SEARCH

DETAIL

Detail for ZS11_A10G31760.t1

Genome:
ZS11: ZS11_A10G31760.t1
ZS11_v0: BnaC09T0587500ZS
WE: WE_A10G32230.t1
WE_v0: BnaA02T0021100WE
Darmor: A10p30340.1_BnaDAR
BH: BnaA10T291800BH
Quinta: BnaA10T0263000QU
ZS2: BnaA10T275800ZS2
SW: BnaA10T301300SW
Express61: A10p026270.1_BnaEXP
Xiaoyun: BnaA10G0277500XY
P202: BnaA10G022330P202.1
BL: BnaA10T291800BH
TA: BnaA10T274800TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g38270D
RB: BnaA10T288100RB
No2127: BnaA10T0213700NO
P130: BnaA10G028450P130.1
Length: 244
KOG ID: KOG0725
KOG E-value: 1.690000e-145
KOG Score: 408.0
KOG Annotation: General function prediction only
Biological Process: -
Cellular Component: -
Molecular Function: GO:0016491(oxidoreductase activity)
KEGG Ortholog: K08081 TR1; tropinone reductase I [EC:1.1.1.206]
NR Protein: RID42749.1
NR E-value: 1.700000e-126
NR Score: 457.2
NR Annotation: RID42749.1 hypothetical protein BRARA_J02610 [Brassica rapa]
SwissProt Protein: Q9LHT0|TRNHF_ARATH
SwissProt E-value: 7.190000e-145
SwissProt Score: 408.0
SwissProt Annotation: Tropinone reductase homolog At5g06060 OS=Arabidopsis thaliana OX=3702 GN=At5g06060 PE=2 SV=1
CDS Sequence (745 bp)
ATGGAGAGTGACAAAAGATGGTCCCTCGCTGGAAAAACCGCTCTAGTAACCGGCGGTACTCGTGGTATCG
GGCGAGCAATAGTTGAGGAACTCGCAAGATTCGGTGCAACAGTTCATACTTGTTCAAGGAACCAAGAAGA
GCTAAAAGCATGCTTGGATGATTGGAGATCCAATGGTTTAACGGAATCTGGTTCGGTCTGCGATGCTTCC
GATAGGGATGAGAGGGAAAAGTTGATGCAGCAAGTTTCCTCTGCTTTTAGCGGCAAGCTCAACATCCTTG
TAAACAATGTTGGAACTAATGTATGGAAACCAACAGTGGAGTACACGAGTGAGGATTATGCAAAAGTCAT
GTCGACCAACTTTGAATCAGCTTTCCATTTTTCCCAAATCGCGCATCCTCTTCTGAAAGCATCTGGGGTC
GGAAGCATTGTGTTTGTTTCCTCTGTAGCTGGCCTGGTGTACGCTAGTGCTGGACCTATCTATGGTGCAA
CAAAAGCTTACAAGGAACTAGCTTGTGAGTGGGCATGCGACAATATCAGAACCAACTCCGTACTTGAGAA
TAAAGAGTTTATGGACGCCGTGGTTAACCGGACCCCACTTGGTCGAGTTGGAGAACCAGAAGAAGTTGCT
TCGCTGGTTGCTTTCCTCTGCCTTCCCGCTGCCTCTTACATCACCGGACAGGTCATTGTCGCTGACGGAG
GATTCACAGTCAACGGTTTCAATTACGTTGTGTAA
