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作为函数值性状的雌性偏好功能的遗传分析。

Genetic analysis of female preference functions as function-valued traits.

作者信息

McGuigan Katrina, Van Homrigh Anna, Blows Mark W

机构信息

School of Integrative Biology, University of Queensland, Brisbane 4072, Australia.

出版信息

Am Nat. 2008 Aug;172(2):194-202. doi: 10.1086/588075.

Abstract

The genetic analysis of female preferences has been seen as a particularly challenging empirical endeavor because of difficulties in generating suitable preference metrics in experiments large enough to adequately characterize variation. In this article, we take an alternative approach, treating female preference as a function-valued trait and exploiting random-coefficient models to characterize the genetic basis of female preference without measuring preference functions in each individual. Applying this approach to Drosophila bunnanda, in which females assess males through a multivariate contact pheromone system, we gain three valuable insights into the genetic basis of female preference functions. First, most genetic variation was attributable to one eigenfunction, suggesting shared genetic control of preferences for nine male pheromones. Second, genetic variance in female preference functions was not associated with genetic variance in the pheromones, implying that genetic variation in female preference did not maintain genetic variation in male traits. Finally, breeding values for female preference functions were skewed away from the direction of selection on the male traits, suggesting directional selection on female preferences. The genetic analysis of female preference functions as function-valued traits offers a robust statistical framework for investigations of female preference, in addition to alleviating some experimental difficulties associated with estimating variation in preference functions.

摘要

由于在足够大的实验中生成合适的偏好度量以充分表征变异存在困难,雌性偏好的遗传分析被视为一项特别具有挑战性的实证研究。在本文中,我们采用了一种替代方法,将雌性偏好视为函数值性状,并利用随机系数模型来表征雌性偏好的遗传基础,而无需测量每个个体的偏好函数。将这种方法应用于邦氏果蝇,其中雌性通过多变量接触性信息素系统评估雄性,我们对雌性偏好函数的遗传基础获得了三个有价值的见解。首先,大多数遗传变异可归因于一个特征函数,这表明对九种雄性信息素的偏好存在共同的遗传控制。其次,雌性偏好函数的遗传方差与信息素的遗传方差无关,这意味着雌性偏好的遗传变异并未维持雄性性状的遗传变异。最后,雌性偏好函数的育种值偏离了雄性性状的选择方向,这表明对雌性偏好存在定向选择。将雌性偏好函数作为函数值性状进行遗传分析,除了减轻与估计偏好函数变异相关的一些实验困难外,还为雌性偏好的研究提供了一个强大的统计框架。

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