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handicap原则的二倍体模型

Diploid models of the handicap principle.

作者信息

Tomlinson I P

机构信息

Department of Genetics, Cambridge, U.K.

出版信息

Heredity (Edinb). 1988 Apr;60 ( Pt 2):283-93. doi: 10.1038/hdy.1988.44.

Abstract

"Fisherian" models of sexual selection by female choice assume that females prefer male characters which are initially advantageous or neutral; character and preference then spread through the population. Once female preference has evolved to a higher frequency, the male character can become more extreme and disadvantageous by the action of some force such as the "super-normal stimulus". By contrast, the "handicap principle" of sexual selection proposes that females should prefer more extreme, disadvantaged males: males who survive the disadvantage of the "handicap" must be fitter in other respects. Previous models of various forms of the "handicap principle" have shown that it is very unlikely to work as an alternative to the "Fisherian process". However, recent haploid models have shown that a "condition-dependent handicap" might evolve. Diploid models show that the "condition-dependent handicap" model does not work. Models of "handicaps" operating together with the "Fisherian process" are also presented. It is inferred that "Fisherian" models are more likely than "handicap" models to account for the evolution of male sexual ornaments, although a "handicap" mechanism may aid the operation of the "Fisherian process".

摘要

由雌性选择进行性选择的“费希尔式”模型假定,雌性偏好那些最初具有优势或中性的雄性特征;随后特征和偏好会在种群中传播。一旦雌性偏好进化到更高频率,雄性特征可能会因“超常刺激”等某种力量的作用而变得更加极端且不利。相比之下,性选择的“ handicap 原则”提出,雌性应该更喜欢更极端、处于劣势的雄性:能够在“ handicap ”的劣势中存活下来的雄性在其他方面一定更健康。先前各种形式的“ handicap 原则”模型表明,它作为“费希尔过程”的替代方案很难起作用。然而,最近的单倍体模型表明,“条件依赖型 handicap ”可能会进化。二倍体模型表明“条件依赖型 handicap ”模型不起作用。还提出了与“费希尔过程”共同起作用的“ handicap ”模型。据推断,“费希尔式”模型比“ handicap ”模型更有可能解释雄性性装饰的进化,尽管“ handicap ”机制可能有助于“费希尔过程”的运作。

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