首页> 外文期刊>Ecology and Evolution >Body shape differences in a pair of closely related Malawi cichlids and their hybrids: Effects of genetic variation, phenotypic plasticity, and transgressive segregation
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Body shape differences in a pair of closely related Malawi cichlids and their hybrids: Effects of genetic variation, phenotypic plasticity, and transgressive segregation

机译:身体形状在一对密切相关的马拉维辣椒状物及其杂种中的差异:遗传变异,表型可塑性和侵袭偏析的影响

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Abstract Phenotypic differences may have genetic and plastic components. Here, we investigated the contributions of both for differences in body shape in two species of Lake Malawi cichlids using wild-caught specimens and a common garden experiment. We further hybridized the two species to investigate the mode of gene action influencing body shape differences and to examine the potential for transgressive segregation. We found that body shape differences between the two species observed in the field are maintained after more than 10 generations in a standardized environment. Nonetheless, both species experienced similar changes in the laboratory environment. Our hybrid cross experiment confirmed that substantial variation in body shape appears to be genetically determined. The data further suggest that the underlying mode of gene action is complex and cannot be explained by simple additive or additive-dominance models. Transgressive phenotypes were found in the hybrid generations, as hybrids occupied significantly more morphospace than both parentals combined. Further, the body shapes of transgressive individuals resemble the body shapes observed in other Lake Malawi rock-dwelling genera. Our findings indicate that body shape can respond to selection immediately, through plasticity, and over longer timescales through adaptation. In addition, our results suggest that hybridization may have played an important role in the diversification of Lake Malawi cichlids through creating new phenotypic variation.
机译:摘要表型差异可能具有遗传和塑料部件。在这里,我们调查了使用野生捕获的标本和共同的园林实验,对两种湖马拉维辣椒制湖体形状差异的贡献。我们进一步杂交两种物种来研究影响体形差异的基因作用的模式,并检查近迁移偏析的可能性。我们发现在标准化环境中超过10代观察到该领域观察到的两个物种之间的体形差异。尽管如此,两种物种在实验室环境中经历了类似的变化。我们的杂种交叉实验证实,体形的大量变化似乎是遗传确定的。数据进一步表明基因作用的底层模式是复杂的,不能通过简单的添加剂或添加剂 - 优势模型来解释。在杂交代代中发现了泛侵剧表型,因为杂种的含量比两种父母相结合得多。此外,越野岩石岩石住宅在其他湖泊中观察到的身体形状类似于在其他湖泊中观察到的身体形状。我们的研究结果表明,体形可以通过可塑性立即响应选择,并通过适应通过较长的时间锻炼。此外,我们的结果表明,通过产生新的表型变异,杂交可能在马拉维辣椒状湖的多样化中发挥着重要作用。

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