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微塑料、微藻类与水生生态系统功能相互作用的批判性回顾

A critical review of interactions between microplastics, microalgae and aquatic ecosystem function.

机构信息

Department of Earth and Environmental Sciences, University of Milano-Bicocca, Piazza Della Scienza 1, I-20126 Milano, Italy.

出版信息

Water Res. 2021 Jan 1;188:116476. doi: 10.1016/j.watres.2020.116476. Epub 2020 Sep 28.

Abstract

With the widespread occurrence of microplastics in aquatic ecosystems having been firmly established, the focus of research has shifted towards the assessments of their influence on ecosystem functions and food webs. This includes interactions between microplastics and microalgae, as fundamental components at the base of aquatic food webs and pivotal organisms in a wide range of ecosystem functions. In this review, we present the current state of knowledge on microalgae-microplastic interactions and summarize the potential effect on their respective fate. Microplastics can and do interact with microalgae and the available literature has suggested that the epiplastic community of microalgae differs consistently from the surrounding aquatic communities; however, it is still not clear whether this different colonization is linked to the composition of the surface or more to the availability of a "hard" substrate on which organisms can attach and grow. Further studies are needed to understand to what extent the properties of different plastic materials and different environmental factors may affect the growth of microalgae on plastic debris. Biofouling may alter microplastic properties, especially increasing their density, consequently affecting the vertical fluxes of plastics. Moreover, microplastics may have toxic effects on microalgae, which could be physical or related to chemical interactions with plasticizers or other chemicals associated with plastics, with consequences for algal growth, photosynthetic activity, and morphology. Microplastics seems to have the potential to affect not only the quality (e.g., fatty acids and lipids composition, food dilution effect) but also the quantity of algal production, both positively and negatively. This may have consequences for energy fluxes, which may propagate throughout the whole food web and alter aquatic productivity. Even though experimental results have indicated reciprocal impacts between plastics and microalgae, it is currently difficult to predict how these impacts may manifest themselves at the ecosystem level. Therefore, further studies are needed to address this important topic.

摘要

随着微塑料在水生生态系统中的广泛存在已得到确凿证实,研究的重点已转向评估其对生态系统功能和食物网的影响。这包括微塑料与微藻之间的相互作用,因为微藻是水生食物网的基础和广泛生态系统功能中的关键生物。在这篇综述中,我们介绍了微藻-微塑料相互作用的最新知识,并总结了它们对各自命运的潜在影响。微塑料可以与微藻相互作用,现有文献表明,微藻的表型群落与周围水生群落明显不同;然而,目前尚不清楚这种不同的定殖是与表面的组成有关,还是更多地与生物体可以附着和生长的“硬”基质的可用性有关。需要进一步的研究来了解不同塑料材料的性质和不同的环境因素在多大程度上可能影响微藻在塑料碎片上的生长。生物污损可能会改变微塑料的性质,特别是会增加其密度,从而影响塑料的垂直通量。此外,微塑料可能对微藻产生毒性作用,这种作用可能是物理的,也可能与与塑料相关的增塑剂或其他化学物质的化学相互作用有关,从而影响藻类的生长、光合作用和形态。微塑料似乎有可能不仅影响藻类的产量(例如脂肪酸和脂质组成、食物稀释效应),还可能影响藻类的质量。这可能会对能量通量产生影响,这些影响可能会在整个食物网中传播,并改变水生生产力。尽管实验结果表明塑料和微藻之间存在相互影响,但目前很难预测这些影响在生态系统层面上可能会如何表现。因此,需要进一步的研究来解决这个重要的课题。

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