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微塑料附生生物膜中的群体感应细菌及其潜在影响海洋生态系统的生物学特性。

Quorum sensing bacteria in microplastics epiphytic biofilms and their biological characteristics which potentially impact marine ecosystem.

机构信息

Key Laboratory of Marine Eco-Environmental Science and Technology, First Institute of Oceanography, Ministry of Natural Resources, Qingdao 266061, China.

Key Laboratory of Marine Chemistry Theory and Technology, Ministry of Education, Ocean University of China, Qingdao 266100, China.

出版信息

Ecotoxicol Environ Saf. 2023 Oct 1;264:115444. doi: 10.1016/j.ecoenv.2023.115444. Epub 2023 Sep 13.

Abstract

Microplastics (MPs) have been shown to be a new type of pollutant in the oceans, with complex biofilms attached to their surfaces. Bacteria with quorum sensing (QS) systems are important participants in biofilms. Such bacteria can secrete and detect signal molecules. When a signal molecule reaches its threshold level, bacteria with QS systems can perform several biological functions, such as biofilm formation and antibiotic metabolite production. However, the ecological effects of QS bacteria in biofilm as MPs distribute globally with ocean currents are not to be elucidate yet. In this study, polypropylene and polyvinyl chloride were selected for on-site enrichment to acquire microplastics with biofilms. Eight culturable QS bacteria in the resulting biofilm were isolated by using biosensor assays, and their biodiversity was analyzed. The profiles of the N-acyl-homoserine lactones (AHLs) produced by these bacteria were analyzed by using thin-layer chromatography (TLC)-bioautography and gas chromatography and mass spectrometry (GC-MS). Biofilm-forming properties and several biological characteristics, such as bacteriostasis, algal inhibition, and dimethylsulfoniopropionate (DMSP) degradation, were explored along with QS quenching. Results showed that QS bacteria were mainly affiliated with class Alphaproteobacteria, particularly Rhodobacteraceae, followed by class Gammaproteobacteria. TLC-bioautography and GC-MS analyses revealed that seven AHLs, namely, C6-HSL, C8-HSL, 3-oxo-C6-HSL, 3-oxo-C8-HSL, 3-oxo-C10-HSL, and two unidentified AHLs were produced. The QS system equipped bacteria with strong biofilm-forming capacity and may contribute to the keystone roles of Rhodobacteraceae. In addition, QS bacteria may exacerbate the adverse environmental effects of MPs, such as inducing the misfeeding of planktons on MPs. This study elucidated the diversity of QS bacteria in MP-associated biofilms and provided a new perspective of the effect of key membrane-forming bacteria on the marine ecological environment.

摘要

微塑料 (MPs) 已被证明是海洋中的一种新型污染物,其表面附着有复杂的生物膜。具有群体感应 (QS) 系统的细菌是生物膜的重要参与者。这类细菌可以分泌和检测信号分子。当信号分子达到其阈值水平时,具有 QS 系统的细菌可以执行几种生物功能,例如生物膜形成和抗生素代谢物的产生。然而,随着洋流在全球范围内分布,QS 细菌在生物膜中作为 MPs 的生态效应尚未得到阐明。在这项研究中,选择了聚丙烯和聚氯乙烯进行现场富集,以获取带有生物膜的微塑料。通过生物传感器测定法从所得生物膜中分离出 8 种可培养的 QS 细菌,并对其多样性进行了分析。通过薄层层析 (TLC)-生物自显影和气相色谱和质谱联用 (GC-MS) 分析了这些细菌产生的 N-酰基高丝氨酸内酯 (AHLs) 的图谱。同时还探索了生物膜形成特性和几种生物学特性,如抑菌、抑藻和二甲基巯基丙酸 (DMSP) 降解,以及 QS 淬灭。结果表明,QS 细菌主要隶属于α变形菌纲,特别是红杆菌科,其次是γ变形菌纲。TLC-生物自显影和 GC-MS 分析表明,产生了七种 AHLs,即 C6-HSL、C8-HSL、3-氧代-C6-HSL、3-氧代-C8-HSL、3-氧代-C10-HSL 和两种未鉴定的 AHLs。QS 系统赋予细菌强大的生物膜形成能力,并可能有助于红杆菌科发挥关键作用。此外,QS 细菌可能会加剧 MPs 的不利环境影响,例如诱导浮游生物对 MPs 的误食。本研究阐明了 MPs 相关生物膜中 QS 细菌的多样性,并为关键膜形成细菌对海洋生态环境的影响提供了新的视角。

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