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Population genomics provides insights into the genetic basis of adaptive evolution in the mushroom-forming fungus Lentinula edodes

生物 香菇属 遗传学 适应(眼睛) 人口 基因组 全基因组关联研究 基因 基因组学 进化生物学 性状 表型 蘑菇 单核苷酸多态性 基因型 植物 社会学 人口学 神经科学
作者
Jingcheng Zhang,Nan Shen,Chuang Li,Xingjie Xiang,Gaolei Liu,Ying Gui,Sean Patev,David S. Hibbett,Kerrie Barry,William Andreopoulos,Anna Lipzen,Robert Riley,Guifen He,Mi Yan,Igor V. Grigoriev,Hoi Shan Kwan,Man Kit Cheung,Yinbing Bian,Yang Xiao
出处
期刊:Journal of Advanced Research [Elsevier BV]
卷期号:38: 91-106 被引量:28
标识
DOI:10.1016/j.jare.2021.09.008
摘要

Mushroom-forming fungi comprise diverse species that develop complex multicellular structures. In cultivated species, both ecological adaptation and artificial selection have driven genome evolution. However, little is known about the connections among genotype, phenotype and adaptation in mushroom-forming fungi.This study aimed to (1) uncover the population structure and demographic history of Lentinula edodes, (2) dissect the genetic basis of adaptive evolution in L. edodes, and (3) determine if genes related to fruiting body development are involved in adaptive evolution.We analyzed genomes and fruiting body-related traits (FBRTs) in 133 L. edodes strains and conducted RNA-seq analysis of fruiting body development in the YS69 strain. Combined methods of genomic scan for divergence, genome-wide association studies (GWAS), and RNA-seq were used to dissect the genetic basis of adaptive evolution.We detected three distinct subgroups of L. edodes via single nucleotide polymorphisms, which showed robust phenotypic and temperature response differentiation and correlation with geographical distribution. Demographic history inference suggests that the subgroups diverged 36,871 generations ago. Moreover, L. edodes cultivars in China may have originated from the vicinity of Northeast China. A total of 942 genes were found to be related to genetic divergence by genomic scan, and 719 genes were identified to be candidates underlying FBRTs by GWAS. Integrating results of genomic scan and GWAS, 80 genes were detected to be related to phenotypic differentiation. A total of 364 genes related to fruiting body development were involved in genetic divergence and phenotypic differentiation.Adaptation to the local environment, especially temperature, triggered genetic divergence and phenotypic differentiation of L. edodes. A general model for genetic divergence and phenotypic differentiation during adaptive evolution in L. edodes, which involves in signal perception and transduction, transcriptional regulation, and fruiting body morphogenesis, was also integrated here.
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