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DETAIL

Detail for ZS11_C09G32990.t1

Genome:
ZS11: ZS11_C09G32990.t1
ZS11_v0: BnaC09T0273000ZS
WE: WE_C09G34260.t1
WE_v0: BnaC09T0251900WE
Darmor: C09p32660.1_BnaDAR
BH: BnaC09T140100BH
Quinta: BnaC09T0259100QU
ZS2: BnaC09T267400ZS2
SW: BnaA09T276100SW
Express61: C09p025740.1_BnaEXP
Xiaoyun: BnaC09G0279800XY
P202: BnaC09G049610P202.1
BL: BnaC09T140100BH
TA: BnaA09T227500TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g11580D
RB: BnaC09T137000RB
No2127: BnaC09T0232400NO
P130: BnaC09G030230P130.1
Length: 579
KOG ID: KOG2495
KOG E-value: Not available
KOG Score: 1096.0
KOG Annotation: Energy production and conversion
Biological Process: GO:0006116(NADH oxidation)
Cellular Component: -
Molecular Function: GO:0016491(oxidoreductase activity),GO:0003954(NADH dehydrogenase activity),GO:0005509(calcium ion binding)
KEGG Ortholog: K17871 ndh1; NADH:ubiquinone reductase (non-electrogenic) [EC:1.6.5.9]
NR Protein: XP_013612145.1
NR E-value: Not available
NR Score: 1156.7
NR Annotation: XP_013612145.1 PREDICTED: external alternative NAD(P)H-ubiquinone oxidoreductase B2, mitochondrial [Brassica oleracea var. oleracea]
SwissProt Protein: Q94BV7|NDB2_ARATH
SwissProt E-value: Not available
SwissProt Score: 1089.0
SwissProt Annotation: External alternative NAD(P)H-ubiquinone oxidoreductase B2, mitochondrial OS=Arabidopsis thaliana OX=3702 GN=NDB2 PE=1 SV=1
CDS Sequence (1764 bp)
ATGAGGAGGAGTTTCAGTTTCTTCGAGCGATTCTCGAAAGCTTTCCAAGACTATCCTTCCCTCTCCCGGA
TCATCGTCGTCTCCACGATCAGTGGTGGTGGACTCATAGCCTACTCCGAGGCAAATGGAACAAACGCTGT
TGTTGAAACTGGAACCAGGAAGAAGAAGGTGGTGCTGCTCGGAACTGGATGGGCTGGCACTAGTTTCTTG
AAGAATTTGAATAACTCTCAGTATGAGGTTCAGATTATATCGCCTCGAAACTACTTTGCTTTCACTCCCT
TGCTGCCTAGCGTTACTTGTGGCACTGTTGAAGCTCGCAGCGTTGTTGAGCCTATTCGAAACATTGGCAG
AAAGAAGAACGTTGATACGTCTTACCTAGAGGCTGAATGTTTCAAGATTGATCCAGCAAGCAAGAAAGTG
TTCTGCCGATCCAAACAAGGCGTTAGCAGTGGGAAGAAAGAAGAATTTTCTGTTGACTATGACTACCTTG
TAATTGCTACTGGAGCTCAGTCTAACACTTTTAACATACCTGGAGTGGAGGAGAACTGTCATTTTCTGAA
AGAGGTTGAAGATGCTCAAGGAATCCGTAAAAAGGTGATTGATTCCTTTGAGAAGGCAAGTCTACCTGAA
