Lee Hsin-Yi, Chou Jui-Yu, Cheong Liplee, Chang Nai-Hsin, Yang Shi-Yow, Leu Jun-Yi
Institute of Molecular Biology, Academia Sinica, Taipei, Taiwan.
Cell. 2008 Dec 12;135(6):1065-73. doi: 10.1016/j.cell.2008.10.047.
Hybrids between species are usually unviable or sterile. One possible mechanism causing reproductive isolation is incompatibility between genes from different species. These "speciation" genes are interacting components that cannot function properly when mixed with alleles from other species. To test whether such genes exist in two closely related yeast species, we constructed hybrid lines in which one or two chromosomes were derived from Saccharomyces bayanus, and the rest were from Saccharomyces cerevisiae. We found that the hybrid line with Chromosome 13 substitution was completely sterile and identified Aep2, a mitochondrial protein encoded on Chromosome 13, to cause the sporulation defect as S. bayanus AEP2 is incompatible with S. cerevisiae mitochondria. This is caused by the inability of S. bayanus Aep2 protein to regulate the translation of the S. cerevisiae OLI1 mRNA. We speculate that AEP2 and OLI1 have evolved during the adaptation of S. bayanus to nonfermentable carbon sources, thereby driving speciation.
物种间的杂交后代通常无法存活或不育。导致生殖隔离的一种可能机制是来自不同物种的基因不相容。这些“物种形成”基因是相互作用的成分,当与来自其他物种的等位基因混合时无法正常发挥功能。为了测试在两个亲缘关系密切的酵母物种中是否存在此类基因,我们构建了杂交品系,其中一条或两条染色体来自巴氏酵母(Saccharomyces bayanus),其余染色体来自酿酒酵母(Saccharomyces cerevisiae)。我们发现,用13号染色体替换后的杂交品系完全不育,并鉴定出13号染色体上编码的线粒体蛋白Aep2会导致孢子形成缺陷,因为巴氏酵母AEP2与酿酒酵母线粒体不相容。这是由于巴氏酵母Aep2蛋白无法调节酿酒酵母OLI1 mRNA的翻译所致。我们推测,AEP2和OLI1在巴氏酵母适应非发酵性碳源的过程中发生了进化,从而推动了物种形成。