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中尺度涡旋是更高营养级海洋生物的绿洲。

Mesoscale eddies are oases for higher trophic marine life.

机构信息

Institute of Marine Research, Bergen, Norway.

出版信息

PLoS One. 2012;7(1):e30161. doi: 10.1371/journal.pone.0030161. Epub 2012 Jan 17.

Abstract

Mesoscale eddies stimulate biological production in the ocean, but knowledge of energy transfers to higher trophic levels within eddies remains fragmented and not quantified. Increasing the knowledge base is constrained by the inability of traditional sampling methods to adequately sample biological processes at the spatio-temporal scales at which they occur. By combining satellite and acoustic observations over spatial scales of 10 s of km horizontally and 100 s of m vertically, supported by hydrographical and biological sampling we show that anticyclonic eddies shape distribution and density of marine life from the surface to bathyal depths. Fish feed along density structures of eddies, demonstrating that eddies catalyze energy transfer across trophic levels. Eddies create attractive pelagic habitats, analogous to oases in the desert, for higher trophic level aquatic organisms through enhanced 3-D motion that accumulates and redistributes biomass, contributing to overall bioproduction in the ocean. Integrating multidisciplinary observation methodologies promoted a new understanding of biophysical interaction in mesoscale eddies. Our findings emphasize the impact of eddies on the patchiness of biomass in the sea and demonstrate that they provide rich feeding habitat for higher trophic marine life.

摘要

中尺度涡旋刺激海洋中的生物生产力,但关于涡旋内部能量向更高营养级转移的知识仍然零散且未量化。由于传统采样方法无法在生物发生的时空尺度上充分采样生物过程,因此增加知识基础受到限制。通过结合卫星和声学观测,在水平方向上以数十公里的空间尺度和垂直方向上以数百米的空间尺度进行观测,并辅以水文和生物采样,我们表明反气旋涡旋塑造了从海面到深海的海洋生物的分布和密度。鱼类沿着涡旋的密度结构觅食,这表明涡旋促进了营养级之间的能量转移。涡旋通过增强三维运动创造了有吸引力的浮游生境,类似于沙漠中的绿洲,为更高营养级的水生生物提供了栖息地,从而促进了海洋中的整体生物生产力。整合多学科观测方法促进了对中尺度涡旋中生物物理相互作用的新认识。我们的研究结果强调了涡旋对海洋生物量斑块性的影响,并表明它们为更高营养级的海洋生物提供了丰富的觅食栖息地。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/75de/3260222/abc86182b000/pone.0030161.g001.jpg

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