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EVOLUTION AND EXTINCTION IN A CHANGING ENVIRONMENT: A QUANTITATIVE-GENETIC ANALYSIS.变化环境中的进化与灭绝:定量遗传学分析
Evolution. 1995 Feb;49(1):151-163. doi: 10.1111/j.1558-5646.1995.tb05967.x.
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Environmental stress correlates with increases in both genetic and residual variances: A meta-analysis of animal studies.环境压力与遗传方差和剩余方差的增加相关:动物研究的荟萃分析。
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Are heritability and selection related to population size in nature? Meta-analysis and conservation implications.在自然界中,遗传力和选择与种群大小有关吗?荟萃分析及保护意义。
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Quantitative Genetic Architecture at Latitudinal Range Boundaries: Reduced Variation but Higher Trait Independence.纬度分布范围边界处的数量遗传结构:变异减少但性状独立性更高。
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The vulnerability of species to range expansions by predators can be predicted using historical species associations and body size.利用历史物种关联和体型,可以预测物种对捕食者范围扩张的脆弱性。
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Effects of spring temperatures on the strength of selection on timing of reproduction in a long-distance migratory bird.春季温度对一种长距离候鸟繁殖时间选择强度的影响。
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Introduction beyond a species range: a relationship between population origin, adaptive potential and plant performance.引言:超出物种范围:种群起源、适应潜力与植物表现之间的关系。
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The European functional tree of bird life in the face of global change.面对全球变化的欧洲鸟类生活功能树
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可进化性与生物地理学相遇:在高和低环境适宜性条件下,进化潜力都会降低。

Evolvability meets biogeography: evolutionary potential decreases at high and low environmental favourability.

作者信息

Martínez-Padilla J, Estrada A, Early R, Garcia-Gonzalez F

机构信息

Research Unit of Biodiversity, UMIB (CSIC, PA), University of Oviedo, C/Gonzalo Gutiérrez Quirós, s/n, 33600, Mieres, Asturias, Spain

Estación Biológica de Doñana, C/Américo Vespucio, 26, 41092 Sevilla, Spain.

出版信息

Proc Biol Sci. 2017 Jun 14;284(1856). doi: 10.1098/rspb.2017.0516.

DOI:10.1098/rspb.2017.0516
PMID:28615500
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC5474074/
Abstract

Understanding and forecasting the effects of environmental change on wild populations requires knowledge on a critical question: do populations have the ability to evolve in response to that change? However, our knowledge on how evolution works in wild conditions under different environmental circumstances is extremely limited. We investigated how environmental variation influences the evolutionary potential of phenotypic traits. We used published data to collect or calculate 135 estimates of evolvability of morphological traits of European wild bird populations. We characterized the environmental favourability of each population throughout the species' breeding distribution. Our results suggest that the evolutionary potential of morphological traits decreases as environmental favourability becomes high or low. Strong environmental selection pressures and high intra-specific competition may reduce species' evolutionary potential in low- and high- favourability areas, respectively. This suggests that species may be least able to adapt to new climate conditions at their range margins and at the centre. Our results underscore the need to consider the evolutionary potential of populations when studying the drivers of species distributions, particularly when predicting the effects of environmental change. We discuss the utility of integrating evolutionary dynamics into a biogeographical perspective to understand how environmental variation shapes evolutionary patterns. This approach would also produce more reliable predictions about the effect of environmental change on population persistence and therefore on biodiversity.

摘要

理解和预测环境变化对野生种群的影响需要了解一个关键问题

种群是否有能力随着这种变化而进化?然而,我们对进化在不同环境条件下的野生环境中如何起作用的了解极为有限。我们研究了环境变异如何影响表型性状的进化潜力。我们利用已发表的数据收集或计算了欧洲野生鸟类种群形态性状可进化性的135个估计值。我们描述了每个种群在整个物种繁殖分布范围内的环境适宜性。我们的结果表明,随着环境适宜性变得过高或过低,形态性状的进化潜力会降低。强大的环境选择压力和高强度的种内竞争可能分别在低适宜性和高适宜性地区降低物种的进化潜力。这表明物种在其分布范围的边缘和中心可能最无力适应新的气候条件。我们的结果强调,在研究物种分布的驱动因素时,特别是在预测环境变化的影响时,需要考虑种群的进化潜力。我们讨论了将进化动态纳入生物地理学视角以理解环境变异如何塑造进化模式的实用性。这种方法还将对环境变化对种群持久性进而对生物多样性的影响产生更可靠的预测。