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DETAIL

Detail for ZS11_C07G39800.t1

Genome:
ZS11: ZS11_C07G39800.t1
ZS11_v0: BnaC07T0315200ZS
WE: WE_C07G40610.t1
WE_v0: BnaC07T0307800WE
Darmor: C07p37650.1_BnaDAR
BH: BnaC07T331700BH
Quinta: BnaC07T0294600QU
ZS2: BnaC07T293600ZS2
SW: BnaC07T331500SW
Express61: C07p018380.1_BnaEXP
Xiaoyun: BnaC07G0328900XY
P202: BnaC07G075660P202.2
BL: BnaC07T331700BH
TA: BnaA09T030200TA
Da-Ae: rna-gnl|WGS:JAGKQM|BnaA01g22890D
RB: BnaC07T336700RB
No2127: BnaC07T0298500NO
P130: BnaC07G041440P130.2
Length: 841
KOG ID: KOG2901
KOG E-value: Not available
KOG Score: 845.0
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: VDD38721.1
NR E-value: Not available
NR Score: 1666.7
NR Annotation: VDD38721.1 unnamed protein product [Brassica oleracea]
SwissProt Protein: Q9LJI5|VA0D1_ARATH
SwissProt E-value: Not available
SwissProt Score: 737.0
SwissProt Annotation: V-type proton ATPase subunit d1 OS=Arabidopsis thaliana OX=3702 GN=VHA-d1 PE=2 SV=1
CDS Sequence (2562 bp)
ATGTTGAGAAGATTACTGACGCAAACATCCTCTCGCCGTCTTCTCTCTTCCAAGACACCCTTCTTCTCAA
AACCCTCTCTTTCACCGTTTTCCTCATTGCCCTCTTCACCGGATCCACCTTCCTCGGCGAGTAGTCATGT
CGAGGAGTCAGGTTCCTCCGCCGCCGCCGGAACAACTATCTCCGTCGACCGCTCCGGTCTCTTCAATCCC
CCCGACCACTCTCATGAACCCACACCGGACTCCGAGCTCGTCAAGCACCTCAAGAGCGTCATCAAGTTTC
GTGGTGGGCCAATCTCAGTGGCGGAGTATATGGAGGAGGTGTTGACTAATCCTAGATCAGGTTATTACAT
GAACCGTGATGTGTTTGGAGCTCAAGGTGATTTCATTACTTCTCCTGAAGTTAGCCAGATGTTTGGCGAG
ATGATTGGTGTTTGGACTGTTTGTCTTTGGGAGCAAATGGGAAAGCCTGAGAGGGTTAATCTCATTGAGC
TAGGTCCAGGTCGTGGAACGCTCATGGTCGATCTCCTCCGTGGTACATCAAAGTTTAGGAATTTCACGGA
GTCATTGCATATACACTTGGTGGAGTGCAGTCCCGCGTTGCAGAAGCTTCAGCACCAGAACCTGAAGTGC
ACAGATGAAAGTAGTTCTGAGAAGAAAGCTATAAGTTCACCAGCTGGGACACCTGTGCATTGGCACGCTA
CTCTTGAAGAGGTACCATCAGGAGTACCAACAATAATCATCGCTCATGAGTTTTATGATGCTCTTCCTGT
TCATCAGTTTCAGAAATCTCCACGTGGCTGGTGTGAGAAAATGGTTGATGTGGGAGAAGATTCACAGTTC
CGCTTTGTTCTATCCCCACAGCCTACACCTGCAGCCTTATATCTCGTGAAACGTTGCACATGGGCTACAC
