Your browser is unable to support new features implemented in HTML5 and CSS3 to render this site as intended. Your experience may suffer from functionality degradation but the site should remain usable. We strongly recommend the latest version of Google Chrome, OS X Safari or Mozilla Firefox. As Safari is bundled with OS X, if you are unable to upgrade to a newer version of OS X, we recommend using an open source browser. Dismiss message

LotjaGi3g1v0507600.2

Overview

Field Value
Gene ID LotjaGi3g1v0507600
Transcript ID LotjaGi3g1v0507600.2
Related isoforms 2
Lotus japonicus genome version Gifu v1.2
Description Coatomer subunit gamma; TAIR: AT4G34450.1 coatomer gamma-2 subunit, putative / gamma-2 coat protein, putative / gamma-2 COP; Swiss-Prot: sp|Q0WW26|COPG_ARATH Coatomer subunit gamma; TrEMBL-Plants: tr|A0A0B2R0D6|A0A0B2R0D6_GLYSO Coatomer subunit gamma; Found in the gene: LotjaGi3g1v0507600
Working Lj name n.a.

Sequence information

Genomic sequence (LjG1.1_chr3:92464522..92471127) extracted from Lotus japonicus Gifu genome v1.2.

CTTGCCTCTAGTTTGATGTGATTTCGATTCTTCCTCCCTGTAGAGACTTGAATTGATTAAATTATAATAATCTGCAATGC ACATCGTTAATTGCCTGCAATTGCTTGTTTGATTGAAAAGGTTTATGGTGATTAGTTGATACTTGATAGATAGTTTAGAT TTTCATTTCACTCTTTGTATTCTGATGAATGCTACATATATTATGATGAATTGATGATATAGTACTCGTATTTCAGAATT AATTATGATCTTTTTGGTTGTTTAACAGCTGACTATTCCCCATTTTTGGGAATTGAGAAGGGGGCTGTTCTTCAGGAGGC CAGGGTTTTTAACGATCCGCAACTAGATGCTAGGAGATGTTCACAGGTGTGTGTGTGTTTTTCCCCTTAATAATGTTTTC TTTGTGTTATTCAGTGATTGCATTTTGACATGGTATTGTTTGTTATGCTTTTCCAGGTTATCACAAAACTCTTATACCTA CTGAATCAGGGAGAGTCATTTACAAAGGTCAAGAGGTTTTCCTAACCATTTTTCTTTGTTACATATCGTTGCTTATTTGT AGATTGACTTTACGGAATTATGTTAGAGTTATCCTTTTTCATTAATTTGTTCTTGCTGCAATTTCATAGGTCGAAGCCAC GGAAGTTTTCTTTGCTGTGACCAAGCTTTTCCAGTCTCGAGATCTTGGGTTGAGGAGAATGGTCTACCTTATGATAAAGG AACTCTCCCCCTGTGCAGATGAGGTTACTACTTCTCATGAAATTTTTACTACTTGTCAGATTCATGACTATGGTCTGTGT ATTACTAACTTAAATTCTGACTGTTCTATCTCCTTTTTTTTTTAAAGGTAATTATCGTCACAAGCTCTCTCATGAAGGAC