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Jellyfish modify the response of planktonic assemblages to nutrient pulses

机译:水母改变浮游生物对营养脉冲的响应

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摘要

The short-term effects of pulses of nutrients and jellyfish Catostylus mosaicus on planktonic assemblages were investigated in field-based experiments using 3 m~3 mesocosms. Experiments ran for 5 d and were repeated in autumn and spring at Lake Illawarra, a coastal lagoon in New South Wales, Australia. Experiments consisted of 2 orthogonal treatments, additionon-addition of nutrients and presence/absence of jellyfish, and were designed to determine how bottom-up (i.e. addition of nutrients) and top-down (i.e. predation by jellyfish) processes influence planktonic assemblages, both independently and in combination. During both experiments, nutrients stimulated primary production and caused changes in phytoplankton assemblages. Nutrients also stimulated production of large tintinnids, suggesting that bottom-up processes may influence 2 trophic levels. Mesozooplankton were consistently depleted in mesocosms containing jellyfish. Jellyfish also caused changes in microzooplankton assemblages, indicating that top-down processes also cascade to at least 2 trophic levels. In mesocosms to which both nutrients and jellyfish were added during spring, concentrations of the red-tide forming, heterotrophic dinoflagel-late Noctiluca scintillans were 20 times greater than in mesocosms to which nutrients were added alone. We hypothesize that addition of nutrients stimulated production of centric diatoms, the main prey of N. scintillans, but that a bloom of N. scintillans only formed when jellyfish were also present because jellyfish grazed on populations of herbivorous mesozooplankton (particularly the calanoid copepod Gladioferens), which generally out-competed N. scintillans for diatom prey. These data provide the first empirical evidence linking jellyfish to the formation of red tides.
机译:在田间实验中,使用3 m〜3的中观空间,研究了养分脉冲和水母Catostylus mosaicus对浮游动物组合的短期影响。实验进行了5天,并于秋季和春季在澳大利亚新南威尔士州的沿海泻湖伊拉瓦拉湖重复进行。实验包括2种正交处理,添加/不添加营养素和是否存在水母,并设计为确定自下而上(即添加营养素)和自上而下(即由水母捕食)过程如何影响浮游生物。 ,无论是独立还是组合。在两个实验中,营养物质刺激了初级生产力,并导致浮游植物组成发生变化。营养物质还刺激了大型丁丁酸的产生,表明自下而上的过程可能会影响2种营养水平。中型浮游动物一直持续消耗含有水母的中型宇宙。水母还引起了微浮游动物组合的变化,表明自上而下的过程也至少达到了2个营养级。在春季添加营养素和水母的中胚层中,形成赤潮的异养二鞭毛藻夜光藻的浓度比单独添加营养素的中胚层高20倍。我们假设营养的添加会刺激中枢硅藻(闪烁藻的主要猎物)的产生,但是闪烁藻的绽放仅在水母也存在的情况下形成,因为水母在草食性中层浮游动物(尤其是cal鳞类pe足类Gladioferens)上放牧,它在硅藻猎物上通常胜过闪烁藻。这些数据提供了将水母与赤潮形成联系起来的第一个经验证据。

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