CTGAGGAAAAGGAGAAGCTCGAGCATGTCGAGATCAGCCCGAAGTCAATGGATCTGACTCAAGAAATAGC
CAAAAGAATAGGCTCTGATGGAGGTGGAGCACTTATAATCGATTACGGGAAGGATGGAATCATTTCAGAC
AGTCTCCAGGCTATTAGAGAACACAAGTTTGTCAACATACTGGATGATCCTGGATCTGCGGATCTAAGTG
CTTATGTTGATTTTCCTTCGATAAAACACTCTGCTGAGGAAGCTTCAGAAAATGTGTCAGTCCATGGACC
TATGACTCAGTCTCAGTTCTTGGGTTCGCTTGGAATAAACTTCAGAGTTGATGCGCTGCTACAGAACTGC
GACGATGAGCAAGCCGAGTCTTTGAGGTCAGGATACTGGAGGCTTGTTGGAGATGGTGAAGCACCTTTCT
GGGAAGGACCTGATGAACAGACGCCGATTGGAATGGGGGAGAGGTATCTTGCAATGGCTATTGTCAACCG
AAACCAAGGCACTCCGGCTCCTTTCCAATCTCTCCCGTGTTTGAGATCTGAATATCTCCTGAAGGGAAGG
ATGTACGGATTCGAGGCGCTTACGTTCAACATCCATGGCGGATACTTGGAGGCGATCGTGAGGGGCCACC
GAGCTGGGCTTCTAACCACGGCGGATTACAACAATCTGTGCCAATGTGAGAACCTAGACGACATCAAAAT
GCACCTCTCCGCCACCAAATACGGCTCTTACCTCCAGAACGAACCGTCACCTCTGCATACCACCACAATC
GTGGAGAAGTGTACACTCAAGCTTGTTGATGATTACAAGCATATGCTTTGCCAAGCTACTGAGCCTATGT
CCACCTTCTTAGAGTACATCAGATACGGCCACATGATTGACAATGTCGTGCTGATTGTTACTGGAACTTT
GCACGAGAGAGATGTTCAAGAGTTGATCGAGAAATGTCACCCTTTAGGCATGTTTGACAGCATTGCCACA
CTGGCAGTTGCTCAGAACATGAGGGAGCTCTATAGGTTGGTGCTTGTTGATACTCCTCTGGCTCCATATT
TTTCTGAATGCTTGACATCCGAGGATTTGGATGACATGAACATTGAGATTATGAGGAACACCCTCTACAA
AGCATACCTTGAGGACTTTTACAAGTTCTGTCAGAAACTTGGTGGGGCAACATCAGAGATAATGTCTGAC
CTTCTGGCCTTCGAAGCTGACAGAAGAGCTGTGAACATCACCATCAATAGCATTGGCACTGAGCTCACAA
GAGAAGACAGGAAGAAATTGTACTCCAACTTTGGCCTCCTCTATCCATATGGTCACGAGGAGCTTGCGAT
CTGCGAAGACATAGATCAGGTTCGTGGTGTTATGGAGAAGTATCCCCCGTACCAAGCAATATTCTCCAAG
ATGTCTTATGGAGAGAGCCAGATGCTTGACAAGGCATTTTATGAAGAAGAAGTCAGAAGGCTTTGCTTAG
CCTTTGAGCAGCAGTTCCATTACGGGGTGTTCTTTGCGTATATGAGGTTGAGAGAGCAGGAAATCAGGAA
CCTGATGTGGATATCCGAATGTGTTGCACAGAACCAGAAGTCGAGGATCCACGACAGTGTCGTCTACATG
TTCTGA
Upstream Sequence
ATGTTGAGAAGATTACTGACGCAAACATCCTCTCGCCGTCTTCTCTCTTCCAAGACACCCTTCTTCTCAA
AACCCTCTCTTTCACCGTTTTCCTCATTGCCCTCTTCACCGGATCCACCTTCCTCGGCGAGTAGTCATGT
CGAGGAGTCAGGTTCCTCCGCCGCCGCCGGAACAACTATCTCCGTCGACCGCTCCGGTCTCTTCAATCCC
CCCGACCACTCTCATGAACCCACACCGGACTCCGAGCTCGTCAAGCACCTCAAGAGCGTCATCAAGTTTC