CTAAGCGAAGAAGAGAGGAAGAGAATCCTGCATTTTGTGGTTGTTGGTGGTGGGCCAACTGGTGTTGAGT
TTGCCGCGGAGCTGCATGATTTTGTTAGAGAGGATTTAGTCACACTCTATCCTAAAGCCAAAGATTTAGT
GCGAATCACGCTTCTGGAAGCCGCGGACCACATCCTAACCATGTTTGACAAGAGAATCACTGAGTTTGCG
GAAGAAAAGTTTAGCAGAGATGGTATTGATGTGAAACTGGGCTCCATGGTGACCAAAGTGAATGAGAAGG
ACATATCTGCTAAAACCAAAGGAGGAGGGGTTTCCTCAATTCCTTATGGAATGATTGTCTGGTCAACTGG
TATTGGAACTCGTCCTGTAATCAAAGATTTTATGAAACAAATTGGTCAGGGTAACAGACGTGCTCTGGCC
ACTGATGAATGGCTTCGCGTGGAAGGGTGTGATAACATATATGCCCTTGGTGATTGCGCAACAATTAACC
AGCGTAAAGTCATGGAAGATGTTTCTGCAATTTTTAGCAAAGCAGATAAAGACAATTCCGGGACGCTGAC
TCTGAAAGAGTTTCAAGAGGCAATGGATGACATTTGTGTTAGATACCCTCAAGTTGAGCTCTACTTGAAG
AGTAAACGCATGCGTGGCATTGCGGATCTTCTAAAAGAAGCCGAAGCTGATGATGGATCCAAGAAGAACG
TCGAACTGAAAATCGAAGAGTTCAAATCGGCTCTTTCTCAGGTTGATTCAGAAGTGAAGTTTCTTCCAGC
AACAGCACAGGTTGCTGCGCAGCAAGGCACATACCTTGCAAAATGCTTTGATCGTATGGAAGAGTGTGAG
AAGAATCCAGAAGGTCCCATTAGGATGAGAGGAGAAGGTCGTCACCGTTTCCGCCCCTTCAGGTATAGGC
ATTTGGGATCATTTGCACCATTGGGAGGGGAACAAACGGCGGCAGAACTTCCAGGAGATTGGGTTTCTAT
TGGACACAGCAGCCAGTGGCTCTGGTATTCCGTCTACGCCAGTAAGCAAGTGAGCTGGCGCACGAGAGTC
CTTGTGGTTTCTGATTGGATGAGGCGTTTCATCTTTGGTAGAGACTCGAGTAGCATCTGA
Upstream Sequence
TACTTGCTCCACCGTCACAATCGTCTGGGGCCTCTCTCTCTCTTCTAGATCCCTTTACTTTTCTCTCTTA
AAGCAAAACCGTTTTCCTCTGATATTTTTTCTTTTTCCAGGATTCCTGGCGTGAGCGAAATACTTTTCGA
TCTGAATCTGACAAGAGAAAATGAGGAGGAGTTTCAGTTTCTTCGAGCGATTCTCGAAAGCTTTCCAAGA
CTATCCTTCCCTCTCCCGGATCATCGTCGTCTCCACGATCAGTGGTGGTGGACTCATAGCCTACTCCGAG
GCAAATGGAACAAACGCTGTTGTTGAAACTGGAACCAGGAAGAAGAAGGTGGTGCTGCTCGGAACTGGAT
GGGCTGGCACTAGTTTCTTGAAGAATTTGAATAACTCTCAGTATGAGGTTCAGATTATATCGCCTCGAAA
CTACTTTGCTTTCACTCCCTTGCTGCCTAGCGTTACTTGTGGCACTGTTGAAGCTCGCAGCGTTGTTGAG
CCTATTCGAAACATTGGCAGAAAGAAGAACGTTGATACGTCTTACCTAGAGGCTGAATGTTTCAAGATTG
ATCCAGCAAGCAAGAAAGTGTTCTGCCGATCCAAACAAGGCGTTAGCAGTGGGAAGAAAGAAGAATTTTC
TGTTGACTATGACTACCTTGTAATTGCTACTGGAGCTCAGTCTAACACTTTTAACATACCTGGAGTGGAG
GAGAACTGTCATTTTCTGAAAGAGGTTGAAGATGCTCAAGGAATCCGTAAAAAGGTGATTGATTCCTTTG
AGAAGGCAAGTCTACCTGAACTAAGCGAAGAAGAGAGGAAGAGAATCCTGCATTTTGTGGTTGTTGGTGG
