首页> 美国卫生研究院文献>Proceedings of the Royal Society B: Biological Sciences >Experimental evidence for reduced hybrid viability between dwarf and normal ecotypes of lake whitefish (Coregonus clupeaformis Mitchill)
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Experimental evidence for reduced hybrid viability between dwarf and normal ecotypes of lake whitefish (Coregonus clupeaformis Mitchill)

机译:减少矮人和正常生态型湖白鱼(Coregonus clupeaformis Mitchill)之间杂交活力的实验证据

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摘要

Forces driving the evolution of reproductive isolation among natural populations, as well as the mechanisms involved to maintain it, are still poorly understood. Because sympatric fish ecotypes mainly differ in phenotypic traits associated with occupying distinct trophic niches, it is generally believed that reproductive isolation is mainly driven by ecological divergent selection, excluding genome incompatibility as a basis for postmating isolation. We did cross experiments between dwarf and normal ecotypes of lake whitefish (Coregonus clupeaformis Mitchill) originating from distinct glacial refugia to test the hypothesis that their geographical isolation during the Pleistocene may have led to sufficient genetic divergence for the development of reproductive isolation between them before their secondary contact. Similar fertilization success in pure and hybrid crosses indicated the absence of gametic incompatibility between the two ecotypes. In contrast, daily embryonic mortality rates were 2.4–4.7 times higher in reciprocal hybrid crosses compared to pure crosses, which supports our working hypothesis. These results, along with previous morphological and population genetic studies, indicate that both genetic and ecological mechanisms may jointly act to promote speciation among northern freshwater fish ecotypes.
机译:人们仍然很少了解推动自然种群之间生殖隔离发展的力量,以及维持这种隔离所涉及的机制。由于同养鱼类的生态型主要表现在与独特营养位有关的表型特征不同,因此一般认为生殖分离主要由生态差异选择驱动,不包括基因组不相容性作为后期分离的基础。我们在源自不同冰川避难所的湖生白鲑(Coregonus clupeaformis Mitchill)的矮化和正常生态型之间进行了交叉实验,以检验以下假设:它们在更新世期间的地理隔离可能导致足够的遗传差异,从而导致它们之间生殖繁殖的发展。次要联系人。在纯杂交和杂交杂交中相似的施肥成功表明两种生态型之间没有配子不相容性。相比之下,相互杂交杂种的每日胚胎死亡率是纯杂种的2.4-4.7倍,这支持了我们的工作假设。这些结果以及以前的形态学和种群遗传学研究表明,遗传和生态机制都可能共同促进北部淡水鱼生态型之间的物种形成。

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