Priest Taylor, Oldenburg Ellen, Popa Ovidiu, Dede Bledina, Metfies Katja, von Appen Wilken-Jon, Torres-Valdés Sinhué, Bienhold Christina, Fuchs Bernhard M, Amann Rudolf, Boetius Antje, Wietz Matthias
Max Planck Institute for Marine Microbiology, Bremen, Germany.
Institute of Microbiology, ETH Zurich, Zurich, Switzerland.
Nat Commun. 2025 Feb 3;16(1):1326. doi: 10.1038/s41467-025-56203-3.
Deciphering how microbial communities are shaped by environmental variability is fundamental for understanding the structure and function of ocean ecosystems. While seasonal environmental gradients have been shown to structure the taxonomic dynamics of microbiomes over time, little is known about their impact on functional dynamics and the coupling between taxonomy and function. Here, we demonstrate annually recurrent, seasonal structuring of taxonomic and functional dynamics in a pelagic Arctic Ocean microbiome by combining autonomous samplers and in situ sensors with long-read metagenomics and SSU ribosomal metabarcoding. Specifically, we identified five temporal microbiome modules whose succession within each annual cycle represents a transition across different ecological states. For instance, Cand. Nitrosopumilus, Syndiniales, and the machinery to oxidise ammonia and reduce nitrite are signatures of early polar night, while late summer is characterised by Amylibacter and sulfur compound metabolism. Leveraging metatranscriptomes from Tara Oceans, we also demonstrate the consistency in functional dynamics across the wider Arctic Ocean during similar temporal periods. Furthermore, the structuring of genetic diversity within functions over time indicates that environmental selection pressure acts heterogeneously on microbiomes across seasons. By integrating taxonomic, functional and environmental information, our study provides fundamental insights into how microbiomes are structured under pronounced seasonal changes in understudied, yet rapidly changing polar marine ecosystems.
解读微生物群落如何受环境变异性影响,对于理解海洋生态系统的结构和功能至关重要。虽然季节性环境梯度已被证明会随时间塑造微生物群落的分类动态,但对于它们对功能动态的影响以及分类与功能之间的耦合关系却知之甚少。在这里,我们通过将自主采样器和原位传感器与长读长宏基因组学和SSU核糖体元条形码相结合,展示了北冰洋浮游微生物群落中分类和功能动态的年度周期性、季节性结构。具体而言,我们确定了五个时间微生物群落模块,每个年度周期内它们的演替代表了跨越不同生态状态的转变。例如,念珠菌属的亚硝化侏儒菌、聚缩虫目以及氧化氨和还原亚硝酸盐的机制是极夜早期的特征,而夏末的特征是淀粉杆菌属和硫化合物代谢。利用塔拉海洋项目的宏转录组,我们还证明了在相似的时间段内,整个北冰洋功能动态的一致性。此外,随着时间的推移,功能内遗传多样性的结构表明,环境选择压力在不同季节对微生物群落的作用是异质的。通过整合分类、功能和环境信息,我们的研究为在研究不足但快速变化的极地海洋生态系统中,微生物群落在明显的季节性变化下如何构建提供了基本见解。