Near-gapless genome and transcriptome analyses provide insights into fruiting body development in Lentinula edodes

香菇属 转录组 生物 基因组 无缝回放 计算生物学 进化生物学 遗传学 基因 植物 基因表达 计算机科学 蘑菇 操作系统
作者
Nan Shen,Haoyu Xie,Kefang Liu,Xinru Li,Lu Wang,Youjin Deng,Lianfu Chen,Yinbing Bian,Yang Xiao
出处
期刊:International Journal of Biological Macromolecules [Elsevier BV]
卷期号:263 (Pt 2): 130610-130610 被引量:15
标识
DOI:10.1016/j.ijbiomac.2024.130610
摘要

Fruiting body development in macrofungi is an intensive research subject. In this study, high-quality genomes were assembled for two sexually compatible monokaryons from a heterokaryotic Lentinula edodes strain WX1, and variations in L. edodes genomes were analyzed. Specifically, differential gene expression and allele-specific expression (ASE) were analyzed using the two monokaryotic genomes and transcriptome data from four different stages of fruiting body development in WX1. Results revealed that after aeration, mycelia sensed cell wall stress, pheromones, and a decrease in CO2 concentration, leading to up-regulated expression in genes related to cell adhesion, cell wall remodeling, proteolysis, and lipid metabolism, which may promote primordium differentiation. Aquaporin genes and those related to proteolysis, mitosis, lipid, and carbohydrate metabolism may play important roles in primordium development, while genes related to tissue differentiation and sexual reproduction were active in fruiting body. Several essential genes for fruiting body development were allele-specifically expressed and the two nuclear types could synergistically regulate fruiting body development by dominantly expressing genes with different functions. ASE was probably induced by long terminal repeat-retrotransposons. Findings here contribute to the further understanding of the mechanism of fruiting body development in macrofungi.
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