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Role of suspension feeders in antarctic pelagic-benthic coupling: Trophic ecology and potential carbon sinks under climate change

机译:悬浮饲养者在南极上层-底栖耦合中的作用:气候变化下的营养生态学和潜在碳汇

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摘要

Sea-ice and coastal glacier loss in the Western Antarctic Peninsula open new ice-free areas. They allowing primary production and providing new seabed for colonisation, both acting as a negative feedback of climate change. However, the injection of sediment-laden runoff from the melting of land-terminating glaciers may reduce this feedback. Changes in particulate matter will affect nutrition and excretion (faeces stoichiometry and properties) of suspension feeders, reshaping coastal carbon dynamics and pelagic-benthic coupling. Absorption efficiency and biodeposition of Euphausia superba and Cnemidocarpa verrucosa were quantified for different food treatments and varying sediment concentrations. Both species showed high overall absorption efficiency for free-sediment diets, but were negatively affected by sediment addition. High sediment conditions increased krill biodeposition, while it decreased in ascidians. Energy balance estimation indicated high carbon sink potential in ascidians, but it is modulated by food characteristics and negatively affected by sediment inputs in the water column.
机译:南极西部半岛的海冰和沿海冰川流失开辟了新的无冰区。它们允许初级生产并为殖民提供新的海床,两者都对气候变化产生负面影响。但是,通过终止陆地的冰川融化注入含沙的径流可能会减少这种反馈。颗粒物的变化将影响悬浮饲料的营养和排泄(粪便的化学计量和特性),重塑海岸碳动态和浮游-底栖耦合。对不同食物处理方法和沉积物浓度的定量,对Euphausia superba和Cnemidocarpa verrucosa的吸收效率和生物沉积进行了定量。两种物种对自由沉淀的日粮均显示出较高的总吸收效率,但受到沉积物添加的负面影响。高沉积物条件增加了磷虾的生物沉积,而海生动物则降低了。能量平衡估计值显示了海鞘中较高的碳汇潜力,但受食物特征调节,并受到水柱中泥沙输入的负面影响。

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