Chloroplast and whole-genome sequencing shed light on the evolutionary history and phenotypic diversification of peanuts

Author:

Zheng ZhengORCID,Sun Ziqi,Qi Feiyan,Fang Yuanjin,Lin Ke,Pavan Stefano,Huang Bingyan,Dong Wenzhao,Du Pei,Tian Mengdi,Shi Lei,Xu Jing,Han Suoyi,Liu Hua,Qin Li,Zhang Zhongxin,Dai Xiaodong,Miao Lijuan,Zhao Ruifang,Wang Juan,Liao Yanlin,Li AlunORCID,Ruan JueORCID,Delvento ChiaraORCID,Aiese Cigliano Riccardo,Maliepaard Chris,Bai Yuling,Visser Richard G. F.ORCID,Zhang XinyouORCID

Abstract

AbstractCultivated peanut (Arachis hypogaea L.) is a widely grown oilseed crop worldwide; however, the events leading to its origin and diversification are not fully understood. Here by combining chloroplast and whole-genome sequence data from a large germplasm collection, we show that the two subspecies of A. hypogaea (hypogaea and fastigiata) likely arose from distinct allopolyploidization and domestication events. Peanut genetic clusters were then differentiated in relation to dissemination routes and breeding efforts. A combination of linkage mapping and genome-wide association studies allowed us to characterize genes and genomic regions related to main peanut morpho-agronomic traits, namely flowering pattern, inner tegument color, growth habit, pod/seed weight and oil content. Together, our findings shed light on the evolutionary history and phenotypic diversification of peanuts and might be of broad interest to plant breeders.

Publisher

Springer Science and Business Media LLC

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