SchlÜter A, Parzefall J, Schlupp I
Zoologisches Institut und Zoologisches Museum, Universität Hamburg
Anim Behav. 1998 Jul;56(1):147-53. doi: 10.1006/anbe.1998.0762.
Fluctuating asymmetry is defined as random deviation from perfect bilateral symmetry in otherwise symmetrical morphological traits and originates from developmental errors during ontogeny. It is thought to reflect the inability of a genotype to buffer itself effectively against environmental perturbations, thus providing an honest phenotypic indicator of genetic quality. It has been proposed that females use the degree of asymmetry in male ornaments to assess male quality in mate choice. We studied whether fluctuating asymmetry in vertical bars in the sailfin molly, Poecilia latipinna, is a criterion in female mate preference, as has been shown before in a swordtail, Xiphophorus cortezi. Using both live stimulus males and silicon models, we found that females have significant preferences both for bars per se and for males with symmetrical bars. The total number of bars and the degree of fluctuating asymmetry were negatively related so fluctuating asymmetry in bars may be an honest signal. This phenomenon may have influenced the evolution of the male courtship display in P. latipinna. Copyright 1998 The Association for the Study of Animal Behaviour.
波动不对称性被定义为在其他方面对称的形态特征中与完美双侧对称的随机偏差,其源于个体发育过程中的发育错误。人们认为它反映了一个基因型无法有效地缓冲自身免受环境干扰,从而提供了一个关于遗传质量的真实表型指标。有人提出,雌性在配偶选择中利用雄性装饰物的不对称程度来评估雄性质量。我们研究了帆鳍食蚊鱼(Poecilia latipinna)垂直条纹中的波动不对称性是否像之前在剑尾鱼(Xiphophorus cortezi)中所显示的那样,是雌性配偶偏好的一个标准。通过使用活体刺激雄性和硅模型,我们发现雌性对条纹本身以及具有对称条纹的雄性都有显著偏好。条纹的总数与波动不对称程度呈负相关,因此条纹中的波动不对称性可能是一个真实信号。这种现象可能影响了帆鳍食蚊鱼雄性求偶展示的进化。版权所有1998年动物行为研究协会。