State Key Laboratory of Microbial Technology, Shandong Provincial Hospital, Shandong University, Qingdao, China.
State Key Laboratory of Microbial Technology, Shandong Provincial Hospital, Shandong University, Qingdao, China; Laboratory for Marine Biology and Biotechnology, National Laboratory for Marine Science and Technology, Qingdao, China.
Environ Int. 2023 Dec;182:108325. doi: 10.1016/j.envint.2023.108325. Epub 2023 Nov 15.
The degradation of high molecular weight organic matter (HMWOM) is a core process of oceanic carbon cycle, which is determined by the activity of microbial communities harboring hundreds of different species. Illustrating the active microbes and their interactions during HMWOM processing can provide key information for revealing the relationship between community composition and its ecological functions. In this study, the genomic and transcriptional responses of microbial communities to the availability of alginate, an abundant HMWOM in coastal ecosystem, were elucidated. The main degraders transcribing alginate lyase (Aly) genes came from genera Alteromonas, Psychrosphaera and Colwellia. Meanwhile, some strains, mainly from the Rhodobacteraceae family, did not transcribe Aly gene but could utilize monosaccharides to grow. The co-culture experiment showed that the activity of Aly-producing strain could promote the growth of Aly-non-producing strain when alginate was the sole carbon source. Interestingly, this interaction did not reduce the alginate degradation rate, possibly due to the easily degradable nature of alginate. This study can improve our understanding of the relationship between microbial community activity and alginate metabolism function as well as further manipulation of microbial community structure for alginate processing.
高分子量有机物(HMWOM)的降解是海洋碳循环的核心过程,这一过程由拥有数百种不同物种的微生物群落的活性决定。阐明在 HMWOM 处理过程中活跃的微生物及其相互作用,可以为揭示群落组成与其生态功能之间的关系提供关键信息。在这项研究中,阐明了微生物群落对褐藻胶(沿海生态系统中丰富的 HMWOM)可利用性的基因组和转录组响应。主要转录褐藻胶裂解酶(Aly)基因的降解菌来自交替单胞菌属、嗜冷球形菌属和柯林斯氏菌属。同时,一些菌株,主要来自红杆菌科,不转录 Aly 基因,但可以利用单糖生长。共培养实验表明,当褐藻胶是唯一的碳源时,产生 Aly 的菌株的活性可以促进 Aly 非产生菌株的生长。有趣的是,这种相互作用并没有降低褐藻胶的降解率,可能是由于褐藻胶的易降解性质。这项研究可以提高我们对微生物群落活性与褐藻胶代谢功能之间关系的理解,并进一步对微生物群落结构进行操纵以处理褐藻胶。