Seasonal abundance, lipid storage, and energy density of Calanus finmarchicus and other copepod preyfields along the Northwest Atlantic continental shelf
Rachel M Carlowicz Lee, Toniann D Keiling, Joseph D Warren
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引用次数: 0
Abstract
Calanus finmarchicus is an abundant calanoid copepod in the New York Bight (NYB) that has energy-dense lipid stores. This study measured C. finmarchicus abundance, lipid storage and energy density and compared it to two other abundant calanoid species in the region. We compared the NYB C. finmarchicus preyfield characteristics with data from two other NW Atlantic coastal ecosystems, the Gulf of Maine (GoM) and Cape Cod Bay (CCB). Copepods from net tows were identified, enumerated, photographed and measured. These data were used to calculate animal biovolume and lipid content as well as the volumetric energy density of the copepod preyfield. C. finmarchicus were most abundant in spring and summer and the mean lipid storage of C. finmarchicus remained largely constant regardless of season and location within the NYB. Centropages typicus were abundant enough in the winter to be more energy-rich than C. finmarchicus. Temora longicornis, while also abundant, never surpassed the energy density of C. finmarchicus. C. finmarchicus in the NYB were comparably lipid-rich to those from the GoM and CCB. C. finmarchicus in the NYB can be a reliable energy source for local predators due to their high spring and summer abundances and year-round storage of high-energy wax esters.
鲣鱼(Calanus finmarchicus)是纽约湾(New York Bight,NYB)中一种丰富的桡足类桡足动物,具有高能量的脂质储存。本研究测量了长须鳕的丰度、脂质储存量和能量密度,并将其与该地区另外两种丰富的桡足类进行了比较。我们将纽约湾栉水母的捕食场特征与西北大西洋沿岸另外两个生态系统--缅因湾(GoM)和科德角湾(CCB)的数据进行了比较。对来自网拖的桡足类进行了鉴定、计数、拍照和测量。这些数据用于计算动物的生物体积和脂质含量,以及桡足类捕食场的体积能量密度。长须鳕在春季和夏季最为丰富,而且无论在纽约湾内的哪个季节和哪个地点,长须鳕的平均脂质储存量基本保持不变。典型百步鲸在冬季的数量足够多,因此比长须鲸的能量更为丰富。Temora longicornis虽然也很丰富,但从未超过长尾鳕的能量密度。纽约湾的长吻鳕与戈梅利湾和中央海岸的长吻鳕脂质含量相当。纽约湾的长吻鳕春季和夏季的丰度较高,且常年储存高能量的蜡酯,因此可以成为当地捕食者的可靠能量来源。
期刊介绍:
Journal of Plankton Research publishes innovative papers that significantly advance the field of plankton research, and in particular, our understanding of plankton dynamics.