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海冰、光照和沉积作用在构建南极浅海底栖生物群落中的作用

The Roles of Sea-Ice, Light and Sedimentation in Structuring Shallow Antarctic Benthic Communities.

作者信息

Clark Graeme F, Stark Jonathan S, Palmer Anne S, Riddle Martin J, Johnston Emma L

机构信息

Evolution and Ecology Research Centre, School of Biological, Earth and Environmental Science, University of New South Wales, Sydney, New South Wales, Australia.

Australian Antarctic Division, Department of Environment, Kingston, Tasmania, Australia.

出版信息

PLoS One. 2017 Jan 11;12(1):e0168391. doi: 10.1371/journal.pone.0168391. eCollection 2017.

Abstract

On polar coasts, seasonal sea-ice duration strongly influences shallow marine environments by affecting environmental conditions, such as light, sedimentation, and physical disturbance. Sea-ice dynamics are changing in response to climate, but there is limited understanding of how this might affect shallow marine environments and benthos. Here we present a unique set of physical and biological data from a single region of Antarctic coast, and use it to gain insights into factors shaping polar benthic communities. At sites encompassing a gradient of sea-ice duration, we measured temporal and spatial variation in light and sedimentation and hard-substrate communities at different depths and substrate orientations. Biological trends were highly correlated with sea-ice duration, and appear to be driven by opposing gradients in light and sedimentation. As sea-ice duration decreased, there was increased light and reduced sedimentation, and concurrent shifts in community structure from invertebrate to algal dominance. Trends were strongest on shallower, horizontal surfaces, which are most exposed to light and sedimentation. Depth and substrate orientation appear to mediate exposure of benthos to these factors, thereby tempering effects of sea-ice and increasing biological heterogeneity. However, while light and sedimentation both varied spatially with sea-ice, their dynamics differed temporally. Light was sensitive to the site-specific date of sea-ice breakout, whereas sedimentation fluctuated at a regional scale coincident with the summer phytoplankton bloom. Sea-ice duration is clearly the overarching force structuring these shallow Antarctic benthic communities, but direct effects are imposed via light and sedimentation, and mediated by habitat characteristics.

摘要

在极地海岸,季节性海冰持续时间通过影响光照、沉积和物理干扰等环境条件,对浅海海洋环境产生强烈影响。海冰动态正随着气候而变化,但对于这可能如何影响浅海海洋环境和底栖生物,人们了解有限。在此,我们展示了一组来自南极海岸单一区域的独特物理和生物学数据,并利用这些数据深入了解塑造极地底栖生物群落的因素。在涵盖海冰持续时间梯度的地点,我们测量了不同深度和底物方向的光照、沉积以及硬底物群落的时空变化。生物学趋势与海冰持续时间高度相关,并且似乎是由光照和沉积的相反梯度驱动的。随着海冰持续时间的减少,光照增加,沉积减少,群落结构同时从无脊椎动物占主导转变为藻类占主导。这些趋势在较浅的水平表面上最为明显,因为这些表面最容易受到光照和沉积的影响。深度和底物方向似乎调节了底栖生物对这些因素的暴露程度,从而缓和了海冰的影响并增加了生物异质性。然而,虽然光照和沉积都随海冰在空间上变化,但其动态在时间上有所不同。光照对特定地点的海冰破裂日期敏感,而沉积在区域尺度上随着夏季浮游植物大量繁殖而波动。海冰持续时间显然是构建这些南极浅海底栖生物群落的首要力量,但直接影响是通过光照和沉积施加的,并由栖息地特征介导。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1be4/5226713/32af9b97c494/pone.0168391.g001.jpg

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