Upstream Sequence
ATGGAGAGTGACAAAAGATGGTCCCTCGCTGGAAAAACCGCTCTAGTAACCGGCGGTACTCGTGGTATCG
GGCGAGCAATAGTTGAGGAACTCGCAAGATTCGGTGCAACAGTTCATACTTGTTCAAGGAACCAAGAAGA
GCTAAAAGCATGCTTGGATGATTGGAGATCCAATGGTTTAACGGAATCTGGTTCGGTCTGCGATGCTTCC
GATAGGGATGAGAGGGAAAAGTTGATGCAGCAAGTTTCCTCTGCTTTTAGCGGCAAGCTCAACATCCTTG
TAAACAATGTTGGAACTAATGTATGGAAACCAACAGTGGAGTACACGAGTGAGGATTATGCAAAAGTCAT
GTCGACCAACTTTGAATCAGCTTTCCATTTTTCCCAAATCGCGCATCCTCTTCTGAAAGCATCTGGGGTC
GGAAGCATTGTGTTTGTTTCCTCTGTAGCTGGCCTGGTGTACGCTAGTGCTGGACCTATCTATGGTGCAA
CAAAAGCTTACAAGGAACTAGCTTGTGAGTGGGCATGCGACAATATCAGAACCAACTCCGTACTTGAGAA
TAAAGAGTTTATGGACGCCGTGGTTAACCGGACCCCACTTGGTCGAGTTGGAGAACCAGAAGAAGTTGCT
TCGCTGGTTGCTTTCCTCTGCCTTCCCGCTGCCTCTTACATCACCGGACAGGTCATTGTCGCTGACGGAG
GATTCACAGTCAACGGTTTCAATTACGTTGTGTAA
Downstream Sequence
GTTGGTTTCTATATGTTTTGTTTTGGTTTATGCATTGATTAATAAACATGTTGACATCTT
AAAGATAAGATTATTGCATGTGTATTAATTAAACTCATAACCTATGTGATGTACTACTCT
TCAGGCGAGCAATAGTTGAGGAACTCGCAAGATTCGGTGCAACAGTTCATACTTGTTCAA
GGAACCAAGAAGAGCTAAAAGCATGCTTGGATGATTGGAGATCCAATGGTTTAACGGAAT
CTGGTTCGGTCTGCGATGCTTCCGATAGGGATGAGAGGGAAAAGTTGATGCAGCAAGTTT
CCTCTGCTTTTAGCGGCAAGCTCAACATCCTTGTAAGTTTCTTTTCTTCTTTGCATTTTG
ATCAGATTCTTACACATAGTGTCATCTTGAAAGTTGTTTATAAGTTCCTTATCCGTCTGG
ATAATTTTAGAACCAACCTATTTGGTTGGTCCTGGCCTTGAACTGGTTGTAACTTGTGGT
TTTATTTTGCCTTTAAATTATTGTCACATTAGCTTTATGTCGTTCATAATAACTGTAAAT
TCGTTTTTTCTTTCCAATTTTGTTTTGTATTCAGGTAAACAATGTTGGAACTAATGTATG
GAAACCAACAGTGGAGTACACGAGTGAGGATTATGCAAAAGTCATGTCGACCAACTTTGA
ATCAGCTTTCCATTTTTCCCAAATCGCGCATCCTCTTCTGAAAGCATCTGGGGTCGGAAG
CATTGTGTTTGTTTCCTCTGTAGCTGGCCTGGTGTACGCTAGTGCTGGACCTATCTATGG
TGCAACAAAAGGTAAGTCAATTTTTTTTTTCACTATTTACATAAAAACCCAAAAACAAAG
GAGGGTCCAAAAAGTAAATTAGTATTCTCTCAGGAGCACTTAATCAGCTTACAAGGAACT
AGCTTGTGAGTGGGCATGCGACAATATCAGAACCAACTCCGTGGCGCCATAGTACATCAA
GACCTCATTTGTTGAACCGGTATATACCTTCAAAATTATAGAACATTTGAATTCGAACTG
AAATGTTTTAGACTGAGACCGAGCTGACAAAAAAAAGATGTTGTGATGTTCTTATGCAGG
TACTTGAGAATAAAGAGTTTATGGACGCCGTGGTTAACCGGACCCCACTTGGTCGAGTTG