GTGGTGGGCCAATCTCAGTGGCGGAGTATATGGAGGAGGTGTTGACTAATCCTAGATCAGGTTATTACAT
GAACCGTGATGTGTTTGGAGCTCAAGGTGATTTCATTACTTCTCCTGAAGTTAGCCAGATGTTTGGCGAG
ATGATTGGTGTTTGGACTGTTTGTCTTTGGGAGCAAATGGGAAAGCCTGAGAGGGTTAATCTCATTGAGC
TAGGTCCAGGTCGTGGAACGCTCATGGTCGATCTCCTCCGTGGTACATCAAAGTTTAGGAATTTCACGGA
GTCATTGCATATACACTTGGTGGAGTGCAGTCCCGCGTTGCAGAAGCTTCAGCACCAGAACCTGAAGTGC
ACAGATGAAAGTAGTTCTGAGAAGAAAGCTATAAGTTCACCAGCTGGGACACCTGTGCATTGGCACGCTA
CTCTTGAAGAGGTACCATCAGGAGTACCAACAATAATCATCGCTCATGAGTTTTATGATGCTCTTCCTGT
TCATCAGTTTCAGAAATCTCCACGTGGCTGGTGTGAGAAAATGGTTGATGTGGGAGAAGATTCACAGTTC
CGCTTTGTTCTATCCCCACAGCCTACACCTGCAGCCTTATATCTCGTGAAACGTTGCACATGGGCTACAC
CTGAGGAAAAGGAGAAGCTCGAGCATGTCGAGATCAGCCCGAAGTCAATGGATCTGACTCAAGAAATAGC
CAAAAGAATAGGCTCTGATGGAGGTGGAGCACTTATAATCGATTACGGGAAGGATGGAATCATTTCAGAC
AGTCTCCAGGCTATTAGAGAACACAAGTTTGTCAACATACTGGATGATCCTGGATCTGCGGATCTAAGTG
CTTATGTTGATTTTCCTTCGATAAAACACTCTGCTGAGGAAGCTTCAGAAAATGTGTCAGTCCATGGACC
TATGACTCAGTCTCAGTTCTTGGGTTCGCTTGGAATAAACTTCAGAGTTGATGCGCTGCTACAGAACTGC
GACGATGAGCAAGCCGAGTCTTTGAGGTCAGGATACTGGAGGCTTGTTGGAGATGGTGAAGCACCTTTCT
GGGAAGGACCTGATGAACAGACGCCGATTGGAATGGGGGAGAGGTATCTTGCAATGGCTATTGTCAACCG
AAACCAAGGCACTCCGGCTCCTTTCCAATCTCTCCCGTGTTTGAGATCTGAATATCTCCTGAAGGGAAGG
ATGTACGGATTCGAGGCGCTTACGTTCAACATCCATGGCGGATACTTGGAGGCGATCGTGAGGGGCCACC
GAGCTGGGCTTCTAACCACGGCGGATTACAACAATCTGTGCCAATGTGAGAACCTAGACGACATCAAAAT
GCACCTCTCCGCCACCAAATACGGCTCTTACCTCCAGAACGAACCGTCACCTCTGCATACCACCACAATC
GTGGAGAAGTGTACACTCAAGCTTGTTGATGATTACAAGCATATGCTTTGCCAAGCTACTGAGCCTATGT
CCACCTTCTTAGAGTACATCAGATACGGCCACATGATTGACAATGTCGTGCTGATTGTTACTGGAACTTT
GCACGAGAGAGATGTTCAAGAGTTGATCGAGAAATGTCACCCTTTAGGCATGTTTGACAGCATTGCCACA
CTGGCAGTTGCTCAGAACATGAGGGAGCTCTATAGGTTGGTGCTTGTTGATACTCCTCTGGCTCCATATT
TTTCTGAATGCTTGACATCCGAGGATTTGGATGACATGAACATTGAGATTATGAGGAACACCCTCTACAA
AGCATACCTTGAGGACTTTTACAAGTTCTGTCAGAAACTTGGTGGGGCAACATCAGAGATAATGTCTGAC
CTTCTGGCCTTCGAAGCTGACAGAAGAGCTGTGAACATCACCATCAATAGCATTGGCACTGAGCTCACAA
