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工业酵母菌株基因组杂合性的可控降低揭示了广泛的隐性表型变异。

Controlled Reduction of Genomic Heterozygosity in an Industrial Yeast Strain Reveals Wide Cryptic Phenotypic Variation.

作者信息

Sampaio Nadia M V, Watson Ruth A, Argueso Juan Lucas

机构信息

Department of Environmental and Radiological Health Sciences, Colorado State University, Fort Collins, CO, United States.

Cell and Molecular Biology Graduate Program, Colorado State University, Fort Collins, CO, United States.

出版信息

Front Genet. 2019 Sep 11;10:782. doi: 10.3389/fgene.2019.00782. eCollection 2019.

Abstract

Abundant genomic heterozygosity can be found in wild strains of the budding yeast isolated from industrial and clinical environments. The extent to which heterozygosity influences the phenotypes of these isolates is not fully understood. One such case is the PE-2/JAY270 strain, a natural hybrid widely adopted by sugarcane bioethanol distilleries for its ability to thrive under harsh biotic and abiotic stresses during industrial scale fermentation, however, it is not known whether or how the heterozygous configuration of the JAY270 genome contributes to its many desirable traits. In this study, we took a step toward exploring this question by conducting an initial functional characterization of JAY270's heteroalleles. We manipulated the abundance and distribution of heterozygous alleles through inbreeding and targeted uniparental disomy (UPD). Unique combinations of homozygous alleles in each inbred strain revealed wide phenotypic variation for at least two important industrial traits: Heat stress tolerance and competitive growth. Quantitative trait loci analyses allowed the identification of broad genomic regions where genetic polymorphisms potentially impacted these traits, and there was no overlap between the loci associated with each. In addition, we adapted an approach to induce bidirectional UPD of three targeted pairs of chromosomes (IV, XIV, and XV), while heterozygosity was maintained elsewhere in the genome. In most cases UPD led to detectable phenotypic alterations, often in opposite directions between the two homozygous haplotypes in each UPD pair. Our results showed that both widespread and regional homozygosity could uncover cryptic phenotypic variation supported by the heteroalleles residing in the JAY270 genome. Interestingly, we characterized multiple examples of inbred and UPD strains that displayed heat tolerance or competitive growth phenotypes that were superior to their heterozygous parent. However, we propose that homozygosity for those regions may be associated with a decrease in overall fitness in the complex and dynamic distillery environment, and that may have contributed to slowing down the erosion of heterozygosity from the JAY270 genome. This study also laid a foundation for approaches that can be expanded to the identification of specific alleles of interest for industrial applications in this and other hybrid yeast strains.

摘要

在从工业和临床环境中分离出的芽殖酵母野生菌株中,可以发现丰富的基因组杂合性。杂合性对这些分离株表型的影响程度尚未完全了解。其中一个例子是PE-2/JAY270菌株,这是一种天然杂交菌株,因其在工业规模发酵过程中能够在恶劣的生物和非生物胁迫下茁壮成长而被甘蔗生物乙醇酿酒厂广泛采用,然而,尚不清楚JAY270基因组的杂合构型是否以及如何促成其许多理想性状。在本研究中,我们朝着探索这个问题迈出了一步,对JAY270的异源等位基因进行了初步功能表征。我们通过近亲繁殖和靶向单亲二体性(UPD)来操纵杂合等位基因的丰度和分布。每个近交系中纯合等位基因的独特组合揭示了至少两个重要工业性状的广泛表型变异:耐热性和竞争生长。数量性状位点分析使我们能够识别出遗传多态性可能影响这些性状的广泛基因组区域,并且与每个性状相关的位点之间没有重叠。此外,我们采用了一种方法来诱导三对靶向染色体(IV、XIV和XV)的双向UPD,同时基因组的其他位置保持杂合性。在大多数情况下,UPD导致可检测到的表型改变,通常在每个UPD对中的两个纯合单倍型之间方向相反。我们的结果表明,广泛和区域纯合性都可以揭示JAY270基因组中存在的异源等位基因所支持的隐性表型变异。有趣的是,我们对多个近交系和UPD菌株进行了表征,这些菌株表现出优于其杂合亲本的耐热或竞争生长表型。然而,我们提出,这些区域的纯合性可能与复杂动态的酿酒厂环境中整体适应性的降低有关,这可能导致JAY270基因组杂合性的侵蚀减缓。这项研究还为可扩展到鉴定该杂交酵母菌株及其他杂交酵母菌株工业应用中特定感兴趣等位基因的方法奠定了基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2e7d/6749062/4ef1f414b97e/fgene-10-00782-g001.jpg

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