Key Laboratory of Marine Eco-Environmental Science and Technology, First Institute of Oceanography, Ministry of Natural Resources, Qingdao, 266061, China.
Laboratory for Marine Ecology and Environmental Science, Pilot National Laboratory for Marine Science and Technology (Qingdao), Qingdao, 266071, China.
Environ Sci Pollut Res Int. 2022 Aug;29(36):54619-54631. doi: 10.1007/s11356-022-19564-6. Epub 2022 Mar 19.
The quorum sensing (QS) system plays a significant role in the bacteria-bacteria or plant-bacteria relationships through signal molecules. However, little is known about the distribution and functional diversity of QS bacteria in the root environment of Suaeda glauca and Phragmites australis in coastal wetlands. We explored the bacterial community by amplicon sequencing and isolated 1050 strains from the rhizosphere soil and root tissues of S. glauca and P. australis in northern China to investigate the bacterial community and AHL producers. AHL activity was found in 76 isolates, and 22 distinct strains were confirmed by 16S rRNA gene sequencing. A substantial number of AHL producers clustered in rhizobiales and sphingomonadale, which derived from the root tissues. AHL producers in the rhizosphere soil mostly belonged to rhodobacterales. The different taxa of AHL producers in the rhizosphere soil and root tissues resulted in a variation of AHL profiles that C6-HSL dominated the AHL profiles in root bacteria compared to the C8-HSL in rhizobacteria, implying different ecological roles for AHL producers in the rhizosphere soil and root tissues. Many AHL producers may form biofilms, and some can degrade DMSP and oil, demonstrating that QS bacteria in the root environment have a wide ecological roles. In our study, for one of the first times here, we explore the distribution and functional variety of AHL producers in the root environment of S. glauca-P. australis. This study expands current knowledge of the relationship between QS bacteria and coastal plants (S. glauca and P. australis), and vital roles of QS bacterial in maintaining the health of coastal wetlands.
群体感应 (QS) 系统通过信号分子在细菌-细菌或植物-细菌关系中发挥重要作用。然而,对于沿海湿地中盐地碱蓬和芦苇的根际环境中 QS 细菌的分布和功能多样性知之甚少。我们通过扩增子测序探索了细菌群落,并从中国北方盐地碱蓬和芦苇的根际土壤和根组织中分离出 1050 株菌株,以研究细菌群落和 AHL 产生菌。发现 76 株分离物具有 AHL 活性,通过 16S rRNA 基因测序鉴定出 22 个不同的菌株。大量 AHL 产生菌聚类在根瘤菌目和鞘脂单胞菌目中,这些菌株来源于根组织。根际土壤中的 AHL 产生菌主要属于红杆菌目。根际土壤和根组织中 AHL 产生菌的不同分类导致 AHL 图谱的变化,与根细菌中的 C8-HSL 相比,C6-HSL 主导根细菌中的 AHL 图谱,这表明根际土壤和根组织中的 AHL 产生菌具有不同的生态作用。许多 AHL 产生菌可能形成生物膜,有些可以降解 DMSP 和石油,这表明根际环境中的 QS 细菌具有广泛的生态作用。在我们的研究中,我们首次探索了盐地碱蓬-芦苇根际环境中 AHL 产生菌的分布和功能多样性。这项研究扩展了 QS 细菌与沿海植物(盐地碱蓬和芦苇)之间关系的现有知识,以及 QS 细菌在维持沿海湿地健康方面的重要作用。