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Unsaturated fatty acid content in seston and tropho-dynamic coupling in lakes

机译:湖泊中不饱和脂肪酸含量与湖泊对流动力学耦合

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Determining the factors that control food web interactions is a key issue in ecology. The empirical relationship between nutrient loading (total phosphorus) and phvtoplankton standing stock (chlorophyll a) in lakes was described about 30 years ago and is central for managing surface water quality. The efficiency with which biomass and energy are transferred through the food web and sustain the production of higher trophic levels (such as fish) declines with nutrient loading and system productivity, but the underlying mechanisms are poorly understood. Here we show that in seston (fine particles in water) during summer, specific ω3-polyunsaturated fatty acids (ω3-PUFAs), which are important for zooplankton, are significantly correlated to the trophic status of the lake. The ω3-PUFAs octadecatetraenoic acid, eicosapentaenoic acid (EPA) and docosahexaenoic acid, but not α-linolenic acid, decrease on a double-logarithmic scale with increasing total phosphorus. By combining the empirical relationship between EPA-to-carbon content and total phosphorus with functional models relating EPA-to-carbon content to the growth and egg production of daphnids, we predict secondary production for this key consumer. Thus, the decreasing efficiency in energy transfer with increasing lake productivity can be explained by differences in ω3-PUFA-associated food quality at the plant-animal interface.
机译:确定控制食物网相互作用的因素是生态学中的关键问题。大约30年前描述了湖泊中养分含量(总磷)与浮游植物立足量(叶绿素a)之间的经验关系,这对管理地表水质量至关重要。生物量和能量通过食物网转移并维持较高营养水平(例如鱼类)的生产效率随着养分含量和系统生产力的下降而下降,但是其基本机理却鲜为人知。在这里,我们表明,在夏季的塞斯顿(水中的细颗粒)中,对浮游动物很重要的特定ω3-多不饱和脂肪酸(ω3-PUFAs)与湖泊的营养状态显着相关。 ω3-PUFAs十八碳烯酸,二十碳五烯酸(EPA)和二十二碳六烯酸,而不是α-亚麻酸,随着总磷的增加呈双对数级降低。通过将EPA碳含量与总磷之间的经验关系与将EPA碳含量与水蚤的生长和产蛋量相关的功能模型结合起来,我们预测了这一主要消费者的二次生产。因此,可以通过动植物界面处与ω3-PUFA相关的食品质量差异来解释随着湖泊生产力的提高,能量转移效率的降低。

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