ATGAATAGCAAGACTGATATGTATAGGGCAAATGCCATTCGTGTGCTCTGTCGTATTACGGATGGAACTCTCCTTACCCA AATTGAGAGATATTTGAAACAAGCAATTGTAGATAAGAATCCAGTTGTTGCAAGTGCAGCCCTAGTCAGTGGCATTCATA TACTCCAGGTATTGTTAATATCTATTTGTAATTCCTTATAACTGTAAATTCCGTTTTGCCGCTTTCTCATTTAATGTCCC CCATTTCAGACCAATCCTGAGATTGTAAAGAGGTGGAGCAATGAGGTTCAGGAAGCTGTTCAATCAAGAGCAGCTCTTGT CCAATTTCATGCACTGGCTTTGCTACATCAGGTACGCTGGACGAATGGTTTCATAATCTACAATTTCTTGGTGTATTAAA ATAAATTCTACTTTTCCATAAACTATTTTAAAACTTCATAGAAATAAGTTGAAAATAGATTATAAATAAGCATAAGTTCT TTTTCATAAGCTATTCTGAAGAAAAATAAGCTCAAAACGGCTTATAGGTAGGTCATATGTTATTTACATAATCTCTCCCA AACACTCGCATAAGCGCTTATGCTGTAAGATGAGCTCAAATAAGCTCTTCCATACGGGGCCTATGCCATTCTCGTAGTTC ATTTAGTAAACCAGTGCTGTTGTATAATTCATCATTTATGTATAGCAAGAACACTTTCTTACATGGTCAGTTTTTTGCTC GTGACAGTTAAAATTCATTAAAGAGTCAGTATGAGCTAGTGTTTCATTTTATTTTTAATCCTATTAGATATGAGAAATCA CTCATGTGCCTTCACCTAAGTCCTAATAGCTTAAGCTTTCGAGATGCTTAATTTATGATCTAATATCAGTCTCTCTATGA CCAATAGTGTGTTTCAAAACTCGTTTGGAATGGACTTCGAGGCACATCTGTCCATAAGCTACAAGTAGTAGCTTTTTAAG TGGTCTCCTTGTTATCCCCATTTTTCTAACTAAAAAGTTCAATTTCAATACAAGGTAGATCCTTGTAACCTGTGCAGTGT TCATTGTCTATACTTGGACGTCAAAAGACTTTTCCATAAGGGGCATGTTAGATACAAAAATCATTTATATGGCCTAAACC ACTTAAGCTTTTGGGATAATTAGTTCATGTCAAAATCTTTCACCGATTTACAAATGAAATGAATTTTTCCGAGGGATTTG ACTTTTGTACAAGCTTATCAAGGAAATGATTTTACCGCAATAAAAGGAAGCAAAACTACTTGAGGTGCAACTGCAGAAGT TGATAACTGCAGAAGTTGATATTTAATTGCTTGGTTTGTAGACTACCTTACGATATTTTGTCACCTACTGCATACTCCTG TTAATAATCTTGCTGCAACTTACAAGTGGCTGCATTCTGTGGCACTGTGAAAAGTTTTCAAAACATCCTTGTGTGGCTGA ATGTGGCAAAGTTTGTATATGCTCTTAACCTCTTGTGGTAAATTAGTAGAAACTTTCCTACATTGATTGTATATGATTGT CATCTGTAGATATTGTGTGAGCATGATCATGATGGAAATTCTATTTCATTAATTTATATTACTCTAAAGTCCTCCTATGA GTTTAGGGTTTACTCTAAAGTCCTCCTATGAATTTAGGGTTTAAACCCTAAACCATGATGGAAATTCTGTAGATACCGTG TGAGCATGATCATGATGGTGATGGAAATTATATTTCATTAATTTATATTACTCTAAAGTCCTCCTATGAATTTCTACACC ATGTAATTTTGATTTGACATTCTGAGTATCATACTTTGTTAATCACATAAAACAAATAAATTATAAAATATAAACACAGT TATTGACACATGGTGGCTTAAAACATTGCAGATACGACAGAATGATCGGCTAGCTGTTAGCAAGCTGGTTACCAGCTTGA