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Heritable Micro-environmental Variance Covaries with Fitness in an Outbred Population of Drosophila serrata.


ABSTRACT: The genetic basis of stochastic variation within a defined environment, and the consequences of such micro-environmental variance for fitness are poorly understood . Using a multigenerational breeding design in Drosophila serrata, we demonstrated that the micro-environmental variance in a set of morphological wing traits in a randomly mating population had significant additive genetic variance in most single wing traits. Although heritability was generally low (<1%), coefficients of additive genetic variance were of a magnitude typical of other morphological traits, indicating that the micro-environmental variance is an evolvable trait. Multivariate analyses demonstrated that the micro-environmental variance in wings was genetically correlated among single traits, indicating that common mechanisms of environmental buffering exist for this functionally related set of traits. In addition, through the dominance genetic covariance between the major axes of micro-environmental variance and fitness, we demonstrated that micro-environmental variance shares a genetic basis with fitness, and that the pattern of selection is suggestive of variance-reducing selection acting on micro-environmental variance.

SUBMITTER: Sztepanacz JL 

PROVIDER: S-EPMC5560815 | biostudies-other | 2017 Aug

REPOSITORIES: biostudies-other

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Heritable Micro-environmental Variance Covaries with Fitness in an Outbred Population of <i>Drosophila serrata</i>.

Sztepanacz Jacqueline L JL   McGuigan Katrina K   Blows Mark W MW  

Genetics 20170622 4


The genetic basis of stochastic variation within a defined environment, and the consequences of such micro-environmental variance for fitness are poorly understood . Using a multigenerational breeding design in <i>Drosophila serrata</i>, we demonstrated that the micro-environmental variance in a set of morphological wing traits in a randomly mating population had significant additive genetic variance in most single wing traits. Although heritability was generally low (<1%), coefficients of addit  ...[more]

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