探讨气候生态位变化在南美南部大腹足属(鞘翅目:蜈蚣科)进化中的作用:非遗传气候变量优化和系统发育信号测量

IF 3.9 2区 生物学 Q1 EVOLUTIONARY BIOLOGY Cladistics Pub Date : 2021-08-10 DOI:10.1111/cla.12464
Federico A. Agrain, Cecilia M. Domínguez, Rodolfo Carrara, Mariana Griotti, Sergio A. Roig-Juñent
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引用次数: 2

摘要

Baripus是南美洲南部特有的一种地面甲虫属,目前分布在山地和低地地区的草地和灌木栖息地。已知该属的物种受到安第斯造山运动和在此过程中发生的气候变化的影响。在这项研究中,我们试图了解安第斯山脉的造山运动如何导致巴利普斯物种的气候生态位随着时间的推移而变化。我们整合了以往的生态学和历史生物地理学假设,探索了系统发育结构气候变量的简约优化和祖先特征状态重建方法的应用。在此基础上,对优化后的气候生态位变量进行了回归分析。我们能够推断出重要的气候生态位限制和生态位变化,为现有知识提供了新的见解,支持了该属以前的生态和生物地理学假设。这种气候位的变化趋势可以用安第斯隆起引起的雨影效应来解释,也可以用中中新世到上新世发生在该地区的与温度和降水波动相关的其他气候变化来解释。
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Exploring the role of climatic niche changes in the evolution of the southern South American genus Baripus (Coleoptera: Carabidae): optimization of non-hereditary climatic variables and phylogenetic signal measurement

Baripus is a ground beetle genus endemic to southern South America, currently distributed across grassland and shrub habitats in mountain and lowland regions. The species of this genus are known to have been affected by the Andean orogeny and the climate changes that occurred during this process. In this study, we seek to understand how the orogeny of the Andes may have led to changes in the climatic niches of the species of Baripus over time. We integrated former ecological and historical biogeographic hypotheses, exploring the use of parsimony optimization of phylogenetically structured climate variables and ancestral character state reconstruction methods. We then performed regression analyses of the optimized climatic niche variables within the phylogenetic tree of Baripus. We were able to infer significant climatic niche constraints, and niche changes that provide new insights to the existing knowledge, supporting former ecological and biogeographic hypotheses for this genus. Such trends in climatic niche could be explained by the rain shadow effect caused by the Andean uplift as well as with other climate shifts associated with temperature and precipitation swings that occurred in this region from the Middle Miocene to the Pliocene.

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来源期刊
Cladistics
Cladistics 生物-进化生物学
CiteScore
8.60
自引率
5.60%
发文量
34
期刊介绍: Cladistics publishes high quality research papers on systematics, encouraging debate on all aspects of the field, from philosophy, theory and methodology to empirical studies and applications in biogeography, coevolution, conservation biology, ontogeny, genomics and paleontology. Cladistics is read by scientists working in the research fields of evolution, systematics and integrative biology and enjoys a consistently high position in the ISI® rankings for evolutionary biology.
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