School of Materials and Chemical Engineering, Zhengzhou University of Light Industry, Zhengzhou, China; Key Laboratory of Pollution Treatment and Resource, China National Light Industry, Zhengzhou, China.
School of Materials and Chemical Engineering, Zhengzhou University of Light Industry, Zhengzhou, China.
Environ Pollut. 2024 Sep 15;357:124418. doi: 10.1016/j.envpol.2024.124418. Epub 2024 Jun 21.
Polystyrene nanoparticles (PS NPs) released from plastic products have been demonstrated to pose a threat to leaf litter decomposition in streams. Given the multitrophic systems of species interactions, the effects of PS NPs through different exposure routes on ecosystem functioning remain unclear. Especially dietary exposure, a frequently overlooked pathway leading to toxicity, deserves more attention. A microcosm experiment was conducted in this study to assess the effects of waterborne and dietary exposure to PS NPs on the litter-based food chain involving leaves, microbial decomposers, and detritivores (river snails). Compared to waterborne contamination, dietary contamination resulted in lower microbial enzyme activities and a significantly higher decrease in the lipid content of leaves. For river snails, their antioxidant activity was significantly increased by 20.21%-69.93%, and their leaf consumption rate was significantly reduced by 16.60% through the dietary route due to the lower lipid content of leaves. Besides, the significantly decreased nutritional quality of river snails would negatively influence their palatability to predators. The findings of this study indicate that dietary exposure to PS NPs significantly impacts microbial and detritivore activities, thus affecting their functions in the detritus food chain as well as nutrient cycling.
聚苯乙烯纳米颗粒(PS NPs)从塑料制品中释放出来,已被证明对溪流中的落叶分解构成威胁。鉴于物种相互作用的多营养系统,通过不同暴露途径的 PS NPs 对生态系统功能的影响尚不清楚。特别是饮食暴露,一种经常被忽视的导致毒性的途径,值得更多关注。本研究进行了一项微宇宙实验,以评估水相和饮食暴露于 PS NPs 对涉及叶子、微生物分解者和碎屑食者(河螺)的基于落叶的食物链的影响。与水相污染相比,饮食污染导致微生物酶活性降低,叶子的脂质含量显著降低。对于河螺,由于叶子的脂质含量较低,它们的抗氧化活性通过饮食途径显著增加了 20.21%-69.93%,并且它们的叶子消耗率显著降低了 16.60%。此外,河螺的营养质量显著下降会对其对捕食者的适口性产生负面影响。本研究的结果表明,饮食暴露于 PS NPs 会显著影响微生物和碎屑食者的活动,从而影响它们在碎屑食物链以及营养循环中的功能。