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The added value of geodiversity indices in explaining variation of stream macroinvertebrate diversity

机译:地球多样性指数在解释河流大型无脊椎动物多样性变化中的附加值

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摘要

Geodiversity, i.e. the variety of the abiotic environment, is considered to be positively correlated to biodiversity. In streams, the importance of physical heterogeneity for biodiversity variation is well known, but the usefulness of explicitly measured geodiversity indices to account for biodiversity has not been tested. We developed a technique to measure in-stream geodiversity, based on different types of stream flow, geomorphological processes and landforms observed from photographs taken during the field work, and substrates based on traditional field observations. We further tested the utility of these geodiversity measures in explaining variation in the biodiversity of macroinvertebrates in near-pristine streams. Our specific objective was to examine the explanatory power of geodiversity compared to traditional environmental variables, such as water chemistry, depth and current velocity. While most biodiversity indices correlated more strongly with traditional environmental variables, the influence of geodiversity on biodiversity was also evident. Unique effect of flow richness on species richness and that of total geodiversity on functional richness were higher than those of the traditional environmental variables. Our findings suggested that in-stream geodiversity offers a valuable concept for characterizing stream habitats. If further developed and tested, in-stream geodiversity can be used as a cost-efficient proxy to explain variation in biodiversity in stream environments.
机译:地球多样性,即非生物环境的多样性,被认为与生物多样性呈正相关。在河流中,物理异质性对于生物多样性变化的重要性是众所周知的,但是尚未测试明确测量的地球多样性指数对生物多样性的影响。我们开发了一种技术,用于根据不同类型的水流,野外作业期间拍摄的照片观察到的地貌过程和地形以及基于传统野外观察的基质来测量河流内的生物多样性。我们进一步测试了这些地理多样性措施在解释近原始流中大型无脊椎动物生物多样性变化中的效用。我们的具体目标是检验与传统环境变量(例如水化学,深度和当前速度)相比,地球多样性的解释力。尽管大多数生物多样性指数与传统环境变量之间的联系更为密切,但地球多样性对生物多样性的影响也很明显。流量丰富度对物种丰富度和总地域多样性对功能丰富度的独特影响均高于传统环境变量。我们的研究结果表明,河流内的生物多样性为表征河流生境提供了一个有价值的概念。如果进一步开发和测试,则流内地球多样性可以作为一种具有成本效益的代理来解释流环境中生物多样性的变化。

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