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A Critical Review on the Impacts of Nanoplastics and Microplastics on Aquatic and Terrestrial Photosynthetic Organisms

期刊

SMALL
卷 17, 期 20, 页码 -

出版社

WILEY-V C H VERLAG GMBH
DOI: 10.1002/smll.202005834

关键词

macrophyte; phytoplankton; plant; plastic

资金

  1. Atracion de Talento program from Comunidad de Madrid
  2. Labex OSUG [ANR10 LABX56]

向作者/读者索取更多资源

Microplastic and nanoplastic contamination is widespread and has significant impacts on aquatic and terrestrial ecosystems due to their toxicity towards photosynthetic organisms and potential risks for plants and consumers. Accumulation of plastic leachates and additives poses a risk for plants and consumers, and the adsorption and translocation of these particles raise concerns for trophic chain contamination. Available techniques for detection of microplastics and nanoplastics in biological samples and media are listed, along with discussions on current gaps in knowledge and future research directions.
Microplastic and nanoplastic contamination is widespread and affects aquatic and terrestrial ecosystems. Photosynthetic organisms are present in both media, they are primary producers, sink for CO2, and they represent a major point of entry in the food chain. Here, the current knowledge on the fate and impacts of microplastics and nanoplastics in interaction with these organisms is reviewed. As a general trend, plastic characteristics (smaller size and positive charge) play a crucial role in their toxicity toward photosynthetic organisms. Plastic leachates (containing additives) also represent a major source of toxicity, and some harmful compounds such as phthalate esters are shown to accumulate in plants and generate a risk for the consumers. Adsorption of plastic particles is evidenced for each type of photosynthetic organism, and uptake and translocation in terrestrial plants is evidenced for nanoplastics, leading to concerns for trophic chain contamination. The available techniques for the detection of microplastics and nanoplastics and their secondary products in biological samples and media are also listed. Finally, the current gaps of knowledge, specific challenges, and future research directions are also discussed.

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