TGGGCCAACTGGTGTTGAGTTTGCCGCGGAGCTGCATGATTTTGTTAGAGAGGATTTAGTCACACTCTAT
CCTAAAGCCAAAGATTTAGTGCGAATCACGCTTCTGGAAGCCGCGGACCACATCCTAACCATGTTTGACA
AGAGAATCACTGAGTTTGCGGAAGAAAAGTTTAGCAGAGATGGTATTGATGTGAAACTGGGCTCCATGGT
GACCAAAGTGAATGAGAAGGACATATCTGCTAAAACCAAAGGAGGAGGGGTTTCCTCAATTCCTTATGGA
ATGATTGTCTGGTCAACTGGTATTGGAACTCGTCCTGTAATCAAAGATTTTATGAAACAAATTGGTCAGG
GTAACAGACGTGCTCTGGCCACTGATGAATGGCTTCGCGTGGAAGGGTGTGATAACATATATGCCCTTGG
TGATTGCGCAACAATTAACCAGCGTAAAGTCATGGAAGATGTTTCTGCAATTTTTAGCAAAGCAGATAAA
GACAATTCCGGGACGCTGACTCTGAAAGAGTTTCAAGAGGCAATGGATGACATTTGTGTTAGATACCCTC
AAGTTGAGCTCTACTTGAAGAGTAAACGCATGCGTGGCATTGCGGATCTTCTAAAAGAAGCCGAAGCTGA
TGATGGATCCAAGAAGAACGTCGAACTGAAAATCGAAGAGTTCAAATCGGCTCTTTCTCAGGTTGATTCA
GAAGTGAAGTTTCTTCCAGCAACAGCACAGGTTGCTGCGCAGCAAGGCACATACCTTGCAAAATGCTTTG
ATCGTATGGAAGAGTGTGAGAAGAATCCAGAAGGTCCCATTAGGATGAGAGGAGAAGGTCGTCACCGTTT
CCGCCCCTTCAGGTATAGGCATTTGGGATCATTTGCACCATTGGGAGGGGAACAAACGGCGGCAGAACTT
CCAGGAGATTGGGTTTCTATTGGACACAGCAGCCAGTGGCTCTGGTATTCCGTCTACGCCAGTAAGCAAG
TGAGCTGGCGCACGAGAGTCCTTGTGGTTTCTGATTGGATGAGGCGTTTCATCTTTGGTAGAGACTCGAG
TAGCATCTGAGTATAACATCACCAAAAGGTCTAAAACTATCTACACACTCTGTCTCCCCCCCTTTATGCT
GCCAACCAGCTTACACTTTTAACTTCTCTTTCTCATGTGAAAAGAAAGTTTTGATTTTTGTTGTTTTTCA
TTTCGGCTTTACATTTGTAATAAAATAATCACTACAAAGATTGCGAGGAGATTTGCTTCGTTCATTGGTC
GTACTGAGAGTTTGCGCTATGTCTTTTTAAAAATATATTTTCCATTGCGG
Downstream Sequence
GGTCATCCTCTACGAGCCGTACCTTCATATGTTCCATTTATATGTTTATCTGCTCTTGTT
TCCATGTACAAACCTTGCGATCTCTCGAATCTCTGTGTACCACGTATGATCGTTTGATTT
ATCAGTTTCTAAACTTGTTCCAGCTTTGATTTTAAGCAACTCTGACGTAGTACATACGCT
GATTCTCCAGATGATAAAACTAGTGAACAGATTCTCTATGTTGTATGATTCGCGCAACTC
GATATAACGTTTCTCGAATCATACGTTACATTTTCTTGGCAATTTCGATTTACTTATGCG
AATTTCGATCTTGGATCTCTCCAGATCTCTGATTTTGTTTCTGTGTTAAGCTTTCGTTGG
CTTGTTTGTGATCTCTCTCTGTGTATAACGCAACGATTTGATTCAAATTAGAGTTTACTG
ATGGTTTATACTGTACGATTGTTGTAGTGGTGGTGGACTCATAGCCTACTCCGAGGCAAA
TGGAACAAACGCTGTTGTTGAAACTGGAACCAGGAAGAAGAAGGTGGTGCTGCTCGGAAC
TGGATGGGCTGGCACTAGTTTCTTGAAGAATTTGAATAACTCTCAGTATGAGGTTCAGAT
TATATCGCCTCGAAACTACTTTGCTTTCACTCCCTTGCTGCCTAGCGTTACTTGTGGCAC
TGTTGAAGCTCGCAGCGTTGTTGAGCCTATTCGAAACATTGGCAGAAAGGTATTTGTTTC
