RSALE+K++E Sbjct: 68 LQQRKSTTKQSGASLPSQAPGLSSRFDGKSSRNSADTDFEERLQAVRRSALEQKKTEAIK 127 Query: 124 EYGAIDYDAPMEPKQKTIGLGTKIGVGIAVVVFGLVFALGDFLPSGSLNSSEDNGPVSKK 183 E+G IDYD P++ + KTIGLGTKIGVG+AV+VFGLVFALGDFLPSGS +E+ V+KK Sbjct: 128 EFGPIDYDEPVKTENKTIGLGTKIGVGVAVLVFGLVFALGDFLPSGSDGPTEEATVVNKK 187 Query: 184 LSKEETAYLQSRLQQYEATLSSSPKDPVALEGATVTLAELGEYARAATYLEDLTKEKPSD 243 LS+EE L++RL+QYE TLS++PKD +ALEGA VTLAELGEY RAA+ L+DL KEKP D Sbjct: 188 LSEEEQNTLRARLKQYELTLSTAPKDSIALEGAAVTLAELGEYTRAASLLQDLAKEKPGD 247 Query: 244 PDVFRLLGEIKYELKDYDGSIAAYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLL 303 PDVFRLLGEIKYELKDYDGS AAY+ SA V+K +DFEVLRG N LLAAKKPDEAVQVLL Sbjct: 248 PDVFRLLGEIKYELKDYDGSAAAYRISAAVSKNVDFEVLRGHANALLAAKKPDEAVQVLL 307 Query: 304 DSRERLNNGKLSDSTIKTEKTSEGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLI 363 SR +LN+GK S IK + ++ +VDPIQV+LLLGKAYSDWGH+SDA+SVYDQLI Sbjct: 308 ASRAKLNSGKSSSVDIKVDGNGMEIESQEVDPIQVDLLLGKAYSDWGHVSDAVSVYDQLI 367 Query: 364 SSHPSDFRGYLAKGILLKQNGIVGDAERMFIQVRHLSP 387 SSHP DFRGYLAKGI+LK+NG VGDAERMFIQ R +P Sbjct: 368 SSHPDDFRGYLAKGIILKENGNVGDAERMFIQARFFAP 398
BLAST of Spo03970.1 vs. NCBI nr
Match:
gi|743868728|ref|XP_011033077.1| (PREDICTED: uncharacterized protein LOC105131691 isoform X1 [Populus euphratica])
HSP 1 Score: 446.8 bits (1148), Expect = 4.200e-122
Identity = 244/398 (61.31%), Postives = 302/398 (75.88%), Query Frame = 1
Query: 4 AATPLNYSRFFIIKRCNRSQFRVQCSDNP---RGFGSQDDSNSTKKWSTSK--------- 63 AAT + S F+ +F VQCSDN RGFGS+ D+N+ K S Sbjct: 8 AATMITSSSKFL-------RFGVQCSDNSSPRRGFGSKSDTNTNNKKVRSGSSREEKGMA 67 Query: 64 -QSKSANTKPS--SMPGQAPGVGSKPEKKYTQTFSDLEFEGKLQAVKRSALEKKESETTI 123 Q + + TK S S+P QAPG+ S+ + K ++ +D++FE +LQA++RSALE+K++E+ Sbjct: 68 LQQRKSTTKQSGASLPSQAPGLSSRFDGKSSRNSADIDFEQRLQAIRRSALEQKKTESIK 127 Query: 124 EYGAIDYDAPMEPKQKTIGLGTKIGVGIAVVVFGLVFALGDFLPSGSLNSSEDNGPVSKK 183 E+G IDYDAP++ + KTIGLGTKIGVG+AV+VFGLVFALGDFLPSGS +E+ V+KK Sbjct: 128 EFGPIDYDAPVKTENKTIGLGTKIGVGVAVLVFGLVFALGDFLPSGSDGPAEEATVVNKK 187 Query: 184 LSKEETAYLQSRLQQYEATLSSSPKDPVALEGATVTLAELGEYARAATYLEDLTKEKPSD 243 LS+EE L++RL+QYE TLS++PKD +ALEGA VTL ELGEY RAA+ L+DL KEKP D Sbjct: 188 LSEEEQNTLRARLKQYELTLSTAPKDSIALEGAAVTLFELGEYTRAASLLQDLAKEKPGD 247 Query: 244 PDVFRLLGEIKYELKDYDGSIAAYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLL 303 PDVFRLLGEIKYELKDYDGS AAY+ SA ++K +DFEVLRG N LLAAKKPDEAVQVLL Sbjct: 248 PDVFRLLGEIKYELKDYDGSAAAYRISAALSKNVDFEVLRGHANALLAAKKPDEAVQVLL 307 Query: 304 DSRERLNNGKLSDSTIKTEKTSEGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLI 363 SR +LN+GK S IK + ++ +VDPIQV+LLLGKAYSDWGH+SDA+SVYDQLI Sbjct: 308 ASRAKLNSGKSSSVDIKVDGNGMEIESQEVDPIQVDLLLGKAYSDWGHVSDAVSVYDQLI 367 Query: 364 SSHPSDFRGYLAKGILLKQNGIVGDAERMFIQVRHLSP 387 SSHP DFRGYLAKGI+LK+NG VGDAERMFIQ R +P Sbjct: 368 SSHPDDFRGYLAKGIILKENGNVGDAERMFIQARFFAP 398
BLAST of Spo03970.1 vs. UniProtKB/TrEMBL
Match:
A0A0K9RL01_SPIOL (Uncharacterized protein OS=Spinacia oleracea GN=SOVF_054870 PE=4 SV=1)
HSP 1 Score: 737.3 bits (1902), Expect = 1.100e-209
Identity = 380/386 (98.45%), Postives = 382/386 (98.96%), Query Frame = 1
Query: 1 MWVAATPLNYSRFFIIKRCNRSQFRVQCSDNPRGFGSQDDSNSTKKWSTSKQSKSANTKP 60 MWVAATPL YSRFFIIKRCNRSQFRVQCSDNPRGFGSQDDSNSTKKWSTSKQSKSANTKP Sbjct: 1 MWVAATPLYYSRFFIIKRCNRSQFRVQCSDNPRGFGSQDDSNSTKKWSTSKQSKSANTKP 60 Query: 61 SSMPGQAPGVGSKPEKKYTQTFSDLEFEGKLQAVKRSALEKKESETTIEYGAIDYDAPME 120 SSMPGQAPGVGSKPEKKYTQTFSDLEFEGKLQAVKRSALEKKESETTIEYGAIDYDAPME Sbjct: 61 SSMPGQAPGVGSKPEKKYTQTFSDLEFEGKLQAVKRSALEKKESETTIEYGAIDYDAPME 120 Query: 121 PKQKTIGLGTKIGVGIAVVVFGLVFALGDFLPSGSLNSSEDNGPVSKKLSKEETAYLQSR 180 PKQKTIGLGTKIGVGIAVVVFGLVFALGDFLPSGSLNSSEDNGPVSKKLSKEETAYLQSR Sbjct: 121 PKQKTIGLGTKIGVGIAVVVFGLVFALGDFLPSGSLNSSEDNGPVSKKLSKEETAYLQSR 