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长期数据的跨分类群分析揭示了具有特定分类群机制基础的正生物多样性-稳定性关系。

Cross-Taxa Analysis of Long-Term Data Reveals a Positive Biodiversity-Stability Relationship With Taxon-Specific Mechanistic Underpinning.

作者信息

Rodrigues Arthur V, Rissanen Tuuli, Jones Mirkka M, Huikkonen Ida-Maria, Huitu Otso, Korpimäki Erkki, Kuussaari Mikko, Lehikoinen Aleksi, Lindén Andreas, Pietiäinen Hannu, Pöyry Juha, Sihvonen Pasi, Suuronen Anna, Vuorio Kristiina, Saastamoinen Marjo, Vanhatalo Jarno, Laine Anna-Liisa

机构信息

Research Centre for Ecological Change, Organismal and Evolutionary Biology Research Programme, Faculty of Biological and Environmental Sciences, University of Helsinki, Helsinki, Finland.

Helsinki Institute of Life Science, University of Helsinki, Helsinki, Finland.

出版信息

Ecol Lett. 2025 Apr;28(4):e70003. doi: 10.1111/ele.70003.

Abstract

Anthropogenic environmental change is altering biodiversity at unprecedented rates, threatening the stability of ecosystem services on which humans depend. However, most of what is known about biodiversity-stability relationships comes from experimental studies making extrapolation to real ecosystems difficult. Here, we ask whether the shape and underlying mechanisms of the biodiversity-stability relationship vary among taxa in real-world communities. Our study harnesses the power of six terrestrial and aquatic long-term monitoring datasets, encompassing entire assemblages at hundreds of georeferenced sites providing 20 years long community measurements, covering a 1200 km latitudinal gradient across Finland. In general, we detect a positive relationship between species richness and stability. Structural equation modelling reveals that this relationship is modified by functional trait community composition, with specific mechanisms varying among the taxa. Our study is among the first to highlight the importance of functional traits in elucidating both general and taxon-specific impacts of biodiversity on community stability.

摘要

人为环境变化正以前所未有的速度改变生物多样性,威胁着人类赖以生存的生态系统服务的稳定性。然而,目前关于生物多样性与稳定性关系的大部分认识都来自实验研究,这使得推断真实生态系统变得困难。在此,我们探讨生物多样性与稳定性关系的形式及潜在机制在现实世界群落的不同分类群中是否存在差异。我们的研究利用了六个陆地和水生长期监测数据集的力量,这些数据集涵盖了数百个地理参考地点的整个群落,提供了长达20年的群落测量数据,覆盖了芬兰1200公里的纬度梯度。总体而言,我们检测到物种丰富度与稳定性之间存在正相关关系。结构方程模型表明,这种关系会因功能性状群落组成而改变,具体机制因分类群而异。我们的研究是首批强调功能性状在阐明生物多样性对群落稳定性的一般影响和分类群特定影响方面重要性的研究之一。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/94a7/11966686/94b763db7980/ELE-28-0-g003.jpg

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