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Developmental instability is genetically correlated with phenotypic plasticity, constraining heritability, and fitness

机译:发育不稳定性与表型可塑性,遗传力和适应性在遗传上相关

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Although adaptive plasticity would seem always to be favored by selection, it occurs less often than expected. This lack of ubiquity suggests that there must be trade-offs, costs, or limitations associated with plasticity. Yet, few costs have been found. We explore one type of limitation, a correlation between plasticity and developmental instability, and use quantitative genetic theory to show why one should expect a genetic correlation. We test that hypothesis using the Landsberg erecta × Cape Verde Islands recombinant inbred lines (RILs) of Arabidopsis thaliana. RILs were grown at four different nitrogen (N) supply levels that span the range of N availabilities previously documented in North American field populations. We found a significant multivariate relationship between the cross-environment trait plasticity and the within-environment, within-RIL developmental instability across 13 traits. This genetic covariation between plasticity and developmental instability has two costs. First, theory predicts diminished fitness for highly plastic lines under stabilizing selection, because their developmental instability and variance around the optimum phenotype will be greater compared to nonplastic genotypes. Second, empirically the most plastic traits exhibited heritabilities reduced by 57% on average compared to nonplastic traits. This demonstration of potential costs in inclusive fitness and heritability provoke a rethinking of the evolutionary role of plasticity.
机译:尽管自适应可塑性似乎总是​​受到选择的青睐,但它发生的频率却比预期的少。这种普遍性的缺乏表明必须在可塑性方面进行权衡,成本或限制。然而,几乎没有成本。我们探索一种类型的局限性,即可塑性与发育不稳定性之间的相关性,并使用定量遗传理论来说明为什么人们应该期望遗传相关性。我们使用拟南芥的Landsberg erecta×佛得角群岛重组自交系(RIL)检验该假设。 RILs在四个不同的氮(N)供应水平下生长,该水平跨越了以前在北美田间种群中记录的N利用率范围。我们发现跨环境性状可塑性与跨13个性状的环境内,RIL内发育不稳定性之间存在显着的多元关系。可塑性和发育不稳定性之间的遗传共变有两个代价。首先,理论预测在稳定选择下高塑性系的适应性会降低,因为与非塑性基因型相比,它们在最佳表型周围的发育不稳定性和变异性更大。其次,根据经验,与非塑性性状相比,大多数可塑性性状表现出的遗传力平均降低了57%。包容性适应性和遗传力的潜在成本的证明引发了对可塑性进化作用的重新思考。

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