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Detail for ZS11_A07G37860.t1

Genome:
ZS11: ZS11_A07G37860.t1
ZS11_v0: BnaC06T0374400ZS
WE: WE_A07G38330.t1
WE_v0: BnaA07T0315000WE
Darmor: A07p37160.1_BnaDAR
BH: BnaA07T134900BH
Quinta: BnaA07T0276600QU
ZS2: BnaA07T324900ZS2
SW: BnaA07T341700SW
Express61: A07p029420.1_BnaEXP
Xiaoyun: BnaC06G0381700XY
P202: BnaA07G027880P202.1
BL: BnaA07T134900BH
TA: BnaA07T327700TA
Da-Ae: Not available
RB: BnaA07T342800RB
No2127: BnaC02T0205300NO
P130: BnaA07G033490P130.2
Length: 195
KOG ID: -
KOG E-value: Not available
KOG Score: Not available
KOG Annotation: -
Biological Process: -
Cellular Component: -
Molecular Function: GO:0016655(oxidoreductase activity, acting on NAD(P)H, quinone or similar compound as acceptor)
KEGG Ortholog: -
NR Protein: VDD01801.1
NR E-value: 1.300000e-105
NR Score: 387.5
NR Annotation: VDD01801.1 unnamed protein product [Brassica rapa]
SwissProt Protein: Q9CAC5|NDHL_ARATH
SwissProt E-value: 9.690000e-112
SwissProt Score: 319.0
SwissProt Annotation: NAD(P)H-quinone oxidoreductase subunit L, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=ndhL PE=2 SV=1
CDS Sequence (596 bp)
ATGAGCCGTTGCTGCTCTCTTGGGCTCTGTGCCCCTAATCCTTTGTACTCTCTATCTTCCAGGCCTCGCA
CTCGCAGCGTCAGAGCTCCTCTCTGTATTACATCTCACACCAAACCCAACTCTAACACCGACTCTCTTCC
TCATTATGTTGCCAAGATGAAAGCAAAGGCCGATGACTTCTTTGGAGCAAAGAAGACAATCTTTGCAACT
CAACTCGGTGCAGTTCTTACCACGATTGATCATCCGGCCTTGGCAATAACAGGAGTCAACCACGAGCAGG
AACTAAGCAGCGTTGTGCTCGATATCGGGATCATATCGGTCTGGTACTTCCTCGTAATGCCACCAATCAT
CATGAACTGGCTGAGAGTAAGATGGTACAGAAGGAAGTTCTTCGAAATGTATTTGCAGTTCATGTTCGTC
TTCATGTTCTTTCCTGGGCTACTGTTATGGGCACCATTTCTCAACTTCAGAAAGTTCCCAAGAGATCCAT
CTATGAAGCATCCTTGGGACAAACCAAAAGACCCTTCCACTATCAAGAACGGTTACCTCAAGTATCCATT
TGCAAAGCCAGAAGACTACGACTATTAA
Upstream Sequence
TGACTCTATGCCATTAGAACCAATCCCAAGAGATAAGGAAACTTCACAAGACAGAACACATAGAGATGAG
CCGTTGCTGCTCTCTTGGGCTCTGTGCCCCTAATCCTTTGTACTCTCTATCTTCCAGGCCTCGCACTCGC
AGCGTCAGAGCTCCTCTCTGTATTACATCTCACACCAAACCCAACTCTAACACCGACTCTCTTCCTCATT
ATGTTGCCAAGATGAAAGCAAAGGCCGATGACTTCTTTGGAGCAAAGAAGACAATCTTTGCAACTCAACT
CGGTGCAGTTCTTACCACGATTGATCATCCGGCCTTGGCAATAACAGGAGTCAACCACGAGCAGGAACTA
AGCAGCGTTGTGCTCGATATCGGGATCATATCGGTCTGGTACTTCCTCGTAATGCCACCAATCATCATGA
ACTGGCTGAGAGTAAGATGGTACAGAAGGAAGTTCTTCGAAATGTATTTGCAGTTCATGTTCGTCTTCAT
GTTCTTTCCTGGGCTACTGTTATGGGCACCATTTCTCAACTTCAGAAAGTTCCCAAGAGATCCATCTATG
AAGCATCCTTGGGACAAACCAAAAGACCCTTCCACTATCAAGAACGGTTACCTCAAGTATCCATTTGCAA
AGCCAGAAGACTACGACTATTAAGATTCTTGTGACTGTATATACACTCATTAGTCACATGAACACAATGT
AATGACTTGTGCAGAGGCTCTTTTTACTCAAAGCATATAATAAAACAGAAATAACTTTATTGTCATTATG
GAAAAAAAAATGGAGG
Downstream Sequence
GTAAGACTCCCTTCCAACTTATGTTGATTACTAGATGATTCTGCTCCTTGGGAATTGACA
TTTATTGTTTAACACAGTATGTTGCCAAGATGAAAGCAAAGGCCGATGACTTCTTTGGAG
CAAAGAAGACAATCTTTGCAACTCAACTCGGTGCAGTTCTTACCACGGTAAGAACAAATG
AGATTAAAAGAAAGAAATGATGGTAATAGAAAACTTCTTAGTTCTTTGCAGATTGATCAT
