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Plasticity via feedback reduces the cost of developmental instability

机译:通过反馈的可塑性降低了发育不稳定的成本

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摘要

Costs of plasticity are thought to have important physiological and evolutionary consequences. A commonly predicted cost to plasticity is that plastic genotypes are likely to suffer from developmental instability. Adaptive plasticity requires that the developing organism can in some way sense what environment it is in or how well it is performing in that environment. These two information pathways—an “environmental signal” or a “performance signal” that indicates how well a developing phenotype matches the optimum in the current environment—can differ in their consequences for the organism and its evolution. Here, we consider how developmental instability might emerge as a side‐effect of these two distinct mechanisms. Because a performance cue allows a regulatory feedback loop connecting a trait to a feedback signal, we hypothesized that plastic genotypes using a performance signal would be more developmentally robust compared to those using a purely environmental signal. Using a numerical model of a network of gene interactions, we show that plasticity comes at a cost of developmental instability when the plastic response is mediated via an environmental signal, but not when it is mediated via a performance signal. We also show that a performance signal mechanism can evolve even in a constant environment, leading to genotypes preadapted for plasticity to novel environments even in populations without a history of environmental heterogeneity.
机译:可塑性的成本被认为具有重要的生理和进化后果。通常预测的塑性成本是塑料基因型可能患有发育不稳定性。自适应可塑性要求发展中的生物可以以某种方式感知它在哪些环境中或者在这种环境中表现如何。这两个信息途径 - “环境信号”或“性能信号”,其表示显影表型与当前环境中最佳的最佳匹配程度 - 可能因其对生物体的后果而异。在这里,我们考虑发展不稳定性如何作为这两个独特机制的副作用。因为性能提示允许将特征连接到反馈信号的调节反馈回路,我们假设使用性能信号的塑性基因型与使用纯环境信号的塑料基因型将更加发育稳健。使用基因相互作用网络的数值模型,我们表明,当通过环境信号介导塑料响应时,可塑性以发育不稳定性的成本,但是当它通过性能信号介导时而不是介导的。我们还表明,即使在没有环境异质性历史的群体中,也可以在恒定环境中演化性能信号机制即使在恒定的环境中也能够进化基因型。

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