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河流状景观中,树突连接的复杂性和层次斑块大小对生物多样性的复杂相互作用。

Complex interaction of dendritic connectivity and hierarchical patch size on biodiversity in river-like landscapes.

机构信息

Laboratory of Ecohydrology, École Polytechnique Fédérale Lausanne (EPFL), 1015 Lausanne, Switzerland.

出版信息

Am Nat. 2014 Jan;183(1):13-25. doi: 10.1086/674009. Epub 2013 Dec 3.

Abstract

Habitat fragmentation and land use changes are causing major biodiversity losses. Connectivity of the landscape or environmental conditions alone can shape biodiversity patterns. In nature, however, local habitat characteristics are often intrinsically linked to a specific connectivity. Such a link is evident in riverine ecosystems, where hierarchical dendritic structures command related scaling on habitat capacity. We experimentally disentangled the effect of local habitat capacity (i.e., the patch size) and dendritic connectivity on biodiversity in aquatic microcosm metacommunities by suitably arranging patch sizes within river-like networks. Overall, more connected communities that occupy a central position in the network exhibited higher species richness, irrespective of patch size arrangement. High regional evenness in community composition was found only in landscapes preserving geomorphological scaling properties of patch sizes. In these landscapes, some of the rarer species sustained regionally more abundant populations better tracking their own niche requirements compared to landscapes with homogeneous patch size or landscapes with spatially uncorrelated patch size. Our analysis suggests that altering the natural link between dendritic connectivity and patch size strongly affects community composition and population persistence at multiple scales. The experimental results are demonstrating a principle that can be tested in theoretical metacommunity models and eventually be projected to real riverine ecosystems.

摘要

生境破碎化和土地利用变化导致了生物多样性的大量丧失。景观连通性或环境条件本身就能塑造生物多样性格局。然而,在自然界中,局部生境特征通常与特定的连通性内在相关。这种联系在河流生态系统中很明显,其中层次状的树枝状结构对栖息地容量具有相关的尺度关系。我们通过在类似于河流的网络中适当安排斑块大小,实验性地分离了局部生境容量(即斑块大小)和树枝状连通性对水生微观生物群落元群落生物多样性的影响。总体而言,无论斑块大小如何排列,处于网络中心位置的连通性更高的群落表现出更高的物种丰富度。仅在保留斑块大小地貌学尺度特性的景观中,才发现群落组成具有较高的区域均匀度。在这些景观中,与具有均匀斑块大小或空间上不相关的斑块大小的景观相比,一些较稀有的物种能够更好地追踪自身的生态位需求,从而维持更丰富的区域性种群。我们的分析表明,改变树枝状连通性和斑块大小之间的自然联系,强烈影响了多个尺度上的群落组成和种群生存。实验结果展示了一个可以在理论元群落模型中进行检验,并最终应用于真实河流生态系统的原则。

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