Departament de Biologia Marina i Oceanografia, Institut de Ciències del Mar, ICM-CSIC, 08003, Barcelona, Catalunya, Spain.
Centro Oceanográfico de Málaga, Instituto Español de Oceanografía, IEO-CSIC, 29640, Fuengirola, Málaga, Spain.
Environ Microbiol. 2023 Aug;25(8):1465-1483. doi: 10.1111/1462-2920.16367. Epub 2023 Mar 28.
Microbes drive the biogeochemical cycles of marine ecosystems through their vast metabolic diversity. While we have a fairly good understanding of the spatial distribution of these metabolic processes in various ecosystems, less is known about their seasonal dynamics. We investigated the annual patterns of 21 biogeochemical relevant functions in an oligotrophic coastal ocean site by analysing the presence of key genes, analysing high-rank gene taxonomy and the dynamics of nucleotide variants. Most genes presented seasonality: photoheterotrophic processes were enriched during spring, phosphorous-related genes were dominant during summer, coinciding with potential phosphate limitation, and assimilatory nitrate reductases appeared mostly during summer and autumn, correlating negatively with nitrate availability. Additionally, we identified the main taxa driving each function at each season and described the role of underrecognized taxa such as Litoricolaceae in carbon fixation (rbcL), urea degradation (ureC), and CO oxidation (coxL). Finally, the seasonality of single variants of some families presented a decoupling between the taxonomic abundance patterns and the functional gene patterns, implying functional specialization of the different genera. Our study unveils the seasonality of key biogeochemical functions and the main taxonomic groups that harbour these relevant functions in a coastal ocean ecosystem.
微生物通过其广泛的代谢多样性驱动海洋生态系统的生物地球化学循环。虽然我们对各种生态系统中这些代谢过程的空间分布有了相当好的了解,但对它们的季节性动态了解较少。我们通过分析关键基因的存在、高级基因分类和核苷酸变异的动态,研究了贫营养沿海海域一个站点的 21 种与生物地球化学相关的功能的年度模式。大多数基因表现出季节性:光合异养过程在春季富集,磷相关基因在夏季占主导地位,与潜在的磷酸盐限制相吻合,同化硝酸盐还原酶主要在夏季和秋季出现,与硝酸盐的可用性呈负相关。此外,我们确定了每个季节每个功能的主要驱动分类群,并描述了一些未被充分认识的分类群的作用,如在固碳(rbcL)、尿素降解(ureC)和 CO 氧化(coxL)中起作用的 Litoricolaceae。最后,一些家族的单一变体的季节性表现出分类丰度模式和功能基因模式之间的解耦,这意味着不同属的功能专业化。我们的研究揭示了沿海海洋生态系统中关键生物地球化学功能和携带这些相关功能的主要分类群的季节性。