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Under-ice availability of phytoplankton lipids is key to freshwater zooplankton winter survival

机译:浮游植物脂质在冰下的供应是淡水浮游动物冬季生存的关键

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摘要

Shortening winter ice-cover duration in lakes highlights an urgent need for research focused on under-ice ecosystem dynamics and their contributions to whole-ecosystem processes. Low temperature, reduced light and consequent changes in autotrophic and heterotrophic resources alter the diet for long-lived consumers, with consequences on their metabolism in winter. We show in a survival experiment that the copepod Leptodiaptomus minutus in a boreal lake does not survive five months under the ice without food. We then report seasonal changes in phytoplankton, terrestrial and bacterial fatty acid (FA) biomarkers in seston and in four zooplankton species for an entire year. Phytoplankton FA were highly available in seston (2.6 µg L−1) throughout the first month under the ice. Copepods accumulated them in high quantities (44.8 µg mg dry weight−1), building lipid reserves that comprised up to 76% of body mass. Terrestrial and bacterial FA were accumulated only in low quantities (<2.5 µg mg dry weight−1). The results highlight the importance of algal FA reserve accumulation for winter survival as a key ecological process in the annual life cycle of the freshwater plankton community with likely consequences to the overall annual production of aquatic FA for higher trophic levels and ultimately for human consumption.
机译:湖泊中冬季冰雪覆盖时间的缩短凸显了迫切需要开展针对冰下生态系统动态及其对整个生态系统过程的贡献的研究。低温,光照减少以及自养和异养资源的变化改变了长寿消费者的饮食,并影响了他们在冬天的新陈代谢。我们在一项生存实验中表明,北方湖泊中的pe足类Leptodiaptomus minutus在没有食物的冰下无法生存五个月。然后,我们报告了整年中波士顿和四种浮游动物中浮游植物,陆地和细菌脂肪酸(FA)生物标志物的季节性变化。在冰层下的第一个月中,浮游植物FA的含量很高(2.6μµg L -1 )。 pe足类动物大量积累它们(44.8μg/ mg干重 -1 ),从而建立了占人体总质量76%的脂质储备。陆地和细菌的FA仅少量积累(<2.5μg/ mg干重 -1 )。结果强调了藻类FA储备对于冬季生存的重要性,这是淡水浮游生物群落年度生命周期中的关键生态过程,可能对较高营养水平的水生FA的整体年产量产生影响,并最终对人类食用产生影响。

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