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The genome of cultivated peanut provides insight into legume karyotypes, polyploid evolution and crop domestication.

Weijian ZhuangHua ChenMeng YangJianping WangManish K PandeyWeijian ZhuangWen-Chi ChangLiangsheng ZhangXingtan ZhangRonghua TangVanika GargXing-Jun WangHaibao TangChi-Nga ChowJinpeng WangYe DengDepeng WangAamir W KhanQiang YangTiecheng CaiPrasad BajajKangcheng WuBaozhu GuoXinyou ZhangJing-Jing LiFan YangJiang HuBoshou LiaoShengyi LiuAnnapurna ChitikineniHansong YanYixiong ZhengShihua ShanQinzheng LiuDongyang XieZhenyi WangShahid Ali KhanNiaz AliChuan-Zhi ZhaoXinguo LiZiliang LuoShubiao ZhangRuirong ZhuangZe PengShuaiyin WangGandeka MamadouYuhui ZhuangZifan ZhaoWeichang YuFaqian XiongWeipeng QuanMei YuanYu LiHuasong ZouHan XiaLi ZhaJunpeng FanJigao YuWenping XieJiaqing YuanKun ChenShanshan ZhaoWenting ChuYuting ChenPeng-Chuan SunFanbo MengTao ZhuoYuhao ZhaoChunjuan LiGuohao HeYongli ZhaoCongcong WangPolavarapu Bilhan KavikishorRong-Long PanAndrew H PatersonXi-Yin WangRay MingRajeev Kumar Varshney
Published in: Nature genetics (2019)
High oil and protein content make tetraploid peanut a leading oil and food legume. Here we report a high-quality peanut genome sequence, comprising 2.54 Gb with 20 pseudomolecules and 83,709 protein-coding gene models. We characterize gene functional groups implicated in seed size evolution, seed oil content, disease resistance and symbiotic nitrogen fixation. The peanut B subgenome has more genes and general expression dominance, temporally associated with long-terminal-repeat expansion in the A subgenome that also raises questions about the A-genome progenitor. The polyploid genome provided insights into the evolution of Arachis hypogaea and other legume chromosomes. Resequencing of 52 accessions suggests that independent domestications formed peanut ecotypes. Whereas 0.42-0.47 million years ago (Ma) polyploidy constrained genetic variation, the peanut genome sequence aids mapping and candidate-gene discovery for traits such as seed size and color, foliar disease resistance and others, also providing a cornerstone for functional genomics and peanut improvement.
Keyphrases
  • genome wide
  • dna methylation
  • copy number
  • genome wide identification
  • fatty acid
  • binding protein
  • small molecule
  • high resolution
  • long non coding rna
  • risk assessment
  • genome wide analysis