Liu Yanjun, Zhang Huan, Cao Lei, Fu Lulu, Lian Chao, Guo Yang, Zhong Zhaoshan, Seim Inge, Wang Minxiao, Li Chaolun
Institute of Oceanology, Chinese Academy of Sciences, Qingdao, China.
University of Chinese Academy of Sciences, Beijing, China.
Commun Biol. 2025 Jul 15;8(1):1052. doi: 10.1038/s42003-025-08471-4.
Microbes in cold seep water columns are essential for methane sequestration and biogeochemical cycling, yet their structures and ecological functions, particularly at the bottom water interface (BWI), are poorly understood. Here, we performed metagenomic analyses to explore the microbial biodiversity and functions at the F-site cold seep in the South China Sea. Functional stratification revealed that photosynthetic autotrophs dominate surface zones, heterotrophs are prevalent in mesopelagic zones, and chemosynthetic bacteria are abundant at the BWI. We obtained 377 metagenome-assembled-genomes (MAGs) and constructed genome-scale metabolic models to unveil metabolic interactions facilitating the coupling of carbon, nitrogen, and sulfur among microbes, particularly at the BWI. Notably, methanotrophic bacteria with diverse metabolic capabilities distributed from the BWI zone to the deep mesopelagic regions, highlighting the broader influence of methane. In conclusion, our findings reveal a high degree of heterogeneity in the composition and function of microorganisms across the F-site cold seep water column. Our study also sheds light on the ecological interactions and environmental gradients that shape these microbial communities.
冷泉水柱中的微生物对于甲烷封存和生物地球化学循环至关重要,然而,人们对它们的结构和生态功能了解甚少,尤其是在底水界面(BWI)。在此,我们进行了宏基因组分析,以探索南海F站冷泉的微生物多样性和功能。功能分层显示,光合自养生物在表层区域占主导地位,异养生物在中层带普遍存在,而化学合成细菌在BWI处大量存在。我们获得了377个宏基因组组装基因组(MAG),并构建了基因组规模的代谢模型,以揭示促进微生物间碳、氮和硫耦合的代谢相互作用,特别是在BWI处。值得注意的是,具有不同代谢能力的甲烷营养细菌分布在从BWI区到深层中层带区域,突出了甲烷的更广泛影响。总之,我们的研究结果揭示了F站冷泉水柱中微生物组成和功能的高度异质性。我们的研究还揭示了塑造这些微生物群落的生态相互作用和环境梯度。