Genome evolution of the psammophyte <i>Pugionium</i> for desert adaptation and further speciation

生物 适应(眼睛) 基因组 进化生物学 遗传算法 基因流 人口 十字花科 基因 染色体 遗传学 遗传变异 生态学 社会学 人口学 神经科学
作者
Quanjun Hu,Yazhen Ma,Terezie Mandáková,Sheng Shi,Chunlin Chen,Pengchuan Sun,Lei Zhang,Landi Feng,Yudan Zheng,Xiaoqin Feng,Wenjie Yang,Jiebei Jiang,Ting Li,Pingping Zhou,Qiushi Yu,Dongshi Wan,Martin A. Lysak,Zhenxiang Xi,Eviatar Nevo,Jianquan Liu
出处
期刊:Proceedings of the National Academy of Sciences of the United States of America [Proceedings of the National Academy of Sciences]
卷期号:118 (42) 被引量:10
标识
DOI:10.1073/pnas.2025711118
摘要

Deserts exert strong selection pressures on plants, but the underlying genomic drivers of ecological adaptation and subsequent speciation remain largely unknown. Here, we generated de novo genome assemblies and conducted population genomic analyses of the psammophytic genus Pugionium (Brassicaceae). Our results indicated that this bispecific genus had undergone an allopolyploid event, and the two parental genomes were derived from two ancestral lineages with different chromosome numbers and structures. The postpolyploid expansion of gene families related to abiotic stress responses and lignin biosynthesis facilitated environmental adaptations of the genus to desert habitats. Population genomic analyses of both species further revealed their recent divergence with continuous gene flow, and the most divergent regions were found to be centered on three highly structurally reshuffled chromosomes. Genes under selection in these regions, which were mainly located in one of the two subgenomes, contributed greatly to the interspecific divergence in microhabitat adaptation.
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