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自然实验的经验教训:米达斯丽鱼物种复合体中的异域形态分歧和同域多样化在很大程度上受到生态的确定性影响。

Lessons from a natural experiment: Allopatric morphological divergence and sympatric diversification in the Midas cichlid species complex are largely influenced by ecology in a deterministic way.

作者信息

Kautt Andreas F, Machado-Schiaffino Gonzalo, Meyer Axel

机构信息

Department of Biology University of Konstanz Universitätsstraße 10 78457 Konstanz Germany.

Current Address: Genetics Area, Department of Functional Biology University of Oviedo 33006 Oviedo Spain.

出版信息

Evol Lett. 2018 Jun 27;2(4):323-340. doi: 10.1002/evl3.64. eCollection 2018 Aug.

Abstract

Explaining why some lineages diversify while others do not and how are key objectives in evolutionary biology. Young radiations of closely related species derived from the same source population provide an excellent opportunity to disentangle the relative contributions of possible drivers of diversification. In these settings, lineage-specific effects are shared and can be ruled out. Moreover, the relevant demographic and ecological parameters can be estimated accurately. Midas cichlid fish in Nicaragua have repeatedly colonized several crater lakes, diverged from the same source populations, and, interestingly, diversified in some of them but not others. Here, using the most comprehensive molecular and geometric morphometric data set on Midas cichlids to date (∼20,000 SNPs, 12 landmarks, ∼700 individuals), we aim to understand why and how crater lake populations diverge and why some of them are more prone to diversify in sympatry than others. Taking ancestor-descendant relationships into account, we find that Midas cichlids diverged in parallel from their source population mostly-but not exclusively-by evolving more slender body shapes in all six investigated crater lakes. Admixture among crater lakes has possibly facilitated this process in one case, but overall, admixture and secondary waves of colonization cannot predict morphological divergence and intralacustrine diversification. Instead, morphological divergence is larger the more dissimilar a crater lake is compared to the source lake and happens rapidly after colonization followed by a slow-down with time. Our data also provide some evidence that founder effects may positively contribute to divergence. The depth of a crater lake is positively associated with variation in body shapes (and number of species), presumably by providing more ecological opportunities. In conclusion, we find that parallel morphological divergence in allopatry and the propensity for diversification in sympatry across the entire Midas cichlid fish radiation is partly predictable and mostly driven by ecology.

摘要

解释为什么有些谱系会分化而有些则不会以及如何分化是进化生物学的关键目标。源自同一源种群的密切相关物种的年轻辐射为厘清分化可能驱动因素的相对贡献提供了绝佳机会。在这些情况下,谱系特异性效应是共享的,可以排除。此外,相关的人口统计学和生态参数可以准确估计。尼加拉瓜的米达斯丽鱼科鱼类多次殖民了几个火山口湖,从相同的源种群分化而来,有趣的是,它们在其中一些湖泊中实现了多样化,而在其他湖泊中则没有。在这里,我们使用迄今为止关于米达斯丽鱼科鱼类最全面的分子和几何形态测量数据集(约20,000个单核苷酸多态性、12个地标、约700个个体),旨在了解火山口湖种群为何以及如何分化,以及为什么其中一些种群比其他种群更倾向于在同域中实现多样化。考虑到祖先-后代关系,我们发现米达斯丽鱼科鱼类在所有六个被调查的火山口湖中大多(但并非全部)通过进化出更细长的体型与它们的源种群平行分化。在一个案例中,火山口湖之间的混合可能促进了这一过程,但总体而言,混合和二次殖民浪潮无法预测形态差异和湖内多样化。相反,与源湖相比,火山口湖差异越大,形态差异就越大,并且在殖民后迅速发生,随后随着时间放缓。我们的数据还提供了一些证据表明奠基者效应可能对分化有积极贡献。火山口湖的深度与体型变化(以及物种数量)呈正相关,大概是因为提供了更多的生态机会。总之,我们发现米达斯丽鱼科鱼类辐射中异地的平行形态差异和同域多样化的倾向部分是可预测的,并且主要由生态驱动。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b232/6121794/b893f4167d7c/EVL3-2-323-g001.jpg

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