Faculty of Life Sciences, University of Manchester, United Kingdom.
PLoS One. 2006 Dec 20;1(1):e7. doi: 10.1371/journal.pone.0000007.
The nature of developmental buffering processes has been debated extensively, based on both theoretical reasoning and empirical studies. In particular, controversy has focused on the question of whether distinct processes are responsible for canalization, the buffering against environmental or genetic variation, and for developmental stability, the buffering against random variation intrinsic in developmental processes. Here, we address this question for the size and shape of Drosophila melanogaster wings in an experimental design with extensively replicated and fully controlled genotypes. The amounts of variation among individuals and of fluctuating asymmetry differ markedly among genotypes, demonstrating a clear genetic basis for size and shape variability. For wing shape, there is a high correlation between the amounts of variation among individuals and fluctuating asymmetry, which indicates a correspondence between the two types of buffering. Likewise, the multivariate patterns of shape variation among individuals and of fluctuating asymmetry show a close association. For wing size, however, the amounts of individual variation and fluctuating asymmetry are not correlated. There was a significant link between the amounts of variation between wing size and shape, more so for fluctuating asymmetry than for variation among individuals. Overall, these experiments indicate a considerable degree of shared control of individual variation and fluctuating asymmetry, although it appears to differ between traits.
发育缓冲过程的本质一直是理论推理和实证研究的焦点。特别是,争议集中在以下问题上:是否有不同的过程负责对环境或遗传变异的 canalization(缓冲),以及对发育过程内在的随机变异的发育稳定性(缓冲)。在这里,我们在一个具有广泛复制和完全控制基因型的实验设计中,针对黑腹果蝇翅膀的大小和形状来解决这个问题。个体之间的变异量和波动不对称性在基因型之间有显著差异,这表明大小和形状可变性有明显的遗传基础。对于翅膀形状,个体之间的变异量和波动不对称性之间有很高的相关性,这表明两种缓冲方式之间存在对应关系。同样,个体之间的形状变异和波动不对称性的多元模式也密切相关。然而,对于翅膀大小,个体之间的变异量和波动不对称性之间没有相关性。翅膀大小和形状之间的变异量之间存在显著的关联,对于波动不对称性而言,这种关联比个体之间的变异更为显著。总的来说,这些实验表明,个体变异和波动不对称性有相当程度的共同控制,尽管它们在不同性状之间似乎有所不同。