GAGAAGACAGGAAGAAATTGTACTCCAACTTTGGCCTCCTCTATCCATATGGTCACGAGGAGCTTGCGAT
CTGCGAAGACATAGATCAGGTTCGTGGTGTTATGGAGAAGTATCCCCCGTACCAAGCAATATTCTCCAAG
ATGTCTTATGGAGAGAGCCAGATGCTTGACAAGGCATTTTATGAAGAAGAAGTCAGAAGGCTTTGCTTAG
CCTTTGAGCAGCAGTTCCATTACGGGGTGTTCTTTGCGTATATGAGGTTGAGAGAGCAGGAAATCAGGAA
CCTGATGTGGATATCCGAATGTGTTGCACAGAACCAGAAGTCGAGGATCCACGACAGTGTCGTCTACATG
TTCTGA
Downstream Sequence
GTAACTTATTCCACCTCCACATTCTATAGTGTGATTCAATTTGACAGCTTTGGAGAATCT
GATTTGTTGTTTGTAAAACTTAGACCACTCTCATGAACCCACACCGGACTCCGAGCTCGT
CAAGCACCTCAAGAGCGTCATCAAGGTAACTTAGACCGATTCTTAGTAGAAAGATTGAAA
CTTTTTGTATGTAAGTTTGATCAAATTTATGCATCATCACAGTTTCGTGGTGGGCCAATC
TCAGTGGCGGAGTATATGGAGGAGGTGTTGACTAATCCTAGATCAGGTTATTACATGAAC
CGTGATGTGTTTGGAGCTCAAGGTGATTTCATTACTTCTCCTGAAGTTAGCCAGATGTTT
GGCGAGGTAACATTACTTTGAAATAGTGAATTTGTGTGTTTGAGATTTGTTTATTTTCTT
ACTAGGTGTGTTGTGATGTTAGATGATTGGTGTTTGGACTGTTTGTCTTTGGGAGCAAAT
GGGAAAGCCTGAGAGGGTTAATCTCATTGAGCTAGGTCCAGGTCGTGGAACGCTCATGGT
CGATCTCCTCCGTGTATGTATTTTTAATGCTCTTGTGTTATGTCTCCAGAACGGCGAAAA
CTATCTCACTGATCTCTCTGTTTTTGGGGACTGTCCACGTTTAGGGTACATCAAAGTTTA
GGAATTTCACGGAGTCATTGCATATACACTTGGTGGAGTGCAGTCCCGCGTTGCAGAAGC
TTCAGCACCAGAACCTGAAGTGCACAGATGAAAGTAGTTCTGAGAAGAAAGCTATAAGTT
CACCAGCTGGGACACCTGTGCATTGGCACGCTACTCTTGAAGAGGTACCATCAGGAGGTA
AGCATGTTTTGTTACATTTACTTGGAATTTGCGACTCTCTTATGAGACTCTTGTCTTAGT
ATAGCACGATATGTCGTATGCAATGAAAACGATGATGCTCTGGATCGTTTTCTCATGGTA
TCTCTTGTTCTGTTTTGCTTCCATGGCAGTACCAACAATAATCATCGCTCATGAGTTTTA
TGATGCTCTTCCTGTTCATCAGTTTCAGGTTGGTGTGAGTGTAACTTTCAATATAGTCTT
CCCCTTTTAGTTTGGTATGTTTATCTTATATGGACTCAATCTCTGCAGAAATCTCCACGT
GGCTGGTGTGAGAAAATGGTTGATGTGGGAGAAGATTCACAGTAAGTAAATTTCATTAGT
GGTATCAGCAAAGAAAACTCCAGAGCTGATCGATGAGTTGTTGGTTTTAGGTTCCGCTTT
GTTCTATCCCCACAGCCTACACCTGCAGCCTTATATCTCGTGAAACGTTGCACATGGGCT
ACACCTGAGGAAAAGGAGAAGCTCGAGCATGTCGAGATCAGCCCGAAGTCAATGGATCTG
ACTCAAGAAATAGCCAAAAGAATAGGCTCTGATGGAGGTGGAGCACTTATAATCGATTAC
GGGAAGGATGGAATCATTTCAGACAGTCTCCAGGTTTGTGTCCTAAAAAATTGCTCTGAC
CAATGCTTTTAAAGTCTTTTGTGTCTGAATCTATGGATATGATATGTCTTAAGGCTATTA