180 Query: 181 LQQYEATLSSSPKDPVALEGATVTLAELGEYARAATYLEDLTKEKPSDPDVFRLLGEIKY 240 LQQYEATLSSSPK+PVALEGATVTLAELGEYARAATYLEDLTKEKPSDPDVFRLLGEIKY Sbjct: 181 LQQYEATLSSSPKNPVALEGATVTLAELGEYARAATYLEDLTKEKPSDPDVFRLLGEIKY 240 Query: 241 ELKDYDGSIAAYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLLDSRERLNNGKLS 300 ELKDYDGSIAAYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLLDSRERLNNGKLS Sbjct: 241 ELKDYDGSIAAYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLLDSRERLNNGKLS 300 Query: 301 DSTIKTEKTSEGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLISSHPSDFRGYLA 360 DSTIKTEKTSEGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLISSHPSDFRGYLA Sbjct: 301 DSTIKTEKTSEGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLISSHPSDFRGYLA 360 Query: 361 KGILLKQNGIVGDAERMFIQVRHLSP 387 KGILLKQNGIVGDAERMFIQ R +P Sbjct: 361 KGILLKQNGIVGDAERMFIQARFFAP 386
BLAST of Spo03970.1 vs. UniProtKB/TrEMBL
Match:
A0A0J8B7Z3_BETVU (Uncharacterized protein OS=Beta vulgaris subsp. vulgaris GN=BVRB_7g177820 PE=4 SV=1)
HSP 1 Score: 588.2 bits (1515), Expect = 8.100e-165
Identity = 309/395 (78.23%), Postives = 340/395 (86.08%), Query Frame = 1
Query: 1 MWVAATPLNYSRFFIIKRCNRSQFRVQCSDNPRGFGSQDDSNSTKKWSTSKQ-------- 60 MWVAATPLNYS F+IKR N S F+V+CSD PRGFGSQDD+N TKKWS+ +Q Sbjct: 1 MWVAATPLNYSHTFLIKRFNYSSFQVRCSDTPRGFGSQDDTN-TKKWSSKQQKGKDIIPQ 60 Query: 61 -SKSANTKPSSMPGQAPGVGSKPEKKYTQTFSDLEFEGKLQAVKRSALEKKESETTIEYG 120 SKSA+ K SSMP QAPGV S+P+KKY QT +DL FE KL AVKRSALEKK+ ET +E+ Sbjct: 61 ESKSASKKSSSMPNQAPGVSSRPDKKYKQTSADLLFEEKLLAVKRSALEKKKPETKLEFR 120 Query: 121 AIDYDAPMEPKQKTIGLGTKIGVGIAVVVFGLVFALGDFLPSGSLNSSEDNGPVSKKLSK 180 AIDYDAP+EPKQ TIGLGTKIGVGIAVVVFGLVFALGDFLPSGS+ S+ED+G VSKKLSK Sbjct: 121 AIDYDAPIEPKQNTIGLGTKIGVGIAVVVFGLVFALGDFLPSGSITSTEDSGAVSKKLSK 180 Query: 181 EETAYLQSRLQQYEATLSSSPKDPVALEGATVTLAELGEYARAATYLEDLTKEKPSDPDV 240 EETA LQ+RLQQYEATLSSSPKDPVALEGA VTL ELG+YARA TYLEDLTKEKPSDPDV Sbjct: 181 EETAVLQARLQQYEATLSSSPKDPVALEGAAVTLTELGDYARAVTYLEDLTKEKPSDPDV 240 Query: 241 FRLLGEIKYELKDYDGSIAAYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLLDSR 300 FRLLGEIKYEL+DY+GS AAYKSSAKV++ DF VLRGLTN LLAAKKPDEAVQVLL+ R Sbjct: 241 FRLLGEIKYELQDYEGSAAAYKSSAKVSEATDFGVLRGLTNALLAAKKPDEAVQVLLEYR 300 Query: 301 ERLNNGKLSDSTIKTEKTSEGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLISSH 360 E LNNGKLSD IK + ++ G D+ DVDPIQVELLLGKAYSDWGHISDA+SVYDQLIS H Sbjct: 301 ENLNNGKLSDGIIKKDSSTVGIDSQDVDPIQVELLLGKAYSDWGHISDAVSVYDQLISGH 360 Query: 361 PSDFRGYLAKGILLKQNGIVGDAERMFIQVRHLSP 387 PSDFRGYLAKGILLKQNG VG+AERMFIQ R +P Sbjct: 361 PSDFRGYLAKGILLKQNGKVGEAERMFIQARFFAP 394
BLAST of Spo03970.1 vs. UniProtKB/TrEMBL
Match:
D7SS20_VITVI (Putative uncharacterized protein OS=Vitis vinifera GN=VIT_09s0054g00720 PE=4 SV=1)
HSP 1 Score: 450.7 bits (1158), Expect = 2.000e-123
Identity = 242/376 (64.36%), Postives = 293/376 (77.93%), Query Frame = 1
Query: 24 FRVQCSDNP---RGFGSQDDSNSTK--KWSTSK--------QSKSANTKPSSMPGQAPGV 83 FR+ CS + RGFG Q K K +TSK Q KS + + S+P QAPG+ Sbjct: 30 FRIHCSSDSKPTRGFGPQPPQRDNKMSKSTTSKEGKGGVLQQRKSTSKQSGSVPTQAPGL 89 Query: 84 GSKPEKKYTQTFSDLEFEGKLQAVKRSALEKKESETTIEYGAIDYDAPMEPKQKTIGLGT 143 S+ K DL+FE +L+AV+R+ALE+K+++ EYGAIDYD P+E ++KTIGLGT Sbjct: 90 SSRSGGKSNDAAIDLDFEERLEAVRRTALEQKKADEKKEYGAIDYDTPVESEEKTIGLGT 149 Query: 144 KIGVGIAVVVFGLVFALGDFLPSGSLNSSEDNGPVSKKLSKEETAYLQSRLQQYEATLSS 203 KIGVG+AVVVFGLVFALGDFLPSGS + SE+ VSKKLS+EE + LQ+RLQQYEATLSS Sbjct: 150 KIGVGVAVVVFGLVFALGDFLPSGSDSPSEEATVVSKKLSEEEKSTLQARLQQYEATLSS 209 Query: 204 SPKDPVALEGATVTLAELGEYARAATYLEDLTKEKPSDPDVFRLLGEIKYELKDYDGSIA 263 SPKD ALE A VTL ELGEY RAA+ LED KEKP+DP+ FRLLGE+K+ LKDY+GS A Sbjct: 210 SPKDQTALEAAAVTLVELGEYTRAASLLEDFVKEKPNDPEAFRLLGEVKFALKDYEGSAA 269 Query: 264 AYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLLDSRERLNNGKLSDSTIKTEKTS 323 AY+SSAKV++ +DFEVLRGLTN LLAAKKPDEAVQVLL SRERLN K S+ IK++ + Sbjct: 270 AYRSSAKVSETVDFEVLRGLTNALLAAKKPDEAVQVLLASRERLNKEKSSNLNIKSDSGT 329 Query: 324 EGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLISSHPSDFRGYLAKGILLKQNGI 383 + ++ +VDP+QVELLLGKAYSDWGHISDA+S+YDQLISSHP DFRGYLAKGI+LK+NG Sbjct: 330 KETESQEVDPVQVELLLGKAYSDWGHISDAVSLYDQLISSHPEDFRGYLAKGIILKENGN 389 Query: 384 VGDAERMFIQVRHLSP 387 +GDAERMFIQ R +P Sbjct: 390 IGDAERMFIQARFFAP 405