CAAGAGGAAGTGTTCGCTCTCCTTTGGCCCAATGCCTTTTGATCCGCTATACAAGTCAGGTGTGTGATCCTCTTCTTATA CAGCTGCCACTGACATGGTGTTTATTTGCATTATATTTATGTATCATAATATCTGCAGGTTATACGGGAGGCAGGAAATA ATACACAAGCAGGAGACCGCCCCTTCTTTGATTTTCTTGAGAGTTGCCTTCGTCACAAGTCCGAGATGGTGATTTTTGAA GCTGCTAAGGCAATTACAGAGCTCAACGGTGTAACTAGCAGAGAATTAACTCCAGCAATTACTGTTCTCCAGCTCTTCTT AAGCTCTTCTAAGCCAGTCTTGAGATTTGCTGCTGTCCGCACCTTAAACAAGGTTGACCTTCCTTAATTCCATAAATTTC AGTAGAAACGTCTATGCTTAAGAAAGGATCTATCGGAATTCCCTTTCTGTGGGAAGTGAGCATTTTGCTTTTCTTCGTGC TATGGTTTTGGGGGAATCGAAAAAAATCGTAAAATTTTGTCAAGCTTCTAATTATTGCTAATTTTTAATGGTTAAACTTT ATCTTTATTTTTATTTATTTTTGTTGAATACTGTTTTGAACTCGGCAGGTGGCAATGACACATCCAATGGCAGTCACTAA CTGCAATATCGATATGGAAAGTTTAATCTCTGACCAGAATAGAAGCATAGCCACACTGGCTATTACTACTCTTCTAAAGA CAGGAAATGAATCAAGTGTAGAACGTCTTATGAAGCAGATTACAAATTTCATGTCTGATATTGCTGATGAGTTCAAAATT GTTGTTGTTGAAGCAATAAGATCATTGTGCTTGAAGTTTCCGTTAAAATACAGATCCCTGTGAGTATATGTGTCATTTTA TAGGTTTCTTTCTCCCAGGTGTTGTCTTTCATTTGAATGGTGTTCCTAGATATTGGTCTAAATTACTGCTTTCTGTTCAG GATGAACTTCCTGAGTAGCATTCTTAGAGAAGAAGGTGGTTTCGAGTACAAGAAAGCAATTGTTGATTCAATTGTAATTC TGATTAGAGATATCCCTGATGCTAAGGAGAGCGGGTTGCTTCATCTTTGTGAGTTCATTGAAGATTGTGAATTCACTTAT TTGTCCACACAGGTTGTTTTCGCTCTTTGTCATTTACTGTTTGTGTTTTTGAATTTACTTTATGTTGTTAATTTTCTTCC CCTTGTAATTTAGATACTTCACTTCCTGGGAGTTGAAGGACCCAAAACATCAGATCCCAGCAAATATATACGTTATATTT ATAACAGAGTACATCTTGAGAATGCAACTGTTAGGGCCAGTGCTGTGAGCACACTTGCTGGGTTTGGTGCTGCAGTTGAT GCTTTAAAGGTATTAGTTGTCCCTGTTTATTATTTAATTTCCCTAGTAGATTTAACTAATATATTTTTTTTGGTGACAGT ATTAATATTTCATAATTTCTCTTTTCAGCCCCGCATATTTGTTCTGCTAAGGCGATGTCTTTTTGACAGTGATGATGAGG TTGATTTCTCTATCATATCTTCCATTGCATTTCTATAATTATGTGATTTATGAGATCTTGCAATTTTGCAACTCTGGAAG TGTAAACCTATACTTGCTTTGATTAATATTTGGATGCTTTTGATTTTTTTGCAGGTTCGTGATAGAGCAACACTTTATCT GAACACCCTTGGAGGTGATGGACTTGGGACTGAGAATGATCGGAAGGACTTCCTCTTTGGGTCACTTGATGTCCCACTTG TCAATCTGGAGACTAGTTTGAAAAACTATGTAAGTTCTCTAAATTTTTCTTGTTTTTCATTAGTGGAGGACATACCTCAT CGTCTCATATCTTTAATGTTAATGCAGGAGCCTTCGGAAGAGGCTTTTGATATTAATTCAGTGCCAAAGGAGGTCAAGTC