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dc.contributorLi, Hongjieen_US
dc.contributorPandey, Manish Ken_US
dc.contributorYang, Qinglien_US
dc.contributorwang, xiyinen_US
dc.contributorVanika, Gargen_US
dc.contributorLia, Haifenen_US
dc.contributorChi, Xiaoyuanen_US
dc.contributorDoddamani, Dadakhalandaren_US
dc.contributorHong, Yanbinen_US
dc.contributorUpadhyaya, Hari D.en_US
dc.contributorGuo, Huien_US
dc.contributorKhan, Aamiren_US
dc.contributorZhang, Xiaoyanen_US
dc.contributorPan, Lijuanen_US
dc.contributorPierce, Gary J.en_US
dc.contributorZhou, Guiyuanen_US
dc.contributorKatta, Mohan AVSen_US
dc.contributorChen, Mingnaen_US
dc.contributorZhong, Nien_US
dc.contributorAgarwal, Gauraven_US
dc.contributorLi, Shuanzhuen_US
dc.contributorChitikineni, Annapurnaen_US
dc.contributorZhang, Guo-Qiangen_US
dc.contributorSharma, Shivalien_US
dc.contributorChen, Naen_US
dc.contributorLiu, Haiyanen_US
dc.contributorJanila, Pasupuletien_US
dc.contributorLi, Shaoxiongen_US
dc.contributorWang, Minen_US
dc.contributorWang, Tongen_US
dc.contributorSun, Jieen_US
dc.contributorLi, Xingyuen_US
dc.contributorLi, Chunyanen_US
dc.contributorWang, Mianen_US
dc.contributorYu, Linaen_US
dc.contributorWen, Shijieen_US
dc.contributorSingh, Subeen_US
dc.contributorYang, Zhenen_US
dc.contributorZhao, Jinmingen_US
dc.contributorZhang, Chushuen_US
dc.contributorYu, Yueen_US
dc.contributorBi, Jieen_US
dc.contributorZhang, Xiaojunen_US
dc.contributorLiug, Zhong-Jianen_US
dc.contributorPaterson, Andrew H.en_US
dc.contributorWang, Shupingen_US
dc.contributorLiang, Xuanqiangen_US
dc.contributorVarshney, Rajeeven_US
dc.contributorYu, Shanlinen_US
dc.creatorChen, Xiaopingen_US
dc.date.accessioned2017-04-08T22:21:00Z
dc.date.available2017-04-08T22:21:00Z
dc.identifierhttp://oar.icrisat.org/id/eprint/9693en_US
dc.identifierhttps://mel.cgiar.org/reporting/download/hash/gCuToPAKen_US
dc.identifier.citationXiaoping Chen, Hongjie Li, Manish K Pandey, Qingli Yang, xiyin wang, Garg Vanika, Haifen Lia, Xiaoyuan Chi, Dadakhalandar Doddamani, Yanbin Hong, Hari D. Upadhyaya, Hui Guo, Aamir Khan, Xiaoyan Zhang, Lijuan Pan, Gary J. Pierce, Guiyuan Zhou, Mohan AVS Katta, Mingna Chen, Ni Zhong, Gaurav Agarwal, Shuanzhu Li, Annapurna Chitikineni, Guo-Qiang Zhang, Shivali Sharma, Na Chen, Haiyan Liu, Pasupuleti Janila, Shaoxiong Li, Min Wang, Tong Wang, Jie Sun, Xingyu Li, Chunyan Li, Mian Wang, Lina Yu, Shijie Wen, Sube Singh, Zhen Yang, Jinming Zhao, Chushu Zhang, Yue Yu, Jie Bi, Xiaojun Zhang, Zhong-Jian Liug, Andrew H. Paterson, Shuping Wang, Xuanqiang Liang, Rajeev Varshney, Shanlin Yu. (14/6/2016). Draft genome of the peanut A-genome progenitor (Arachis duranensis) provides insights into geocarpy, oil biosynthesis, and allergens. Proceedings of the National Academy of Sciences - PNAS, 113 (24), pp. 6785-6790.en_US
dc.identifier.urihttps://hdl.handle.net/20.500.11766/6672
dc.description.abstractPeanut or groundnut (Arachis hypogaea L.), a legume of South American origin, has high seed oil content (45–56%) and is a staple crop in semiarid tropical and subtropical regions, partially because of drought tolerance conferred by its geocarpic reproductive strategy. We present a draft genome of the peanut A-genome progenitor, Arachis duranensis, and 50,324 protein-coding gene models. Patterns of gene duplication suggest the peanut lineage has been affected by at least three polyploidizations since the origin of eudicots. Resequencing of synthetic Arachis tetraploids reveals extensive gene conversion in only three seed-to-seed generations since their formation by human hands, indicating that this process begins virtually immediately following polyploid formation. Expansion of some specific gene families suggests roles in the unusual subterranean fructification of Arachis. For example, the S1Fa-like transcription factor family has 126 Arachis members, in contrast to no more than five members in other examined plant species, and is more highly expressed in roots and etiolated seedlings than green leaves. The A. duranensis genome provides a major source of candidate genes for fructification, oil biosynthesis, and allergens, expanding knowledge of understudied areas of plant biology and human health impacts of plants, informing peanut genetic improvement and aiding deeper sequencing of Arachis diversity.en_US
dc.formatPDFen_US
dc.languageenen_US
dc.publisherNational Academy of Sciencesen_US
dc.rightsCC-BY-NC-4.0en_US
dc.sourceProceedings of the National Academy of Sciences - PNAS;113,(2016) Pagination 6785,6790en_US
dc.subjectarachis duranensisen_US
dc.subjectgenome sequenceen_US
dc.subjectgene modelsen_US
dc.subjectpolyploidizationsen_US
dc.subjectPeanuten_US
dc.titleDraft genome of the peanut A-genome progenitor (Arachis duranensis) provides insights into geocarpy, oil biosynthesis, and allergensen_US
dc.typeJournal Articleen_US
dcterms.available2016-06-14en_US
dcterms.extent6785-6790en_US
cg.creator.idPandey, Manish K: 0000-0002-4101-6530en_US
cg.creator.idJanila, Pasupuleti: 0000-0003-2583-9630en_US
cg.subject.agrovocagricultureen_US
cg.subject.agrovocgene duplicationen_US
cg.contributor.centerGuangdong Academy of Agricultural Sciences - GDAASen_US
cg.contributor.centerShandong Shofine Seed Companyen_US
cg.contributor.centerInternational Crops Research Institute for the Semi-Arid Tropics - ICRISATen_US
cg.contributor.centerShandong Academy of Agricultural Sciencesen_US
cg.contributor.centerUniversity of Georgia - UGAen_US
cg.contributor.centerNational Orchid Conservation Center of China and Orchid Conservation and Research Center of Shenzhenen_US
cg.contributor.centerMacrogen Millennium Genomics Companyen_US
cg.contributor.centerQingdao Agricultural University - QAUen_US
cg.contributor.crpCGIAR Research Program on Grain Legumes - GLen_US
cg.contributor.funderNot Applicableen_US
cg.coverage.regionGlobalen_US
cg.contactyshanlin1956@163.comen_US
cg.identifier.doihttps://dx.doi.org/10.1073/pnas.1600899113en_US
cg.isijournalISI journalen_US
dc.identifier.statusOpen accessen_US
mel.impact-factor/en_US
cg.issn1091-6490en_US
cg.journalProceedings of the National Academy of Sciences - PNASen_US
cg.issue24en_US
cg.volume113en_US


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