SEARCH

Sequence

GENOMES

Enrichment analyses (GO, KEGG, KOG, NR, SwissProt) were conducted,
including CDS regions and upstream 2k sequences.

ZS11_v0 - BnaA08T0168900ZS

CDS Sequence (422 bp)
ATGTCGAGGCTATGGGCGAAAGTAGCCGGATTGTTCAGAAGCAAGAGCTTCATCGGAGCAGACAAGACCG
GTAACAAGTACTTCTCCAGAATGGAGGAGATCGACGTGAAGGAGAAGAGATGGGTTGTCTTTAGACGAGA
AGAGGACCCAACCTCTGTTCCTGTTGAATGGATATGTTGGCTGAATGGTCAGAGAAAACGAGCTCCAACT
CCAGAGGAAATGGCTGAGCTTGAAGCAAGGCGTGAGCGTGTGAAGCTTAATGTTGCTCTAGCAAGTCAAG
AAATTCTTGTGCTTTTGTCTATTAAAGTCGCTTCAAGTTCTACGCAAATGCTTACTGTTTCTCTTTTGCC
TTCAAGGTCTCAAGAAAGAAGAGGAGGAGAGGAAAGCCAGAGAAGGCACTGGACGCAAAATCACTAG
Upstream Sequence
GTTTGGGCGAGTTATTGTTCCTTTCATCCTCTTTTTTTTTTTCTTAATTTTAGGTTTCGT
AGGAGCTCTGAAAATGATTGCGTTTCTCTTTTCATTCATGAAACGATTCAATCTATATAC
AGTATGTGATTATCGTGTAATGAGCACATCTTGTTCATTCGTTTTAGCGTAGTAACATAT
GTTCTAATGTGGATTCTTTCTAGTTTACAGTGAAGGAGAAGAGATGGGTTGTCTTTAGAC
GAGAAGAGGACCCAACCTCTGTTCCTGGTATGCAATTGGCTTGTTTCATTTCATTACCTC
TCAAAGCAAAGCAAATGATATCTACAGGATATGTAGGCAGACATCCACTCATGGTTACAT
TTTTTTGTTTGATCAATGTTGTAGTTGAATGGATATGTTGGCTGAATGGTCAGAGAAAAC
GAGCTCCAACTCCAGAGGTAAGATGGAACTCTTCTTTTTAATTTCTGGTCAGCACAAAGT
GTTGTTCTTCACATGCAAGATTCTTACTAGTATCTTGCCTTGATGCTCCAGGAAATGGCT
GAGCTTGAAGCAAGGCGTGAGCGTGTGAAGCTTAATGTTGCTCGTAGGTGTTTTCCACAT
TGTTATTACATTGATTCTTGCTGCATAAAGTTTATGATTTTGGGGACTTTGTTTTTGGAA
ACTAGAGAAGTTTTGAAATGAACAAAGTCCAGTGTTTCTTTTGCGTCTCTGTGTAGTAGC
AAGTCAAGAAATTCTTGTGCTTTTGTCTATTAAAGTCGCTTCAAGTTCTACGCAAATGCT
TACTGTTTCTCTTTTGCCTTCAAGGTCTCAAGAAAGAAGAGGAGGAGAGGAAAGCCAGAG
AAGGCACTGGACGCAAAATCACTAGCATCGGTAGTTTACATTTAGTACTGTTTAAGGTGA
GTTTGGTCTCGGTGAAGTAAACAATACTAAAAATGGGTCGAACAGAGGCGTTTATTAGAT
TTCGAGATGATGTTACAAAGGTGGAGAAAGTAAAAGCAGGCCGGAGCTCGTGAGAGCTTA
AACCGGAAAAGTACAAATAGCAGAGAGATGGTTGTACGGATGATAAACCCTAATCTCGCC
GCTAAGTTTGTGTAGCTCAGTCTTGATGATCTTTCTCCTTTGCTTTCCTCTCCTTTTATA
