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再探硬选择与软选择:自然选择如何在现实世界中推动进化

Hard and Soft Selection Revisited: How Evolution by Natural Selection Works in the Real World.

作者信息

Reznick David

机构信息

From the Department of Biology, University of California, Riverside, CA 92521, USA.

出版信息

J Hered. 2016 Jan;107(1):3-14. doi: 10.1093/jhered/esv076. Epub 2015 Sep 30.

Abstract

The modern synthesis of evolutionary biology unified Darwin's natural selection with Mendelian genetics, but at the same time it created the dilemma of genetic load. Lewontin and Hubby's (1966) and Harris's (1966) characterization of genetic variation in natural populations increased the apparent burden of this load. Neutrality or near neutrality of genetic variation was one mechanism proposed for the revealed excessive genetic variation. Bruce Wallace coined the term "soft selection" to describe an alternative way for natural selection to operate that was consistent with observed variation. He envisioned nature as presenting ecological vacancies that could be filled by diverse genotypes. Survival and successful reproduction was a combined function of population density, genotype, and genotype frequencies, rather than a fixed value of the relative fitness of each genotype. My goal in this review is to explore the importance of soft selection in the real world. My motive and that of my colleagues as described here is not to explain what maintains genetic variation in natural populations, but rather to understand the factors that shape how organisms adapt to natural environments. We characterize how feedbacks between ecology and evolution shape both evolution and ecology. These feedbacks are mediated by density- and frequency-dependent selection, the mechanisms that underlie soft selection. Here, I report on our progress in characterizing these types of selection with a combination of a consideration of the published literature and the results from my collaborators' and my research on natural populations of guppies.

摘要

进化生物学的现代综合理论将达尔文的自然选择与孟德尔遗传学统一起来,但与此同时也产生了遗传负荷的困境。莱翁汀和哈比(1966年)以及哈里斯(1966年)对自然种群中遗传变异的描述增加了这种负荷的明显负担。遗传变异的中性或近中性是为所揭示的过度遗传变异提出的一种机制。布鲁斯·华莱士创造了“软选择”一词来描述自然选择运作的另一种方式,这种方式与观察到的变异相一致。他设想自然界存在着可以被不同基因型填补的生态空位。生存和成功繁殖是种群密度、基因型和基因型频率的综合函数,而不是每个基因型相对适合度的固定值。我在这篇综述中的目标是探讨软选择在现实世界中的重要性。我和我的同事们在此所描述的动机不是解释自然种群中遗传变异的维持机制,而是理解塑造生物体如何适应自然环境的因素。我们描述了生态与进化之间的反馈如何塑造进化和生态。这些反馈是由密度依赖和频率依赖选择介导的,而密度依赖和频率依赖选择是软选择的基础机制。在这里,我结合已发表的文献以及我和我的合作者对孔雀鱼自然种群的研究结果,报告我们在描述这类选择方面所取得的进展。

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