BLAST of Spo03970.1 vs. UniProtKB/TrEMBL
Match:
B9HK22_POPTR (Uncharacterized protein OS=Populus trichocarpa GN=POPTR_0008s00440g PE=4 SV=2)
HSP 1 Score: 448.0 bits (1151), Expect = 1.300e-122
Identity = 246/398 (61.81%), Postives = 300/398 (75.38%), Query Frame = 1
Query: 4 AATPLNYSRFFIIKRCNRSQFRVQCSDNP---RGFGSQDDSNSTKKWSTSK--------- 63 AAT + S F+ +F VQCSDN RGFGS+ D+N+ K S Sbjct: 8 AATMITSSSKFL-------RFGVQCSDNSSPRRGFGSKSDNNTNNKKVRSSSSREEKGMA 67 Query: 64 -QSKSANTKPS--SMPGQAPGVGSKPEKKYTQTFSDLEFEGKLQAVKRSALEKKESETTI 123 Q + + TK S S+P QAPG+ S+ + K ++ +D +FE +LQAV+RSALE+K++E Sbjct: 68 LQQRKSTTKQSGASLPSQAPGLSSRFDGKSSRNSADTDFEERLQAVRRSALEQKKTEAIK 127 Query: 124 EYGAIDYDAPMEPKQKTIGLGTKIGVGIAVVVFGLVFALGDFLPSGSLNSSEDNGPVSKK 183 E+G IDYD P++ + KTIGLGTKIGVG+AV+VFGLVFALGDFLPSGS +E+ V+KK Sbjct: 128 EFGPIDYDEPVKTENKTIGLGTKIGVGVAVLVFGLVFALGDFLPSGSDGPTEEATVVNKK 187 Query: 184 LSKEETAYLQSRLQQYEATLSSSPKDPVALEGATVTLAELGEYARAATYLEDLTKEKPSD 243 LS+EE L++RL+QYE TLS++PKD +ALEGA VTLAELGEY RAA+ L+DL KEKP D Sbjct: 188 LSEEEQNTLRARLKQYELTLSTAPKDSIALEGAAVTLAELGEYTRAASLLQDLAKEKPGD 247 Query: 244 PDVFRLLGEIKYELKDYDGSIAAYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLL 303 PDVFRLLGEIKYELKDYDGS AAY+ SA V+K +DFEVLRG N LLAAKKPDEAVQVLL Sbjct: 248 PDVFRLLGEIKYELKDYDGSAAAYRISAAVSKNVDFEVLRGHANALLAAKKPDEAVQVLL 307 Query: 304 DSRERLNNGKLSDSTIKTEKTSEGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLI 363 SR +LN+GK S IK + ++ +VDPIQV+LLLGKAYSDWGH+SDA+SVYDQLI Sbjct: 308 ASRAKLNSGKSSSVDIKVDGNGMEIESQEVDPIQVDLLLGKAYSDWGHVSDAVSVYDQLI 367 Query: 364 SSHPSDFRGYLAKGILLKQNGIVGDAERMFIQVRHLSP 387 SSHP DFRGYLAKGI+LK+NG VGDAERMFIQ R +P Sbjct: 368 SSHPDDFRGYLAKGIILKENGNVGDAERMFIQARFFAP 398
BLAST of Spo03970.1 vs. UniProtKB/TrEMBL
Match:
A9PFJ0_POPTR (Uncharacterized protein OS=Populus trichocarpa GN=POPTR_0008s00440g PE=2 SV=1)
HSP 1 Score: 443.4 bits (1139), Expect = 3.200e-121
Identity = 241/392 (61.48%), Postives = 296/392 (75.51%), Query Frame = 1
Query: 4 AATPLNYSRFFIIKRCNRSQFRVQCSDNP---RGFGSQDDSNSTKKWSTSKQSKSAN--- 63 AAT + S F+ +F VQCSDN RGFGS+ D+N+ K S S+ Sbjct: 8 AATMITSSSKFL-------RFGVQCSDNSSPRRGFGSKSDNNTNNKKVRSSSSREEKGMA 67 Query: 64 ---TKPSSMPGQAPGVGSKPEKKYTQTFSDLEFEGKLQAVKRSALEKKESETTIEYGAID 123 K ++ +APG+ S+ + K ++ +D +FE +LQAV+RSALE+K++E E+G ID Sbjct: 68 LQQRKSTTKQSEAPGLSSRFDGKSSRNSADTDFEERLQAVRRSALEQKKTEAIKEFGPID 127 Query: 124 YDAPMEPKQKTIGLGTKIGVGIAVVVFGLVFALGDFLPSGSLNSSEDNGPVSKKLSKEET 183 YD P++ + KTIGLGTKIGVG+AV+VFGLVFALGDFLPSGS +E+ V+KKLS+EE Sbjct: 128 YDEPVKTENKTIGLGTKIGVGVAVLVFGLVFALGDFLPSGSDGPTEEATVVNKKLSEEEQ 187 Query: 184 AYLQSRLQQYEATLSSSPKDPVALEGATVTLAELGEYARAATYLEDLTKEKPSDPDVFRL 243 L++RL+QYE TLS++PKD +ALEGA VTLAELGEY RAA+ L+DL KEKP DPDVFRL Sbjct: 188 NTLRARLKQYELTLSTAPKDSIALEGAAVTLAELGEYTRAASLLQDLAKEKPGDPDVFRL 247 Query: 244 LGEIKYELKDYDGSIAAYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLLDSRERL 303 LGEIKYELKDYDGS AAY+ SA V+K +DFEVLRG N LLAAKKPDEAVQVLL SR +L Sbjct: 248 LGEIKYELKDYDGSAAAYRISAAVSKNVDFEVLRGHANALLAAKKPDEAVQVLLASRAKL 307 Query: 304 NNGKLSDSTIKTEKTSEGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLISSHPSD 363 N+GK S IK + ++ +VDPIQV+LLLGKAYSDWGH+SDA+SVYDQLISSHP D Sbjct: 308 NSGKSSSVDIKVDGNGMEIESQEVDPIQVDLLLGKAYSDWGHVSDAVSVYDQLISSHPDD 367 Query: 364 FRGYLAKGILLKQNGIVGDAERMFIQVRHLSP 387 FRGYLAKGI+LK+NG VGDAERMFIQ R +P Sbjct: 368 FRGYLAKGIILKENGNVGDAERMFIQARFFAP 392
