SEARCH

Sequence

GENOMES

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

ZS2 - BnaA02T043400ZS2

CDS Sequence (663 bp)
ATGGCCATGCTTACGCGCAACGCCGCCACGCGCCTCCCTCTCCTCCTCCAATCTCAACGCGCCTCCGCCG
CCGCCGTCTCTCACATCCACACATCCCTCCCGTCCCTCTCCCCCTCGACATCACCAACATCCTACACCCG
TCCAGGTCCTCCTTCAACCTCCCCTACTCCGCCGGGACTCTCGAAGACGGCGGAGTTCGTGATCTCCAAG
GTCGACGACCTCATGAACTGGGCTCGCAGGGGATCGATCTGGCCCATGACCTTCGGCCTCGCCTGCTGCG
CCGTGGAGATGATGCACACCGGCGCCGCTCGCTACGATCTCGATCGGTTCGGTATCATCTTTAGGCCGAG
TCCGCGTCAATCGGATTGTATGATTGTCGCCGGGACGCTTACGAACAAGATGGCTCCTGCTCTTCGCAAG
GTATATGATCAAATGCCGGAGCCAAGGTGGGTGATATCGATGGGAAGCTGCGCCAATGGAGGTGGATACT
ACCACTACTCCTACTCGGTGGTTCGAGGGTGTGACAGGATTGTGCCAGTGGACATTTACGTCCCTGGGTG
CCCTCCGACCGCTGAGGCTTTGCTCTATGGACTCTTACAGCTTCAGAAGAAAATCAACAGGCGCAAGGAT
TTCTTGCATTGGTGGAACAAGTGA
Upstream Sequence
TAAACGCTTTAAAGAGTTCACCTGGCCACCACAACTCCACGACAAAATGGCCATGCTTACGCGCAACGCC
GCCACGCGCCTCCCTCTCCTCCTCCAATCTCAACGCGCCTCCGCCGCCGCCGTCTCTCACATCCACACAT
CCCTCCCGTCCCTCTCCCCCTCGACATCACCAACATCCTACACCCGTCCAGGTCCTCCTTCAACCTCCCC
TACTCCGCCGGGACTCTCGAAGACGGCGGAGTTCGTGATCTCCAAGGTCGACGACCTCATGAACTGGGCT
CGCAGGGGATCGATCTGGCCCATGACCTTCGGCCTCGCCTGCTGCGCCGTGGAGATGATGCACACCGGCG
CCGCTCGCTACGATCTCGATCGGTTCGGTATCATCTTTAGGCCGAGTCCGCGTCAATCGGATTGTATGAT
TGTCGCCGGGACGCTTACGAACAAGATGGCTCCTGCTCTTCGCAAGGTATATGATCAAATGCCGGAGCCA
AGGTGGGTGATATCGATGGGAAGCTGCGCCAATGGAGGTGGATACTACCACTACTCCTACTCGGTGGTTC
GAGGGTGTGACAGGATTGTGCCAGTGGACATTTACGTCCCTGGGTGCCCTCCGACCGCTGAGGCTTTGCT
CTATGGACTCTTACAGCTTCAGAAGAAAATCAACAGGCGCAAGGATTTCTTGCATTGGTGGAACAAGTGA
TCAAAGCTTTAAAGTCTCATCCTTCTTCCAATGTGAAAGGGAGAGTTTTTTTTTCAGACAAAGGTTCGGG
TAATAAAATGTGGATGTTTCAGTGCATGTTTCTTTGTGGAGATATACGAGTGATTTTTTACAAGTTTTAT
GTGGATTCTTATTTATTTGATCTATTCACAAGCTCTTTGTTTCTCTCTCTTCTTTCGTTTAGTTAGAA
Downstream Sequence
AGTAAACGCCCTCTTTTGAAAATCTCTGATCGATGTTGTTGAATTGATGATAGAATCGTG
TAATTAGGGTTTCGTCATTTGGGATTGTTATCTGATTTAGGGTTCATTTAGTCTATGGCC
ATGTTCGTTTACCTATCACGCGACATGCGACCTGCGACATGCGACTGATCGCAGGTCGCA
GGTTGTTGTTTGTTTTCCTGTCGCGTAACCTGCGACATGCGCGATTGATCGCATGTCGCA
AGTCGCAGGTTGTTGTTCGTTTTGATGTCGCGCGATCGCGACCAGTCGCGGGTTCCATTC
CAGTCGGCCGAAAAAACAGCGACTAAAAATTAAGAAAATTTTGATCGCGCGACTGAAGTC
GCGCGACACGTAAACGAACGTAATCTTAGTCGTAGGTCAGGTCGACCCGTAAACGAACAT
GGCCTATGTGAATCGACTCAAATGTTTTTTTTTTATTATTAAAGCTGCTGTTCTTGTTTA
ATTTGTGTTCTAGTGTCTAATATATGGAAACAATGAGACAGGGTATATGATCAAATGCCG
GAGCCAAGGTGGGTGATATCGATGGGAAGCTGCGCCAATGGAGGTGGATACTACCACTAC
TCCTACTCGGTGGTTCGAGGGTGTGACAGGATTGTGCCAGTGGACATTTACGTCCCTGGG
TGCCCTCCGACCGCTGAGGCTTTGCTCTATGGACTCTTACAGCTTCAGAAGAAAATCAAC
