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揭示短尺度响应:微微型和微型真核浮游生物如何在沿岸上升流系统中应对环境变化

Unveiling Short-Scale Responses: How Pico- and Nanoeukaryotic Plankton Navigate Environmental Variability in a Coastal Upwelling System.

作者信息

Froján María, Muñoz-Colmenero Marta, Teixeira Isabel G, Arbones Belén, Sotelo Carmen G, Correa Begoña, Figueiras Francisco G, Castro Carmen G

机构信息

Instituto de Investigaciones Marinas (IIM), CSIC, Vigo, Spain.

Department of Genetics, Physiology and Microbiology, Universidad Complutense de Madrid (UCM), Madrid, Spain.

出版信息

Environ Microbiol Rep. 2025 Apr;17(2):e70070. doi: 10.1111/1758-2229.70070.

Abstract

For decades, identifying pico- and nanoeukaryotic plankton has been challenging due to their small size, leaving a significant gap in our knowledge of their composition and dynamics in comparison with their larger counterparts. The advent of molecular techniques unlocked new possibilities for exploring this hidden diversity. We applied metabarcoding targeting the V9 region of 18S rDNA to discern the principal taxonomic groups of pico- and nanoeukaryotes in the Ría de Vigo during the upwelling season. Nanoeukaryotes (NE) exhibit greater diversity compared to picoeukaryotes (PE). Specifically, NE were mainly comprised of nano-sized diatoms and dinoflagellates, many of them uncategorized novel species. Within PE, Syndiniales and Marine Stramenopiles (MAST) were the main components identified. We also captured short-term changes in the biomass and composition of PE an NE, with advection emerging as one of the most significant drivers. Most notably was the ocean inflow of unassigned picoeukaryotes into the Ría, likely driven by the negative circulation during downwelling. Moreover, local grazing within the Ría seems to be important enough to alter NE dynamics, but has a minimal effect over PE. Our findings improve the understanding of the small eukaryotic plankton community in coastal upwelling systems, highlighting a significant potential for novel diversity within these environments.

摘要

几十年来,由于微微型和微型真核浮游生物体型微小,对其进行鉴定一直具有挑战性,这使得我们对它们的组成和动态的了解与较大的同类生物相比存在很大差距。分子技术的出现为探索这种隐藏的多样性带来了新的可能性。我们应用针对18S rDNA V9区域的宏条形码技术,以识别维哥湾上升流季节中微微型和微型真核生物的主要分类群。与微微型真核生物(PE)相比,微型真核生物(NE)表现出更高的多样性。具体而言,NE主要由纳米级硅藻和甲藻组成,其中许多是未分类的新物种。在PE中,合胞藻目和海洋不等鞭毛类(MAST)是鉴定出的主要成分。我们还捕捉到了PE和NE生物量及组成的短期变化,平流是最显著的驱动因素之一。最值得注意的是,未分类的微微型真核生物随海洋流入维哥湾,这可能是由下沉流期间的负环流驱动的。此外,维哥湾内的局部捕食似乎足以改变NE的动态,但对PE的影响最小。我们的研究结果增进了对沿海上升流系统中微小真核浮游生物群落的理解,突出了这些环境中存在新多样性的巨大潜力。

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