TCAGCCCCTTGCAGAAAAGAAAGCTCCTGGTAAGAAGCCAACTGGTTTGGGTGCTCCTCCCAGTGGCCCCCCATCTACTG CAGATTCATATGAAAGGCTACTTCTTTCCATTCCTGAGTTTGCAAACTTTGGGAAGTTATTTAAGGTTCTGTTACTCGAT TCTTCTCTCACAGTTCTATAATTTTATATTTTTCTTTCCATTTCTCATGAGATTATATGTATTCTGATGTTATATTTCTT ACCAGTCCTCAGCACCTGTGGAGCTTACTGAAGCTGAGACAGAATATGCAGTTAATGTTGTTAAACACATTTTTGATAGG CATATTGTGTTTCAGTACAACTGCACAAACACAATACCGGAACAACTATTGGAAGATGTAAGGGCTGATATAGATACTGT ATGATTTCACACAATAATGCAACTCCAGGTTTTTCTGTATAACCTTTCCTCTTCCTCCTATTTCAGGTTAATGTAATTGT GGACGCTTCAGAAGCAGAAGAATTTTCTGAGTTGTTCTCCAAGCCTCTCAGATCTCTTCCTTATGATTCACCCGGGCAGA CTTTTGTGGCATTTGAGAAGCCTGAGGGATTGCCAACCACCGGAAAATTTTCTAACACTCTGAAATTTATTGTGAAAGAG GTACTTGTCCCCTTTATCCTTTGGGAAGCTCTGTGGTTTGATTTTTGTTCGTCTCAGACCCCCAATGTATTTATCATGAT GTGTATATTTCAAGCATGAAGCTTGTTTTGTTTTTCTTCGCCATGGAATTTGTGGAGAATAAAACCTATGAAGAGTTTTT TGTGGAAACTTCTTCATTGCTTCATAAATTGAATATTGACCAGGTTGACCCAACCACTGGTGAGGCTGAAGATGATGGCG TTGAAGATGAATATCAGCTGGAGGATCTGGAGGTTGTTTCAGCTGATTACATAGTGAAAGTAGGGGTGTCTAATTTCAGG AATGCATGGGAAAGCATGGGCCCTGATTGTGAACGAGTGGATGAATATGGTCTTGGCGCAAGGGAAAGCTTGGCTGAGGC TGTAAATACCGTCATCAATCTTCTTGGCCTGCAGCCTTGTGAGGTAAGCCAATGATATGAATTGTTGCTCTAGTAAATGT CCGTTGTTATTAAACCCATCTCTATTAAACTGGTTATGACCTGTTTGTACGAATTTTTTTTCTGCAACATAAGGTACTGT TCTGCTTGTTATATGCCTGCCAAGAGACCAATATAATGTTGATAGCATTACAGATTCAGTTCCCGCATATATTAGAGAGC ACAGACAAAAACTTGGCATTTTCTCATAATTTTAGGTCTAATATTACTCAAAGGTGCATATACAGTTGATGCATATAAAG ACTTCAATTCTTGCAATTAGCTTACTTCATTTAAAATATTTGAACTTGAACTGTTTGCCAAACTCAAGCATGTATGCATC TAAAATGCTGTTGTTTGGACGGAATGCTTTTGTCTTCATGTGCATGCACACATGTGCACATGATGTTAAATCTGATATGA TGTTAGTTCTGACATCATCTAGAATTCTAAACATTTGGCTTATACCTTACCATTGAGCAAGTGATTTTTCTAACTCCGTG ATACCTTGGAACTTCTCGTAAGAGGAGAGCGTCTTTCATTAGTGCCTGTTGACGACATCTTTCTTATTAGTTTATTGTTC ACTACTTGCAGGGCACAGAGGCAGTACCACCCAATTCAAGGTCGCACACATGCTTATTGTCAGGTGTATTCATAGGGAAT GTGAAGGTACTTGTGCGGTTGTCTTTCGGACTTGATGGTCCAAAGGATGTTGCCATGAAACTGTCTGTCAGATCCGACGA TGAAACTGTCAGCGATGCCATCCATGAGATTGTGGCAAGTGGTTAG 