TCTAGTAATGTCTCTCTTTTTCCCTTCTCTGCTTGCTACAGTGCTTTGAAAAGTATTATC
TTGATTAGACTCAATGTTTTTTGTTGTAGTTTATGTATTGGCCCATTAGTATGAGACTAT
GAGGCTTTTTTTGCTTCTTAATTTCACTAGTTTTTGATGAAAAATTGCTGATATGTGCTT
GTTTTCTTTTCTTGGTAAGCAGAAGAACGTTGATACGTCTTACCTAGAGGCTGAATGTTT
CAAGATTGATCCAGCAAGCAAGAAAGTGTTCTGCCGATCCAAACAAGGCGTTAGCAGTGG
GAAGAAAGAAGAATTTTCTGTTGACTATGACTACCTTGTAATTGCTACTGGAGCTCAGTC
TAACACTTTTAACATACCTGGAGTGGAGGAGAACTGTCATTTTCTGAAAGTAAGTCATCT
CGGCTCGTATTTATTTTTGCCTCCCCTTAGTATGTTGTTCTGTAAGCAGTGGTAATTTTT
ACAGGTCAGAAGCATACGGAAGTATATAACTACTGATTATTTGTATGGATGTTAAATTTC
TGAGCCTTTTTATTTGTTTCAATGTATGCTTGTAGGAGGTTGAAGATGCTCAAGGAATCC
GTAAAAAGGTGATTGATTCCTTTGAGAAGGCAAGTCTACCTGAACTAAGCGAAGAAGAGA
GGAAGAGAATCCTGCATTTTGTGGTTGTTGGTGGTGGGCCAACTGGTGTTGAGTTTGCCG
CGGAGCTGCATGATTTTGTTAGAGAGGATTTAGTCACACTCTATCCTAAAGCCAAAGATT
TAGTGCGAATCACGCTTCTGGAAGCCGCGGACCACATCCTAACCATGTGAAATTTCTTGC
CTCTTAAACTTCTATTTCATGTTCAATCTATATGTTTCATTGTTTCCATAAAAAACCCTT
GTATAGTGATTCATGGGTTGCTTTTCTTTCACAGGTTTGACAAGAGAATCACTGAGTTTG
CGGAAGAAAAGTTTAGCAGAGATGGTATTGATGTGAAACTGGGCTCCATGGTGACCAAAG
TGAATGAGAAGGACATATCTGCTAAAACCAAAGGAGGAGGGGTTTCCTCAATTCCTTATG
GAATGATTGTCTGGTCAACTGGTATTGGAACTCGTCCTGTAATCAAAGATTTTATGAAAC
AAATTGGTCAGGTAAAGTAATGTACTTAATTAAACTCACGCACTACAATCTTCAACGTTT
TCTAGGGAACACGTTTATGAAATTGTCTTTGCAATTGCAGGGTAACAGACGTGCTCTGGC
CACTGATGAATGGCTTCGCG
Pro Sequence
MRRSFSFFERFSKAFQDYPSLSRIIVVSTISGGGLIAYSEANGTNAVVET
GTRKKKVVLLGTGWAGTSFLKNLNNSQYEVQIISPRNYFAFTPLLPSVTC
GTVEARSVVEPIRNIGRKKNVDTSYLEAECFKIDPASKKVFCRSKQGVSS
GKKEEFSVDYDYLVIATGAQSNTFNIPGVEENCHFLKEVEDAQGIRKKVI
DSFEKASLPELSEEERKRILHFVVVGGGPTGVEFAAELHDFVREDLVTLY
PKAKDLVRITLLEAADHILTMFDKRITEFAEEKFSRDGIDVKLGSMVTKV
NEKDISAKTKGGGVSSIPYGMIVWSTGIGTRPVIKDFMKQIGQGNRRALA
TDEWLRVEGCDNIYALGDCATINQRKVMEDVSAIFSKADKDNSGTLTLKE
FQEAMDDICVRYPQVELYLKSKRMRGIADLLKEAEADDGSKKNVELKIEE
FKSALSQVDSEVKFLPATAQVAAQQGTYLAKCFDRMEECEKNPEGPIRMR
GEGRHRFRPFRYRHLGSFAPLGGEQTAAELPGDWVSIGHSSQWLWYSVYA
SKQVSWRTRVLVVSDWMRRFIFGRDSSSI
mRNA Sequence
TACTTGCTCCACCGTCACAATCGTCTGGGGCCTCTCTCTCTCTTCTAGATCCCTTTACTTTTCTCTCTTA
AAGCAAAACCGTTTTCCTCTGATATTTTTTCTTTTTCCAGGATTCCTGGCGTGAGCGAAATACTTTTCGA
