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酿酒酵母线粒体缺陷积累过程中相互冲突的选择水平

Conflicting levels of selection in the accumulation of mitochondrial defects in Saccharomyces cerevisiae.

作者信息

Taylor Douglas R, Zeyl Clifford, Cooke Erin

机构信息

Department of Biology, University of Virginia, Charlottesville, VA 22904-4328, USA.

出版信息

Proc Natl Acad Sci U S A. 2002 Mar 19;99(6):3690-4. doi: 10.1073/pnas.072660299. Epub 2002 Mar 12.

Abstract

The somatic accumulation of defective mitochondria causes human degenerative syndromes, senescence in fungi, and male sterility in plants. These diverse phenomena may result from conflicts between natural selection at different levels of organization. Such conflicts are fundamental to the evolution of cooperating groups, from cells to populations. We present a model in which defective mitochondrial genomes accumulate because of a within-cell replication advantage when among-cell selection for efficient respiration is relaxed. We tested the model by using experimental populations of the yeast Saccharomyces cerevisiae. We constructed yeast strains that were heteroplasmic for mitochondrial mutations that destroy the ability to respire (the petite phenotype) and followed the accumulation of mitochondrial defects in cultures with different effective population sizes. As predicted by the model, the inability to respire evolved only in small populations of S. cerevisiae, where among-cell selection favoring cells that can respire was reduced relative to within-cell selection favoring parasitic mitochondria. In a control experiment, mitochondrial point mutations that confer resistance to chloramphenicol showed no tendency to change in frequency under any culture conditions. The accumulation of some mitochondrial defects is therefore an evolutionary process, involving multiple levels of selection. The relative intensities of within- and among-cell selection may also explain the tissue specificity of human mitochondrial defects.

摘要

有缺陷的线粒体在体细胞中的积累会导致人类退行性综合征、真菌衰老以及植物雄性不育。这些不同的现象可能源于不同组织层次的自然选择之间的冲突。这种冲突对于从细胞到种群的合作群体的进化至关重要。我们提出了一个模型,其中当细胞间对高效呼吸的选择放松时,有缺陷的线粒体基因组由于细胞内复制优势而积累。我们通过使用酿酒酵母的实验群体来测试该模型。我们构建了线粒体突变杂合的酵母菌株,这些突变破坏了呼吸能力(小菌落表型),并跟踪了不同有效种群大小的培养物中线粒体缺陷的积累情况。正如模型所预测的,呼吸无能仅在酿酒酵母的小群体中进化,在这些群体中,相对于有利于寄生线粒体的细胞内选择,有利于能够呼吸的细胞的细胞间选择有所减少。在一个对照实验中,赋予氯霉素抗性的线粒体点突变在任何培养条件下都没有显示出频率变化的趋势。因此,一些线粒体缺陷的积累是一个进化过程,涉及多个选择层次。细胞内和细胞间选择的相对强度也可能解释人类线粒体缺陷的组织特异性。

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