Suppr超能文献

沿海水域食物网中微塑料的营养级传递和生物放大:基于质量平衡模型的新视角

Trophic transfer and biomagnification of microplastics through food webs in coastal waters: A new perspective from a mass balance model.

作者信息

Gao Shike, Li Zheng, Zhang Shuo

机构信息

College of Marine Living Resource Sciences and Management, Shanghai Ocean University, Shanghai 201306, China.

College of Marine Living Resource Sciences and Management, Shanghai Ocean University, Shanghai 201306, China; Joint Laboratory for Monitoring and Conservation of Aquatic Living Resources In the Yangtze Estuary, Shanghai 200000, China.

出版信息

Mar Pollut Bull. 2024 Mar;200:116082. doi: 10.1016/j.marpolbul.2024.116082. Epub 2024 Feb 16.

Abstract

Since the 1950s, plastic pollution and its risk have been recognized as irreversible and nonnegligible problems as global plastic production has increased. In recent years, the transport and trophic transfer of microplastics (MPs) in biotic and abiotic environment have attracted extensive attention from researchers. In this study, based on the Ecotracer module from Ecopath with Ecosim (EwE) model, the marine ranching area of Haizhou Bay, Jiangsu Province, China, was taken as a case study by linking the environmental plastic inflow with MPs in organisms to simulate the variation of MPs in the marine food web for 20 years, as well as its potential trophic transfer and biomagnification. We found that the concentration of MPs in top consumers first increased when the concentration of MPs in the environment increased, while that in primary consumers first decreased when the concentration of MPs in the environment decreased. Moreover, high TL consumers had a stronger ability to accumulate MPs, and pelagic prey fishes was the opposite. From the perspective of the food web, all functional groups showed significant trophic magnification along with the trophic level and no biodilution. Generally, there is a direct relationship between the MPs in marine organisms and environmental inflow. If the pollutants flowing into the environment can be reduced, the MP pollution problem in coastal waters will be effectively alleviated. Our research can further provide a scientific basis for ecological risk assessment and management of MPs and biodiversity protection in marine ecosystems.

摘要

自20世纪50年代以来,随着全球塑料产量的增加,塑料污染及其风险已被视为不可逆转且不可忽视的问题。近年来,微塑料(MPs)在生物和非生物环境中的传输及营养转移引起了研究人员的广泛关注。在本研究中,基于生态系统营养动态模型(EwE)中的Ecotracer模块,以中国江苏省海州湾的海洋牧场区域为例,通过将环境塑料流入量与生物体中的微塑料相联系,模拟了20年间海洋食物网中微塑料的变化情况,以及其潜在的营养转移和生物放大作用。我们发现,当环境中微塑料浓度增加时,顶级消费者体内微塑料浓度首先升高,而当环境中微塑料浓度降低时,初级消费者体内微塑料浓度首先下降。此外,高营养级消费者积累微塑料的能力更强,而浮游捕食性鱼类则相反。从食物网的角度来看,所有功能组随着营养级的升高均呈现出显著的生物放大作用,且无生物稀释现象。一般来说,海洋生物体内的微塑料与环境流入量之间存在直接关系。如果能够减少流入环境的污染物,沿海水域的微塑料污染问题将得到有效缓解。我们的研究能够进一步为海洋生态系统中微塑料的生态风险评估与管理以及生物多样性保护提供科学依据。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验