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大规模真菌菌株测序揭示了长期平衡选择维持的交配位点的分子多样性。

Large-scale fungal strain sequencing unravels the molecular diversity in mating loci maintained by long-term balancing selection.

机构信息

Section for Genetics and Evolutionary Biology, Department of Biosciences, University of Oslo, Oslo, Norway.

Department of Health, Valencian International University (VIU), Valencia, Spain.

出版信息

PLoS Genet. 2022 Mar 31;18(3):e1010097. doi: 10.1371/journal.pgen.1010097. eCollection 2022 Mar.

Abstract

Balancing selection, an evolutionary force that retains genetic diversity, has been detected in multiple genes and organisms, such as the sexual mating loci in fungi. However, to quantify the strength of balancing selection and define the mating-related genes require a large number of strains. In tetrapolar basidiomycete fungi, sexual type is determined by two unlinked loci, MATA and MATB. Genes in both loci define mating type identity, control successful mating and completion of the life cycle. These loci are usually highly diverse. Previous studies have speculated, based on culture crosses, that species of the non-model genus Trichaptum (Hymenochaetales, Basidiomycota) possess a tetrapolar mating system, with multiple alleles. Here, we sequenced a hundred and eighty strains of three Trichaptum species. We characterized the chromosomal location of MATA and MATB, the molecular structure of MAT regions and their allelic richness. The sequencing effort was sufficient to molecularly characterize multiple MAT alleles segregating before the speciation event of Trichaptum species. Analyses suggested that long-term balancing selection has generated trans-species polymorphisms. Mating sequences were classified in different allelic classes based on an amino acid identity (AAI) threshold supported by phylogenetics. 17,550 mating types were predicted based on the allelic classes. In vitro crosses allowed us to support the degree of allelic divergence needed for successful mating. Even with the high amount of divergence, key amino acids in functional domains are conserved. We conclude that the genetic diversity of mating loci in Trichaptum is due to long-term balancing selection, with limited recombination and duplication activity. The large number of sequenced strains highlighted the importance of sequencing multiple individuals from different species to detect the mating-related genes, the mechanisms generating diversity and the evolutionary forces maintaining them.

摘要

平衡选择是一种保留遗传多样性的进化力量,已在多个基因和生物中检测到,例如真菌的性交配位点。然而,要量化平衡选择的强度并定义与交配相关的基因,需要大量的菌株。在四极性担子菌真菌中,性型由两个不连锁的位点 MATA 和 MATB 决定。这两个位点的基因定义了交配型身份,控制着成功的交配和生命周期的完成。这些位点通常具有高度的多样性。以前的研究基于培养杂交推测,非模式属 Trichaptum(担子菌门,担子菌纲)的物种具有四极性交配系统,具有多个等位基因。在这里,我们对三个 Trichaptum 物种的一百八十个菌株进行了测序。我们描述了 MATA 和 MATB 的染色体位置、MAT 区域的分子结构及其等位基因丰富度。测序工作足以对 Trichaptum 物种形成前的多个 MAT 等位基因进行分子特征描述。分析表明,长期的平衡选择产生了跨物种多态性。基于系统发育支持的氨基酸相似性(AAI)阈值,将交配序列分类为不同的等位基因类。根据等位基因类预测了 17550 种交配类型。体外杂交使我们能够支持成功交配所需的等位基因分化程度。即使存在高度的分化,功能域中的关键氨基酸仍然保守。我们得出结论,Trichaptum 交配位点的遗传多样性是由于长期的平衡选择,有限的重组和复制活动。大量测序的菌株强调了从不同物种中测序多个个体以检测与交配相关的基因、产生多样性的机制以及维持它们的进化力量的重要性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6e5b/8970355/db1e867069fa/pgen.1010097.g001.jpg

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