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Perspectives on the use of lakes and ponds as model systems for macroecological research

机译:关于使用湖泊和池塘作为宏观生态研究模型系统的观点

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Macroecology studies large-scale patterns aiming to identify the effects of general ecological processes. Although lakes (and ponds) are particularly suited for macroecological research due to their discrete nature and non geographically-structured variability, the development of this discipline in lentic habitats is comparatively much smaller than for terrestrial environments. This is despite the interest of limnologists for large-scale phenomena, which results in the high level of development of some disciplines such as predictive limnology. Here we discuss how current state-of-the-art in macroecology may benefit from research in lentic habitats at five topics. First, by including an island biogeography analytical framework to incorporate the effects of lake origin and history on lentic biodiversity. Second, by studying local and regional effects on the latitudinal gradients of species richness. Third, by considering lakes and ponds altogether for the study of beta diversity and metacommunity structure, which is already common ground in limnological research. Fourth, by relating species traits with ecosystem structure and functioning; here we consider in particular the potential effects of body size-determined dispersal and competitive exclusion processes on lake-wide trophic organization. And fifth, by incorporating current research in functional ( i.e. trait) and phylogenetic diversity to the study of community structure. We finally conclude that lentic habitats can be particularly important for the development of the most functional aspects of macroecology, due to the relative ease of studying the different biotic and abiotic components of the system separately, compared to most terrestrial systems. This can allow teasing apart many of the confounding factors that are characteristic of macroecological research, thus helping the development of future theoretical syntheses.
机译:宏观生态学研究旨在识别一般生态过程影响的大规模模式。尽管湖泊(和池塘)由于其离散的性质和非地理结构的可变性而特别适合于宏观生态学研究,但在透镜状生境中该学科的发展相对而言要比陆地环境小得多。尽管有学者限制了大型现象的发生,这导致了预测性语言学等某些学科的高度发展。在这里,我们从五个主题讨论当前在宏观生态方面的最新进展如何从透镜状栖息地的研究中受益。首先,通过纳入一个岛屿生物地理学分析框架,以纳入湖泊起源和历史对透镜体生物多样性的影响。其次,通过研究物种丰富度的纬度梯度的局部和区域影响。第三,通过完全考虑湖泊和池塘来进行贝塔多样性和元社区结构的研究,这已成为语言学研究的共同点。第四,将物种特征与生态系统结构和功能联系起来;在这里,我们特别考虑身体大小决定的扩散和竞争排斥过程对全湖营养组织的潜在影响。第五,通过将目前在功能(即性状)和系统发育多样性方面的研究纳入社区结构研究。我们最后得出结论,与大多数陆地系统相比,由于分别研究系统的不同生物和非生物成分相对容易,因此透镜状栖息地对于宏观生态学最功能方面的发展尤其重要。这可以消除许多宏观生态学研究特有的混杂因素,从而有助于未来理论合成的发展。

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