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湖泊浮游植物的宏观系统群落变化及其对多样性和功能的影响。

Macrosystem community change in lake phytoplankton and its implications for diversity and function.

作者信息

Weigel Benjamin, Kotamäki Niina, Malve Olli, Vuorio Kristiina, Ovaskainen Otso

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.

Finnish Environment Institute Jyväskylä Finland.

出版信息

Glob Ecol Biogeogr. 2023 Feb;32(2):295-309. doi: 10.1111/geb.13626. Epub 2022 Dec 21.

Abstract

AIM

We use lake phytoplankton community data to quantify the spatio-temporal and scale-dependent impacts of eutrophication, land-use and climate change on species niches and community assembly processes while accounting for species traits and phylogenetic constraints.

LOCATION

Finland.

TIME PERIOD

1977-2017.

MAJOR TAXA

Phytoplankton.

METHODS

We use hierarchical modelling of species communities (HMSC) to model metacommunity trajectories at 853 lakes over four decades of environmental change, including a hierarchical spatial structure to account for scale-dependent processes. Using a "region of common profile" approach, we evaluate compositional changes of species communities and trait profiles and investigate their temporal development.

RESULTS

We demonstrate the emergence of novel and widespread community composition clusters in previously more compositionally homogeneous communities, with cluster-specific community trait profiles, indicating functional differences. A strong phylogenetic signal of species responses to the environment implies similar responses among closely related taxa. Community cluster-specific species prevalence indicates lower taxonomic dispersion within the current dominant clusters compared with the historically dominant cluster and an overall higher prevalence of smaller species sizes within communities. Our findings denote profound spatio-temporal structuring of species co-occurrence patterns and highlight functional differences of lake phytoplankton communities.

MAIN CONCLUSIONS

Diverging community trajectories have led to a nationwide reshuffling of lake phytoplankton communities. At regional and national scales, lakes are not single entities but metacommunity hubs in an interconnected waterscape. The assembly mechanisms of phytoplankton communities are strongly structured by spatio-temporal dynamics, which have led to novel community types, but only a minor part of this reshuffling could be linked to temporal environmental change.

摘要

目的

我们利用湖泊浮游植物群落数据,在考虑物种特征和系统发育限制的情况下,量化富营养化、土地利用和气候变化对物种生态位及群落组装过程的时空和尺度依赖性影响。

地点

芬兰。

时间范围

1977年至2017年。

主要类群

浮游植物。

方法

我们使用物种群落层次模型(HMSC)来模拟853个湖泊在40年环境变化中的集合群落轨迹,包括一个层次空间结构以考虑尺度依赖性过程。使用“共同轮廓区域”方法,我们评估物种群落和性状轮廓的组成变化,并研究它们的时间发展。

结果

我们证明在以前组成较为均匀的群落中出现了新的、广泛分布的群落组成集群,具有集群特定的群落性状轮廓,表明存在功能差异。物种对环境反应的强烈系统发育信号意味着密切相关类群之间有相似的反应。群落集群特定的物种丰度表明,与历史上占主导地位的集群相比,当前占主导地位的集群内分类学分散度较低,且群落内较小物种大小的总体丰度较高。我们的研究结果表明物种共现模式存在深刻的时空结构,并突出了湖泊浮游植物群落的功能差异。

主要结论

不同的群落轨迹导致了全国范围内湖泊浮游植物群落的重新洗牌。在区域和国家尺度上,湖泊不是单一的实体,而是相互连接的水景观中的集合群落枢纽。浮游植物群落的组装机制受到时空动态的强烈影响,这导致了新的群落类型,但这种重新洗牌中只有一小部分可与时间环境变化相关联。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d6e9/10107180/5071e06c11ef/GEB-32-295-g003.jpg

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