BLAST of Spo03970.1 vs. TAIR (Arabidopsis)
Match:
AT1G78915.3 (Tetratricopeptide repeat (TPR)-like superfamily protein)
HSP 1 Score: 401.0 bits (1029), Expect = 9.300e-112
Identity = 223/385 (57.92%), Postives = 284/385 (73.77%), Query Frame = 1
Query: 24 FRVQCSD-NP-RGFGSQDDSNSTKKWSTSKQSKSANTKPSSMPGQAPGVGSKPEKKYTQT 83 FR++CSD NP RGFGS+ + +K +Q KS++ + S+P +APG+ ++ E K ++ Sbjct: 20 FRIRCSDSNPKRGFGSKKE----EKDPALQQRKSSSKQSVSVPRKAPGLNTQFEGKSGRS 79 Query: 84 FSDLEFEGKLQAVKRSALEKKESETTIEYGAIDYDAPMEPKQKTIGLGTKIGVGIAVVVF 143 F D++F+ +L+ ++RSALE+K++E E+G IDYDAP++ QKTIGLGTK+GVGIAVVVF Sbjct: 80 F-DIDFDERLENIRRSALEQKKTEVVKEFGPIDYDAPVKSDQKTIGLGTKVGVGIAVVVF 139 Query: 144 GLVFALGDFLPSGS-------------------LNSSEDNGPVSK-KLSKEETAYLQSRL 203 GLVFALGDFLP+G ++S N V K ++S+EE A LQ RL Sbjct: 140 GLVFALGDFLPTGRCVKISWVGFRNFTFLSYQVIDSPTKNTTVVKNQISEEEKATLQQRL 199 Query: 204 QQYEATLSSSPKDPVALEGATVTLAELGEYARAATYLEDLTKEKPSDPDVFRLLGEIKYE 263 +++E TL+ +P+D ALEGA VTL ELG+Y+RAA +LE L KE+P+DPDVFRLLGE+ YE Sbjct: 200 KEFETTLNGTPQDQAALEGAAVTLTELGDYSRAAAFLEKLAKERPTDPDVFRLLGEVNYE 259 Query: 264 LKDYDGSIAAYKSSAKVTKGIDFEVLRGLTNTLLAAKKPDEAVQVLLDSRERLNNGKLSD 323 L +Y+GSIAAYK S KV+KGID EV RGL N LAAKKPDEAV+ LLD+RERLN Sbjct: 260 LNNYEGSIAAYKISEKVSKGIDLEVTRGLMNAYLAAKKPDEAVKFLLDTRERLN------ 319 Query: 324 STIKTEKTSEGNDTLDVDPIQVELLLGKAYSDWGHISDAISVYDQLISSHPSDFRGYLAK 383 T KT T D ++DPIQVELLLGKAYSDWGHISDAI+VYDQLIS+HP DFRGYLAK Sbjct: 320 -TKKTSTTDSVTDETNLDPIQVELLLGKAYSDWGHISDAIAVYDQLISAHPEDFRGYLAK 379 Query: 384 GILLKQNGIVGDAERMFIQVRHLSP 387 GI+L++NG GDAERMFIQ R +P Sbjct: 380 GIILRENGSRGDAERMFIQARFFAP 392
The following BLAST results are available for this feature:
BLAST of Spo03970.1 vs. NCBI nr
Analysis Date: 2018-06-29 (
blastp Spinacia oleracea peptides vs. NCBI nr )
Total hits: 5
A T G T G G G T T G C A G C A A C C C C A T T G A A T T A C T C G C G C T T C T T C A T A A T C A A A C G C T G C A A T C G T T C T C A A T T T C G T G T T C A A T G T T C A G A T A A T C C T C G T G G A T T C G G C T C T C A A G A T G A T T C T A A T A G T A C G A A A A A A T G G A G C A C T T C A A A G C A A A G C A A A T C A G C A A A T A C G A A A C C T A G C T C C A T G C C T G G T C A A G C A C C A G G A G T G G G T T C A A A G C C T G A A A A A A A G T A T A C G C A A A C G T T T T C T G A T T T G G A G T T C G A G G G A A A G C T T C A A G C T G T C A A A A G G T C A G C T C T T G A A A A G A A A G A A T C A G A G A C G A C G A T A G A G T A T G G G G C A A T T G A T T A T G A T G C A C C A A T G G A G C C A A A G C A G A A A A C A A T T G G G C T C G G G A C A A A G A T C G G A G T T G G A A T T G C T G T T G T G G T C T T T G G C C T T G T T T T T G C T C T G G G A G A C T T T C T A C C A T C T G G A A G C C T A A A T T C C A G T G A A G A C A A T G G C C C A G T C A G T A A A A A G C T G T C T A A A G A A G A G A C A G C A T A T C T T C A G A G T A G G C T T C A G C A G T A T G A G G C A A C C C T G A G C T C T T C G C C T A A A G A T C C T G T T G C T C T T G A A G G A G C T A C A G T G A C A T T A G C A G A A C T T G G A G A A T A T G C T C G G G C T G C T A C T T A T C T C G A G G A T T T G A C A A A G G A G A A A C C A A G T G A C C C A G A T G T C T T T C G C C T G C T G G G G G A G A T A A A A T A C G A G C T C A A A G A T T A T G A T G G A A G T A T T G C A G C T T A C A A A A G T T C A G C A A A G G T G A C C A A A G G T A T A G A T T T T G A A G T T C T G C G C G G C C T T A C G A A T A C G T T A C T T G C T G C T A A G A A G C C A G A C G A G G C T G