Instituto Español de Oceanografía, Centre Oceanogràfic de Les Balears, Ecosystem Oceanography Group (GRECO), Moll de Ponent s/n 07015, Palma, Spain.
IFREMER - Centre Bretagne Z.I., Technopôle Brest-Iroise Pointe du Diable BP70, 29280Plouzané, France.
Sci Rep. 2021 Sep 9;11(1):17859. doi: 10.1038/s41598-021-96992-3.
Dark ocean microbial dynamics are fundamental to understand ecosystem metabolism and ocean biogeochemical processes. Yet, the ecological response of deep ocean communities to environmental perturbations remains largely unknown. Temporal and spatial dynamics of the meso- and bathypelagic prokaryotic communities were assessed throughout a 2-year seasonal sampling across the western Mediterranean Sea. A common pattern of prokaryotic communities' depth stratification was observed across the different regions and throughout the seasons. However, sporadic and drastic alterations of the community composition and diversity occurred either at specific water masses or throughout the aphotic zone and at a basin scale. Environmental changes resulted in a major increase in the abundance of rare or low abundant phylotypes and a profound change of the community composition. Our study evidences the temporal dynamism of dark ocean prokaryotic communities, exhibiting long periods of stability but also drastic changes, with implications in community metabolism and carbon fluxes. Taken together, the results highlight the importance of monitoring the temporal patterns of dark ocean prokaryotic communities.
深海微生物动态是理解生态系统代谢和海洋生物地球化学过程的基础。然而,深海群落对环境干扰的生态响应在很大程度上仍然未知。本研究通过在整个地中海西部进行为期 2 年的季节性采样,评估了中深海和深海浮游细菌群落的时空动态。在不同的区域和整个季节都观察到了细菌群落深度分层的常见模式。然而,在特定水团或整个弱光区和盆地尺度上,群落组成和多样性会发生零星和剧烈的变化。环境变化导致稀有或低丰度的生物型数量的大量增加,以及群落组成的深刻变化。本研究表明,深海浮游细菌群落具有时间动态性,表现出长时间的稳定性,但也存在剧烈变化,这对群落代谢和碳通量有影响。总之,这些结果强调了监测深海浮游细菌群落时间格局的重要性。