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红树林栖息地中多个生态位(水、沉积物、塑料和蜗牛肠道)的细菌群落

Bacterial Communities across Multiple Ecological Niches (Water, Sediment, Plastic, and Snail Gut) in Mangrove Habitats.

作者信息

Al-Tarshi Muna, Dobretsov Sergey, Al-Belushi Mohammed

机构信息

Marine Conservation Department, DG of Nature Conservation, Environment Authority, P.O. Box 323, Muscat 100, Oman.

Department of Marine Science and Fisheries, College of Agricultural and Marine Sciences, Sultan Qaboos University, Al Khoud 123 P.O. Box 34, Muscat 123, Oman.

出版信息

Microorganisms. 2024 Jul 30;12(8):1561. doi: 10.3390/microorganisms12081561.

Abstract

Microbial composition across substrates in mangroves, particularly in the Middle East, remains unclear. This study characterized bacterial communities in sediment, water, snail guts, and plastic associated with mangrove forests in two coastal lagoons in the Sea of Oman using 16S rDNA gene MiSeq sequencing. The genus dominated all substrates except water. In the gut of snails, is composed of 80-99% of all bacterial genera. The water samples showed a different pattern, with the genus being dominant in both Sawadi (50.80%) and Qurum (49.29%) lagoons. There were significant differences in bacterial communities on different substrata, in particular plastic. Snail guts harbored the highest number of unique Operational Taxonomic Units (OTUs) in both lagoons, accounting for 30.97% OTUs in Sawadi and 28.91% OTUs in Qurum, compared to other substrates. Plastic in the polluted Sawadi lagoon with low salinity harbored distinct genera such as , , , and , which were absent in the Qurum lagoon with higher salinity and lower pollution. Sawadi lagoon exhibited higher species diversity in sediment and plastic substrates, while Qurum lagoon demonstrated lower species diversity. The principal component analysis (PCA) indicates that environmental factors such as salinity, pH, and nutrient levels significantly influence bacterial community composition across substrates. Variations in organic matter and potential anthropogenic influences, particularly from plastics, further shape bacterial communities. This study highlights the complex microbial communities in mangrove ecosystems, emphasizing the importance of considering multiple substrates in mangrove microbial ecology studies. The understanding of microbial dynamics and anthropogenic impacts is crucial for shaping effective conservation and management strategies in mangrove ecosystems, particularly in the face of environmental changes.

摘要

红树林中不同基质上的微生物组成,尤其是中东地区的情况,仍不明确。本研究利用16S rDNA基因MiSeq测序对阿曼湾两个沿海泻湖红树林中的沉积物、水、蜗牛肠道和塑料上的细菌群落进行了特征分析。除水以外,该属在所有基质中占主导地位。在蜗牛肠道中,该属占所有细菌属的80 - 99%。水样呈现出不同的模式,在萨瓦迪泻湖(50.80%)和古鲁姆泻湖(49.29%)中,该属均占主导。不同基质上的细菌群落存在显著差异,尤其是塑料。与其他基质相比,蜗牛肠道在两个泻湖中拥有的独特操作分类单元(OTU)数量最多,在萨瓦迪泻湖中占OTU的30.97%,在古鲁姆泻湖中占28.91%。受污染且盐度低的萨瓦迪泻湖中的塑料含有诸如、、、等独特的属,而盐度较高且污染较低的古鲁姆泻湖中则没有这些属。萨瓦迪泻湖在沉积物和塑料基质中表现出较高的物种多样性,而古鲁姆泻湖的物种多样性较低。主成分分析(PCA)表明,盐度、pH值和营养水平等环境因素显著影响不同基质上的细菌群落组成。有机质的变化和潜在的人为影响,特别是来自塑料的影响,进一步塑造了细菌群落。本研究突出了红树林生态系统中复杂的微生物群落,强调了在红树林微生物生态学研究中考虑多种基质的重要性。了解微生物动态和人为影响对于制定有效的红树林生态系统保护和管理策略至关重要,尤其是在面对环境变化时。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4632/11356523/532c58ae92df/microorganisms-12-01561-g001.jpg

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