Evolution, systematics, and the unnatural history of mitochondrial DNA.

Jeffrey H Schwartz
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引用次数: 6

Abstract

The tenets underlying the use of mtDNA in phylogenetic and systematic analyses are strict maternal inheritance, clonality, homoplasmy, and difference due to mutation: that is, there are species-specific mtDNA sequences and phylogenetic reconstruction is a matter of comparing these sequences and inferring closeness of relatedness from the degree of sequence similarity. Yet, how mtDNA behavior became so defined is mysterious. Even though early studies of fertilization demonstrated for most animals that not only the head, but the sperm's tail and mitochondria-bearing midpiece penetrate the egg, the opposite - only the head enters the egg - became fact, and mtDNA conceived as maternally transmitted. When midpiece/tail penetration was realized as true, the conceptions 'strict maternal inheritance', etc., and their application to evolutionary endeavors, did not change. Yet there is mounting evidence of paternal mtDNA transmission, paternal and maternal combination, intracellular recombination, and intra- and intercellular heteroplasmy. Clearly, these phenomena impact the systematic and phylogenetic analysis of mtDNA sequences.

进化,系统学,以及线粒体DNA的非自然历史。
在系统发育和系统分析中使用mtDNA的原则是严格的母系遗传、克隆性、同源性和突变差异:也就是说,存在物种特异性的mtDNA序列,系统发育重建是比较这些序列并从序列相似性推断亲缘关系的密切程度的问题。然而,mtDNA的行为是如何被如此定义的还是个谜。尽管早期的受精研究表明,对大多数动物来说,不仅头部,而且精子的尾巴和携带线粒体的中间部分都能穿透卵子,但事实恰恰相反——只有头部进入卵子——mtDNA是通过母体传播的。当中段/尾部穿透被认识为真实时,“严格的母系遗传”等概念以及它们在进化努力中的应用并没有改变。然而,有越来越多的证据表明,父系mtDNA传递,父系和母系组合,细胞内重组,细胞内和细胞间异质性。显然,这些现象影响了mtDNA序列的系统和系统发育分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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