Distinctive chemotactic responses of three marine herbivore protists to DMSP and related compounds.

IF 10.8 1区 环境科学与生态学 Q1 ECOLOGY
Queralt Güell-Bujons, Medea Zanoli, Idan Tuval, Albert Calbet, Rafel Simó
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引用次数: 0

Abstract

Marine planktonic predator-prey interactions occur in microscale seascapes, where diffusing chemicals may act either as chemotactic cues that enhance or arrest predation, or as elemental resources that are complementary to prey ingestion. The phytoplankton osmolyte dimethylsulfoniopropionate (DMSP) and its degradation products dimethylsulfide (DMS) and acrylate are pervasive compounds with high chemotactic potential, but there is a longstanding controversy over whether they act as grazing enhancers or deterrents. Here, we investigated the chemotactic responses of three herbivorous dinoflagellates to point-sourced, microscale gradients of dissolved DMSP, DMS, and acrylate. We found no evidence for acrylate being a chemotactic repellent and observed a weak attractor role of DMS. DMSP behaved as a strong chemoattractor whose potential for grazing facilitation through effects on swimming patterns and aggregation depends on the grazer's feeding mode and ability to incorporate DMSP. Our study reveals that predation models will fail to predict grazing impacts unless they incorporate chemotaxis-driven searching and finding of prey.

三种海洋食草原生动物对 DMSP 和相关化合物的独特趋化反应。
海洋浮游生物捕食者与猎物之间的相互作用发生在微尺度海景中,扩散的化学物质既可以作为化学引诱线索加强或阻止捕食,也可以作为元素资源补充猎物的摄取。浮游植物渗透剂二甲基硫代丙酸酯(DMSP)及其降解产物二甲基硫化物(DMS)和丙烯酸酯是具有高度趋化潜能的普遍化合物,但关于它们是作为捕食促进剂还是威慑剂一直存在争议。在这里,我们研究了三种食草甲藻对点源、微尺度梯度溶解的 DMSP、DMS 和丙烯酸酯的趋化反应。我们没有发现丙烯酸酯具有趋化排斥作用的证据,并观察到 DMS 具有微弱的吸引作用。DMSP是一种强化学引诱剂,其通过影响游动模式和聚集而促进食草的潜力取决于食草动物的摄食模式和吸收DMSP的能力。我们的研究揭示出,捕食模型如果不考虑趋化驱动的猎物搜索和发现,就无法预测放牧的影响。
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来源期刊
ISME Journal
ISME Journal 环境科学-生态学
CiteScore
22.10
自引率
2.70%
发文量
171
审稿时长
2.6 months
期刊介绍: The ISME Journal covers the diverse and integrated areas of microbial ecology. We encourage contributions that represent major advances for the study of microbial ecosystems, communities, and interactions of microorganisms in the environment. Articles in The ISME Journal describe pioneering discoveries of wide appeal that enhance our understanding of functional and mechanistic relationships among microorganisms, their communities, and their habitats.
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