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鞭毛藻毒素产生的诱导作用:食草动物起着重要作用。

Induction of toxin production in dinoflagellates: the grazer makes a difference.

作者信息

Bergkvist Johanna, Selander Erik, Pavia Henrik

机构信息

Department of Marine Ecology, Göteborg University, Tjärnö Marine Biological Laboratory, 452 96 Strömstad, Sweden.

出版信息

Oecologia. 2008 May;156(1):147-54. doi: 10.1007/s00442-008-0981-6. Epub 2008 Feb 19.

DOI:10.1007/s00442-008-0981-6
PMID:18283499
Abstract

The dinoflagellate Alexandrium minutum has previously been shown to produce paralytic shellfish toxins (PST) in response to waterborne cues from the copepod Acartia tonsa. In order to investigate if grazer-induced toxin production is a general or grazer-specific response of A. minutum to calanoid copepods, we exposed two strains of A. minutum to waterborne cues from three other species of calanoid copepods, Acartia clausi, Centropages typicus and Pseudocalanus sp. Both A. minutum strains responded to waterborne cues from Centropages and Acartia with significantly increased cell-specific toxicity. Waterborne cues from Centropages caused the strongest response in the A. minutum cells, with 5 to >20 times higher toxin concentrations compared to controls. In contrast, neither of the A. minutum strains responded with significantly increased toxicity to waterborne cues from Pseudocalanus. The absolute increase in PST content was proportional to the intrinsic toxicity of the different A. minutum strains that were used. The results show that grazer-induced PST production is a grazer-specific response in A. minutum, and its potential ecological importance will thus depend on the composition of the zooplankton community, as well as the intrinsic toxin-producing properties of the A. minutum population.

摘要

先前的研究表明,微小亚历山大藻(Alexandrium minutum)会因桡足类动物中华哲水蚤(Acartia tonsa)释放到水中的信号而产生麻痹性贝类毒素(PST)。为了探究食草动物诱导的毒素产生是微小亚历山大藻对哲水蚤类普遍的还是特定食草动物的反应,我们将两株微小亚历山大藻暴露于另外三种哲水蚤类动物(克氏哲水蚤(Acartia clausi)、典型真刺水蚤(Centropages typicus)和伪哲水蚤属(Pseudocalanus sp.))释放到水中的信号中。两株微小亚历山大藻均对真刺水蚤属和哲水蚤属释放到水中的信号产生反应,细胞特异性毒性显著增加。真刺水蚤属释放到水中的信号在微小亚历山大藻细胞中引起的反应最强,毒素浓度比对照组高5至20倍以上。相比之下,两株微小亚历山大藻均未对伪哲水蚤属释放到水中的信号产生毒性显著增加的反应。PST含量的绝对增加与所使用的不同微小亚历山大藻菌株的内在毒性成正比。结果表明,食草动物诱导的PST产生是微小亚历山大藻对特定食草动物的反应,因此其潜在的生态重要性将取决于浮游动物群落的组成以及微小亚历山大藻种群产生毒素的内在特性。

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