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Detail for ZS11_C03G34430.t1

Genome:
ZS11: ZS11_C03G34430.t1
ZS11_v0: BnaC03T0314100ZS
WE: WE_C04G15000.t1
WE_v0: BnaC04T0126400WE
Darmor: C04p14730.1_BnaDAR
BH: BnaC04T131300BH
Quinta: BnaC03T0300800QU
ZS2: BnaC03T674900ZS2
SW: BnaC03T324300SW
Express61: C04p016120.1_BnaEXP
Xiaoyun: BnaA07G0012600XY
P202: BnaC04G009150P202.1
BL: BnaC04T131300BH
TA: BnaC04T130700TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g22890D
RB: BnaC03T336800RB
No2127: BnaC04T0124400NO
P130: BnaC04G013870P130.1
Length: 248
KOG ID: KOG2901
KOG E-value: 4.050000e-45
KOG Score: 158.0
KOG Annotation: Function unknown
Biological Process: GO:1902600(proton transmembrane transport)
Cellular Component: GO:0033179(proton-transporting V-type ATPase, V0 domain)
Molecular Function: GO:0046961(proton-transporting ATPase activity, rotational mechanism)
KEGG Ortholog: K18164 NDUFAF7; NADH dehydrogenase [ubiquinone] 1 alpha subcomplex assembly factor 7
NR Protein: VDD46269.1
NR E-value: 4.200000e-104
NR Score: 382.9
NR Annotation: VDD46269.1 unnamed protein product [Brassica oleracea]
SwissProt Protein: Q8W4S4|VHAA3_ARATH
SwissProt E-value: 1.280000e-34
SwissProt Score: 134.0
SwissProt Annotation: V-type proton ATPase subunit a3 OS=Arabidopsis thaliana OX=3702 GN=VHA-a3 PE=1 SV=1
CDS Sequence (757 bp)
ATGCCGGTGTGTCCAAGATTGGCGTTAGATCCATCACCTGTTACCGCCAGATCCGCCGCCTACGGAGTTT
GGATCTCCCAGATTCCTTTTATCTCAGGTACATCAAAGTTTAGAAATTTGACGGGGTCATTGCATGTACA
CTTGGTGGAGTGCAGTCCCGCGTTGCAGAAATTTCAGCACCAGAGCCTGAAGTGCACAGATGAAAGTAGT
TCGGAGAAGAAAGCTATAAGTTCACTAGCTGGGAAACCTGTGCACTGGCACGCTACTCTTGAAGAGGTAC
CATTAGGAGTACCAACAATAATCATAGCTCATGAGTTCTATGATGCTCTTCCAGTTCATCAGTTACAGCA
GTTCATCTTGAAGAAACAACATGAAGCTATCCAGAAGCAACAAGGTCAGTCTTACGCACCTATTGAGGAG
ACGGATGAGAGTCTTCATGTAGCGACAAGCGGAGGATCACATGGGCACGGGGAGTTTGAATTCAGCGAGA
TCTTTGTGCATCATCTTGCACACTCGGAGATATCGTCAGTCTTCTATGAGACTATGAGAAGGTCGTCCTT
CTCGCTTGGGGTACAACAATGTGTTGATCCTGATCGTTGGGATCATTGTTTTCATATTGTGGGATTGCTG