GAGAACACAAGTTTGTCAACATACTGGATGATCCTGGATCTGCGGATCTAAGTGCTTATG
TTGATTTTCCTTCGATAAAACACTCTGCTGAGGAAGCTTCAGGTTCGTTCCTATACTCAC
TGCTCGTTCCCTCATTGTTATAACTTACTTAAAAGCAAATGAAAACGTGTTTGTGTGTTG
TGCAGAAAATGTGTCAGTCCATGGACCTATGACTCAGTCTCAGTTCTTGGGTTCGCTTGG
AATAAACTTCAGAGTTGATGCGCTGCTACAGAACTGCGACGATGAGCAAGCCGAGTCTTT
GAGGTCAGGATACTGGAGGCTTGTTGGAGATGGTGAAGCACCTTTCTGGGAAGGACCTGA
TGAACAGACGCCGATTGGAATGGGGGAGAGGTATCTTGCAATGGCTATTGTCAACCGAAA
CCAAGGCACTCCGGCTCCTT
Pro Sequence
MLRRLLTQTSSRRLLSSKTPFFSKPSLSPFSSLPSSPDPPSSASSHVEES
GSSAAAGTTISVDRSGLFNPPDHSHEPTPDSELVKHLKSVIKFRGGPISV
AEYMEEVLTNPRSGYYMNRDVFGAQGDFITSPEVSQMFGEMIGVWTVCLW
EQMGKPERVNLIELGPGRGTLMVDLLRGTSKFRNFTESLHIHLVECSPAL
QKLQHQNLKCTDESSSEKKAISSPAGTPVHWHATLEEVPSGVPTIIIAHE
FYDALPVHQFQKSPRGWCEKMVDVGEDSQFRFVLSPQPTPAALYLVKRCT
WATPEEKEKLEHVEISPKSMDLTQEIAKRIGSDGGGALIIDYGKDGIISD
SLQAIREHKFVNILDDPGSADLSAYVDFPSIKHSAEEASENVSVHGPMTQ
SQFLGSLGINFRVDALLQNCDDEQAESLRSGYWRLVGDGEAPFWEGPDEQ
TPIGMGERYLAMAIVNRNQGTPAPFQSLPCLRSEYLLKGRMYGFEALTFN
IHGGYLEAIVRGHRAGLLTTADYNNLCQCENLDDIKMHLSATKYGSYLQN
EPSPLHTTTIVEKCTLKLVDDYKHMLCQATEPMSTFLEYIRYGHMIDNVV
LIVTGTLHERDVQELIEKCHPLGMFDSIATLAVAQNMRELYRLVLVDTPL
APYFSECLTSEDLDDMNIEIMRNTLYKAYLEDFYKFCQKLGGATSEIMSD
LLAFEADRRAVNITINSIGTELTREDRKKLYSNFGLLYPYGHEELAICED
IDQVRGVMEKYPPYQAIFSKMSYGESQMLDKAFYEEEVRRLCLAFEQQFH
YGVFFAYMRLREQEIRNLMWISECVAQNQKSRIHDSVVYMF
mRNA Sequence
ATGTTGAGAAGATTACTGACGCAAACATCCTCTCGCCGTCTTCTCTCTTCCAAGACACCCTTCTTCTCAA
AACCCTCTCTTTCACCGTTTTCCTCATTGCCCTCTTCACCGGATCCACCTTCCTCGGCGAGTAGTCATGT
CGAGGAGTCAGGTTCCTCCGCCGCCGCCGGAACAACTATCTCCGTCGACCGCTCCGGTCTCTTCAATCCC
CCCGACCACTCTCATGAACCCACACCGGACTCCGAGCTCGTCAAGCACCTCAAGAGCGTCATCAAGTTTC
GTGGTGGGCCAATCTCAGTGGCGGAGTATATGGAGGAGGTGTTGACTAATCCTAGATCAGGTTATTACAT
GAACCGTGATGTGTTTGGAGCTCAAGGTGATTTCATTACTTCTCCTGAAGTTAGCCAGATGTTTGGCGAG
ATGATTGGTGTTTGGACTGTTTGTCTTTGGGAGCAAATGGGAAAGCCTGAGAGGGTTAATCTCATTGAGC
TAGGTCCAGGTCGTGGAACGCTCATGGTCGATCTCCTCCGTGGTACATCAAAGTTTAGGAATTTCACGGA
GTCATTGCATATACACTTGGTGGAGTGCAGTCCCGCGTTGCAGAAGCTTCAGCACCAGAACCTGAAGTGC