T T C A G G T C C T T C T G G A T T C C C G T G A A C G T C T C A A T A A C G G A A A A T T A A G T G A T A G C A C T A T C A A G A C T G A A A A G A C T T C A G A G G G A A A T G A C A C C C T G G A T G T G G A T C C A A T C C A A G T T G A A C T G C T G C T T G G A A A A G C C T A C T C A G A T T G G G G T C A T A T C A G C G A T G C G A T A T C T G T T T A C G A C C A A T T G A T T T C T A G T C A T C C T A G T G A C T T T C G G G G T T A C T T A G C T A A G G G G A T A T T A T T G A A A C A A A A T G G C A T T G T T G G A G A T G C A G A G C G G A T G T T T A T A C A A G T A A G A C A T T T A A G T C C T C T G G T T A C A T T C T T C C A T G T T A G T T G T T T T C C A T G C T T A T T A C C T G G A C A G C A C G T T T T T T T G C T C C T G A G A A A G C A A A G G C A T T T G T T G A T C G T T A C T C A A G A A A C T A A G A G T A G A T A A T A T C C T T C G G A T T G C A T A A C G A G G A A G A A A T G G A A T C A A A G A G A T A C T C C T T T G T G T C C T A A C A T A C A A G T C A A A A A A A C T G A T G G T A G A A A A C T G T G T G C G C T A T G T C A T A T T T T G G C T C T C A C A A C A A T T A T G G T A C A C T A A A A A A A A T C A C T A C A T T A T T A A A C A T T A A T G T G C C A T G A T C G T A A T C C T T T C T T G C T C C T G G C C A A C C T C T C T G C T C C C G G T G C T G A C C A C C T C C T C G A T T G C A G T G C C A G C A A C C C C C C T G T G T T C T T C A A C G T T G T T G A T C T G A T A T C T G G T A A A A C T T A G T C A G A A G C A T T A G A T A G T G T T C A T A A T A A G T G A C A A T C C T A T G T T T T T C A T C T G A T T T C C A A T G T T T T T T G T T T T T A T G A A T T C T A G A A T G A A G A T C T A T A T A T A T T A T G G A A T G A A T A A A G T G A A T G T A A A A T T T C T A A C C T C G T G T C G C C C G C A T T C T G T T T C T G G T T T T G G A T A T G G T T T T A T G A A T T T C A A A G C A C T T A A A C A T A A T C T C C T C A A A G T C A T C C T C T T C A C A G G G T A T C T T C A G C C C A C C C T G T T G C T C A A A C C C G A A T T C C T C A G 200 400 600 800 1000 1200 1400 1600 1800 Expect = 1.50e-209 / Id = 98.45 Expect = 1.20e-164 / Id = 78.23 Expect = 2.90e-123 / Id = 64.36 Expect = 1.90e-122 / Id = 61.81 Expect = 4.20e-122 / Id = 61.31 Sequence KNA20170.1 XP_010696121.1 XP_002266002.1 XP_002310923.2 XP_011033077.1
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BLAST of Spo03970.1 vs. UniProtKB/TrEMBL
Analysis Date: 2018-06-29 (
blastp Spinacia oleracea peptides vs. UniprotKB/TrEMBL )
Total hits: 5
A T G T G G G T T G C A G C A A C C C C A T T G A A T T A C T C G C G C T T C T T C A T A A T C A A A C G C T G C A A T C G T T C T C A A T T T C G T G T T C A A T G T T C A G A T A A T C C T C G T G G A T T C G G C T C T C A A G A T G A T T C T A A T A G T A C G A A A A A A T G G A G C A C T T C A A A G C A A A G C A A A T C A G C A A A T A C G A A A C C T A G C T C C A T G C C T G G T C A A G C A C C A G G A G T G G G T T C A A A G C C T G A A A A A A A G T A T A C G C A A A C G T T T T C T G A T T T G G A G T T C G A G G G A A A G C T T C A A G C T G T C A A A A G G T C A G C T C T T G A A A A G A A A G A A T C A G A G A C G A C G A T A G A G T A T G G G G C A A T T G A T T A T G A T G C A C C A A T G G A G C C A A A G C A G A A A A C A A T T G G G C T C G G G A C A A A G A T C G G A G T T G G A A T T G C T G T T G T G G T C T T T G G C C T T G T T T T T G C T C T G G G A G A C T T T C T A C C A T C T G G A A G C C T A A A T T C C A G T G A A G A C A A T G G C C C A G T C A G T A A A A A G C T G T C T A A A G A A G A G A C A G C A T A T C T T C A G A G T A G G C T T C A G C A G T A T G A G G C A A C C C T G A G C T C T T C G C C T A A A G A T C C T