GAGAACCAGAAGAAGTTGCTTCGCTGGTTGCTTTCCTCTGCCTTCCCGCTGCCTCTTACA
TCACCGGACAGGTCATTGTCGCTGACGGAGGATTCACAGTCAACGGTTTCAATTACGTTG
TGTAACCACAACCTCTTATCGCAACTTTAATAATAATGCAAGAACCGGTTAGTGAGTGCG
GTTTCACGTTGGTCTTGTTTGGCGTCTTTAAACCTGTAGTGACATTCTCGCATTTGTATT
TTTCAACTTCTGTTTTGTGACTAAACCTTACAAACAGTTCAGAGTTTGTTTTAGAGGTCC
CCAGATTCCAAAGCCTCCCAACTAAACTACCCATTGATCAAAGAAACCCTTTCAATTCTA
GCTCAGCCCCCTTGTATTTGTACTATGGATAATGCATGTCAATGTCTTTTTCCTTTACTC
TTCCTCCTCTTCTTCTTAGCAGGATGCTTATCGACGGACGACTCGACCTTATTTTCGAAC
TTCTTTTCGCATAAGAGGACCCTGTAACTTGCGTGAGGCCCTTCAGCAGTTTCACGTAAG
GTCGTGTGCCATCTCATTGCGTTTCCAATCTCCTGAAGCTCACTCATCACGTTGATAGTG
TCCCTTATGTATACACGCCCTCCAGGTCTCAAAATCCGGTCCATCTCTAGCATGATCGTT
GTCATGTTGCACCTGAACAAGGCCACCACAAAAATGGGAGAGGGGTACGCATTTTTATTT
AAGTTGGGAAAACAAAGTGGTCATTACCTTTTCCTTTCGATGGAAAATAGACCAGCGGCG
TGCAGCAAATCATACGTTCTTGGGTAAGTATCGAACGGTTCACACCTGAAAAAGACACTC
AGCATTTTATCTAAGCAGTT
Pro Sequence
MESDKRWSLAGKTALVTGGTRGIGRAIVEELARFGATVHTCSRNQEELKA
CLDDWRSNGLTESGSVCDASDRDEREKLMQQVSSAFSGKLNILVNNVGTN
VWKPTVEYTSEDYAKVMSTNFESAFHFSQIAHPLLKASGVGSIVFVSSVA
GLVYASAGPIYGATKAYKELACEWACDNIRTNSVLENKEFMDAVVNRTPL
GRVGEPEEVASLVAFLCLPAASYITGQVIVADGGFTVNGFNYVV
mRNA Sequence
ATGGAGAGTGACAAAAGATGGTCCCTCGCTGGAAAAACCGCTCTAGTAACCGGCGGTACTCGTGGTATCG
GGCGAGCAATAGTTGAGGAACTCGCAAGATTCGGTGCAACAGTTCATACTTGTTCAAGGAACCAAGAAGA
GCTAAAAGCATGCTTGGATGATTGGAGATCCAATGGTTTAACGGAATCTGGTTCGGTCTGCGATGCTTCC
GATAGGGATGAGAGGGAAAAGTTGATGCAGCAAGTTTCCTCTGCTTTTAGCGGCAAGCTCAACATCCTTG
TAAACAATGTTGGAACTAATGTATGGAAACCAACAGTGGAGTACACGAGTGAGGATTATGCAAAAGTCAT
GTCGACCAACTTTGAATCAGCTTTCCATTTTTCCCAAATCGCGCATCCTCTTCTGAAAGCATCTGGGGTC
GGAAGCATTGTGTTTGTTTCCTCTGTAGCTGGCCTGGTGTACGCTAGTGCTGGACCTATCTATGGTGCAA
CAAAAGCTTACAAGGAACTAGCTTGTGAGTGGGCATGCGACAATATCAGAACCAACTCCGTACTTGAGAA
TAAAGAGTTTATGGACGCCGTGGTTAACCGGACCCCACTTGGTCGAGTTGGAGAACCAGAAGAAGTTGCT
TCGCTGGTTGCTTTCCTCTGCCTTCCCGCTGCCTCTTACATCACCGGACAGGTCATTGTCGCTGACGGAG
GATTCACAGTCAACGGTTTCAATTACGTTGTGTAA