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首页> 外文期刊>Journal of great lakes research >Zooplankton trophic structure in Lake Michigan as revealed by stable carbon and nitrogen isotopes
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Zooplankton trophic structure in Lake Michigan as revealed by stable carbon and nitrogen isotopes

机译:稳定的碳和氮同位素揭示了密歇根湖的浮游动物营养结构

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Within the last few decades Lake Michigan's plankton community has undergone substantial changes. Oligotrophication of the pelagic zone has led to a decrease in zooplankton biomass, while species composition has shifted, with copepod species becoming more dominant. Although these observations have been relatively well documented, their implications for the food web have not been well addressed. To define feeding relationships within the zooplankton community, we measured the stable carbon and nitrogen isotope composition and biomass of major zooplankton species, three seston size classes, and seston collected from three depths in southeastern Lake Michigan. Nitrogen stable isotope ratios suggest a complex plankton food web with zooplankton appearing to occupy at least three distinct trophic positions. The large calanoid copepod Limnocalanus macrurus occupied a tertiary consumer trophic position, more than one trophic position above all other zooplankton species sampled. Carbon stable isotopes revealed significant differences among zooplankton species. Though the mechanisms responsible for these differences are not clear, these results suggest that there is significant partitioning of resources at the base of the food web. (C) 2015 International Association for Great Lakes Research. Published by Elsevier B.V. All rights reserved.
机译:在过去的几十年中,密歇根湖的浮游生物群落发生了巨大变化。浮游带的低营养化导致浮游动物生物量减少,而物种组成发生了变化,co足类物种变得更加占优势。尽管这些观察已得到相对充分的记录,但它们对食物网的影响尚未得到很好的解决。为了定义浮游动物群落内的摄食关系,我们测量了主要浮游动物种类,三种尺寸的塞斯顿和从密歇根州东南部三个深度收集的硒的稳定碳,氮同位素组成和生物量。氮稳定同位素比率表明浮游生物具有复杂的浮游生物食物网,浮游动物似乎占据了至少三个不同的营养位置。大型cal足类co足类Limnocalanus macrurus占据了第三级消费者营养位,比所有其他浮游动物物种高出一个以上。碳稳定同位素揭示了浮游动物物种之间的显着差异。尽管造成这些差异的机制尚不明确,但这些结果表明,食物网基础上的资源存在显着分配。 (C)2015年国际大湖研究协会。由Elsevier B.V.发布。保留所有权利。

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