Sequencing of Chinese castor lines reveals genetic signatures of selection and yield-associated loci

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作者
Wei Fan
Jianjun Lu
Cheng Pan
Meilian Tan
Qiang Lin
Wanfei Liu
Donghai Li
Lijun Wang
Lianlian Hu
Lei Wang
Chen Chen
Aimin Wu
Xinxin Yu
Jue Ruan
Jun Yu
Songnian Hu
Xingchu Yan
Shiyou Lü
Peng Cui
机构
[1] Chinese Academy of Agricultural Sciences,Agricultural Genomics Institute
[2] Chinese Academy of Sciences,CAS Key Laboratory of Plant Germplasm Enhancement and Specialty Agriculture, Wuhan Botanical Garden
[3] University of Chinese Academy of Sciences,Sino
[4] Chinese Academy of Sciences,Africa Joint Research Center
[5] Oil Crops Research Institute of the Chinese Academy of Agricultural Sciences,Key Laboratory of Biology and Genetic Improvement of Oil Crops, Ministry of Agriculture and Rural Affairs
[6] Chinese Academy of Sciences,Beijing Institute of Genomics
[7] South China Agricultural University,Guangdong Key Laboratory for Innovative Development and Utilization of Forest Plant Germplasm, College of Forestry and Landscape Architectures
[8] Hubei University,State Key Laboratory of Biocatalysis and Enzyme Engineering, School of Life Sciences
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摘要
Oil produced by castor (Ricinus communis) has broad industrial applications. However, knowledge on the genetic diversity, especially genetic alterations that occurred during domestication and subsequent traits selection, of this oil crop is limited. Here, our population genomics analyses show that the Chinese castors have developed a geographic pattern, classified into the southern-, the middle-, and the northern-China groups. We detect a number of candidate genomic loci that are associated with the selection signals during the geographical differentiation and domestication. Using genome-wide association analysis, we identify candidate genes associated with nine agronomically important traits. One of the candidate genes encoding a glycosyltransferase related to cellulose and lignin biosynthesis is associated with both capsule dehiscence and endocarp thickness. We hypothesize that the abundance of cellulose or lignin in endocarp is an important factor for capsule dehiscence. Our results provide foundation for castor breeding and genetic study.
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