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表型可塑性进化的限制因素:表型与可塑性的限度及代价

Constraints on the evolution of phenotypic plasticity: limits and costs of phenotype and plasticity.

作者信息

Murren C J, Auld J R, Callahan H, Ghalambor C K, Handelsman C A, Heskel M A, Kingsolver J G, Maclean H J, Masel J, Maughan H, Pfennig D W, Relyea R A, Seiter S, Snell-Rood E, Steiner U K, Schlichting C D

机构信息

Department of Biology, College of Charleston, Charleston, SC, USA.

Department of Biology, West Chester University, West Chester, PA, USA.

出版信息

Heredity (Edinb). 2015 Oct;115(4):293-301. doi: 10.1038/hdy.2015.8. Epub 2015 Feb 18.

Abstract

Phenotypic plasticity is ubiquitous and generally regarded as a key mechanism for enabling organisms to survive in the face of environmental change. Because no organism is infinitely or ideally plastic, theory suggests that there must be limits (for example, the lack of ability to produce an optimal trait) to the evolution of phenotypic plasticity, or that plasticity may have inherent significant costs. Yet numerous experimental studies have not detected widespread costs. Explicitly differentiating plasticity costs from phenotype costs, we re-evaluate fundamental questions of the limits to the evolution of plasticity and of generalists vs specialists. We advocate for the view that relaxed selection and variable selection intensities are likely more important constraints to the evolution of plasticity than the costs of plasticity. Some forms of plasticity, such as learning, may be inherently costly. In addition, we examine opportunities to offset costs of phenotypes through ontogeny, amelioration of phenotypic costs across environments, and the condition-dependent hypothesis. We propose avenues of further inquiry in the limits of plasticity using new and classic methods of ecological parameterization, phylogenetics and omics in the context of answering questions on the constraints of plasticity. Given plasticity's key role in coping with environmental change, approaches spanning the spectrum from applied to basic will greatly enrich our understanding of the evolution of plasticity and resolve our understanding of limits.

摘要

表型可塑性无处不在,通常被视为生物体在面对环境变化时得以生存的关键机制。由于没有任何生物体具有无限的或理想的可塑性,理论表明表型可塑性的进化必然存在局限(例如,缺乏产生最优性状的能力),或者可塑性可能存在内在的重大代价。然而,众多实验研究并未发现广泛存在的代价。在明确区分可塑性代价与表型代价后,我们重新评估了可塑性进化的局限以及通才与专才对比的基本问题。我们主张这样一种观点,即宽松选择和可变的选择强度可能比可塑性的代价更能限制可塑性的进化。某些形式的可塑性,如学习,可能本身就代价高昂。此外,我们研究了通过个体发育、跨环境缓解表型代价以及条件依赖假说来回代表型代价的机会。我们提出了在回答关于可塑性限制问题的背景下,运用新的和经典的生态参数化、系统发育学和组学方法来进一步探究可塑性局限的途径。鉴于可塑性在应对环境变化中的关键作用,从应用到基础的各种方法将极大地丰富我们对可塑性进化的理解,并解决我们对其局限性的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8062/4815460/46e280edc339/hdy20158f1.jpg

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