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Detail for ZS11_A02G21220.t1

Genome:
ZS11: ZS11_A02G21220.t1
ZS11_v0: BnaA02T0190600ZS
WE: WE_C02G33220.t1
WE_v0: BnaC02T0242800WE
Darmor: C02p28170.1_BnaDAR
BH: BnaA02T212700BH
Quinta: BnaA02T0187900QU
ZS2: BnaC02T248900ZS2
SW: BnaA02T214600SW
Express61: C02p024840.1_BnaEXP
Xiaoyun: BnaA02G0185200XY
P202: BnaA02G014010P202.1
BL: BnaA02T212700BH
TA: BnaC02T251800TA
Da-Ae: Not available
RB: BnaC02T107500RB
No2127: BnaC02T0205300NO
P130: BnaC02G027290P130.1
Length: 192
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: XP_009127826.1
NR E-value: 5.300000e-107
NR Score: 392.1
NR Annotation: XP_009127826.1 PREDICTED: NAD(P)H-quinone oxidoreductase subunit L, chloroplastic-like [Brassica rapa]
SwissProt Protein: Q9CAC5|NDHL_ARATH
SwissProt E-value: 9.590000e-115
SwissProt Score: 327.0
SwissProt Annotation: NAD(P)H-quinone oxidoreductase subunit L, chloroplastic OS=Arabidopsis thaliana OX=3702 GN=ndhL PE=2 SV=1
CDS Sequence (587 bp)
ATGAGCCGTTGCTGCTCTCTTGGGCTCTGTGCCCCGAATGCGTTGTCTCTTTCTTCAAGCCCTCGCAGTG
TCAAAGCTCCTCTCTGTATTACATCTCACACCAAACCCATCTCTAACACCGATTCTCTTCTTCATAATAT
TGCCAAGATGAGAGCAAAGGCTGGTGACTTCTTTGGAGCAAAGAAGACAATCTTTGCAGCTCAACTCGGG
ACAGTTCTCGCCACGATTGATCACCCGGCCTTGGCAATAACTGGAGTCAACCACGAGCAGGAACTGAGCA
GCGTGGTGCTCGATATCGGTATCATATCGGTCTGGTACTTCCTAGTAATGCCACCAATTATCATGAACTG
GCTGAGAGTAAGATGGTACAGAAGGAAGTTCTTCGAGATGTATCTACAGTTCATGTGCGTCTTCATGTTC
TTCCCCGGGCTACTTCTATGGGCACCATTTCTCAACTTCAGAAAGTTCCCAAGAGATCCGTCTATGAAGT
ATCCTTGGGACAAACCAAAAGACCCTTCCACTATCAAGAACGGTTACCTTAAGTACCCATTTGCTCAGCC
AGAAGATTATGACTACTAA
Upstream Sequence
GGCTGCTTGAAGCTAAATACTCCCTCTGCCACTAGAACCAATCTCAAGAGATAAGGAAAATAAAACTTCA
CAAGACAACACAGAGAGAGAGATGAGCCGTTGCTGCTCTCTTGGGCTCTGTGCCCCGAATGCGTTGTCTC
TTTCTTCAAGCCCTCGCAGTGTCAAAGCTCCTCTCTGTATTACATCTCACACCAAACCCATCTCTAACAC
CGATTCTCTTCTTCATAATATTGCCAAGATGAGAGCAAAGGCTGGTGACTTCTTTGGAGCAAAGAAGACA
ATCTTTGCAGCTCAACTCGGGACAGTTCTCGCCACGATTGATCACCCGGCCTTGGCAATAACTGGAGTCA
ACCACGAGCAGGAACTGAGCAGCGTGGTGCTCGATATCGGTATCATATCGGTCTGGTACTTCCTAGTAAT
GCCACCAATTATCATGAACTGGCTGAGAGTAAGATGGTACAGAAGGAAGTTCTTCGAGATGTATCTACAG
TTCATGTGCGTCTTCATGTTCTTCCCCGGGCTACTTCTATGGGCACCATTTCTCAACTTCAGAAAGTTCC
CAAGAGATCCGTCTATGAAGTATCCTTGGGACAAACCAAAAGACCCTTCCACTATCAAGAACGGTTACCT
TAAGTACCCATTTGCTCAGCCAGAAGATTATGACTACTAAAATCTTGATTTACAGAAAGTTTGTTATATA
TCTTGTGACTGTATATACTCTTCTTATACTCAGGC
Downstream Sequence
GTAAGACTCCCCTTCTAACTTGTGATGATTAGAGCCATCTCTGATAACTTGGGTTTGACT
TTTATTATTTACCACAGAATATTGCCAAGATGAGAGCAAAGGCTGGTGACTTCTTTGGAG
CAAAGAAGACAATCTTTGCAGCTCAACTCGGGACAGTTCTCGCCACGGTAAAGAAACATA
TAAGACCTCATCTACCATTGAAAAATATGAGAGAAAAGAGCAGTACTAAAAAAAACTTTA
GTTTTGCAGATTGATCACCCGGCCTTGGCAATAACTGGAGTCAACCACGAGCAGGAACTG