AGGCGCAAGGATTTCTTGCATTGGTGGAACAAGTGATCAAAGCTTTAAAGTCTCATCCTT
CTTCCAATGTGAAAGGGAGAGTTTTTTTTTCAGACAAAGGTTCGGGTAATAAAATGTGGA
TGTTTCAGTGCATGTTTCTTTGTGGAGATATACGAGTGATTTTTTACAAGTTTTATGTGG
ATTCTTATTTATTTGATCTATTCACAAGCTCTTTGTTTCTCTCTCTTCTTTCGTTTAGTT
AGAATGTTGTATTCATACCTTCTTGGTTAACACCAATAGTTGAAAGGGATTAACATATGG
ATGTTATTAGTATTTTGATAAAATGGTATGTTTTGAAGAAAAAAAAGAGATTAAATTTTT
ATGTTGTTTCAAAAATGGCACAACATTTGCTTTGTGGGGAACAATAGCTTATGGATTATT
TAATACATTATACAGTCCAATATGTGAGTTAAGATCAAATCGTCACTAAAAAACCTCAAG
ACTTTAGTTTCCAGGAGAGTATAGGCAACTTTCTTTTATGATATGATGATGAAGGTGCTA
ATGCTTCTTGAGAGCGTTCATCTTGTCTCTGAGGTAATAAAGTTTGGCTCTTCTTACTCT
CTTCTTGTCCAACACCTTAATCTCCCTCAGGTTTGGCGAATACCTGTCATCCACTTACAT
ATCAGTTTTGCCTTTTGTGCATGCTATATCAGGCTCATAGTAAGTACAGTGTGAAAGTAG
ACTTACAAGGGAAACATGGATTCGACACCCACACCAGCCACAAGCCTTCTAATCCTAAAA
GTGGAGTTAAGACCAGCATTACGCCTCGCTATGACAATGCCTTTTACGATTGAAACACGC
CTCTTGTTCTCAGGCACTTCCTGTTTCAAACAACAAAGTTAAATGCACAAGTCTAAGTTA
TTTTGATCACATCCTCCCAAAAGAAAAAGAAGAAAATGCAGTCTGATATACATCTCTACG
AGTTCGATAGTAGTTACCACTTTAAGCTGCACAATGTAACCGGGCCTTATCTCTGGTATC
TCTCTACGAGTTCTCACTTCCTCAACAGCCTCGTTGTCTACAATCTACAAAAGAATGCGG
CTTTTGTAAACATGGCATTGGTTTATTACATCCCATGACCAATTGTCACAGTTACGAGAT
GTACCTGCATGATATGCTTGGCGGTTTTATCAAGCCGCTTGAACTTGATTCTCGGAGGCA
CATCAGGAGCCGACACAACAGGGAATCCTTGAGGAACAGAATCTCCAATGGTTGAAAAGC
ACCTCGACGAATACGTAAAG
mRNA Sequence
TAAACGCTTTAAAGAGTTCACCTGGCCACCACAACTCCACGACAAAATGGCCATGCTTACGCGCAACGCC
GCCACGCGCCTCCCTCTCCTCCTCCAATCTCAACGCGCCTCCGCCGCCGCCGTCTCTCACATCCACACAT
CCCTCCCGTCCCTCTCCCCCTCGACATCACCAACATCCTACACCCGTCCAGGTCCTCCTTCAACCTCCCC
TACTCCGCCGGGACTCTCGAAGACGGCGGAGTTCGTGATCTCCAAGGTCGACGACCTCATGAACTGGGCT
CGCAGGGGATCGATCTGGCCCATGACCTTCGGCCTCGCCTGCTGCGCCGTGGAGATGATGCACACCGGCG
CCGCTCGCTACGATCTCGATCGGTTCGGTATCATCTTTAGGCCGAGTCCGCGTCAATCGGATTGTATGAT
TGTCGCCGGGACGCTTACGAACAAGATGGCTCCTGCTCTTCGCAAGGTATATGATCAAATGCCGGAGCCA
AGGTGGGTGATATCGATGGGAAGCTGCGCCAATGGAGGTGGATACTACCACTACTCCTACTCGGTGGTTC
GAGGGTGTGACAGGATTGTGCCAGTGGACATTTACGTCCCTGGGTGCCCTCCGACCGCTGAGGCTTTGCT
CTATGGACTCTTACAGCTTCAGAAGAAAATCAACAGGCGCAAGGATTTCTTGCATTGGTGGAACAAGTGA
TCAAAGCTTTAAAGTCTCATCCTTCTTCCAATGTGAAAGGGAGAGTTTTTTTTTCAGACAAAGGTTCGGG
TAATAAAATGTGGATGTTTCAGTGCATGTTTCTTTGTGGAGATATACGAGTGATTTTTTACAAGTTTTAT
GTGGATTCTTATTTATTTGATCTATTCACAAGCTCTTTGTTTCTCTCTCTTCTTTCGTTTAGTTAGAA
Pro Sequence
MAMLTRNAATRLPLLLQSQRASAAAVSHIHTSLPSLSPSTSPTSYTRPGPPSTSPTPPGLSKTAEFVISK
VDDLMNWARRGSIWPMTFGLACCAVEMMHTGAARYDLDRFGIIFRPSPRQSDCMIVAGTLTNKMAPALRK
VYDQMPEPRWVISMGSCANGGGYYHYSYSVVRGCDRIVPVDIYVPGCPPTAEALLYGLLQLQKKINRRKD
FLHWWNK