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纳米塑料暴露简化了海参(Apostichopus japonicus)肠道微生物群落的网络结构,并提高了聚类随机性。

Nanoplastics exposure simplifies the network structure of sea cucumber (Apostichopus japonicus) gut microbiota and improves cluster randomness.

机构信息

Dalian Ocean University, Key Laboratory of Northern Aquatic Germplasm Resources and Genetic Breeding in Liaoning Province, Dalian, 116023, China; Dalian Ocean University, Liaoning Province Aquatic Germplasm Resources Protection and Utilization Engineering Research Center, Dalian, 116023, China.

Dalian Ocean University, Key Laboratory of Northern Aquatic Germplasm Resources and Genetic Breeding in Liaoning Province, Dalian, 116023, China; Dalian Ocean University, Liaoning Province Aquatic Germplasm Resources Protection and Utilization Engineering Research Center, Dalian, 116023, China; Key Laboratory of Mariculture & Stock Enhancement in North China Sea, Ministry of Agriculture and Rural Affairs, Dalian Ocean University, Dalian, 116023, China.

出版信息

Environ Pollut. 2024 Nov 1;360:124663. doi: 10.1016/j.envpol.2024.124663. Epub 2024 Aug 5.

Abstract

Nanoplastics (NPs) are abundant in ocean environments, leading to environmental pollution and notable disruptions to the physiological functions of marine animals. To investigate the toxic effects of NPs on echinoderms, specifically sea cucumbers (Apostichopus japonicus), they were exposed to varying concentrations of NPs (0, 10, 10 particles/L) for 14 d. Subsequently, the 10 particles/L exposure group was purified for 35 d to elucidate the impact of both NPs exposure and purification on the intestinal bacteria structure and function. The results showed that the richness and variety of intestinal bacteria in sea cucumbers significantly reduced under NPs exposure, and then they could be restored to the pre-exposure treatment state after 35 d of purification. With the increase of NPs exposure concentration in the environment, the intestinal core bacteria gradually changed from Firmicutes and Proteobacteria to Pseudoalteromonas and Vibrio. The KEGG (Kyoto Encyclopedia of Genes and Genomes) pathway database annotated that the gut microbiota of sea cucumbers was significantly downregulated in the glycosylation, carbohydratic and amino acid metabolic pathways (P < 0. 05), exogenous substance biodegradation and metabolism, DNA replication and repair pathways were significantly up-regulated (P < 0.05) under the exposure of NPs. In addition, nanoplastics exposure simplified the symbiotic network relationships of the gut bacteria, reduced the selective effect of host on the intestinal bacteria, and increased stochasticity. In conclusion, waterborne NPs can adversely affect the structure and function of sea cucumber intestinal bacteria, with these effects persisting for a duration. However, as the purification time lengthens, these adverse effects gradually diminish. This study aims to provide some theoretical basis for the biotoxic effects of NPs.

摘要

纳米塑料(NPs)在海洋环境中大量存在,导致环境污染,并对海洋动物的生理功能造成显著干扰。为了研究 NPs 对棘皮动物(特别是海参)的毒性作用,将其暴露于不同浓度的 NPs(0、10、10 个/L)中 14 d。随后,将暴露于 10 个/L NPs 的海参组进行 35 d 的净化,以阐明 NPs 暴露和净化对肠道细菌结构和功能的影响。结果表明,NPs 暴露显著降低了海参肠道细菌的丰富度和多样性,经过 35 d 的净化后,可恢复至暴露前的处理状态。随着环境中 NPs 暴露浓度的增加,肠道核心细菌逐渐从厚壁菌门和变形菌门变为假交替单胞菌属和弧菌属。KEGG(京都基因与基因组百科全书)通路数据库注释表明,在 NPs 暴露下,海参肠道微生物群在糖基化、碳水化合物和氨基酸代谢途径(P < 0.05)、外源物质生物降解和代谢、DNA 复制和修复途径(P < 0.05)显著下调。此外,纳米塑料暴露简化了肠道细菌的共生网络关系,降低了宿主对肠道细菌的选择作用,增加了随机性。总之,水载 NPs 会对海参肠道细菌的结构和功能产生不利影响,且这些影响会持续一段时间。但是,随着净化时间的延长,这些不利影响逐渐减弱。本研究旨在为 NPs 的生物毒性作用提供一些理论依据。

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