AGCAGCGTGGTGCTCGATATCGGTATCATATCGGTCTGGTACTTCCTAGTAATGCCAGTA
AGTATGGTGCAAACCATTGTAGCATTTTCAAAGACTTGCATGTTTCCTGATCGATATTAC
TTCAAAATTGTGTTATTAGCCAATTATCATGAACTGGCTGAGAGTAAGATGGTACAGAAG
GAAGTTCTTCGAGATGTATCTACAGTTCATGTGCGTCTTCATGTTCTTCCCCGGGTAAGT
ATAGTATCCACCATACACACCACATTATTCGCCTGGATGCTTGCTCTCTCTCTCTGGTTA
TTACCAAAGTTTTATAACTTTGCAGGCTACTTCTATGGGCACCATTTCTCAACTTCAGAA
AGTTCCCAAGAGATCCGTCTATGAAGTATCCTTGGGACAAACCAAAAGACCCTTCCACTA
TCAAGAACGGTTACCTTAAGTACCCATTTGCTCAGCCAGAAGATTATGACTACTAAAATC
TTGATTTACAGAAAGTTTGTTATATATCTTGTGACTGTATATACTCTTCTTATACTCAGG
CTTAAGGCTCTATGTTCAATATAATCATATGACTATTAAACTCAAAACATATAATAAACA
GAAATAACTTTATTCTCATTGTCAAATTTCTTTCAAAACTTTGTATCTTTGGGAGTAAAA
GGCTTTTAACTTTCAAGTAAATTCTCTACACGGACGATAACTTATCGTCCTCAGGTTGTT
TTCGTCTCTCTTCTCTCAGTTCTTTAAAGCTGTGATGATTGGATTATAGTATTGGTGCAG
CTCCAATGAGTCCACCAGGTTCTTCAGCTCGGTTGTAACCTCAGGGTTGGATGATAGAAC
AGCTGCTGCAGCAGCTAGAACCACAACAGTAATGGCTGTTCCTTTGAGGCAGCCACTTCC
ACGGGAGAGTCTCCCTGATATCACTTTGCATGACTTGTCAGCTTCTTTGTAGAGAGAAAC
ATTGGCTCTTCCTTCAGTGATGGCTTCCTCGTTCTAGAAACATCACAGGAAAGTTTAGAG
ATGAGTTCAGAGTGAAATTAGTTAGTTTAATAGAGTAAGAGGCGTTACCTTTAGCCTGAA
GCTCTTCATAGTTCGGTTAAGAGTGGCGGTATCACTCGGTGATGATGATAGCTTAACAGA
ATGGTCCTTCCATTCATCAACAAGCCTTTTGAGAACAGCAACACTAGCTTCAAGATTCTC
CTTGTAGAGATTGTCCCAGTGCTTGCAGCAATCCACGTTTTCGGTCACGGCCCATATAGC
GATTGCTGTAGCTTCCTTGGCTAGAACAGGGTTTCCTGTAACAACGGAAACACATTACAA
CTCTATTGGGAGAAGAGAGTCAAGGATTAAAGTAGGTGAGCACATTTATCGGGAACCAAA
ATTTTATTCAAAATTATAAACCGAATTACCAAAATACTTTTTATCCAAAATATtTTAAAT
TATCCAAATTATTCAAAATTTTATCCGAAAGCccgaaaaaTCTGATCTTTAATCCGAAAA
ACCCGGATTTTCTAAGTTTTTAACCCGAATTAACCAAAAAATTGGAACCAAACCGCAACC
AAATAGGATATGAAACCGGTTCCTAACTTTGTTACCTGAACTGAACCGAAAAAGGAAAAG
ACCGAACCACAAGCGAACAAATTTTCTATATATTGGAGCGGATCCTAAACCTCTAAAACC
AAAAAAACTGAAGAACCTAA
Pro Sequence
MSRCCSLGLCAPNALSLSSSPRSVKAPLCITSHTKPISNTDSLLHNIAKM
RAKAGDFFGAKKTIFAAQLGTVLATIDHPALAITGVNHEQELSSVVLDIG
IISVWYFLVMPPIIMNWLRVRWYRRKFFEMYLQFMCVFMFFPGLLLWAPF
LNFRKFPRDPSMKYPWDKPKDPSTIKNGYLKYPFAQPEDYDY
mRNA Sequence
GGCTGCTTGAAGCTAAATACTCCCTCTGCCACTAGAACCAATCTCAAGAGATAAGGAAAATAAAACTTCA
CAAGACAACACAGAGAGAGAGATGAGCCGTTGCTGCTCTCTTGGGCTCTGTGCCCCGAATGCGTTGTCTC
TTTCTTCAAGCCCTCGCAGTGTCAAAGCTCCTCTCTGTATTACATCTCACACCAAACCCATCTCTAACAC
CGATTCTCTTCTTCATAATATTGCCAAGATGAGAGCAAAGGCTGGTGACTTCTTTGGAGCAAAGAAGACA
ATCTTTGCAGCTCAACTCGGGACAGTTCTCGCCACGATTGATCACCCGGCCTTGGCAATAACTGGAGTCA
ACCACGAGCAGGAACTGAGCAGCGTGGTGCTCGATATCGGTATCATATCGGTCTGGTACTTCCTAGTAAT
GCCACCAATTATCATGAACTGGCTGAGAGTAAGATGGTACAGAAGGAAGTTCTTCGAGATGTATCTACAG
TTCATGTGCGTCTTCATGTTCTTCCCCGGGCTACTTCTATGGGCACCATTTCTCAACTTCAGAAAGTTCC
CAAGAGATCCGTCTATGAAGTATCCTTGGGACAAACCAAAAGACCCTTCCACTATCAAGAACGGTTACCT
TAAGTACCCATTTGCTCAGCCAGAAGATTATGACTACTAAAATCTTGATTTACAGAAAGTTTGTTATATA
TCTTGTGACTGTATATACTCTTCTTATACTCAGGC