CTCTGTTCGATTACCTTTACCTAATCTCTTTTTACTCATTGGGCTTTGTCGGCCCTTCGG
GCCTGATTATGAGGCGCTCGTTCCGAGCCGTTTAGTCGATCAGCCTCGCTTCGCTTGCTC
TCCGCTTCGACTAACGGCGCTTCCTGGTTAAGTTGAAGCCTCGAGAATCGGCTTCTGCGC
CGACGTCGACTCGGTTTGCTGGATTGGGCCTTTTGTTCGATGGGCTTTGTGGATGGGTTA
AATCCATCCCCAACAGTAAGTCCCCCCCAGTTTATTGATGGTCGAGCAATCGATCCTCGA
TGAATTTGGTGTCTGTGGTTCGGAGAACAAAAGGTTCAACCCGAGCAAGCGACTGACCGT
TGAGGAGTCGACCCGTTCGATCGATACTTCTCGATCGAGAGAGTGGATTGACGCGTCCGT
TTTTCACGCGTTGCGATCGTGAGATAAATGCTTACGGGTCGAGAAGACGGACCGGCGCAT
CTGTCGACCACGCGCCTAATTGGGTTTAGGCCCAATTAGGCCTTATTAGGCGTAATGATG
GCGCCTTGATCTCCGCGCTTATCTTTTCTTATAAATAGCTCCCCCCTCTCCACTTCTTTT
CATTTCTCTCCGCAGCGCTAAAGGTACTTTCTCTCTCTACGCTCCTTCTCTCTCTTTATC
TTTGTTTTTAGATCTGCGATTATCCGAGATGTCGTCACCCCGTCGTTTGACGCGAGAACA
AAAGGGAAAGGGGCGGTATCTTCTCGGATTCTGACGATACCCATCACGAAGCGATGATGG
ATTCGGAAAATATGAACTTATCGCAGCGTCTCTTGGTCTCGGAAGCGAGGGAACAGTTCC
GGGGCGATGACGACGGTCA
Downstream Sequence
GCATCGGTAGTTTACATTTAGTACTGTTTAAGGTGAGTTTGGTCTCGGTGAAGTAAACAA
TACTAAAAATGGGTCGAACAGAGGCGTTTATTAGATTTCGAGATGATGTTACAAAGGTGG
AGAAAGTAAAAGCAGGCCGGAGCTCGTGAGAGCTTAAACCGGAAAAGTACAAATAGCAGA
GAGATGGTTGTACGGATGATAAACCCTAATCTCGCCGCTAAGTTTGTGTAGCTCAGTCTT
GATGATCTTTCTCCTTTGCTTTCCTCTCCTTTTATACTCTGTTCGATTACCTTTACCTAA
TCTCTTTTTACTCATTGGGCTTTGTCGGCCCTTCGGGCCTGATTATGAGGCGCTCGTTCC
GAGCCGTTTAGTCGATCAGCCTCGCTTCGCTTGCTCTCCGCTTCGACTAACGGCGCTTCC
TGGTTAAGTTGAAGCCTCGAGAATCGGCTTCTGCGCCGACGTCGACTCGGTTTGCTGGAT
TGGGCCTTTTGTTCGATGGGCTTTGTGGATGGGTTAAATCCATCCCCAACAGTAAGTCCC
CCCCAGTTTATTGATGGTCGAGCAATCGATCCTCGATGAATTTGGTGTCTGTGGTTCGGA
GAACAAAAGGTTCAACCCGAGCAAGCGACTGACCGTTGAGGAGTCGACCCGTTCGATCGA
TACTTCTCGATCGAGAGAGTGGATTGACGCGTCCGTTTTTCACGCGTTGCGATCGTGAGA
TAAATGCTTACGGGTCGAGAAGACGGACCGGCGCATCTGTCGACCACGCGCCTAATTGGG
TTTAGGCCCAATTAGGCCTTATTAGGCGTAATGATGGCGCCTTGATCTCCGCGCTTATCT
