Department of Integrative Biology, University of Guelph, Guelph, Ontario, Canada.
Evol Dev. 2010 May-Jun;12(3):246-57. doi: 10.1111/j.1525-142X.2010.00410.x.
Natural selection requires genetically based phenotypic variation to facilitate its action and cause adaptive evolution. It has become increasingly recognized that morphological development can become canalized likely as a result of selection. However, it is largely unknown how selection may influence canalization over ontogeny and differing environments. Changes in environments or colonization of a novel one is expected to result in adaptive divergence from the ancestral population when selection favors a new phenotypic optimum. In turn, a novel environment may also expose variation previously hidden from natural selection. We tested for changes in phenotypic variation over ontogeny and environments among ecomorphs of Arctic charr (Salvelinus alpinus) from two Icelandic lakes. Populations represented varying degrees of ecological specialization, with one lake population possessing highly specialized ecomorphs exhibiting a large degree of phenotypic divergence, whereas the other displayed more subtle divergence with more ecological overlap. Here we show that ecomorphs hypothesized to be the most specialized in each lake possess significant reductions in shape variation over ontogeny regardless of environmental treatment suggesting canalized development. However, environments did change the amount of shape variation expressed in these ecomorphs, with novel environments slowing the rate at which variation was reduced over ontogeny. Thus, environmental conditions may play an important role in determining the type and amount of genetically based phenotypic variation exposed to natural selection.
自然选择需要基于遗传的表型变异来促进其作用并导致适应性进化。人们越来越认识到,形态发育可能会由于选择而变得渠道化。然而,人们在很大程度上还不知道选择如何影响个体发育和不同环境中的渠道化。当选择有利于新的表型最优时,环境的变化或对新环境的殖民化预计会导致与祖先种群的适应性分歧。反过来,新的环境也可能会暴露以前未被自然选择所掩盖的变异。我们测试了来自冰岛两个湖泊的北极鲑(Salvelinus alpinus)的生态型在个体发育和环境中的表型变异变化。种群代表了不同程度的生态特化,一个湖泊种群拥有高度特化的生态型,表现出很大程度的表型分歧,而另一个种群则表现出更微妙的分歧,生态重叠度更高。在这里,我们表明,假定在每个湖泊中最特化的生态型在个体发育过程中表现出显著减少的形状变异,无论环境处理如何,这表明发育的渠道化。然而,环境确实改变了这些生态型表达的形状变异量,新环境减缓了变异在个体发育过程中减少的速度。因此,环境条件可能在决定暴露于自然选择的遗传表型变异的类型和数量方面发挥重要作用。