Department of Hydrobiology, Faculty of Biology, University of Białystok, Ciołkowskiego 1J, 15-245 Białystok, Poland.
Institute of Ecology and Evolution, Russian Academy of Sciences, Leninsky Prospect 33, Moscow 119071, Russia.
Sci Total Environ. 2023 Jun 15;877:162899. doi: 10.1016/j.scitotenv.2023.162899. Epub 2023 Mar 17.
Zebra mussels (ZM), Dreissena polymorpha (Pallas, 1771), are one of the most aggressive invasive species. ZM have a strong bidirectional impact on phytoplankton because of their high nutrient excretion rates and high grazing pressure. Furthermore, the interactions between excretion and selective grazing are related to the trophic status of a waterbody and could cause unpredictable changes in phytoplankton. We performed three types of experiments: (i) bottom-up where we measured ZM excretion rates; (ii) top-down where we analyzed the effects of ZM on phytoplankton taxonomic structure via grazing in different trophic conditions; (iii) mesocosm experiment where we estimated the combined top-down and bottom-up effects of ZM on phytoplankton assemblages under different trophic conditions. Our first experiment confirmed high excretion rates of dissolved nutrients (PO and NH) and dissolved organic carbon (DOC) by ZM. The other experiments revealed selective grazing by ZM, where diatoms were mostly selectively rejected, while green algae were preferred. In the top-down experiment, ZM decreased the total biomass of phytoplankton, while in mesocosm experiments where top-down and bottom-up controls acted simultaneously, we observed increased phytoplankton biomass mainly through increases in filamentous green algae. Our experiments show that ZM can influence phytoplankton through a combination of bottom-up and top-down effects that vary with trophic state.
斑马贻贝(ZM),多形真珠贝(Pallas,1771),是最具侵略性的入侵物种之一。由于其高营养排泄率和高摄食压力,ZM 对浮游植物具有强烈的双向影响。此外,排泄和选择性摄食的相互作用与水体的营养状态有关,并可能导致浮游植物发生不可预测的变化。我们进行了三种类型的实验:(i)自下而上,我们测量了 ZM 的排泄率;(ii)自上而下,我们通过在不同营养条件下的摄食分析 ZM 对浮游植物分类结构的影响;(iii)中观实验,我们在不同营养条件下估计 ZM 对浮游植物组合的自上而下和自下而上的综合影响。我们的第一个实验证实了 ZM 对溶解态营养物(PO 和 NH)和溶解有机碳(DOC)具有高排泄率。其他实验表明 ZM 具有选择性摄食,其中硅藻大多被选择性排斥,而绿藻则被优先选择。在自上而下的实验中,ZM 降低了浮游植物的总生物量,而在中观实验中,当自上而下和自下而上的控制同时作用时,我们观察到浮游植物生物量增加,主要是通过丝状绿藻的增加。我们的实验表明,ZM 可以通过与营养状态有关的自上而下和自下而上的综合影响来影响浮游植物。