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Grazer cues induce stealth behavior in marine dinoflagellates

机译:Grazer线索诱导海洋鞭毛虫的隐身行为

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摘要

Chain formation is common among phytoplankton organisms but the underlying reasons and consequences are poorly understood. Here we show that chain formation is strongly impaired by waterborne cues from copepod grazers in the dinoflagellate Alexandrium tamarense. Chains of Alexandrium cells exposed to copepod cues responded by splitting into single cells or shorter chains. Motion analysis revealed significantly lower swimming velocities for single cells compared with chains, with two- to fivefold higher simulated predator encounter rates for two- and four-cell chains, respectively. In addition, the few remaining two-cell chains in grazed treatments were swimming at approximately half the speed of two-cell chains in treatments without grazers, which reduced encounter rates with grazers to values similar to that of single cells. Chain length plasticity and swimming behavior constitute unique mechanisms to reduce encounters with grazers. We argue that dinoflagellates can regulate the balance between motility and predator avoidance by adjusting chain length. The high predator encounter rate for motile chains may have contributed to the low prevalence of chain formation in motile phytoplankton compared with in nonmotile phytoplankton where chain formation is more common.
机译:链形成在浮游植物生物中很常见,但其根本原因和后果知之甚少。在这里,我们显示了链鞭毛食草动物在甲鞭毛亚历山大藻中的水生线索强烈地削弱了链的形成。暴露于co足类线索的亚历山大细胞链通过分裂成单个细胞或较短链来响应。运动分析显示,与链相比,单细胞的游泳速度显着降低,两细胞和四细胞链的模拟捕食者遭遇率分别高出2到5倍。此外,放牧处理中剩余的少量两细胞链游动的速度大约是不使用放牧者的处理中两细胞链速度的一半,这将放牧者的遭遇率降低到与单细胞相似的值。链长的可塑性和游泳行为是减少与食草动物接触的独特机制。我们认为,鞭毛鞭毛虫可以通过调节链长来调节运动力和避免捕食者之间的平衡。与非运动性浮游植物相比,运动性浮游生物的高掠食者遭遇率可能导致运动性浮游植物中链形成的流行率低。

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