种间杂交可以产生新的功能

O. Selz, O. Seehausen
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引用次数: 46

摘要

种间杂交在进化中的作用仍在争论中。种间杂交被认为促进了生态新颖性的进化,因此,当生态机会存在于亲本物种生态位之外时,新的生态位和适应性辐射就会入侵。另一方面,两个生态不同物种之间的杂交后代在各自生态位上的表现可能不如亲本物种,因为杂交后代在两个生态位上的表现都是中间的。因此,杂交的进化结果可能与环境有关,取决于亲本物种之外的生态机会是否存在。令人惊讶的是,这些互补的预测可能从未在动物身上进行过相同的实验。为了做到这一点,我们研究了生态上不同的慈鲷物种之间的杂交种,在以父母双方都适应的食物为食时,是否表现得不如亲本物种,以及相同的杂交种,在以两种物种都不适应的食物为食时,是否表现得比父母更好。我们培育了两个非洲慈鲷的第一代杂交品种。在饲养效率实验中,我们测量了杂交物种和亲本物种在食物类型上的表现,这些食物类型代表亲本物种生态位和额外的“新”生态位,这些生态位不是亲本物种中的任何一种,而是非洲慈鲷辐射中的其他物种。我们发现,与亲本物种相比,杂交种对“新”食物类型的摄食效率更高,但对亲本食物类型的摄食效率通常较低。这表明杂交可以产生与生态相关的功能变异,从而允许获得亲本物种生态位以外的资源。因此,我们为种间杂交对进化影响的生态环境依赖假说提供了支持。
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Interspecific hybridization can generate functional novelty in cichlid fish
The role of interspecific hybridization in evolution is still being debated. Interspecific hybridization has been suggested to facilitate the evolution of ecological novelty, and hence the invasion of new niches and adaptive radiation when ecological opportunity is present beyond the parental species niches. On the other hand, hybrids between two ecologically divergent species may perform less well than parental species in their respective niches because hybrids would be intermediate in performance in both niches. The evolutionary consequences of hybridization may hence be context-dependent, depending on whether ecological opportunities, beyond those of the parental species, do or do not exist. Surprisingly, these complementary predictions may never have been tested in the same experiment in animals. To do so, we investigate if hybrids between ecologically distinct cichlid species perform less well than the parental species when feeding on food either parent is adapted to, and if the same hybrids perform better than their parents when feeding on food none of the species are adapted to. We generated two first-generation hybrid crosses between species of African cichlids. In feeding efficiency experiments we measured the performance of hybrids and parental species on food types representing both parental species niches and additional ‘novel’ niches, not used by either of the parental species but by other species in the African cichlid radiations. We found that hybrids can have higher feeding efficiencies on the ‘novel’ food types but typically have lower efficiencies on parental food types when compared to parental species. This suggests that hybridization can generate functional variation that can be of ecological relevance allowing the access to resources outside of either parental species niche. Hence, we provide support for the hypothesis of ecological context-dependency of the evolutionary impact of interspecific hybridization.
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