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多种分子机制导致三种酵母物种之间的生殖隔离。

Multiple molecular mechanisms cause reproductive isolation between three yeast species.

机构信息

Department of Life Sciences and Institute of Genome Sciences, National Yang-Ming University, Taipei, Taiwan.

出版信息

PLoS Biol. 2010 Jul 20;8(7):e1000432. doi: 10.1371/journal.pbio.1000432.

Abstract

Nuclear-mitochondrial conflict (cytonuclear incompatibility) is a specific form of Dobzhansky-Muller incompatibility previously shown to cause reproductive isolation in two yeast species. Here, we identified two new incompatible genes, MRS1 and AIM22, through a systematic study of F2 hybrid sterility caused by cytonuclear incompatibility in three closely related Saccharomyces species (S. cerevisiae, S. paradoxus, and S. bayanus). Mrs1 is a nuclear gene product required for splicing specific introns in the mitochondrial COX1, and Aim22 is a ligase encoded in the nucleus that is required for mitochondrial protein lipoylation. By comparing different species, our result suggests that the functional changes in MRS1 are a result of coevolution with changes in the COX1 introns. Further molecular analyses demonstrate that three nonsynonymous mutations are responsible for the functional differences of Mrs1 between these species. Functional complementation assays to determine when these incompatible genes altered their functions show a strong correlation between the sequence-based phylogeny and the evolution of cytonuclear incompatibility. Our results suggest that nuclear-mitochondrial incompatibility may represent a general mechanism of reproductive isolation during yeast evolution.

摘要

核质冲突(细胞质核不兼容)是一种特定形式的多布赞斯基-穆勒不兼容,先前已被证明在两种酵母物种中导致生殖隔离。在这里,我们通过对三种密切相关的酿酒酵母(酿酒酵母、酿酒酵母和酿酒酵母)中由细胞质核不兼容引起的 F2 杂种不育进行系统研究,鉴定了两个新的不兼容基因 MRS1 和 AIM22。MRS1 是一种核基因产物,需要剪接线粒体 COX1 中的特定内含子,而 AIM22 是一种在核中编码的连接酶,需要进行线粒体蛋白脂酰化。通过比较不同的物种,我们的结果表明,MRS1 的功能变化是与 COX1 内含子变化共同进化的结果。进一步的分子分析表明,三个非同义突变导致了这些物种之间 Mrs1 的功能差异。为了确定这些不兼容基因何时改变了它们的功能,我们进行了功能互补测定,结果表明,在序列基系统发育和细胞质核不兼容的进化之间存在很强的相关性。我们的结果表明,核质不兼容可能代表了酵母进化过程中生殖隔离的一种普遍机制。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/c667/2907292/f514712d73f3/pbio.1000432.g001.jpg

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