Nuclear Science and Engineering Center, Japan Atomic Energy Agency, Ibaraki, 319-1195, Japan.
Nuclear Science and Engineering Center, Japan Atomic Energy Agency, Ibaraki, 319-1195, Japan.
Water Res. 2024 Oct 15;264:122207. doi: 10.1016/j.watres.2024.122207. Epub 2024 Aug 2.
Microbial attachment and biofilm formation on microplastics (MPs <5 mm in size) in the environment have received growing attention. However, there is limited knowledge of microbial function and their effect on the properties and behavior of MPs in the environment. In this study, microbial communities in the plastisphere were explored to understand microbial ecology as well as their impact on aquatic ecosystems. Using the amplicon sequencing of 16S and internal transcribed spacer (ITS) genes, we uncovered the composition and diversity of bacterial and fungal communities in samples of MPs (fiber, film, foam, and fragment), surface water, bottom sediment, and coastal sand in two contrasting coastal areas of Japan. Differences in microbial diversity and taxonomic composition were detected depending on sample type (MPs, water, sediment, and sand) and the research site. Although relatively higher bacterial and fungal gene counts were determined in MP fragments and foams from the research sites, there were no significant differences in microbial community composition depending on the morphotypes of MPs. Given the colonization by hydrocarbon-degrading communities and the presence of pathogens on MPs, the complex processes of microbial taxa influence the characteristics of MP-associated biofilms, and thus, the properties of MPs. This study highlights the metabolic functions of microbes in MP-associated biofilms, which could be key to uncovering the true impact of plastic debris on the global ecosystem.
微生物在环境中对微塑料(尺寸<5 毫米)的附着和生物膜形成受到了越来越多的关注。然而,对于微生物的功能及其对环境中微塑料特性和行为的影响,我们的了解还很有限。在本研究中,我们探索了塑料圈内的微生物群落,以了解微生物生态学及其对水生生态系统的影响。通过对 16S 和内部转录间隔区(ITS)基因的扩增子测序,我们揭示了日本两个具有代表性沿海地区的微塑料(纤维、薄膜、泡沫和碎片)、地表水、底泥和沿海沙样本中细菌和真菌群落的组成和多样性。根据样本类型(微塑料、水、沉积物和沙子)和研究地点的不同,微生物多样性和分类组成存在差异。尽管研究地点的微塑料碎片和泡沫中的细菌和真菌基因计数相对较高,但微生物群落组成不受微塑料形态的影响,没有显著差异。考虑到烃降解群落对微塑料的定殖和病原体的存在,微生物分类群的复杂过程影响了与微塑料相关的生物膜的特征,从而影响了微塑料的特性。本研究强调了微生物在微塑料相关生物膜中的代谢功能,这可能是揭示塑料碎片对全球生态系统的真正影响的关键。