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Benthic communities of the Filchner Region (Weddell Sea, Antarctica)

机译:Filchner地区的底栖生物群落(南极洲Weddell Sea)

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Due to extreme pack ice, the Filchner Region in the southern Weddell Sea is one of the least studied regions on the planet. Here, we provide a detailed description of the benthic communities of this high-Antarctic ecosystem, and assess the relationship between environmental factors and benthic distribution patterns. Fieldwork was performed in the austral summers of 2013-14 and 2015-16 during the R/V 'Polarstern' cruises PS82 and PS96. Using a combination of multibox corer (MBC) and seabed image data from 37 stations (water depths 243-1217 m), we differentiated 6 station groups. While 1 of these groups was comprised of a single station, the other 5 groups represented distinct benthic communities. Three of these correspond to the previously described Eastern Shelf, Southern Shelf, and Southern Trench communities. However, we found distribution shifts and MBC abundance and biomass reductions when comparing our results with earlier studies. The other 2 groups have novel characteristics and are presented here as an Ice/Ice Shelf Water-related community and a Continental slope community. Water depth in combination with 2 or 3 other environmental variables (out of 7 available) explained < 30% of the benthic distribution and composition. We found a tighter relationship between water mass circulation and spatial distribution of the communities; we suggest using water-mass-related characteristics (e.g. productivity regimes, water currents) to better explain benthic spatial distribution patterns.
机译:由于极度的积冰,韦德海南部的Filchner地区是地球上研究最少的地区之一。在这里,我们详细描述了这个高南极生态系统的底栖生物群落,并评估了环境因素与底栖生物分布模式之间的关系。在2013-14和2015-16的南方夏季,R / V“北极星”巡游PS82和PS96进行了实地考察。使用多箱取芯器(MBC)和来自37个站(水深243-1217 m)的海床图像数据的组合,我们区分了6个站组。虽然这些组中的一个由一个站点组成,但其他5个组代表不同的底栖生物群落。其中三个对应于先前描述的东部架,南部架和南部海沟社区。但是,将我们的结果与早期研究进行比较时,我们发现分布变化,MBC丰度和生物量减少。另外两个组具有新颖的特征,在这里以冰/冰架水相关社区和大陆坡社区为代表。水深与2或3个其他环境变量(总共7个可用环境变量)相结合,解释了<30%的底栖生物分布和组成。我们发现水的质量循环与社区的空间分布之间存在更紧密的关系。我们建议使用与水质有关的特征(例如生产力状况,水流)来更好地解释底栖生物的空间分布格局。

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