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Ecological opportunity may facilitate diversification in Palearctic freshwater organisms: a case study on hydrobiid gastropods

机译:生态机会可促进隐性淡水生物中的多样化:氢化石油纤维素的案例研究

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摘要

Abstract Background Differences in species richness among phylogenetic clades are attributed to clade age and/or variation in diversification rates. Access to ecological opportunity may trigger a temporary increase in diversification rates and ecomorphological variation. In addition, lower body temperatures in poikilothermic animals may result in decreasing speciation rates as proposed by the metabolic theory of ecology. For strictly freshwater organisms, environmental gradients within a river continuum, linked to elevation and temperature, might promote access to ecological opportunity and alter metabolic rates, eventually influencing speciation and extinction processes. To test these hypotheses, we investigated the influence of environmental temperature and elevation, as proxies for body temperature and ecological opportunity, respectively, on speciation rates and ecomorphological divergence. As model systems served two closely related gastropod genera with unequal species richness and habitat preferences – Pseudamnicola and Corrosella. Results Lineage-through-time plots and Bayesian macroevolutionary modeling evidenced that Pseudamnicola species, which typically live in lower reaches of rivers, displayed significantly elevated speciation rates in comparison to the ‘headwater genus’ Corrosella. Moreover, state-dependent speciation models suggested that the speciation rate increased with decreasing elevation, supporting the ecological opportunity hypothesis. In contrast, a significant effect of environmental temperature, as proposed by the metabolic theory of ecology, could not be observed. Disparity-through-time plots, models of ecomorphological evolution, and ancestral habitat estimation showed for Pseudamnicola species rapid morphological divergence shortly after periods of elevational and habitat divergence. In contrast, Corrosella species did not deviate from null models of drift-like evolution. Conclusion Our finding that speciation rates are correlated with elevation and ecomorphological disparity but not with environmental temperatures suggests that differences in ecological opportunity may have played a key role in Corrosella and Pseudamnicola diversifications. We propose that Pseudamnicola lineages experienced higher ecological opportunity through dispersal to new locations or habitats in lowlands, which may explain the increase in speciation rates and morphological change. In contrast, the evolution of Corrosella in headwaters is likely less facilitated by the environment and more by non-ecological processes.
机译:摘要系统血管发育曲线中种类丰富性的摘要差异归因于思潮年龄和/或多样化率的变化。获得生态机会可能会引发多元化率和生态晶体变异的暂时增加。此外,脱水热动物的降低体温可能导致物种生态学理论提出的规模降低。对于严格的淡水生物,河流内的环境梯度与高度和温度相关,可能促进获得生态机遇和改变代谢率,最终影响物业和消灭流程。为了测试这些假设,我们调查了环境温度和高度的影响,分别对体温和生态机会的代理分别对物种温度和生态机遇进行了研究。由于模型系统提供了两个密切相关的胃脂属属,具有不等的物种丰富和栖息地偏好 - Pseudamngola和Corrosella。结果沿着时间绘图和贝叶斯型绘图模型证明了伪变种尼罗拉物种,其通常生活在河流下游,与“地下水属的腐牛菌相比显示了显着提高的物种率。此外,国家依赖的形态模型表明,升高的升高,支持生态机会假设的规格率增加。相比之下,由于生态学的代谢理论提出的环境温度的显着影响,无法观察到。差距通风的地图,生态肌肉演化的模型和祖先栖息地估算显示在高度和栖息地分歧期间不久之后的假肌诺罗拉种类快速形态分歧。相比之下,胸骨菌没有偏离漂移的进化的空模型。结论我们认为质地率与高度和生态差异相关,但不与环境温度有关表明生态机会的差异可能在腐败和伪变种尼罗拉多样化中发挥了关键作用。我们建议通过分散到低地的新地点或栖息地,伪造尼罗拉界限经历了更高的生态机遇,这可以解释规范率和形态变化的增加。相比之下,畜蹄在兽间中的进化可能不太促进环境,更多的是非生态过程。

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