Hu Wei, Zhang Hui, Lin Xiaowen, Liu Ruidan, Bartlam Mark, Wang Yingying
Key Laboratory of Pollution Processes and Environmental Criteria (Ministry of Education), Tianjin Key Laboratory of Environmental Remediation and Pollution Control, College of Environmental Science and Engineering, Nankai International Advanced Research Institute (Shenzhen Futian), Nankai University, Tianjin, China.
State Key Laboratory of Medicinal Chemical Biology, College of Life Sciences, Nankai International Advanced Research Institute (Shenzhen Futian), Nankai University, Tianjin, China.
Front Microbiol. 2022 Jun 15;13:900669. doi: 10.3389/fmicb.2022.900669. eCollection 2022.
Low nucleic acid content (LNA) bacteria are ubiquitous and estimated to constitute 20%-90% of the total bacterial community in marine and freshwater environment. LNA bacteria with unique physiological characteristics, including small cell size and small genomes, can pass through 0.45-μm filtration. The researchers came up with different terminologies for low nucleic acid content bacteria based on different research backgrounds, such as: filterable bacteria, oligotrophic bacteria, and low-DNA bacteria. LNA bacteria have an extremely high level of genetic diversity and play an important role in material circulation in oligotrophic environment. However, the majority of LNA bacteria in the environment remain uncultivated. Thus, an important challenge now is to isolate more LNA bacteria from oligotrophic environments and gain insights into their unique metabolic mechanisms and ecological functions. Here, we reviewed LNA bacteria in aquatic environments, focusing on their characteristics, community structure and diversity, functions, and cultivation strategies. Exciting future prospects for LNA bacteria are also discussed.
低核酸含量(LNA)细菌广泛存在,据估计在海洋和淡水环境中占细菌群落总数的20% - 90%。具有独特生理特征(包括细胞体积小和基因组小)的LNA细菌能够通过0.45微米的滤膜。基于不同的研究背景,研究人员为低核酸含量细菌提出了不同的术语,如:可滤过细菌、贫营养细菌和低DNA细菌。LNA细菌具有极高的遗传多样性,在贫营养环境的物质循环中发挥着重要作用。然而,环境中的大多数LNA细菌仍未被培养。因此,目前一个重要的挑战是从贫营养环境中分离出更多的LNA细菌,并深入了解它们独特的代谢机制和生态功能。在此,我们综述了水生环境中的LNA细菌,重点关注它们的特征、群落结构与多样性、功能以及培养策略。还讨论了LNA细菌令人兴奋的未来前景。