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担子菌中的线粒体-核基因相互作用涉及一个非保守的线粒体开放阅读框。

Mitonuclear Genetic Interactions in the Basidiomycete Involve a Non-conserved Mitochondrial Open Reading Frame.

作者信息

Clergeot Pierre-Henri, Olson Åke

机构信息

Department of Forest Mycology and Plant Pathology, Swedish University of Agricultural Sciences, Uppsala, Sweden.

出版信息

Front Fungal Biol. 2021 Dec 14;2:779337. doi: 10.3389/ffunb.2021.779337. eCollection 2021.

Abstract

The mitochondrial and nuclear genomes of Eukaryotes are inherited separately and consequently follow distinct evolutionary paths. Nevertheless, the encoding of many mitochondrial proteins by the nuclear genome shows the high level of integration they have reached, which makes mitonuclear genetic interactions all the more conceivable. For each species, natural selection has fostered the evolution of coadapted alleles in both genomes, but a population-wise divergence of such alleles could lead to important phenotypic variation, and, ultimately, to speciation. In this study in the Basidiomycete , we have investigated the genetic basis of phenotypic variation among laboratory-designed heterokaryons carrying the same pair of haploid nuclei, but a different mitochondrial genome. Radial growth rate data of thirteen unrelated homokaryotic parents and of their heterokaryotic offspring were combined with SNP data extracted from parental genome sequences to identify nuclear and mitochondrial loci involved in mitonuclear interactions. Two nuclear loci encoding mitochondrial proteins appeared as best candidates to engage in a genetic interaction affecting radial growth rate with a non-conserved mitochondrial open reading frame of unknown function and not reported apart from the Russulales order of Basidiomycete fungi. We believe our approach could be useful to investigate several important traits of fungal biology where mitonuclear interactions play a role, including virulence of fungal pathogens.

摘要

真核生物的线粒体基因组和核基因组是分别遗传的,因此遵循不同的进化路径。然而,核基因组对许多线粒体蛋白的编码显示出它们已经达到了高度的整合水平,这使得线粒体-核基因相互作用更有可能发生。对于每个物种来说,自然选择促进了两个基因组中共同适应的等位基因的进化,但这些等位基因在种群水平上的差异可能导致重要的表型变异,并最终导致物种形成。在这项针对担子菌的研究中,我们调查了实验室设计的携带同一对单倍体细胞核但线粒体基因组不同的异核体之间表型变异的遗传基础。将13个不相关的同核体亲本及其异核体后代的径向生长速率数据与从亲本基因组序列中提取的SNP数据相结合,以鉴定参与线粒体-核相互作用的核基因座和线粒体基因座。两个编码线粒体蛋白的核基因座似乎是与一个功能未知的非保守线粒体开放阅读框进行影响径向生长速率的遗传相互作用的最佳候选基因,除了担子菌纲红菇目的真菌外,尚未有其他报道。我们相信我们的方法可能有助于研究线粒体-核相互作用起作用的真菌生物学的几个重要特征,包括真菌病原体的毒力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/93dd/10512249/6dc192c08eac/ffunb-02-779337-g0001.jpg

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