TCTGAATCTGACAAGAGAAAATGAGGAGGAGTTTCAGTTTCTTCGAGCGATTCTCGAAAGCTTTCCAAGA
CTATCCTTCCCTCTCCCGGATCATCGTCGTCTCCACGATCAGTGGTGGTGGACTCATAGCCTACTCCGAG
GCAAATGGAACAAACGCTGTTGTTGAAACTGGAACCAGGAAGAAGAAGGTGGTGCTGCTCGGAACTGGAT
GGGCTGGCACTAGTTTCTTGAAGAATTTGAATAACTCTCAGTATGAGGTTCAGATTATATCGCCTCGAAA
CTACTTTGCTTTCACTCCCTTGCTGCCTAGCGTTACTTGTGGCACTGTTGAAGCTCGCAGCGTTGTTGAG
CCTATTCGAAACATTGGCAGAAAGAAGAACGTTGATACGTCTTACCTAGAGGCTGAATGTTTCAAGATTG
ATCCAGCAAGCAAGAAAGTGTTCTGCCGATCCAAACAAGGCGTTAGCAGTGGGAAGAAAGAAGAATTTTC
TGTTGACTATGACTACCTTGTAATTGCTACTGGAGCTCAGTCTAACACTTTTAACATACCTGGAGTGGAG
GAGAACTGTCATTTTCTGAAAGAGGTTGAAGATGCTCAAGGAATCCGTAAAAAGGTGATTGATTCCTTTG
AGAAGGCAAGTCTACCTGAACTAAGCGAAGAAGAGAGGAAGAGAATCCTGCATTTTGTGGTTGTTGGTGG
TGGGCCAACTGGTGTTGAGTTTGCCGCGGAGCTGCATGATTTTGTTAGAGAGGATTTAGTCACACTCTAT
CCTAAAGCCAAAGATTTAGTGCGAATCACGCTTCTGGAAGCCGCGGACCACATCCTAACCATGTTTGACA
AGAGAATCACTGAGTTTGCGGAAGAAAAGTTTAGCAGAGATGGTATTGATGTGAAACTGGGCTCCATGGT
GACCAAAGTGAATGAGAAGGACATATCTGCTAAAACCAAAGGAGGAGGGGTTTCCTCAATTCCTTATGGA
ATGATTGTCTGGTCAACTGGTATTGGAACTCGTCCTGTAATCAAAGATTTTATGAAACAAATTGGTCAGG
GTAACAGACGTGCTCTGGCCACTGATGAATGGCTTCGCGTGGAAGGGTGTGATAACATATATGCCCTTGG
TGATTGCGCAACAATTAACCAGCGTAAAGTCATGGAAGATGTTTCTGCAATTTTTAGCAAAGCAGATAAA
GACAATTCCGGGACGCTGACTCTGAAAGAGTTTCAAGAGGCAATGGATGACATTTGTGTTAGATACCCTC
AAGTTGAGCTCTACTTGAAGAGTAAACGCATGCGTGGCATTGCGGATCTTCTAAAAGAAGCCGAAGCTGA
TGATGGATCCAAGAAGAACGTCGAACTGAAAATCGAAGAGTTCAAATCGGCTCTTTCTCAGGTTGATTCA
GAAGTGAAGTTTCTTCCAGCAACAGCACAGGTTGCTGCGCAGCAAGGCACATACCTTGCAAAATGCTTTG
ATCGTATGGAAGAGTGTGAGAAGAATCCAGAAGGTCCCATTAGGATGAGAGGAGAAGGTCGTCACCGTTT
CCGCCCCTTCAGGTATAGGCATTTGGGATCATTTGCACCATTGGGAGGGGAACAAACGGCGGCAGAACTT
CCAGGAGATTGGGTTTCTATTGGACACAGCAGCCAGTGGCTCTGGTATTCCGTCTACGCCAGTAAGCAAG
TGAGCTGGCGCACGAGAGTCCTTGTGGTTTCTGATTGGATGAGGCGTTTCATCTTTGGTAGAGACTCGAG
TAGCATCTGAGTATAACATCACCAAAAGGTCTAAAACTATCTACACACTCTGTCTCCCCCCCTTTATGCT
GCCAACCAGCTTACACTTTTAACTTCTCTTTCTCATGTGAAAAGAAAGTTTTGATTTTTGTTGTTTTTCA
TTTCGGCTTTACATTTGTAATAAAATAATCACTACAAAGATTGCGAGGAGATTTGCTTCGTTCATTGGTC
GTACTGAGAGTTTGCGCTATGTCTTTTTAAAAATATATTTTCCATTGCGG