首页> 外文期刊>Evolution: International Journal of Organic Evolution >CRATER LAKE HABITAT PREDICTS MORPHOLOGICAL DIVERSITY IN ADAPTIVE RADIATIONS OF CICHLID FISHES
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CRATER LAKE HABITAT PREDICTS MORPHOLOGICAL DIVERSITY IN ADAPTIVE RADIATIONS OF CICHLID FISHES

机译:RATE鱼栖息地预测适应性鱼类鱼类的形态多样性

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Adaptive radiations provide an excellent opportunity for studying the correlates and causes for the origin of biodiversity. In these radiations, species diversity may be influenced by either the ecological and physical environment, intrinsic lineage effects, or both. Disentangling the relative contributions of these factors in generating biodiversity remains amajor challenge in understanding why a lineage does or does not radiate. Here, we examined morphological variation in body shape for replicate flocks of Nicaraguan Midas cichlid fishes and tested its association with biological and physical characteristics of their crater lakes. We found that variability of body elongation, an adaptive trait in freshwater fishes, is mainly predicted by average lake depth (N = 6, P < 0.001, R2 = 0.96). Other factors considered, including lake age, surface area, littoral zone area, number of co-occurring fish species, and g~enetic diversity of the Midas flock, did not significantly predict morphological variability.We also showed that lakes with a larger littoral zone have on average higher bodied Midas cichlids, indicating that Midas cichlid flocks are locally adapted to their crater lake habitats. In conclusion, we found that a lake's habitat predicts the magnitude and the diversity of body elongation in repeated cichlid adaptive radiations.
机译:适应性辐射为研究生物多样性起源的相关性和原因提供了极好的机会。在这些辐射中,​​物种多样性可能受到生态和物理环境,固有谱系效应或两者的影响。弄清这些因素在产生生物多样性方面的相对贡献仍然是理解谱系为什么会辐射或不辐射的主要挑战。在这里,我们检查了尼加拉瓜Midas丽鱼科鱼类的成群鱼体形的形态变异,并测试了其与火山口湖的生物学和物理特征的关系。我们发现,身体伸长的变异性(淡水鱼的一种适应性状)主要由平均湖泊深度来预测(N = 6,P <0.001,R2 = 0.96)。考虑的其他因素,包括湖龄,表面积,沿岸带面积,共生鱼种数量以及麦达斯羊群的种群遗传多样性,均不能显着预测形态变异性。我们还表明,沿岸带较大的湖泊具有平均较高的麦达斯慈鲷鱼体,表明麦达斯慈鲷鱼群在当地适应了火山口湖生境。总而言之,我们发现湖泊的栖息地可以预测反复丽鱼科鱼适应性辐射的幅度和身体伸长的多样性。

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