Eutrophication decrease compositional dissimilarity in freshwater plankton communities

浮游生物 营养水平 富营养化 浮游动物 生态学 浮游植物 生物 藻类 蓝藻 生物多样性 物种丰富度 环境科学 细菌 营养物 遗传学
作者
Yun Li,Mengdie Geng,Jinlei Yu,Yingxun Du,Min Xu,Weizhen Zhang,Jianjun Wang,Haojie Su,Rong Wang,Feizhou Chen
出处
期刊:Science of The Total Environment [Elsevier]
卷期号:821: 153434-153434 被引量:23
标识
DOI:10.1016/j.scitotenv.2022.153434
摘要

Human activities, such as land use change and eutrophication, threaten freshwater biodiversity and ecosystem function. In this study, we examined both the α- and β-diversity of plankton communities, that is, bacteria/prokaryotic algae, eukaryotic algae, and zooplankton/metazoans, using both classical microscopy and high-throughput sequencing methods across 40 lakes of the Yangtze River Basin. The spatial variations in plankton communities were explained by environmental variables such as trophic status index (TSI) and environmental heterogeneity according to non-metric multidimensional scaling analyses, mantel tests, and structural equation model. Our results showed that the compositional dissimilarities of bacteria, cyanobacteria, eukaryotic algae, and metazoans all decreased with the increasing TSI values, and were significantly positively related to environmental dissimilarity. Both the species richness and compositional dissimilarity of zooplankton had positive effects on zooplankton/phytoplankton biomass ratio. Zooplankton diversity was not directly affected by TSI and environmental dissimilarity; however, it was indirectly affected by the biotic interactions with cyanobacteria or eukaryotic algae. In addition, there were significant positive relationships between bacteria/cyanobacteria and eukaryotic algae dissimilarities. Our results indicated that increased trophic status and decreased environmental dissimilarity as consequences of eutrophication may weaken the trophic cascading effects of planktonic food chain via reducing the top-down effects of zooplankton on phytoplankton.
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