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在多周期环境中,复杂数量性状的不稳定可塑性的发育整合与进化。

Developmental integration and evolution of labile plasticity in a complex quantitative character in a multiperiodic environment.

机构信息

Center for Biodiversity Dynamics, Norwegian University of Science and Technology, N-7491 Trondheim, Norway

出版信息

Proc Natl Acad Sci U S A. 2019 Jun 4;116(23):11361-11369. doi: 10.1073/pnas.1900528116. Epub 2019 May 16.

Abstract

Labile plasticity in a complex quantitative character is modeled, with multiple components contributing to net plasticity in the character. Each component has a specific development rate, norm of reaction, and cost of plasticity. For example, thermal adaptation in mammals includes seasonal fat deposition and fur growth, short-term shivering and sweating or panting, and movement between warm and cold sites. Norms of reaction do not reveal patterns of developmental integration, which must be investigated by studies of developmental dynamics in a changing environment. In a periodic environment, a labile character with a single component of plasticity is constrained by filtering environmental frequencies above the development rate and by the cost of plasticity. With multiple components of plasticity, some patterns of integration can alleviate these constraints to greatly improve fidelity of the mean phenotype tracking multiperiodic cycles in the optimum phenotype. This occurs by environmental signal amplification or inhibition through developmental integration among components and by an augmented development rate of net plasticity in the character that reduces environmental frequency filtering. When development of a component with high cost of plasticity is regulated partly by the norm of reaction of another component, evolution can diminish the reaction norm slope of the costly component without curtailing its development, thereby reducing the loss of fitness from its cost of plasticity. Apparent maladaptation in a component of plasticity may be an integral part of an adaptive pattern of developmental integration by mutual inhibition between components and compensatory evolution of a negative component reaction norm slope.

摘要

具有多个组成部分的复杂数量性状的易变可塑性进行建模,这些组成部分共同导致该性状的净可塑性。每个组成部分都有特定的发育速度、反应规范和可塑性成本。例如,哺乳动物的热适应包括季节性脂肪沉积和毛发生长、短期颤抖和出汗或喘气以及在温暖和寒冷地点之间的移动。反应规范并不能揭示发育整合的模式,这必须通过在不断变化的环境中研究发育动态来进行研究。在周期性环境中,具有单一可塑性组成部分的易变特征受到发育速度以上的环境频率过滤和可塑性成本的限制。具有多个可塑性组成部分时,一些整合模式可以缓解这些限制,从而大大提高平均表型跟踪最佳表型多周期性循环的保真度。这是通过组件之间的发育整合进行环境信号放大或抑制来实现的,并且由于该特征的净可塑性的发育速度增加,从而减少了环境频率过滤。当具有高可塑性成本的组成部分的发育部分受到另一组成分的反应规范调节时,进化可以减少昂贵组成分的反应规范斜率,而不会限制其发育,从而减少其可塑性成本造成的适应性丧失。可塑性组成部分的明显适应不良可能是组件之间相互抑制和负组件反应规范斜率的补偿进化的适应性发育整合模式的一个组成部分。

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