TTTCTTATAAATAGCTCCCCCCTCTCCACTTCTTTTCATTTCTCTCCGCAGCGCTAAAGG
TACTTTCTCTCTCTACGCTCCTTCTCTCTCTTTATCTTTGTTTTTAGATCTGCGATTATC
CGAGATGTCGTCACCCCGTCGTTTGACGCGAGAACAAAAGGGAAAGGGGCGGTATCTTCT
CGGATTCTGACGATACCCATCACGAAGCGATGATGGATTCGGAAAATATGAACTTATCGC
AGCGTCTCTTGGTCTCGGAAGCGAGGGAACAGTTCCGGGGCGATGACGACGGTCAGGAAG
CGGTCGACACCTCGATTGTTCCGATCAGCTATTATCCCGGGAACATCTTCGCCGAGGAGA
GTCCAATGGAGGTTTGGAGAATTCGACCTTCGGTCGTCGACGGACAAGATTGGTCCAACG
TCGAGAGGACGAAGTCCACCGTGGAGTCGGTGGAAGCTATCCTCCGAGATCTCAACGCAC
ACGGGGTCTCGTTCATCATTCCAAAGCGGGACCAGAGGCCTTGGTCGCCTCCGAAGGGAT
ATCAGTGCATCTACGAGTCGTATTTCAGGAACGACACGAAATTATGGTTCCCGATTCCTC
GAATCGTCACGGCTTACGCGTTCCGCAGAGGAGTCGCTTTGAGCCAGTTGATGAACGGTT
CTCTCCGGTTGATGGTCGTTTTATCGGTGATCGCGGCTGAGGCGGGGACATCGATGAGTG
TGAGGTCGTTTGAGGAATTGACTTCAGTTTCGATTTCCGACGATGGGCTCGTCTCGACGA
GAATGCGCCCAAACTATAACGTGGTCACGGGTTATCCGACCAAAACTTCAGACTGGCAGC
GCTCGTACTTCTACGTGAAGTCGAACAGGTCGGCGTTCGAAGAGCCGCCGAAGTCTGGTT
ACCGCGTTCTCTGGAATGCAGAGATGGGTACTGCACGCTATCTTATGTGACGATTGTGGT
GTGTGCTCGTCTAACGCTTATATTTTCTTTTTGTAGTTGGTCATCCGAATCTCGCTACGT
ACCCCGAGGATTGGAAGGAGAGTGCTCGGATTGTCGCGTTGCAGAAGCAAGATCACTGGG
AGGACTTTACTCGGGAGAGAATTCAAAGATTTGTAGAACGGATTGCGAGTCGTAAGTTCT
CGCTCCTCCTTTATGTTTCC
mRNA Sequence
ATGTCGAGGCTATGGGCGAAAGTAGCCGGATTGTTCAGAAGCAAGAGCTTCATCGGAGCAGACAAGACCG
GTAACAAGTACTTCTCCAGAATGGAGGAGATCGACGTGAAGGAGAAGAGATGGGTTGTCTTTAGACGAGA
AGAGGACCCAACCTCTGTTCCTGTTGAATGGATATGTTGGCTGAATGGTCAGAGAAAACGAGCTCCAACT
CCAGAGGAAATGGCTGAGCTTGAAGCAAGGCGTGAGCGTGTGAAGCTTAATGTTGCTCTAGCAAGTCAAG
AAATTCTTGTGCTTTTGTCTATTAAAGTCGCTTCAAGTTCTACGCAAATGCTTACTGTTTCTCTTTTGCC
TTCAAGGTCTCAAGAAAGAAGAGGAGGAGAGGAAAGCCAGAGAAGGCACTGGACGCAAAATCACTAG
Pro Sequence
MSRLWAKVAGLFRSKSFIGADKTGNKYFSRMEEIDVKEKRWVVFRREEDPTSVPVEWICWLNGQRKRAPT
PEEMAELEARRERVKLNVALASQEILVLLSIKVASSSTQMLTVSLLPSRSQERRGGEESQRRHWTQNH