论文标题
在波罗的海细菌群落中代谢生态位占用动力学的量化
Quantification of metabolic niche occupancy dynamics in a Baltic Sea bacterial community
论文作者
论文摘要
分子方法的进展使得能够及时监测细菌种群。然而,由于微生物的巨大多样性,了解社区动态及其与生态系统功能的联系仍然具有挑战性。需要构成分类富含细菌群落的时间序列的概念框架,涉及其潜在的生态功能。组织生态功能的一个关键概念是利基市场,这是使人们能够坚持并定义其对周围环境的影响的一系列策略。在这里,我们提出了一个基于多种学习的框架,以随着时间的推移将基因组信息组织为潜在占据的细菌代谢壁ni。我们使用该方法,使用来自波罗的海(Linnaeus Microbial天文台(LMO))的长期细菌时间序列来重建被推定的代谢壁ni的动力学。结果揭示了占用的代谢壁ni的相对较低维空间,其中包括具有相似功能能力的类群。占领利基的时间模式受季节性的强烈驱动。一些新陈代谢的壁ni被一个细菌分类群主导,而另一些则由多个分类单元占据,这取决于季节。这些结果说明了多种学习方法的力量,以促进我们对微生物系统中社区组成与功能之间联系的理解。
Progress in molecular methods has enabled the monitoring of bacterial populations in time. Nevertheless, understanding community dynamics and its links with ecosystem functioning remains challenging due to the tremendous diversity of microorganisms. Conceptual frameworks that make sense of time-series of taxonomically-rich bacterial communities, regarding their potential ecological function, are needed. A key concept for organizing ecological functions is the niche, the set of strategies that enable a population to persist and define its impacts on the surroundings. Here we present a framework based on manifold learning, to organize genomic information into potentially occupied bacterial metabolic niches over time. We apply the method to re-construct the dynamics of putatively occupied metabolic niches using a long-term bacterial time-series from the Baltic Sea, the Linnaeus Microbial Observatory (LMO). The results reveal a relatively low-dimensional space of occupied metabolic niches comprising groups of taxa with similar functional capabilities. Time patterns of occupied niches were strongly driven by seasonality. Some metabolic niches were dominated by one bacterial taxon whereas others were occupied by multiple taxa, and this depended on season. These results illustrate the power of manifold learning approaches to advance our understanding of the links between community composition and functioning in microbial systems.