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Predator-guided sampling reveals biotic structure in the bathypelagic

机译:捕食者引导的采样揭示了深海鱼类的生物结构

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摘要

We targeted a habitat used differentially by deep-diving, air-breathing predators to empirically sample their prey's distributions off southern California. Fine-scale measurements of the spatial variability of potential prey animals from the surface to 1 200 m were obtained using conventional fisheries echosounders aboard a surface ship and uniquely integrated into a deep-diving autonomous vehicle. Significant spatial variability in the size, composition, total biomass, and spatial organization of biota was evident over all spatial scales examined and was consistent with the general distribution patterns of foraging Cuvier's beaked whales (Ziphius cavirostris) observed in separate studies. Striking differences found in prey characteristics between regions at depth, however, did not reflect differences observed in surface layers. These differences in deep pelagic structure horizontally and relative to surface structure, absent clear physical differences, change our long-held views of this habitat as uniform. The revelation that animals deep in the water column are so spatially heterogeneous at scales from 10 m to 50 km critically affects our understanding of the processes driving predator–prey interactions, energy transfer, biogeochemical cycling, and other ecological processes in the deep sea, and the connections between the productive surface mixed layer and the deep-water column.
机译:我们针对的是深呼吸空气捕食者以不同方式使用的栖息地,以实证方式采样了南加州附近的猎物分布。使用水面舰艇上的常规渔业回声测深仪,可以对潜在猎物从水面到1200 m的空间变异性进行精细测量,并将其独特地集成到深潜自动驾驶汽车中。在所有检查的空间尺度上,菌群的大小,组成,总生物量和空间组织均存在明显的空间变异性,这与在单独的研究中观察到的觅食居维叶喙鲸(Ziphius cavirostris)的一般分布模式一致。然而,在深处区域之间的猎物特征中发现的惊人差异并未反映出在表层中观察到的差异。这些深层上层海平面结构和相对于表层结构的差异,没有明显的物理差异,改变了我们长期以来对这种栖息地的统一看法。水深动物在10 m至50 km范围内的空间异质性的发现严重影响了我们对驱动捕食者与猎物相互作用,能量转移,生物地球化学循环以及深海中其他生态过程的过程的理解,以及生产性表面混合层与深水柱之间的连接。

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