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Ecosystem engineering creates a direct nutritional link between 600-m deep cold-water coral mounds and surface productivity

机译:生态系统工程在600米深的冷水珊瑚丘和地表生产力之间建立了直接的营养联系

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摘要

Cold-water corals (CWCs) form large mounds on the seafloor that are hotspots of biodiversity in the deep sea, but it remains enigmatic how CWCs can thrive in this food-limited environment. Here, we infer from model simulations that the interaction between tidal currents and CWC-formed mounds induces downwelling events of surface water that brings organic matter to 600-m deep CWCs. This positive feedback between CWC growth on carbonate mounds and enhanced food supply is essential for their sustenance in the deep sea and represents an example of ecosystem engineering of unparalleled magnitude. This ’topographically-enhanced carbon pump’ leaks organic matter that settles at greater depths. The ubiquitous presence of biogenic and geological topographies along ocean margins suggests that carbon sequestration through this pump is of global importance. These results indicate that enhanced stratification and lower surface productivity, both expected consequences of climate change, may negatively impact the energy balance of CWCs.
机译:冷水珊瑚(CWC)在海底形成了大堆,是深海生物多样性的热点,但仍难以理解CWC如何在这种受食物限制的环境中壮成长。在这里,我们从模型模拟中推断出,潮流与CWC形成的土丘之间的相互作用会引起地表水的下降事件,从而将有机物带入600 m深的CWC。 CWC在碳酸盐土丘上的生长与粮食供应的增加之间的这种积极反馈对于它们在深海的维持至关重要,并且代表了无与伦比的生态系统工程的一个例子。这种“地形增强型碳泵”泄漏了沉积在更深处的有机物。沿海洋边缘普遍存在生物和地质地形,这表明通过该泵进行碳固存具有全球重要性。这些结果表明,分层的增加和地表生产率的降低,都是气候变化的预期结果,可能会对CWC的能量平衡产生负面影响。

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