Haber Annat, Dworkin Ian
BEACON Center for the study of Evolution in Action, Michigan State University, East Lansing, Michigan, 48824.
Department of Zoology, Tel Aviv University, Tel Aviv, Israel.
Evolution. 2017 Jan;71(1):66-80. doi: 10.1111/evo.13100. Epub 2016 Nov 9.
The structure of environmentally induced phenotypic covariation can influence the effective strength and magnitude of natural selection. Yet our understanding of the factors that contribute to and influence the evolutionary lability of such covariation is poor. Most studies have either examined environmental variation without accounting for covariation, or examined phenotypic and genetic covariation without distinguishing the environmental component. In this study, we examined the effect of mutational perturbations on different properties of environmental covariation, as well as mean shape. We use strains of Drosophila melanogaster bearing well-characterized mutations known to influence wing shape, as well as naturally derived strains, all reared under carefully controlled conditions and with the same genetic background. We find that mean shape changes more freely than the covariance structure, and that different properties of the covariance matrix change independently from each other. The perturbations affect matrix orientation more than they affect matrix eccentricity or total variance. Yet, mutational effects on matrix orientation do not cluster according to the developmental pathway that they target. These results suggest that it might be useful to consider a more general concept of "decanalization," involving all aspects of variation and covariation.
环境诱导的表型协变结构能够影响自然选择的有效强度和幅度。然而,我们对促成并影响这种协变进化不稳定性的因素了解甚少。大多数研究要么在不考虑协变的情况下考察环境变异,要么在不区分环境成分的情况下考察表型和遗传协变。在本研究中,我们考察了突变扰动对环境协变不同属性以及平均形态的影响。我们使用了携带已知会影响翅形的特征明确突变的黑腹果蝇品系,以及自然衍生的品系,所有品系均在精心控制的条件下饲养,且具有相同的遗传背景。我们发现,平均形态比协变结构变化更自由,并且协方差矩阵的不同属性彼此独立变化。扰动对矩阵方向的影响大于对矩阵偏心率或总方差的影响。然而,突变对矩阵方向的影响并不根据它们所针对的发育途径聚类。这些结果表明,考虑一个更广义的“去分化”概念可能是有用的,该概念涉及变异和协变的所有方面。