ACAGATGAAAGTAGTTCTGAGAAGAAAGCTATAAGTTCACCAGCTGGGACACCTGTGCATTGGCACGCTA
CTCTTGAAGAGGTACCATCAGGAGTACCAACAATAATCATCGCTCATGAGTTTTATGATGCTCTTCCTGT
TCATCAGTTTCAGAAATCTCCACGTGGCTGGTGTGAGAAAATGGTTGATGTGGGAGAAGATTCACAGTTC
CGCTTTGTTCTATCCCCACAGCCTACACCTGCAGCCTTATATCTCGTGAAACGTTGCACATGGGCTACAC
CTGAGGAAAAGGAGAAGCTCGAGCATGTCGAGATCAGCCCGAAGTCAATGGATCTGACTCAAGAAATAGC
CAAAAGAATAGGCTCTGATGGAGGTGGAGCACTTATAATCGATTACGGGAAGGATGGAATCATTTCAGAC
AGTCTCCAGGCTATTAGAGAACACAAGTTTGTCAACATACTGGATGATCCTGGATCTGCGGATCTAAGTG
CTTATGTTGATTTTCCTTCGATAAAACACTCTGCTGAGGAAGCTTCAGAAAATGTGTCAGTCCATGGACC
TATGACTCAGTCTCAGTTCTTGGGTTCGCTTGGAATAAACTTCAGAGTTGATGCGCTGCTACAGAACTGC
GACGATGAGCAAGCCGAGTCTTTGAGGTCAGGATACTGGAGGCTTGTTGGAGATGGTGAAGCACCTTTCT
GGGAAGGACCTGATGAACAGACGCCGATTGGAATGGGGGAGAGGTATCTTGCAATGGCTATTGTCAACCG
AAACCAAGGCACTCCGGCTCCTTTCCAATCTCTCCCGTGTTTGAGATCTGAATATCTCCTGAAGGGAAGG
ATGTACGGATTCGAGGCGCTTACGTTCAACATCCATGGCGGATACTTGGAGGCGATCGTGAGGGGCCACC
GAGCTGGGCTTCTAACCACGGCGGATTACAACAATCTGTGCCAATGTGAGAACCTAGACGACATCAAAAT
GCACCTCTCCGCCACCAAATACGGCTCTTACCTCCAGAACGAACCGTCACCTCTGCATACCACCACAATC
GTGGAGAAGTGTACACTCAAGCTTGTTGATGATTACAAGCATATGCTTTGCCAAGCTACTGAGCCTATGT
CCACCTTCTTAGAGTACATCAGATACGGCCACATGATTGACAATGTCGTGCTGATTGTTACTGGAACTTT
GCACGAGAGAGATGTTCAAGAGTTGATCGAGAAATGTCACCCTTTAGGCATGTTTGACAGCATTGCCACA
CTGGCAGTTGCTCAGAACATGAGGGAGCTCTATAGGTTGGTGCTTGTTGATACTCCTCTGGCTCCATATT
TTTCTGAATGCTTGACATCCGAGGATTTGGATGACATGAACATTGAGATTATGAGGAACACCCTCTACAA
AGCATACCTTGAGGACTTTTACAAGTTCTGTCAGAAACTTGGTGGGGCAACATCAGAGATAATGTCTGAC
CTTCTGGCCTTCGAAGCTGACAGAAGAGCTGTGAACATCACCATCAATAGCATTGGCACTGAGCTCACAA
GAGAAGACAGGAAGAAATTGTACTCCAACTTTGGCCTCCTCTATCCATATGGTCACGAGGAGCTTGCGAT
CTGCGAAGACATAGATCAGGTTCGTGGTGTTATGGAGAAGTATCCCCCGTACCAAGCAATATTCTCCAAG
ATGTCTTATGGAGAGAGCCAGATGCTTGACAAGGCATTTTATGAAGAAGAAGTCAGAAGGCTTTGCTTAG
CCTTTGAGCAGCAGTTCCATTACGGGGTGTTCTTTGCGTATATGAGGTTGAGAGAGCAGGAAATCAGGAA
CCTGATGTGGATATCCGAATGTGTTGCACAGAACCAGAAGTCGAGGATCCACGACAGTGTCGTCTACATG
TTCTGA