G T T G C T C T T G A A G G A G C T A C A G T G A C A T T A G C A G A A C T T G G A G A A T A T G C T C G G G C T G C T A C T T A T C T C G A G G A T T T G A C A A A G G A G A A A C C A A G T G A C C C A G A T G T C T T T C G C C T G C T G G G G G A G A T A A A A T A C G A G C T C A A A G A T T A T G A T G G A A G T A T T G C A G C T T A C A A A A G T T C A G C A A A G G T G A C C A A A G G T A T A G A T T T T G A A G T T C T G C G C G G C C T T A C G A A T A C G T T A C T T G C T G C T A A G A A G C C A G A C G A G G C T G T T C A G G T C C T T C T G G A T T C C C G T G A A C G T C T C A A T A A C G G A A A A T T A A G T G A T A G C A C T A T C A A G A C T G A A A A G A C T T C A G A G G G A A A T G A C A C C C T G G A T G T G G A T C C A A T C C A A G T T G A A C T G C T G C T T G G A A A A G C C T A C T C A G A T T G G G G T C A T A T C A G C G A T G C G A T A T C T G T T T A C G A C C A A T T G A T T T C T A G T C A T C C T A G T G A C T T T C G G G G T T A C T T A G C T A A G G G G A T A T T A T T G A A A C A A A A T G G C A T T G T T G G A G A T G C A G A G C G G A T G T T T A T A C A A G T A A G A C A T T T A A G T C C T C T G G T T A C A T T C T T C C A T G T T A G T T G T T T T C C A T G C T T A T T A C C T G G A C A G C A C G T T T T T T T G C T C C T G A G A A A G C A A A G G C A T T T G T T G A T C G T T A C T C A A G A A A C T A A G A G T A G A T A A T A T C C T T C G G A T T G C A T A A C G A G G A A G A A A T G G A A T C A A A G A G A T A C T C C T T T G T G T C C T A A C A T A C A A G T C A A A A A A A C T G A T G G T A G A A A A C T G T G T G C G C T A T G T C A T A T T T T G G C T C T C A C A A C A A T T A T G G T A C A C T A A A A A A A A T C A C T A C A T T A T T A A A C A T T A A T G T G C C A T G A T C G T A A T C C T T T C T T G C T C C T G G C C A A C C T C T C T G C T C C C G G T G C T G A C C A C C T C C T C G A T T G C A G T G C C A G C A A C C C C C C T G T G T T C T T C A A C G T T G T T G A T C T G A T A T C T G G T A A A A C T T A G T C A G A A G C A T T A G A T A G T G T T C A T A A T A A G T G A C A A T C C T A T G T T T T T C A T C T G A T T T C C A A T G T T T T T T G T T T T T A T G A A T T C T A G A A T G A A G A T C T A T A T A T A T T A T G G A A T G A A T A A A G T G A A T G T A A A A T T T C T A A C C T C G T G T C G C C C G C A T T C T G T T T C T G G T T T T G G A T A T G G T T T T A T G A A T T T C A A A G C A C T T A A A C A T A A T C T C C T C A A A G T C A T C C T C T T C A C A G G G T A T C T T C A G C C C A C C C T G T T G C T C A A A C C C G A A T T C C T C A G 200 400 600 800 1000 1200 1400 1600 1800 Expect = 1.10e-209 / Id = 98.45 Expect = 8.10e-165 / Id = 78.23 Expect = 2.00e-123 / Id = 64.36 Expect = 1.30e-122 / Id = 61.81 Expect = 3.20e-121 / Id = 61.48 Sequence A0A0K9RL01_SPIOL A0A0J8B7Z3_BETVU D7SS20_VITVI B9HK22_POPTR A9PFJ0_POPTR
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BLAST of Spo03970.1 vs. ExPASy Swiss-Prot
Analysis Date: 2018-06-29 (
blastp Spinacia oleracea peptides vs. ExPASy SwissProt )
Total hits: 0
A T G T G G G T T G C A G C A A C C C C A T T G A A T T A C T C G C G C T T C T T C A T A A T C A A A C G C T G C A A T C G T T C T C A A T T T C G T G T T C A A T G T T C A G A T A A T C C T C G T G G A T T C G G C T C T C A A G A T G A T T C T A A T A G T A C G A A A A A A T G G A G C A C T T C A A A G C A A A G C A A A T C A G C A A A T A C G A A A C C T A G C T C C A T G C C T G G T C A A G C A C C A G G A G T G G G T T C A A A G C C T G A A A A A A A G T A T A C G C A A A C G T T T T C T G A T T T G G A G T T C G A G G G A A A G C T T C A A G C T G T C A A A A G G T C A G C T C T T G A A A A G A A A G A A T C A G A G A C G A