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Massive shelf dense water flow influences plankton community structure and particle transport over long distance

机译:大量的密集水流影响浮游生物的群落结构和长距离的颗粒运输

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摘要

Dense waters (DW) formation in shelf areas and their cascading off the shelf break play a major role in ventilating deep waters, thus potentially affecting ecosystem functioning and biogeochemical cycles. However, whether DW flow across shelves may affect the composition and structure of plankton communities down to the seafloor and the particles transport over long distances has not been fully investigated. Following the 2012 north Adriatic Sea cold outbreak, DW masses were intercepted at ca. 460 km south the area of origin and compared to resident ones in term of plankton biomass partitioning (pico to micro size) and phytoplankton species composition. Results indicated a relatively higher contribution of heterotrophs in DW than in deep resident water masses, probably as result of DW-mediated advection of fresh organic matter available to consumers. DWs showed unusual high abundances of Skeletonema sp., a diatom that bloomed in the north Adriatic during DW formation. The Lagrangian numerical model set up on this diatom confirmed that DW flow could be an important mechanism for plankton/particles export to deep waters. We conclude that the predicted climate-induced variability in DW formation events could have the potential to affect the ecosystem functioning of the deeper part of the Mediterranean basin, even at significant distance from generation sites.
机译:架子区的稠密水域(DW)的形成及其从架子上冲下来的级联作用在深水通风中起着重要作用,因此可能影响生态系统的功能和生物地球化学循环。但是,DW跨架子流动是否会影响到海底浮游生物群落的组成和结构,以及长距离传输的颗粒,尚未得到充分研究。继2012年亚得里亚海北部爆发冷风之后,DW群众在大约200公里处被拦截。在起源地区以南460 km处,与浮游生物的生物量分配(从皮克级到微米级)和浮游植物的种类组成相比,与常住区相比。结果表明,DW中异养生物的贡献要比深水居民更大,这可能是由于DW介导的对消费者可用的新鲜有机物平流作用的结果。 DWs显示出异常高的Skeletonema sp。丰度,这是在DW形成期间在亚得里亚海北部盛开的硅藻。在该硅藻上建立的拉格朗日数值模型证实,DW流量可能是浮游生物/颗粒出口到深水的重要机制。我们得出的结论是,即使在距发电地点很远的地方,DW形成事件中由气候引起的预测变化也可能会影响地中海盆地深部地区的生态系统功能。

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