Joseph J. Dubie, Vaishali Katju, Ulfar Bergthorsson
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引用次数: 0
摘要
线粒体基因组存在于嵌套的种群层次结构中,线粒体变体在每个组织层次上都会受到遗传漂移和选择的影响,有时会导致不同层次的选择之间以及核基因组和线粒体基因组之间发生冲突。秀丽隐杆线粒体基因组中的缺失突变体可以达到很高的细胞内频率,尽管这对适应性有很大的不利影响。在对秀丽隐杆线粒体进行突变积累(MA)实验期间,ctb-1中499 bp的缺失突变在细胞内的频率上升到90%,同时显著降低了适存度。在实验过程中,带有缺失的 mtDNA 在 nd5 中获得了三个额外的突变,即同源多聚运行中的两个单插入移帧突变和一个碱基置换。尽管这些次级突变会带来额外的适应性代价,但在 MA 实验结束时,所有携带缺失的分子都含有 nd5 突变。突变mtDNA的存在与mtDNA拷贝数的增加有关。与野生型核背景相比,MA品系中mtDNA拷贝数的变化更大,包括在一个世代时间点上拷贝数的严重减少。以不同世代的 MA 实验为起点进行的进化重放实验表明,其中两个次级突变通过未知机制促进了原始 ctb-1 缺失的扩散。
Dissecting the sequential evolution of a selfish mitochondrial genome in Caenorhabditis elegans
Mitochondrial genomes exist in a nested hierarchy of populations where mitochondrial variants are subject to genetic drift and selection at each level of organization, sometimes engendering conflict between different levels of selection, and between the nuclear and mitochondrial genomes. Deletion mutants in the Caenorhabditis elegans mitochondrial genome can reach high intracellular frequencies despite strongly detrimental effects on fitness. During a mutation accumulation (MA) experiment in C. elegans, a 499 bp deletion in ctb-1 rose to 90% frequency within cells while significantly reducing fitness. During the experiment, the deletion-bearing mtDNA acquired three additional mutations in nd5, namely two single insertion frameshift mutations in a homopolymeric run, and a base substitution. Despite an additional fitness cost of these secondary mutations, all deletion-bearing molecules contained the nd5 mutations at the termination of the MA experiment. The presence of mutant mtDNA was associated with increased mtDNA copy-number. Variation in mtDNA copy-number was greater in the MA lines than in a wildtype nuclear background, including a severe reduction in copy-number at one generational timepoint. Evolutionary replay experiments using different generations of the MA experiment as starting points suggests that two of the secondary mutations contribute to the proliferation of the original ctb-1 deletion by unknown mechanisms.
期刊介绍:
Heredity is the official journal of the Genetics Society. It covers a broad range of topics within the field of genetics and therefore papers must address conceptual or applied issues of interest to the journal''s wide readership