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Evolutionary implications of mitochondrial genetic variation: mitochondrial genetic effects on OXPHOS respiration and mitochondrial quantity change with age and sex in fruit flies.
Wolff, J N; Pichaud, N; Camus, M F; Côté, G; Blier, P U; Dowling, D K.
Affiliation
  • Wolff JN; School of Biological Sciences, Monash University, Clayton, Vic, Australia.
  • Pichaud N; Département de Chimie et Biochimie, Université de Moncton, Moncton, NB, Canada.
  • Camus MF; Départment de Biologie, Université du Québec de Rimouski, Rimouski, QC, Canada.
  • Côté G; School of Biological Sciences, Monash University, Clayton, Vic, Australia.
  • Blier PU; Départment de Biologie, Université du Québec de Rimouski, Rimouski, QC, Canada.
  • Dowling DK; Départment de Biologie, Université du Québec de Rimouski, Rimouski, QC, Canada.
J Evol Biol ; 29(4): 736-47, 2016 Apr.
Article in En | MEDLINE | ID: mdl-26728607
ABSTRACT
The ancient acquisition of the mitochondrion into the ancestor of modern-day eukaryotes is thought to have been pivotal in facilitating the evolution of complex life. Mitochondria retain their own diminutive genome, with mitochondrial genes encoding core subunits involved in oxidative phosphorylation. Traditionally, it was assumed that there was little scope for genetic variation to accumulate and be maintained within the mitochondrial genome. However, in the past decade, mitochondrial genetic variation has been routinely tied to the expression of life-history traits such as fertility, development and longevity. To examine whether these broad-scale effects on life-history trait expression might ultimately find their root in mitochondrially mediated effects on core bioenergetic function, we measured the effects of genetic variation across twelve different mitochondrial haplotypes on respiratory capacity and mitochondrial quantity in the fruit fly, Drosophila melanogaster. We used strains of flies that differed only in their mitochondrial haplotype, and tested each sex separately at two different adult ages. Mitochondrial haplotypes affected both respiratory capacity and mitochondrial quantity. However, these effects were highly context-dependent, with the genetic effects contingent on both the sex and the age of the flies. These sex- and age-specific genetic effects are likely to resonate across the entire organismal life-history, providing insights into how mitochondrial genetic variation may contribute to sex-specific trajectories of life-history evolution.
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Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Oxidative Phosphorylation / Genetic Variation / Aging / Drosophila / Genes, Mitochondrial / Biological Evolution Limits: Animals Language: En Journal: J Evol Biol Journal subject: BIOLOGIA Year: 2016 Document type: Article Affiliation country:

Full text: 1 Collection: 01-internacional Database: MEDLINE Main subject: Oxidative Phosphorylation / Genetic Variation / Aging / Drosophila / Genes, Mitochondrial / Biological Evolution Limits: Animals Language: En Journal: J Evol Biol Journal subject: BIOLOGIA Year: 2016 Document type: Article Affiliation country:
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