Servetto N, Rossi S, Fuentes V, Alurralde G, Lagger C, Sahade R
Instituto de Diversidad y Ecología Animal (CONICET-UNC) and Facultad de Ciencias Exactas Físicas y Naturales, Universidad Nacional de Córdoba, Av. Vélez Sarsfield 299, CP 5000, Córdoba, Argentina.
Institut de Ciència i TecnologiaAmbientals, UniversitatAuntònoma de Barcelona, Cerdanyola del Vallés, Spain; DiSTeBA, University of Salento, 73100 Lecce, Italy.
Mar Environ Res. 2017 Sep;130:264-274. doi: 10.1016/j.marenvres.2017.08.003. Epub 2017 Aug 12.
Antarctic ecosystems present highly marked seasonal patterns in energy input, which in turn determines the biology and ecology of marine invertebrate species. This relationship is stronger at lower levels of the food web, while upper levels may be less dependent on primary production pulses. The pennatulid Malacobelemnon daytoni, is one of the most abundant species in Potter Cove, Antarctica. In order to assess its trophic ecology and energetic strategies, its biochemical (carbohydrates, proteins and lipids), Fatty Acid (FA) and Stable Isotope (SI) (δN and δC) compositions were studied over a year-round period. The FA and SI profiles suggest an omnivorous diet and opportunistic feeding strategy for the species. These results, together with biochemical analysis (higher lipid and carbohydrate concentration observed in July and October 2009), support the hypothesis that resuspension events may be an important source of energy, reducing the seasonality of food depletion periods in winter. The evidence presented here gives us a better insight into the success that this species has in Potter Cove and under the current environmental changes experienced by the Antarctic Peninsula.
南极生态系统在能量输入方面呈现出高度显著的季节性模式,这反过来又决定了海洋无脊椎动物物种的生物学和生态学特征。这种关系在食物网较低层级更为强烈,而较高层级可能对初级生产脉冲的依赖性较小。软柳珊瑚(Malacobelemnon daytoni)是南极洲波特湾最丰富的物种之一。为了评估其营养生态学和能量策略,对其全年的生化成分(碳水化合物、蛋白质和脂质)、脂肪酸(FA)和稳定同位素(SI)(δN和δC)组成进行了研究。脂肪酸和稳定同位素谱表明该物种具有杂食性饮食和机会主义摄食策略。这些结果,连同生化分析(在2009年7月和10月观察到较高的脂质和碳水化合物浓度),支持了再悬浮事件可能是重要能量来源的假设,减少了冬季食物耗尽期的季节性。此处提供的证据让我们更好地了解了该物种在波特湾以及在南极半岛当前经历的环境变化下取得成功的原因。