首页> 外文期刊>Proceedings of the Royal Society. Biological sciences >Phylogenetic and functional evidence suggests that deep-ocean ecosystems are highly sensitive to environmental change and direct human disturbance
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Phylogenetic and functional evidence suggests that deep-ocean ecosystems are highly sensitive to environmental change and direct human disturbance

机译:系统发育和功能证据表明,深海生态系统对环境变化和直接人类扰动都非常敏感

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摘要

An understanding of the balance of interspecific competition and the physical environment in structuring organismal communities is crucial because those communities structured primarily by their physical environment typically exhibit greater sensitivity to environmental change than those structured predominantly by competitive interactions. Here, using detailed phylogenetic and functional information, we investigate this question in macrofaunal assemblages from Northwest Atlantic Ocean continental slopes, a high seas region projected to experience substantial environmental change through the current century. We demonstrate assemblages to be both phylogenetically and functionally under-dispersed, and thus conclude that the physical environment, not competition, may dominate in structuring deep-ocean communities. Further, we find temperature and bottom trawling intensity to be among the environmental factors significantly related to assemblage diversity. These results hint that deep-ocean communities are highly sensitive to their physical environment and vulnerable to environmental perturbation, including by direct disturbance through fishing, and indirectly through the changes brought about by climate change.
机译:理解结构化的竞争的平衡和结构性的有机体社区的身体环境至关重要,因为这些社区主要由其物理环境构成的,通常对环境变化具有更大的敏感性,而不是通过竞争性相互作用的主要结构。在这里,使用详细的系统发育和功能信息,我们调查了来自西北大西洋大陆山坡的大型海洋大陆大陆山坡上的这个问题,该区域预计通过本世纪体验大量环境变化。我们展示了在系统发育和功能下的组合中的组合,因此得出结论,物理环境,而不是竞争,可能在构建深海社区中占主导地位。此外,我们发现温度和底部拖网强度是与组合多样性显着相关的环境因素。这些结果暗示了深海社区对他们的物理环境非常敏感,易受环境扰动,包括通过捕捞的直接干扰,间接通过气候变化所带来的变化。

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