CCGGCCTTGGCAATAACAGGAGTCAACCACGAGCAGGAACTAAGCAGCGTTGTGCTCGAT
ATCGGGATCATATCGGTCTGGTACTTCCTCGTAATGCCAGTAAGTTTGAGACAGAGACAT
TGTAGTGTTACCAAAGATTTAAATGATAAATGTTAATGGGCTTATATACTATGATTGTTT
AGCCAATCATCATGAACTGGCTGAGAGTAAGATGGTACAGAAGGAAGTTCTTCGAAATGT
ATTTGCAGTTCATGTTCGTCTTCATGTTCTTTCCTGGGTAAGTTTCACTAAATTCGCACT
GGTGATGCTTAATGTCTCTAGTCCTTATTATATAACCTTGCAGGCTACTGTTATGGGCAC
CATTTCTCAACTTCAGAAAGTTCCCAAGAGATCCATCTATGAAGCATCCTTGGGACAAAC
CAAAAGACCCTTCCACTATCAAGAACGGTTACCTCAAGTATCCATTTGCAAAGCCAGAAG
ACTACGACTATTAAGATTCTTGTGACTGTATATACACTCATTAGTCACATGAACACAATG
TAATGACTTGTGCAGAGGCTCTTTTTACTCAAAGCATATAATAAAACAGAAATAACTTTA
TTGTCATTATGGAAAAAAAAATGGAGGAAGAAACAAATTATCTTTTGACTCAAGTTTAAA
CAGTCTTAAAGTCTCTAATCAAAGTTAACCTCTTGTTATCATCCTCAGGTTGTTGTTTTG
TTTCTCTGGTTTCTTAATTCGTCAAAGCTGTAATGATTGGATTATAGTATTGGTGCAGCT
CCAATGAGTCCACCAGGCTCTTCAGCTCGCACGTCGCCTCAGGGTTGGAAGACAGAAAAG
CTGTGGCAGCTGCTAAAACCACAACAGTAATGGCTGTTCCTTTGAGGCAGCCACTTCCAC
GGGAGAGTCTCCCTGATATCACTTTGCAGGACTTGTCAGCTTCTTTGTATAGAGAACCAT
TGCCTTTTCCTTCAGTGATTGCTTCCTCGTTCTAAAAACATCAAAGGCAAGGTCAGAGCT
GATATTACGTACAAATGGAAGGTGACATTAGCTAGAGGCATTATTACCTTAAGCCTGAAG
CTCTTCATGAAGCCAATATTAACATCCCTAAGTAATGAACACCATGAAGTCGTATCTTTT
AGTGCAAGACATTACCCACAACACTTATAATTAGTAGGAGTACACACAACTAATAATAAT
TGTTTCGCTTTCCTCTACAGACCTTTCTTGGGTCTGGCTTTGAGTTGATTTTTGTTACGT
AATGAGTCGATCTTCATAGCTAGTGATTTGTCAATGGCTTTAAGTATATGCAGCTTCCAG
TCGTGGGGACACGAAACAATTATGTTAATTTGGTTCGAGCGTAATGAGAGAGTCAACTAA
CATATGCACCCAAGGAAATTTAATTTGACTGATAGCCAGATAATAGAGGAAGTGATACAT
TTGATTAGAAAACAAACTACAACACAGTATCGATGGATCAAAATCAAATTCACCACATAA
GCGCAATCCGGTTTGAGAACATTTTAAATAGCGTTTAATCACGGAAAATAAGTTTAGATC
ATACAAGTTGCTTGAAGTAACTAAAATGAATCCAATAAAGAGCTGAAAAGACATGTTGCT
GATGAATCTTGAGAGTGGAGGAAGAAATTAACCTTTGGGAAGAAAGATTATTTAGTCAAC
TGGTTATTGACGTGGCAAGAACTAGTTTTTTGTTTGCTGACGTGTTTCACTGTTATTGGA
TGAAATATTTCTGTCTACGT
Pro Sequence
MSRCCSLGLCAPNPLYSLSSRPRTRSVRAPLCITSHTKPNSNTDSLPHYV
AKMKAKADDFFGAKKTIFATQLGAVLTTIDHPALAITGVNHEQELSSVVL
DIGIISVWYFLVMPPIIMNWLRVRWYRRKFFEMYLQFMFVFMFFPGLLLW
APFLNFRKFPRDPSMKHPWDKPKDPSTIKNGYLKYPFAKPEDYDY
mRNA Sequence
TGACTCTATGCCATTAGAACCAATCCCAAGAGATAAGGAAACTTCACAAGACAGAACACATAGAGATGAG
CCGTTGCTGCTCTCTTGGGCTCTGTGCCCCTAATCCTTTGTACTCTCTATCTTCCAGGCCTCGCACTCGC
AGCGTCAGAGCTCCTCTCTGTATTACATCTCACACCAAACCCAACTCTAACACCGACTCTCTTCCTCATT
ATGTTGCCAAGATGAAAGCAAAGGCCGATGACTTCTTTGGAGCAAAGAAGACAATCTTTGCAACTCAACT
CGGTGCAGTTCTTACCACGATTGATCATCCGGCCTTGGCAATAACAGGAGTCAACCACGAGCAGGAACTA
AGCAGCGTTGTGCTCGATATCGGGATCATATCGGTCTGGTACTTCCTCGTAATGCCACCAATCATCATGA
ACTGGCTGAGAGTAAGATGGTACAGAAGGAAGTTCTTCGAAATGTATTTGCAGTTCATGTTCGTCTTCAT
GTTCTTTCCTGGGCTACTGTTATGGGCACCATTTCTCAACTTCAGAAAGTTCCCAAGAGATCCATCTATG
AAGCATCCTTGGGACAAACCAAAAGACCCTTCCACTATCAAGAACGGTTACCTCAAGTATCCATTTGCAA
AGCCAGAAGACTACGACTATTAAGATTCTTGTGACTGTATATACACTCATTAGTCACATGAACACAATGT
AATGACTTGTGCAGAGGCTCTTTTTACTCAAAGCATATAATAAAACAGAAATAACTTTATTGTCATTATG
GAAAAAAAAATGGAGG