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微塑料暴露对[共生细菌群落结构和功能的影响] 。 你提供的原文似乎不完整,括号内应该还有具体内容。

[Effects of Microplastic Exposure on the Community Structure and Function of Symbiotic Bacteria in ].

作者信息

Liu Min, Che Wen-Xue, Zeng Ying-Xu, Bian Wei-Jie, Lü Shu-Guo, Mu Jun

机构信息

Yazhou Bay Innovation Institute/Key Laboratory for Coastal Marine Eco-environment Process and Carbon Sink of Hainan Province/Modern Marine Ranching Engineering Research Center of Hainan/College of Ecology and Environment, Hainan Tropical Ocean University, Sanya 572022, China.

Hainan Provincial Academy of Environmental Sciences, Haikou 571126, China.

出版信息

Huan Jing Ke Xue. 2023 Apr 8;44(4):2122-2135. doi: 10.13227/j.hjkx.202203081.

Abstract

Microplastics are widely distributed in the marine environment and are harmful to the health of marine organisms (including corals). However, studies on the impact of microplastics on coral have been very limited, and the specific mechanism of their impact is not clear. Therefore, in this study, microplastic PA, which is common in the marine environment, was selected to conduct a 7-day microplastic exposure experiment on . The effects of microplastic exposure at different times on the diversity, community structure, and function of the symbiotic bacterial community of coral were analyzed using high-throughput sequencing technology. The -diversity of the symbiotic bacterial community of coral first decreased and then increased with the exposure time of microplastics. The analysis of -diversity and microbial community composition showed that microplastic exposure caused significant changes in the symbiotic bacterial community of coral, and the bacterial community composition also changed with the exposure time. A total of 49 phyla, 152 classes, 363 orders, 634 families, and 1390 genera were detected. At the phylum level, Proteobacteria was the dominant taxa in all samples, but the relative abundance varied among samples. Microplastic exposure increased the abundance of Proteobacteria, Chloroflexi, Firmicutes, Actinobacteriota, Bacteroidota, and Acidobacteriota. At the genus level, , and were the dominant taxa of symbiotic bacteria of coral after microplastic exposure. PICRUSt functional prediction indicated that functions of the coral symbiotic bacterial community, including signal transduction, cellular community prokaryotes, xenobiotics biodegradation and metabolism, and cell motility, decreased after microplastic exposure on coral. BugBase phenotype predictions indicated that microplastic exposure altered three phenotypes (pathogenic, anaerobic, and oxidative stress-tolerant) of the coral symbiotic bacterial community. FAPROTAX functional predictions indicated that microplastic exposure caused significant changes in functions such as the symbiotic relationship between coral symbiotic bacteria and the host, carbon and nitrogen cycling, and photosynthesis. This study provided basic data on the mechanism of microplastic impacts on corals and microplastics ecotoxicology.

摘要

微塑料广泛分布于海洋环境中,对海洋生物(包括珊瑚)的健康有害。然而,关于微塑料对珊瑚影响的研究非常有限,其具体影响机制尚不清楚。因此,本研究选取了海洋环境中常见的微塑料PA,对[珊瑚名称未给出]进行了为期7天的微塑料暴露实验。利用高通量测序技术分析了不同时间微塑料暴露对珊瑚共生细菌群落多样性、群落结构和功能的影响。珊瑚共生细菌群落的α多样性随微塑料暴露时间先降低后升高。α多样性和微生物群落组成分析表明,微塑料暴露导致珊瑚共生细菌群落发生显著变化,细菌群落组成也随暴露时间而改变。共检测到49个门、152个纲、363个目、634个科和1390个属。在门水平上,变形菌门是所有样本中的优势类群,但各样本中其相对丰度有所不同。微塑料暴露增加了变形菌门、绿弯菌门、厚壁菌门、放线菌门、拟杆菌门和酸杆菌门的丰度。在属水平上,[属名未给出]是微塑料暴露后珊瑚共生细菌的优势类群。PICRUSt功能预测表明,微塑料暴露于珊瑚后,珊瑚共生细菌群落的功能,包括信号转导、细胞群落原核生物、异生物降解与代谢以及细胞运动性均有所下降。BugBase表型预测表明,微塑料暴露改变了珊瑚共生细菌群落的三种表型(致病性、厌氧性和耐氧化应激性)。FAPROTAX功能预测表明,微塑料暴露导致珊瑚共生细菌与宿主之间的共生关系、碳氮循环和光合作用等功能发生显著变化。本研究为微塑料对珊瑚的影响机制及微塑料生态毒理学提供了基础数据。

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