CTGGTGATAGAGACACTGAGCACGTTCCTTCCCGCACTGCGTCTCCACTTGGTGGAGTTTCAGAACAAAT
TCTACGCTCATTTCTCTTTCGTTCTCACCGGAAACGAAGACGATTGA
Upstream Sequence
ATGCCGGTGTGTCCAAGATTGGCGTTAGATCCATCACCTGTTACCGCCAGATCCGCCGCCTACGGAGTTT
GGATCTCCCAGATTCCTTTTATCTCAGGTACATCAAAGTTTAGAAATTTGACGGGGTCATTGCATGTACA
CTTGGTGGAGTGCAGTCCCGCGTTGCAGAAATTTCAGCACCAGAGCCTGAAGTGCACAGATGAAAGTAGT
TCGGAGAAGAAAGCTATAAGTTCACTAGCTGGGAAACCTGTGCACTGGCACGCTACTCTTGAAGAGGTAC
CATTAGGAGTACCAACAATAATCATAGCTCATGAGTTCTATGATGCTCTTCCAGTTCATCAGTTACAGCA
GTTCATCTTGAAGAAACAACATGAAGCTATCCAGAAGCAACAAGGTCAGTCTTACGCACCTATTGAGGAG
ACGGATGAGAGTCTTCATGTAGCGACAAGCGGAGGATCACATGGGCACGGGGAGTTTGAATTCAGCGAGA
TCTTTGTGCATCATCTTGCACACTCGGAGATATCGTCAGTCTTCTATGAGACTATGAGAAGGTCGTCCTT
CTCGCTTGGGGTACAACAATGTGTTGATCCTGATCGTTGGGATCATTGTTTTCATATTGTGGGATTGCTG
CTGGTGATAGAGACACTGAGCACGTTCCTTCCCGCACTGCGTCTCCACTTGGTGGAGTTTCAGAACAAAT
TCTACGCTCATTTCTCTTTCGTTCTCACCGGAAACGAAGACGATTGA
Downstream Sequence
GTCCCGCGGCCTTAAACGGTGGCTCCGAAACAGAGACCAACTCCGAAACCCTAGCTTCAC
GGATCTGCTCAAGCCTCCAATCGTCGCTTAGGTCTGAGAATCACAAGCTGACGCACTCCC
AAGATGGCGGGGAATAAGCTGGACCGAAGAGAAACAAACGAGAGAGAACCGCCATCCCTC
ACCGTAGATCCGTCGACACCATCTCCGTCCAGCTACGACCTCTGAACTTCATCACTGAAT
CTGAAACGGTACAAGTTATGTGTTTTTCGTGTGGTGTTCCTTATTAATTCAATCTCCATC
AATCATCACTCATTTTCGCCACCCTTAGCATTCAGAAGTATCTTCTGATTAGCCAATTAT
AGCAGTGGATCTCCCAGATTCCTTTTATCTCAGTACGTTCTTATTTGTTTATTCCTACAA
ATCTACTTCTACTTCCTGTGTCCATTTGTTTTCTTGATCTTACGGCTCCTTTGTTAAATT
ATGTCATAAATGATGAATCTTTTTCTTCTTATTGAAGACATCACTAAGCATATATATTTA
CTATATCTTTACCAATGTTAGCACATGTATGTATCTGATCTTATTGTCTTGATTCTGGTA
GTTTATTTGTTTTTTTTAAGCGTTTTCAGCGGTACTCATACCAGCCACCGTGATAACTAT
CTCACTGGTGTCTCTGTTGGGGACTGTCCACGTTTAGGGTACATCAAAGTTTAGAAATTT
GACGGGGTCATTGCATGTACACTTGGTGGAGTGCAGTCCCGCGTTGCAGAAATTTCAGCA
CCAGAGCCTGAAGTGCACAGATGAAAGTAGTTCGGAGAAGAAAGCTATAAGTTCACTAGC
TGGGAAACCTGTGCACTGGCACGCTACTCTTGAAGAGGTACCATTAGGAGGTATGCATGT
TTGTTACATTTACTTATTGAGAATCTCTTATGAGGCTCTTGGCTTAATATAGCAACAGTC
AACGTCGTAAGCAATGAAAAATATGATGATCTGCATCGTTCCTCATTGTATCTATTGTTC
TCTTTTGCTTGCATTGGCAGTACCAACAATAATCATAGCTCATGAGTTCTATGATGCTCT
