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Genomic conservation of crop wild relatives: A case study of citrus

生物 渗入 自拍 近亲繁殖 人口 近亲繁殖抑郁症 有效人口规模 遗传多样性 遗传学 进化生物学 遗传变异 人口学 基因 社会学
作者
Nan Wang,Shuo Cao,Zhongjie Liu,Hua Xiao,Jianbing Hu,Xiaodong Xu,Peng Chen,Zhi‐Yao Ma,Junli Ye,Lijun Chai,Wen‐Wu Guo,Robert M. Larkin,Qiang Xu,Peter L. Morrell,Yongfeng Zhou,Xiuxin Deng
出处
期刊:PLOS Genetics [Public Library of Science]
卷期号:19 (6): e1010811-e1010811 被引量:8
标识
DOI:10.1371/journal.pgen.1010811
摘要

Conservation of crop wild relatives is critical for plant breeding and food security. The lack of clarity on the genetic factors that lead to endangered status or extinction create difficulties when attempting to develop concrete recommendations for conserving a citrus wild relative: the wild relatives of crops. Here, we evaluate the conservation of wild kumquat ( Fortunella hindsii ) using genomic, geographical, environmental, and phenotypic data, and forward simulations. Genome resequencing data from 73 accessions from the Fortunella genus were combined to investigate population structure, demography, inbreeding, introgression, and genetic load. Population structure was correlated with reproductive type (i.e., sexual and apomictic) and with a significant differentiation within the sexually reproducing population. The effective population size for one of the sexually reproducing subpopulations has recently declined to ~1,000, resulting in high levels of inbreeding. In particular, we found that 58% of the ecological niche overlapped between wild and cultivated populations and that there was extensive introgression into wild samples from cultivated populations. Interestingly, the introgression pattern and accumulation of genetic load may be influenced by the type of reproduction. In wild apomictic samples, the introgressed regions were primarily heterozygous, and genome-wide deleterious variants were hidden in the heterozygous state. In contrast, wild sexually reproducing samples carried a higher recessive deleterious burden. Furthermore, we also found that sexually reproducing samples were self-incompatible, which prevented the reduction of genetic diversity by selfing. Our population genomic analyses provide specific recommendations for distinct reproductive types and monitoring during conservation. This study highlights the genomic landscape of a wild relative of citrus and provides recommendations for the conservation of crop wild relatives.

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