C G A T A G A G T A T G G G G C A A T T G A T T A T G A T G C A C C A A T G G A G C C A A A G C A G A A A A C A A T T G G G C T C G G G A C A A A G A T C G G A G T T G G A A T T G C T G T T G T G G T C T T T G G C C T T G T T T T T G C T C T G G G A G A C T T T C T A C C A T C T G G A A G C C T A A A T T C C A G T G A A G A C A A T G G C C C A G T C A G T A A A A A G C T G T C T A A A G A A G A G A C A G C A T A T C T T C A G A G T A G G C T T C A G C A G T A T G A G G C A A C C C T G A G C T C T T C G C C T A A A G A T C C T G T T G C T C T T G A A G G A G C T A C A G T G A C A T T A G C A G A A C T T G G A G A A T A T G C T C G G G C T G C T A C T T A T C T C G A G G A T T T G A C A A A G G A G A A A C C A A G T G A C C C A G A T G T C T T T C G C C T G C T G G G G G A G A T A A A A T A C G A G C T C A A A G A T T A T G A T G G A A G T A T T G C A G C T T A C A A A A G T T C A G C A A A G G T G A C C A A A G G T A T A G A T T T T G A A G T T C T G C G C G G C C T T A C G A A T A C G T T A C T T G C T G C T A A G A A G C C A G A C G A G G C T G T T C A G G T C C T T C T G G A T T C C C G T G A A C G T C T C A A T A A C G G A A A A T T A A G T G A T A G C A C T A T C A A G A C T G A A A A G A C T T C A G A G G G A A A T G A C A C C C T G G A T G T G G A T C C A A T C C A A G T T G A A C T G C T G C T T G G A A A A G C C T A C T C A G A T T G G G G T C A T A T C A G C G A T G C G A T A T C T G T T T A C G A C C A A T T G A T T T C T A G T C A T C C T A G T G A C T T T C G G G G T T A C T T A G C T A A G G G G A T A T T A T T G A A A C A A A A T G G C A T T G T T G G A G A T G C A G A G C G G A T G T T T A T A C A A G T A A G A C A T T T A A G T C C T C T G G T T A C A T T C T T C C A T G T T A G T T G T T T T C C A T G C T T A T T A C C T G G A C A G C A C G T T T T T T T G C T C C T G A G A A A G C A A A G G C A T T T G T T G A T C G T T A C T C A A G A A A C T A A G A G T A G A T A A T A T C C T T C G G A T T G C A T A A C G A G G A A G A A A T G G A A T C A A A G A G A T A C T C C T T T G T G T C C T A A C A T A C A A G T C A A A A A A A C T G A T G G T A G A A A A C T G T G T G C G C T A T G T C A T A T T T T G G C T C T C A C A A C A A T T A T G G T A C A C T A A A A A A A A T C A C T A C A T T A T T A A A C A T T A A T G T G C C A T G A T C G T A A T C C T T T C T T G C T C C T G G C C A A C C T C T C T G C T C C C G G T G C T G A C C A C C T C C T C G A T T G C A G T G C C A G C A A C C C C C C T G T G T T C T T C A A C G T T G T T G A T C T G A T A T C T G G T A A A A C T T A G T C A G A A G C A T T A G A T A G T G T T C A T A A T A A G T G A C A A T C C T A T G T T T T T C A T C T G A T T T C C A A T G T T T T T T G T T T T T A T G A A T T C T A G A A T G A A G A T C T A T A T A T A T T A T G G A A T G A A T A A A G T G A A T G T A A A A T T T C T A A C C T C G T G T C G C C C G C A T T C T G T T T C T G G T T T T G G A T A T G G T T T T A T G A A T T T C A A A G C A C T T A A A C A T A A T C T C C T C A A A G T C A T C C T C T T C A C A G G G T A T C T T C A G C C C A C C C T G T T G C T C A A A C C C G A A T T C C T C A G 200 400 600 800 1000 1200 1400 1600 1800 Sequence
Match Name E-value Identity Description
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BLAST of Spo03970.1 vs. TAIR (Arabidopsis)
Analysis Date: 2018-06-29 (
blastp Spinacia oleracea peptides vs. TAIR )
Total hits: 1
