Shanghai Engineering Research Center of Hadal Science and Technology, College of Marine Sciences, Shanghai Ocean University, Shanghai,201306, China.
National Engineering Research Center for Oceanic Fisheries, Shanghai Ocean University, Shanghai, 201306, China.
FEMS Microbiol Lett. 2021 Jul 7;368(13). doi: 10.1093/femsle/fnab078.
Microbial degradation of organic matter along the vertical profile of the water column is a major process driving the carbon cycle in the ocean. Pseudoalteromonas has been identified as a dominant genus in pelagic marine environments worldwide, playing important roles in the remineralization of organic carbon. However, the current understanding of Pseudoalteromonas was mainly based on shallow water populations or cultivated species. This study analyzed for the first time the structure, activity potential and ecotypes differentiation of Pseudoalteromonas in the water column of the New Britain Trench (NBT) down to 6000 m. Analysis on diversities of the 16S rRNA gene and their transcripts showed that Pseudoalteromonas was greatly enriched in deep-sea waters and showed high activity potentials. The deep-sea Pseudoalteromonas were significantly different from their shallow-water counterparts, suggesting an obvious ecotype division along with the vertical profile. Phylogenetic analysis on the 16S rRNA gene and hsp60 gene of 219 Pseudoalteromonas strains isolated from different depths further showed that the vertical ecotype division could even occur at the strain level, which might be a result of long-term adaptation to environmental conditions at different depths. The discovered depth-specific strains provide valuable models for further studies on adaptation, evolution and functions of the deep-sea Pseudoalteromonas.
微生物沿着水柱的垂直剖面对有机物的降解是驱动海洋碳循环的主要过程。假交替单胞菌已被确定为世界范围内远洋海洋环境中的优势属,在有机碳的再矿化中发挥着重要作用。然而,目前对假交替单胞菌的认识主要基于浅海种群或培养物种。本研究首次分析了新不列颠海沟(NBT)水柱中假交替单胞菌的结构、活性潜力和生态型分化,深度可达 6000 米。16S rRNA 基因及其转录物多样性分析表明,假交替单胞菌在深海水中大量富集,并表现出高的活性潜力。深海假交替单胞菌与浅海同类群明显不同,表明随着垂直剖面的变化存在明显的生态型分化。对从不同深度分离的 219 株假交替单胞菌的 16S rRNA 基因和 hsp60 基因进行系统发育分析进一步表明,垂直生态型分化甚至可能发生在菌株水平,这可能是长期适应不同深度环境条件的结果。发现的深度特异性菌株为进一步研究深海假交替单胞菌的适应、进化和功能提供了有价值的模型。