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果蝇亚暗果蝇线粒体DNA对代谢率的群体内遗传效应。

Within-population genetic effects of mtDNA on metabolic rate in Drosophila subobscura.

作者信息

Kurbalija Novičić Z, Immonen E, Jelić M, AnÐelković M, Stamenković-Radak M, Arnqvist G

机构信息

Institute for Biological Research, University of Belgrade, Belgrade, Serbia.

出版信息

J Evol Biol. 2015 Feb;28(2):338-46. doi: 10.1111/jeb.12565. Epub 2015 Jan 6.

Abstract

A growing body of research supports the view that within-species sequence variation in the mitochondrial genome (mtDNA) is functional, in the sense that it has important phenotypic effects. However, most of this empirical foundation is based on comparisons across populations, and few studies have addressed the functional significance of mtDNA polymorphism within populations. Here, using mitonuclear introgression lines, we assess differences in whole-organism metabolic rate of adult Drosophila subobscura fruit flies carrying either of three different sympatric mtDNA haplotypes. We document sizeable, up to 20%, differences in metabolic rate across these mtDNA haplotypes. Further, these mtDNA effects are to some extent sex specific. We found no significant nuclear or mitonuclear genetic effects on metabolic rate, consistent with a low degree of linkage disequilibrium between mitochondrial and nuclear genes within populations. The fact that mtDNA haplotype variation within a natural population affects metabolic rate, which is a key physiological trait with important effects on life-history traits, adds weight to the emergent view that mtDNA haplotype variation is under natural selection and it revitalizes the question as to what processes act to maintain functional mtDNA polymorphism within populations.

摘要

越来越多的研究支持这样一种观点,即线粒体基因组(mtDNA)中的种内序列变异具有功能性,也就是说它具有重要的表型效应。然而,这一实证基础大多基于群体间的比较,很少有研究探讨群体内mtDNA多态性的功能意义。在此,我们利用线粒体-核基因渐渗系,评估携带三种不同同域mtDNA单倍型之一的成年暗果蝇全生物体代谢率的差异。我们记录了这些mtDNA单倍型之间代谢率高达20%的显著差异。此外,这些mtDNA效应在一定程度上具有性别特异性。我们发现对代谢率没有显著的核基因或线粒体-核基因遗传效应,这与群体中线粒体基因和核基因之间低程度的连锁不平衡一致。自然群体内mtDNA单倍型变异会影响代谢率,而代谢率是对生活史性状有重要影响的关键生理性状,这一事实进一步支持了mtDNA单倍型变异受到自然选择的新观点,并重新引发了关于哪些过程在群体内维持功能性mtDNA多态性的问题。

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