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产美丽素的粘帚霉属酵母具有高度的基因组内、基因组间和表型多样性,表明其具有特殊的基因组进化模式。

High intragenomic, intergenomic, and phenotypic diversity in pulcherrimin-producing Metschnikowia yeasts indicates a special mode of genome evolution.

机构信息

Department of Genetics and Applied Microbiology, University of Debrecen, Debrecen, Hungary.

Institute of Horticulture, University of Debrecen, Debrecen, Hungary.

出版信息

Sci Rep. 2024 May 8;14(1):10521. doi: 10.1038/s41598-024-61335-5.

Abstract

In molecular systematics, the delimitation of yeast species is based on the notion that the barcode differences are smaller within species than between them. The most widely used barcodes are segments of the chromosomal repeats coding for ribosomal RNAs that are homogenised in yeasts. The analysis of these segments of the type strains of ten species recently merged in Metschnikowia pulcherrima and 37 new isolates demonstrated that this is not the case in this species. The intragenomic diversity significantly exceeded the threshold gaps used to differentiate related yeast species. Large segments of the D1/D2 domains were not diverse within the genomes and could therefore be used to determine the taxonomic affiliation of the isolates. The genome structures of the isolates were compared by RAPD and the RFLP of the mitochondrial DNA. Both patterns were highly heterogeneous. The sequence analysis of the PUL4 gene (a member of the PUL gene cluster involved in pulcherrimin production) revealed very high intragenomic differences, suggesting that the genomes may be chimerised. Three phenotypic traits related to the antimicrobial antagonism characteristic of the species were also highly diverse and prone to reversible segregation resembling epigenetic processes (silencing and reactivation of regulators) rather than mutations and back-mutations. These features make M. pulcherrima unique among yeasts and indicate that it evolves in a non-standard way.

摘要

在分子系统学中,酵母物种的划分基于这样一种观点,即种内的条形码差异小于种间差异。最广泛使用的条形码是编码核糖体 RNA 的染色体重复片段,这些片段在酵母中是同质化的。对最近合并到美丽假丝酵母中的十个物种的模式株以及 37 个新分离株的这些片段的分析表明,在这个物种中情况并非如此。种内多样性显著超过了用于区分相关酵母物种的阈值间隙。D1/D2 结构域的大片段在基因组内没有多样性,因此可以用于确定分离株的分类归属。通过 RAPD 和线粒体 DNA 的 RFLP 比较了分离株的基因组结构。这两种模式都具有高度的异质性。PUL4 基因(参与 pulcherrimin 产生的 PUL 基因簇的一个成员)的序列分析显示出非常高的种内差异,表明基因组可能是嵌合的。与该物种的抗微生物拮抗特性相关的三个表型特征也高度多样化,并且易于发生类似于表观遗传过程(调控因子的沉默和重新激活)而不是突变和回复突变的可逆分离。这些特征使美丽假丝酵母在酵母中独一无二,并表明它以非标准的方式进化。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8a3/11076541/8212c0f2b22f/41598_2024_61335_Fig1_HTML.jpg

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