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在拟暗果蝇中,线粒体DNA的差异并未得到核DNA、形态学或行为学的证实。

Divergence of mitochondrial dna is not corroborated by nuclear dna, morphology, or behavior in Drosophila simulans.

作者信息

Ballard J William O, Chernoff Barry, James Avis C

机构信息

Department of Biological Sciences, University of Iowa, Iowa City 52242, USA.

出版信息

Evolution. 2002 Mar;56(3):527-45. doi: 10.1111/j.0014-3820.2002.tb01364.x.

Abstract

We ask whether the observed mitochondrial DNA (mtDNA) population subdivision of Drosophila simulans is indicative of organismal structure or of specific processes acting on the mitochondrial genome. Factors either intrinsic or extrinsic to the host genome may influence the evolutionary dynamics of mtDNA. Potential intrinsic factors include adaptation of the mitochondrial genome and of nucleomitochondrial gene complexes specific to the local environment. An extrinsic force that has been shown to influence mtDNA evolution in invertebrates is the bacterial endosymbiont Wolbachia. Evidence presented in this study suggests that mtDNA is not a good indicator of organismal subdivision in D. simulans. Furthermore, there is no evidence to suggest that Wolbachia causes any reduction in nuclear gene flow in this species. The observed differentiation in mtDNA is not corroborated by data from NADH: ubiquinone reductase 75kD subunit precursor or the Alcohol dehydrogenase-related loci, from the shape or size of the male genital arch, or from assortative premating behavior. We discuss these results in relation to a mitochondrial genetic species concept and the potential for Wolbachia-induced incompatibility to be a mechanism of speciation in insects. We conclude with an iterated appeal to include phylogenetic and statistical tests of neutrality as a supplement to phylogenetic and population genetic analyses when using mtDNA as an evolutionary marker.

摘要

我们探究了观察到的拟果蝇线粒体DNA(mtDNA)群体细分是指示生物结构,还是作用于线粒体基因组的特定过程。宿主基因组内在或外在的因素可能会影响mtDNA的进化动态。潜在的内在因素包括线粒体基因组以及特定于当地环境的核线粒体基因复合体的适应性。已证明一种影响无脊椎动物mtDNA进化的外在力量是细菌内共生体沃尔巴克氏体。本研究提供的证据表明,mtDNA并非拟果蝇生物细分的良好指标。此外,没有证据表明沃尔巴克氏体导致该物种核基因流的任何减少。从NADH:泛醌还原酶75kD亚基前体或酒精脱氢酶相关基因座的数据、雄性生殖器弓的形状或大小,或交配前的选型行为数据中,均未证实观察到的mtDNA分化。我们结合线粒体遗传物种概念以及沃尔巴克氏体诱导的不相容性作为昆虫物种形成机制的可能性来讨论这些结果。我们最后反复呼吁,在将mtDNA用作进化标记时,应将系统发育和中性统计检验作为系统发育和群体遗传分析的补充。

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