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韩国受聚苯乙烯污染的等足目动物 Ligia 的肠道微生物群落组成。

Gut microbiota composition of the isopod Ligia in South Korea exposed to expanded polystyrene pollution.

机构信息

Department of Biotechnology, College of Convergence Engineering, Sangmyung University, Seoul, Republic of Korea.

Risk Assessment Research Center, Korea Institute of Ocean Science and Technology, Geoje, Republic of Korea.

出版信息

PLoS One. 2024 Aug 7;19(8):e0308246. doi: 10.1371/journal.pone.0308246. eCollection 2024.

Abstract

Plastics pose a considerable challenge to aquatic ecosystems because of their increasing global usage and non-biodegradable properties. Coastal plastic debris can persist in ecosystems; however, its effects on resident organisms remain unclear. A metagenomic analysis of the isopoda Ligia, collected from clean (Nae-do, ND) and plastic-contaminated sites (Maemul-do, MD) in South Korea, was conducted to clarify the effects of microplastic contamination on the gut microbiota. Ligia gut microbiota's total operational taxonomic units were higher in ND than in MD. Alpha diversity did not differ significantly between the two Ligia gut microbial communities collected from ND and MD, although richness (Observed species) was lower in MD than in ND. Proteobacteria (67.47%, ND; 57.30%, MD) and Bacteroidetes (13.63%, ND; 20.76%, MD) were the most abundant phyla found at both sites. Significant different genera in Ligia from EPS-polluted sites were observed. Functional gene analysis revealed that 19 plastic degradation-related genes, including those encoding hydrogenase, esterase, and carboxylesterase, were present in the gut microbes of Ligia from MD, indicating the potential role of the Ligia gut microbiota in plastic degradation. This study provides the first comparative field evidence of the gut microbiota dynamics of plastic detritus consumers in marine ecosystems.

摘要

由于塑料在全球范围内的使用量不断增加且不可生物降解,因此给水生生态系统带来了巨大挑战。沿海地区的塑料碎片会在生态系统中持续存在,但它们对当地生物的影响尚不清楚。本研究对从韩国清洁(Nae-do,ND)和受塑料污染(Maemul-do,MD)地区采集的等足目生物 Ligia 进行了宏基因组分析,以阐明微塑料污染对肠道微生物群的影响。与 MD 相比,ND 中的 Ligia 肠道微生物群的总操作分类单元更高。尽管 MD 中的 Ligia 肠道微生物群落的丰富度(Observed species)低于 ND,但 ND 和 MD 两组 Ligia 肠道微生物群落的 alpha 多样性无显著差异。在两个地点都发现了最丰富的两个门:变形菌门(Proterobacteria,67.47%,ND;57.30%,MD)和拟杆菌门(Bacteroidetes,13.63%,ND;20.76%,MD)。在受 EPS 污染的地点发现了 Ligia 中存在显著差异的属。功能基因分析显示,MD 中 Ligia 的肠道微生物群中存在 19 个与塑料降解相关的基因,包括编码氢化酶、酯酶和羧酸酯酶的基因,这表明 Ligia 肠道微生物群在塑料降解中可能发挥作用。本研究首次提供了海洋生态系统中塑料碎屑消费者肠道微生物群动态的现场比较证据。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b248/11305568/b3d2bc9bbe39/pone.0308246.g001.jpg

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