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Review and syntheses: Impacts of turbidity flows on deep-sea benthic communities

机译:审查和合成:浊度流量对深海底栖社区的影响

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摘要

Turbidity flows – underwater avalanches – are large-scale physical disturbances that are believed to have profound and lasting impacts on benthic communities in the deep sea, with hypothesized effects on both productivity and diversity. In this review we summarize the physical characteristics of turbidity flows and the mechanisms by which they influence deep-sea benthic communities, both as an immediate pulse-type disturbance and through longer-term press-type impacts. Further, we use data from turbidity flows that occurred hundreds to thousands of years ago as well as three more recent events to assess published hypotheses that turbidity flows affect productivity and diversity. We find, unlike previous reviews, that evidence for changes in productivity in the studies was ambiguous at best, whereas the influence on regional and local diversity was more clear-cut: as had previously been hypothesized, turbidity flows decrease local diversity but create mosaics of habitat patches that contribute to increased regional diversity. Studies of more recent turbidity flows provide greater insights into their impacts in the deep sea, but without pre-disturbance data, the factors that drive patterns in benthic community productivity and diversity, be they physical, chemical, or a combination thereof, still cannot be identified. We propose criteria for data that would be necessary for testing these hypotheses and suggest that studies of Kaikōura Canyon, New Zealand, where an earthquake-triggered turbidity flow occurred in 2016, will provide insights into the impacts of turbidity flows on deep-sea benthic communities as well as the impacts of other large-scale disturbances such as deep-sea mining.
机译:浊度流动 - 水下雪崩 - 是大规模的物理障碍,据信对深海的底栖社区产生深远和持久的影响,并对生产力和多样性的假设影响。在这篇综述中,我们总结了浊度流动的物理特性和它们影响深海底栖社区的机制,无论是立即脉冲型干扰,都通过长期压力型冲击。此外,我们使用数百至数千年前的浊度流量的数据以及最近的三个事件来评估浊度流影响生产力和多样性的公开假设。我们发现与之前的评论不同,研究中的生产力变化的证据表明,最佳的含糊不清,而对区域和局部多样性的影响更加清晰:如前所述,浊度流降低了局部多样性,但造成了马赛克栖息地补丁有助于增加区域多样性。更新的浊度流动的研究提供了更大的洞察力对他们在深海的影响,但没有预扰动数据,这种因素驱动了底栖群落生产力和多样性的模式,无论是身体,化学还是一种组合,仍然不能确定。我们提出了测试这些假设所必需的数据标准,并建议2016年发生地震触发的浊度流动的Kaikōura峡谷研究,将为深海底栖社区对浊度流动的影响提供洞察力以及其他大型骚乱等诸如深海挖掘的影响。

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