Indirect herbivore biomanipulation may halt regime shift from clear to turbid after macrophyte restoration

水生植物 生物操纵 食草动物 环境科学 富营养化 生物量(生态学) 交替稳态 生态学 浮游植物 水生植物 营养物 生物 生态系统
作者
Chengxiang Zhang,Hongcui Pei,Cheng Lu,Cunqi Liu,Wei Wang,Xiaobo Zhang,Peizhong Liu,Guangchun Lei
出处
期刊:Environmental Pollution [Elsevier]
卷期号:313: 120242-120242 被引量:2
标识
DOI:10.1016/j.envpol.2022.120242
摘要

Eutrophication transforms clear water into turbid water in shallow lakes. Current restoration techniques focus on re-establishing the clear-water state rather than on its maintenance. We investigated the response of submerged macrophytes to temporary grass carp (Ctenopharyngodon idella) and scraping snail (Bellamya aeruginosa) introductions. We also explored the impacts of herbivores on underwater light conditions to identify their long- and short-term potential to halt regime shift from clear to turbid after clear-water state reestablishment. Herbivores reduced both the biomass of submerged macrophytes and accumulated nutrients in the tissue of submerged macrophytes. This potentially avoided the pulse of endogenous nutrient release which would have exceeded the threshold required for the regime shift from clear to turbid. However, herbivores had a non-significant impact on submerged macrophyte-reduced light attenuation coefficient, which has a positive linear relationship with water chlorophyll a. Further, grass carp and snails enhanced the inhibition ratio of submerged macrophytes to phytoplankton by 3.96 and 2.13 times, respectively. Our study provides novel findings on the potential of herbivore introduction as an indirect biomanipulation tool for halting the regime shift of shallow lakes from clear to turbid after the restoration of submerged macrophytes.
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