TCCAGTTCATCAGTTACAGGTTTGTGTGATTTGCAATATAGTCTTCTCATTTTTCCAGCT
TGTGCTTCTCTTTCTGGCTATTTTCTATGTTCTGTGTATGTTGCTTTCAAAGCAGTTCAT
CTTGAAGAAACAACATGAAGCTGTGAGATTCTTTCCCTTTTAGTTCCTATATAATGGTCT
TTCTTTTTCCATTGCTGGTCATTCTAAATGGTTTCCTTATCCAGATCCAGAAGCAACAAG
GTCAGTCTTACGCACCTATTGAGGAGACGGATGAGAGTCTTCATGTAGCGACAAGCGGAG
GATCACATGGGCACGGGGAGTTTGAATTCAGCGAGATCTTTGTGCATCAGTTTTTTCACA
CCATAGAATTTTTTGCTTAGAGCTGTTTCCAACACCTCTTCTTACCTGCGTATATGGGCT
CTCAGGTATCTATCTAATCATGGAGTAGTAGGAAGCTACTATATATATTACTCATGGCTT
AACTATATCAATCATCCTTTGTGTGTATTGCAGTCTTGCACACTCGGAGATATCGTCAGT
CTTCTATGAGACTATGAGAAGGTCGTCCTTCTCGCTTGGGGTATGCGCATCCTCTCATTC
TCTCTCTCTCTCTTAGTCTAACTAATATTAGCAAATCAACTAATCATCTTTGTTTTTTCA
TTAAAATAAACAGGTACAACAATGTGTTGATCCTGATCGTTGGGATCATTGTTTTCATAT
TGTGGGATTGCTGCTGGTGATAGAGACACTGAGCACGTTCCTTCCCGCACTGCGTCTCCA
CTTGGTGGAGTTTCAGAACAAATTCTACGCTCATTTCTCTTTCGTTCTCACCGGAAACGA
AGACGATTGATAGGGATGAATGATTGTTCCATTCCCCTCCCATTCTCTGCAAAATTTGCA
TATATAAAAAAGGAACGAGA
Pro Sequence
MPVCPRLALDPSPVTARSAAYGVWISQIPFISGTSKFRNLTGSLHVHLVE
CSPALQKFQHQSLKCTDESSSEKKAISSLAGKPVHWHATLEEVPLGVPTI
IIAHEFYDALPVHQLQQFILKKQHEAIQKQQGQSYAPIEETDESLHVATS
GGSHGHGEFEFSEIFVHHLAHSEISSVFYETMRRSSFSLGVQQCVDPDRW
DHCFHIVGLLLVIETLSTFLPALRLHLVEFQNKFYAHFSFVLTGNEDD
mRNA Sequence
ATGCCGGTGTGTCCAAGATTGGCGTTAGATCCATCACCTGTTACCGCCAGATCCGCCGCCTACGGAGTTT
GGATCTCCCAGATTCCTTTTATCTCAGGTACATCAAAGTTTAGAAATTTGACGGGGTCATTGCATGTACA
CTTGGTGGAGTGCAGTCCCGCGTTGCAGAAATTTCAGCACCAGAGCCTGAAGTGCACAGATGAAAGTAGT
TCGGAGAAGAAAGCTATAAGTTCACTAGCTGGGAAACCTGTGCACTGGCACGCTACTCTTGAAGAGGTAC
CATTAGGAGTACCAACAATAATCATAGCTCATGAGTTCTATGATGCTCTTCCAGTTCATCAGTTACAGCA
GTTCATCTTGAAGAAACAACATGAAGCTATCCAGAAGCAACAAGGTCAGTCTTACGCACCTATTGAGGAG
ACGGATGAGAGTCTTCATGTAGCGACAAGCGGAGGATCACATGGGCACGGGGAGTTTGAATTCAGCGAGA
TCTTTGTGCATCATCTTGCACACTCGGAGATATCGTCAGTCTTCTATGAGACTATGAGAAGGTCGTCCTT
CTCGCTTGGGGTACAACAATGTGTTGATCCTGATCGTTGGGATCATTGTTTTCATATTGTGGGATTGCTG
CTGGTGATAGAGACACTGAGCACGTTCCTTCCCGCACTGCGTCTCCACTTGGTGGAGTTTCAGAACAAAT
TCTACGCTCATTTCTCTTTCGTTCTCACCGGAAACGAAGACGATTGA