CDS sequence (LotjaGi3g1v0507600.2) extracted from Lotus japonicus Gifu v1.2 CDS.

ATGGTCTACCTTATGATAAAGGAACTCTCCCCCTGTGCAGATGAGGTAATTATCGTCACAAGCTCTCTCATGAAGGACAT GAATAGCAAGACTGATATGTATAGGGCAAATGCCATTCGTGTGCTCTGTCGTATTACGGATGGAACTCTCCTTACCCAAA TTGAGAGATATTTGAAACAAGCAATTGTAGATAAGAATCCAGTTGTTGCAAGTGCAGCCCTAGTCAGTGGCATTCATATA CTCCAGACCAATCCTGAGATTGTAAAGAGGTGGAGCAATGAGGTTCAGGAAGCTGTTCAATCAAGAGCAGCTCTTGTCCA ATTTCATGCACTGGCTTTGCTACATCAGATACGACAGAATGATCGGCTAGCTGTTAGCAAGCTGGTTACCAGCTTGACAA GAGGAAGTGTTCGCTCTCCTTTGGCCCAATGCCTTTTGATCCGCTATACAAGTCAGGTTATACGGGAGGCAGGAAATAAT ACACAAGCAGGAGACCGCCCCTTCTTTGATTTTCTTGAGAGTTGCCTTCGTCACAAGTCCGAGATGGTGATTTTTGAAGC TGCTAAGGCAATTACAGAGCTCAACGGTGTAACTAGCAGAGAATTAACTCCAGCAATTACTGTTCTCCAGCTCTTCTTAA GCTCTTCTAAGCCAGTCTTGAGATTTGCTGCTGTCCGCACCTTAAACAAGGTGGCAATGACACATCCAATGGCAGTCACT AACTGCAATATCGATATGGAAAGTTTAATCTCTGACCAGAATAGAAGCATAGCCACACTGGCTATTACTACTCTTCTAAA GACAGGAAATGAATCAAGTGTAGAACGTCTTATGAAGCAGATTACAAATTTCATGTCTGATATTGCTGATGAGTTCAAAA TTGTTGTTGTTGAAGCAATAAGATCATTGTGCTTGAAGTTTCCGTTAAAATACAGATCCCTGATGAACTTCCTGAGTAGC ATTCTTAGAGAAGAAGGTGGTTTCGAGTACAAGAAAGCAATTGTTGATTCAATTGTAATTCTGATTAGAGATATCCCTGA TGCTAAGGAGAGCGGGTTGCTTCATCTTTGTGAGTTCATTGAAGATTGTGAATTCACTTATTTGTCCACACAGATACTTC ACTTCCTGGGAGTTGAAGGACCCAAAACATCAGATCCCAGCAAATATATACGTTATATTTATAACAGAGTACATCTTGAG AATGCAACTGTTAGGGCCAGTGCTGTGAGCACACTTGCTGGGTTTGGTGCTGCAGTTGATGCTTTAAAGCCCCGCATATT TGTTCTGCTAAGGCGATGTCTTTTTGACAGTGATGATGAGGTTCGTGATAGAGCAACACTTTATCTGAACACCCTTGGAG GTGATGGACTTGGGACTGAGAATGATCGGAAGGACTTCCTCTTTGGGTCACTTGATGTCCCACTTGTCAATCTGGAGACT AGTTTGAAAAACTATGAGCCTTCGGAAGAGGCTTTTGATATTAATTCAGTGCCAAAGGAGGTCAAGTCTCAGCCCCTTGC AGAAAAGAAAGCTCCTGGTAAGAAGCCAACTGGTTTGGGTGCTCCTCCCAGTGGCCCCCCATCTACTGCAGATTCATATG AAAGGCTACTTCTTTCCATTCCTGAGTTTGCAAACTTTGGGAAGTTATTTAAGTCCTCAGCACCTGTGGAGCTTACTGAA GCTGAGACAGAATATGCAGTTAATGTTGTTAAACACATTTTTGATAGGCATATTGTGTTTCAGTACAACTGCACAAACAC AATACCGGAACAACTATTGGAAGATGTTAATGTAATTGTGGACGCTTCAGAAGCAGAAGAATTTTCTGAGTTGTTCTCCA AGCCTCTCAGATCTCTTCCTTATGATTCACCCGGGCAGACTTTTGTGGCATTTGAGAAGCCTGAGGGATTGCCAACCACC GGAAAATTTTCTAACACTCTGAAATTTATTGTGAAAGAGGTTGACCCAACCACTGGTGAGGCTGAAGATGATGGCGTTGA AGATGAATATCAGCTGGAGGATCTGGAGGTTGTTTCAGCTGATTACATAGTGAAAGTAGGGGTGTCTAATTTCAGGAATG CATGGGAAAGCATGGGCCCTGATTGTGAACGAGTGGATGAATATGGTCTTGGCGCAAGGGAAAGCTTGGCTGAGGCTGTA AATACCGTCATCAATCTTCTTGGCCTGCAGCCTTGTGAGGGCACAGAGGCAGTACCACCCAATTCAAGGTCGCACACATG CTTATTGTCAGGTGTATTCATAGGGAATGTGAAGGTACTTGTGCGGTTGTCTTTCGGACTTGATGGTCCAAAGGATGTTG CCATGAAACTGTCTGTCAGATCCGACGATGAAACTGTCAGCGATGCCATCCATGAGATTGTGGCAAGTGGTTAG 