A T G T G G G T T G C A G C A A C C C C A T T G A A T T A C T C G C G C T T C T T C A T A A T C A A A C G C T G C A A T C G T T C T C A A T T T C G T G T T C A A T G T T C A G A T A A T C C T C G T G G A T T C G G C T C T C A A G A T G A T T C T A A T A G T A C G A A A A A A T G G A G C A C T T C A A A G C A A A G C A A A T C A G C A A A T A C G A A A C C T A G C T C C A T G C C T G G T C A A G C A C C A G G A G T G G G T T C A A A G C C T G A A A A A A A G T A T A C G C A A A C G T T T T C T G A T T T G G A G T T C G A G G G A A A G C T T C A A G C T G T C A A A A G G T C A G C T C T T G A A A A G A A A G A A T C A G A G A C G A C G A T A G A G T A T G G G G C A A T T G A T T A T G A T G C A C C A A T G G A G C C A A A G C A G A A A A C A A T T G G G C T C G G G A C A A A G A T C G G A G T T G G A A T T G C T G T T G T G G T C T T T G G C C T T G T T T T T G C T C T G G G A G A C T T T C T A C C A T C T G G A A G C C T A A A T T C C A G T G A A G A C A A T G G C C C A G T C A G T A A A A A G C T G T C T A A A G A A G A G A C A G C A T A T C T T C A G A G T A G G C T T C A G C A G T A T G A G G C A A C C C T G A G C T C T T C G C C T A A A G A T C C T G T T G C T C T T G A A G G A G C T A C A G T G A C A T T A G C A G A A C T T G G A G A A T A T G C T C G G G C T G C T A C T T A T C T C G A G G A T T T G A C A A A G G A G A A A C C A A G T G A C C C A G A T G T C T T T C G C C T G C T G G G G G A G A T A A A A T A C G A G C T C A A A G A T T A T G A T G G A A G T A T T G C A G C T T A C A A A A G T T C A G C A A A G G T G A C C A A A G G T A T A G A T T T T G A A G T T C T G C G C G G C C T T A C G A A T A C G T T A C T T G C T G C T A A G A A G C C A G A C G A G G C T G T T C A G G T C C T T C T G G A T T C C C G T G A A C G T C T C A A T A A C G G A A A A T T A A G T G A T A G C A C T A T C A A G A C T G A A A A G A C T T C A G A G G G A A A T G A C A C C C T G G A T G T G G A T C C A A T C C A A G T T G A A C T G C T G C T T G G A A A A G C C T A C T C A G A T T G G G G T C A T A T C A G C G A T G C G A T A T C T G T T T A C G A C C A A T T G A T T T C T A G T C A T C C T A G T G A C T T T C G G G G T T A C T T A G C T A A G G G G A T A T T A T T G A A A C A A A A T G G C A T T G T T G G A G A T G C A G A G C G G A T G T T T A T A C A A G T A A G A C A T T T A A G T C C T C T G G T T A C A T T C T T C C A T G T T A G T T G T T T T C C A T G C T T A T T A C C T G G A C A G C A C G T T T T T T T G C T C C T G A G A A A G C A A A G G C A T T T G T T G A T C G T T A C T C A A G A A A C T A A G A G T A G A T A A T A T C C T T C G G A T T G C A T A A C G A G G A A G A A A T G G A A T C A A A G A G A T A C T C C T T T G T G T C C T A A C A T A C A A G T C A A A A A A A C T G A T G G T A G A A A A C T G T G T G C G C T A T G T C A T A T T T T G G C T C T C A C A A C A A T T A T G G T A C A C T A A A A A A A A T C A C T A C A T T A T T A A A C A T T A A T G T G C C A T G A T C G T A A T C C T T T C T T G C T C C T G G C C A A C C T C T C T G C T C C C G G T G C T G A C C A C C T C C T C G A T T G C A G T G C C A G C A A C C C C C C T G T G T T C T T C A A C G T T G T T G A T C T G A T A T C T G G T A A A A C T T A G T C A G A A G C A T T A G A T A G T G T T C A T A A T A A G T G A C A A T C C T A T G T T T T T C A T C T G A T T T C C A A T G T T T T T T G T T T T T A T G A A T T C T A G A A T G A A G A T C T A T A T A T A T T A T G G A A T G A A T A A A G T G A A T G T A A A A T T T C T A A C C T C G T G T C G C C C G C A T T C T G T T T C T G G T T T T G G A T A T G G T T T T A T G A A T T T C A A A G C A C T T A A A C A T A A T C T C C T C A A A G T C A T C C T C T T C A C A G G G T A T C T T C A G C C C A C C C T G T T G C T C A A A C C C G A A T T C C T C A G 200 400 600 800 1000 1200 1400 1600 1800 Expect = 9.30e-112 / Id = 57.92 Sequence AT1G78915.3
Match Name E-value Identity Description
AT1G78915.3 9.3e-112 57.9 Tetratricopeptide repeat (TPR)... [more]
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