Institute of Biodiversity, Animal Health, and Comparative Medicine, University of Glasgow, Glasgow, UK.
Evol Dev. 2020 Jan;22(1-2):56-70. doi: 10.1111/ede.12304. Epub 2019 Jul 26.
The generation of variation is paramount for the action of natural selection. Although biologists are now moving beyond the idea that random mutation provides the sole source of variation for adaptive evolution, we still assume that variation occurs randomly. In this review, we discuss an alternative view for how phenotypic plasticity, which has become well accepted as a source of phenotypic variation within evolutionary biology, can generate nonrandom variation. Although phenotypic plasticity is often defined as a property of a genotype, we argue that it needs to be considered more explicitly as a property of developmental systems involving more than the genotype. We provide examples of where plasticity could be initiating developmental bias, either through direct active responses to similar stimuli across populations or as the result of programmed variation within developmental systems. Such biased variation can echo past adaptations that reflect the evolutionary history of a lineage but can also serve to initiate evolution when environments change. Such adaptive programs can remain latent for millions of years and allow development to harbor an array of complex adaptations that can initiate new bouts of evolution. Specifically, we address how ideas such as the flexible stem hypothesis and cryptic genetic variation overlap, how modularity among traits can direct the outcomes of plasticity, and how the structure of developmental signaling pathways is limited to a few outcomes. We highlight key questions throughout and conclude by providing suggestions for future research that can address how plasticity initiates and harbors developmental bias.
变异的产生对于自然选择的作用至关重要。尽管生物学家现在已经超越了随机突变提供适应进化唯一变异源的观点,但我们仍然假设变异是随机发生的。在这篇综述中,我们讨论了另一种观点,即表型可塑性如何产生非随机变异,表型可塑性已被广泛接受为进化生物学中表型变异的来源。虽然表型可塑性通常被定义为基因型的一种特性,但我们认为,它需要更明确地被视为涉及基因型以上的发育系统的特性。我们提供了一些例子,说明可塑性如何引发发育偏向,无论是通过在种群之间对类似刺激的直接主动反应,还是由于发育系统内的程序化变异。这种有偏差的变异可以反映谱系的进化历史,从而引发进化,也可以在环境发生变化时引发进化。这种适应性程序可以潜伏数百万年,使发育过程中容纳一系列复杂的适应性,从而引发新的进化。具体来说,我们探讨了诸如灵活茎假说和隐性遗传变异等观点是如何重叠的,性状之间的模块性如何指导可塑性的结果,以及发育信号通路的结构如何局限于少数结果。我们在整个过程中强调了关键问题,并最后提出了未来研究的建议,这些研究可以解决可塑性如何引发和容纳发育偏向的问题。