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Copepods act as a switch between alternative trophic cascades in marine pelagic food webs

机译:pe足类在海洋中上层食物网中的替代营养级联之间转换

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A recent meta-analysis indicates that trophic cascades (indirect effects of predators on plants via herbivores) are weak in marine plankton in striking contrast to freshwater plankton (Shurin et al. 2002, Ecol. Lett., 5, 785–791). Here we show that in a marine plankton community consisting of jellyfish, calanoid copepods and algae, jellyfish predation consistently reduced copepods but produced two distinct, opposite responses of algal biomass. Calanoid copepods act as a switch between alternative trophic cascades along food chains of different length and with counteracting effects on algal biomass. Copepods reduced large algae but simultaneously promoted small algae by feeding on ciliates. The net effect of jellyfish on total algal biomass was positive when large algae were initially abundant in the phytoplankton, negative when small algae were dominant, but zero when experiments were analysed in combination. In contrast to marine systems, major pathways of energy flow in Daphnia-dominated freshwater systems are of similar chain length. Thus, differences in the length of alternative, parallel food chains may explain the apparent discrepancy in trophic cascade strength between freshwater and marine planktonic systems.
机译:最近的一项荟萃​​分析表明,与淡水浮游生物形成鲜明对比的是,海洋浮游生物的营养级联(掠食性动物通过食草动物对植物的间接影响)较弱(Shurin et al。2002,Ecol。Lett。,5,785-791)。在这里,我们表明,在由水母,类颅骨pe足类和藻类组成的海洋浮游生物群落中,水母捕食能持续减少co足类,但产生了两种截然相反的藻类生物量响应。 Calanoid pe足类动物在沿着不同长度的食物链的替代营养级联反应之间起着转换作用,并抵消了藻类生物量的影响。 pe足类通过摄食纤毛虫减少了大藻类,但同时促进了小藻类。当浮游植物中最初有大量藻类时,水母对总藻类生物量的净效应为正,而以小型藻类为优势时,水母对藻类总生物量的净效应为负,而综合分析实验则为零。与海洋系统相比,以水蚤为主的淡水系统中的主要能量流动路径具有相似的链长。因此,替代性平行食物链长度的差异可能解释了淡水和海洋浮游系统之间营养级联强度的明显差异。

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