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首页> 外文期刊>Environmental Reviews >Understanding environmental change through the lens of trait-based, functional, and phylogenetic biodiversity in freshwater ecosystems
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Understanding environmental change through the lens of trait-based, functional, and phylogenetic biodiversity in freshwater ecosystems

机译:通过淡水生态系统的特质,功能和系统发育生物多样性的镜片了解环境变化

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In the era of the Anthropocene, environmental change is accelerating biodiversity loss across ecosystems on Earth, among which freshwaters are likely the most threatened. Different biodiversity facets in the freshwater realm suffer from various environmental changes that jeopardize the ecosystem functions and services important for humankind. In this work we examine how environmental changes (e.g., climate change, eutrophication, or invasive species) affect trait-based, functional, and phylogenetic diversity of biological communities. We first developed a simple conceptual model of the possible relationships between environmental change and these three diversity facets in freshwaters and, secondly, systematically reviewed articles where these relationships had been investigated in different freshwater ecosystems. Finally, we highlighted research gaps from the perspectives of organisms, ecosystems, stressors, and geographical locations. Our conceptual model suggested that both natural factors and global change operating at various spatial scales influence freshwater community structure and ecosystem functioning. The relationships between biodiversity and environmental change depend on geographical region, organism group, spatial scale, and environmental change gradient length. The systematic review revealed that environmental change impacts biodiversity patterns in freshwaters, but there is no single type of biodiversity response to the observed global changes. Natural stressors had different, even contradictory, effects (i.e., multiple, negative, and positive) on biodiversity compared with anthropogenic stressors. Anthropogenic stressors more often decreased biodiversity, although eutrophication and climate change affected freshwater ecosystems in a complex, more multi-dimensional way. The research gaps we identified were related, for example, to the low number of community-based biodiversity studies, the lack of information on true phylogenies for all freshwater organism groups, the missing evaluations whether species traits are phylogenetically conserved, and the geographical biases in research (i.e., absence of studies from Africa, Southern Asia, and Russia). We hope that our review will stimulate more research on the less well-known facets and topics of biodiversity loss in highly vulnerable freshwater ecosystems.
机译:在人体主义的时代,环境变化正在加速地球上生态系统的生物多样性损失,其中新鲜水域可能是最受威胁的。淡水领域中的不同生物多样性面部遭受各种环境变化,危及对人类重要的生态系统功能和服务。在这项工作中,我们研究了环境变化(例如,气候变化,富营养化或侵入性物种)如何影响生物社区的特征,功能和系统发育和系统发育多样性。我们首先制定了一种简单的概念模型,在新温水中的环境变化与这三个多样性面之间的可能关系,其次,系统地回顾了这些关系的不同淡水生态系统中的文章。最后,我们强调了来自生物,生态系统,压力源和地理位置的视角的研究差距。我们的概念模型表明,在各种空间尺度上运行的自然因素和全球变化会影响淡水群落结构和生态系统功能。生物多样性与环境变化之间的关系取决于地理区域,生物体组,空间尺度和环境变化梯度长度。系统审查显示,环境变化会影响新鲜水域中的生物多样性模式,但对观察到的全球变化没有单一类型的生物多样性反应。与人为压力源相比,天然压力源对生物多样性有不同的,甚至是矛盾的,效果(即,多重,消极和阳性)。人为压力源更常被降低生物多样性,尽管富营养化和气候变化影响了淡水生态系统以复杂,更多维的方式。我们识别的研究差距与较低数量的社区生物多样性研究有关,缺乏关于所有淡水生物组织的真实系统发育的信息,缺失的评估是否物种特征是系统性质,以及地理偏差研究(即非洲,南亚和俄罗斯的研究缺乏研究)。我们希望我们的评论将促进对高度脆弱的淡水生态系统中的生物多样性损失较少的众所周知的方面和主题的更多研究。

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