Protein sequence (LotjaGi3g1v0507600.2) extracted from Lotus japonicus Gifu v1.2 Proteins.

MVYLMIKELSPCADEVIIVTSSLMKDMNSKTDMYRANAIRVLCRITDGTLLTQIERYLKQAIVDKNPVVASAALVSGIHI LQTNPEIVKRWSNEVQEAVQSRAALVQFHALALLHQIRQNDRLAVSKLVTSLTRGSVRSPLAQCLLIRYTSQVIREAGNN TQAGDRPFFDFLESCLRHKSEMVIFEAAKAITELNGVTSRELTPAITVLQLFLSSSKPVLRFAAVRTLNKVAMTHPMAVT NCNIDMESLISDQNRSIATLAITTLLKTGNESSVERLMKQITNFMSDIADEFKIVVVEAIRSLCLKFPLKYRSLMNFLSS ILREEGGFEYKKAIVDSIVILIRDIPDAKESGLLHLCEFIEDCEFTYLSTQILHFLGVEGPKTSDPSKYIRYIYNRVHLE NATVRASAVSTLAGFGAAVDALKPRIFVLLRRCLFDSDDEVRDRATLYLNTLGGDGLGTENDRKDFLFGSLDVPLVNLET SLKNYEPSEEAFDINSVPKEVKSQPLAEKKAPGKKPTGLGAPPSGPPSTADSYERLLLSIPEFANFGKLFKSSAPVELTE AETEYAVNVVKHIFDRHIVFQYNCTNTIPEQLLEDVNVIVDASEAEEFSELFSKPLRSLPYDSPGQTFVAFEKPEGLPTT GKFSNTLKFIVKEVDPTTGEAEDDGVEDEYQLEDLEVVSADYIVKVGVSNFRNAWESMGPDCERVDEYGLGARESLAEAV NTVINLLGLQPCEGTEAVPPNSRSHTCLLSGVFIGNVKVLVRLSFGLDGPKDVAMKLSVRSDDETVSDAIHEIVASG 

Domain prediction

Data for domain prediction are obtained with InterProScan, and merged with InterPro data obtained from the EB-eye REST service.

Merging data from EBeye. Please wait…

Domains

Sorting

Prediction algorithm Identifier Start End Length E-value InterPro ID
PANTHER 1 797 797 0.0
Pfam 1 452 452 8.1E-113
PIRSF 1 795 795 0.0
Gene3D 1 228 228 1.5E-84
PANTHER 1 797 797 0.0
SUPERFAMILY 1 452 452 5.76E-81
MobiDBLite 501 530 30 -
SUPERFAMILY 527 681 155 1.36E-55
Gene3D 527 678 152 7.3E-58
Pfam 532 677 146 1.3E-56
Gene3D 679 795 117 8.6E-38
Pfam 680 794 115 1.0E-36
SUPERFAMILY 682 794 113 2.94E-34

Gene function (GO predictions)

GO predictions are based solely on the InterPro-to-GO mappings published by EMBL-EBI, which are in turn based on the mapping of predicted domains to the InterPro dataset. The InterPro-to-GO mapping was last updated on , while the GO metadata was last updated on .

GO term Namespace Name Definition Relationships
Molecular function Structural molecule activity The action of a molecule that contributes to the structural integrity of a complex or its assembly within or outside a cell.
Biological process Intracellular protein transport The directed movement of proteins in a cell, including the movement of proteins between specific compartments or structures within a cell, such as organelles of a eukaryotic cell.
Biological process Vesicle-mediated transport A cellular transport process in which transported substances are moved in membrane-bounded vesicles; transported substances are enclosed in the vesicle lumen or located in the vesicle membrane. The process begins with a step that directs a substance to the forming vesicle, and includes vesicle budding and coating. Vesicles are then targeted to, and fuse with, an acceptor membrane.
Cellular component Membrane coat Any of several different proteinaceous coats that can associate with membranes. Membrane coats include those formed by clathrin plus an adaptor complex, the COPI and COPII complexes, and possibly others. They are found associated with membranes on many vesicles as well as other membrane features such as pits and perhaps tubules.
Cellular component COPI vesicle coat One of two multimeric complexes that forms a membrane vesicle coat. The mammalian COPI subunits are called alpha-, beta-, beta'-, gamma-, delta-, epsilon- and zeta-COP. Vesicles with COPI coats are found associated with Golgi membranes at steady state.

Expression data

Expression pattern

Expression pattern of LotjaGi3g1v0507600.2, powered by ExpAt. For advanced configuration, data transformation and export options, view expression data in the ExpAt application.

Loading expression data from ljgea-geneid. Please wait…