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表型可塑性的遗传学. XIII. 与发育不稳定性的相互作用。

The genetics of phenotypic plasticity. XIII. Interactions with developmental instability.

机构信息

Division of Environmental Biology, National Science Foundation 4201 Wilson Blvd., Arlington, Virginia, 22230.

出版信息

Ecol Evol. 2014 Apr;4(8):1347-60. doi: 10.1002/ece3.1039. Epub 2014 Mar 18.

Abstract

In a heterogeneous environment, natural selection on a trait can lead to a variety of outcomes, including phenotypic plasticity and bet-hedging through developmental instability. These outcomes depend on the magnitude and pattern of that heterogeneity and the spatial and temporal distribution of individuals. However, we do not know if and how those two outcomes might interact with each other. I examined the joint evolution of plasticity and instability through the use of an individual-based simulation in which each could be genetically independent or pleiotropically linked. When plasticity and instability were determined by different loci, the only effect on the evolution of plasticity was the elimination of plasticity as a bet-hedging strategy. In contrast, the effects on the evolution of instability were more substantial. If conditions were such that the population was likely to evolve to the optimal reaction norm, then instability was disfavored. Instability was favored only when the lack of a reliable environmental cue disfavored plasticity. When plasticity and instability were determined by the same loci, instability acted as a strong limitation on the evolution of plasticity. Under some conditions, selection for instability resulted in maladaptive plasticity. Therefore, before testing any models of plasticity or instability evolution, or interpreting empirical patterns, it is important to know the ecological, life history, developmental, and genetic contexts of trait phenotypic plasticity and developmental instability.

摘要

在异质环境中,对特征的自然选择可能导致多种结果,包括表型可塑性和通过发育不稳定性进行的风险分摊。这些结果取决于异质性的大小和模式以及个体的空间和时间分布。然而,我们不知道这两种结果是否以及如何相互作用。我通过使用个体为基础的模拟来研究可塑性和不稳定性的共同进化,其中每个可塑性和不稳定性都可以是遗传独立的或多效性相关的。当可塑性和不稳定性由不同的基因座决定时,对可塑性进化的唯一影响是将可塑性作为风险分摊策略而消除。相比之下,对不稳定性进化的影响更为显著。如果条件使得种群有可能进化到最佳反应规范,那么不稳定性就会受到不利影响。只有当缺乏可靠的环境线索时,不稳定性才会有利于可塑性。当可塑性和不稳定性由相同的基因座决定时,不稳定性对可塑性进化的限制就很大。在某些条件下,对不稳定性的选择导致适应性差的可塑性。因此,在测试任何关于可塑性或不稳定性进化的模型之前,或者在解释经验模式之前,了解特征表型可塑性和发育不稳定性的生态、生活史、发育和遗传背景非常重要。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/091f/4020694/d6443adfa31e/ece30004-1347-f1.jpg

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