Feng Xiaoyuan, Xing Peng
Shenzhen Research Institute, Chinese University of Hong Kong, Shenzhen 518000, China.
State Key Laboratory of Lake Science and Environment, Nanjing Institute of Geography and Limnology, Chinese Academy of Sciences, Nanjing 210008, China.
Microorganisms. 2023 Nov 20;11(11):2817. doi: 10.3390/microorganisms11112817.
Understanding the genomic differentiation between marine and non-marine aquatic microbes remains a compelling question in ecology. While previous research has identified several lacustrine lineages within the predominantly marine family, limited genomic data have constrained our understanding of their ecological adaptation mechanisms. In this study, we isolated four novel strains from a brackish lake on the Tibetan Plateau. These strains have diverged from their marine counterparts within the same genus, indicating a recent habitat transition event from marine to non-marine environments. Metabolic comparisons and ancestral genomic reconstructions in a phylogenetic framework reveal metabolic shifts in salinity adaptation, compound transport, aromatics degradation, DNA repair, and restriction systems. These findings not only corroborate the metabolic changes commonly observed in other non-marine Roseobacters but also unveil unique adaptations, likely reflecting the localized metabolic changes in responses to Tibetan Plateau environments. Collectively, our study expands the known genomic diversity of non-marine lineages and enhances our understanding of microbial adaptations to lacustrine ecosystems.
了解海洋和非海洋水生微生物之间的基因组差异仍然是生态学中一个引人关注的问题。虽然先前的研究已经在主要为海洋的菌群中鉴定出了几个湖泊谱系,但有限的基因组数据限制了我们对其生态适应机制的理解。在本研究中,我们从青藏高原的一个咸水湖中分离出了四株新菌株。这些菌株与其同属的海洋对应菌株已经分化,表明最近发生了从海洋环境到非海洋环境的栖息地转变事件。在系统发育框架下进行的代谢比较和祖先基因组重建揭示了盐度适应、化合物转运、芳烃降解、DNA修复和限制系统方面的代谢转变。这些发现不仅证实了在其他非海洋玫瑰杆菌中常见的代谢变化,还揭示了独特的适应性,可能反映了对青藏高原环境响应中的局部代谢变化。总体而言,我们的研究扩展了非海洋谱系已知的基因组多样性,并增进了我们对微生物对湖泊生态系统适应性的理解。