首页> 外文OA文献 >Distinctly different behavioral responses of a copepod, Temora longicornis, to different strains of toxic dinoflagellates, Alexandrium spp
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Distinctly different behavioral responses of a copepod, Temora longicornis, to different strains of toxic dinoflagellates, Alexandrium spp

机译:桡足类Temora longicornis对不同毒性甲藻的菌株,alexandrium spp的行为反应明显不同

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摘要

Zooplankton responses to toxic algae are highly variable, even towards taxonomically closely related species or different strains of the same species. Here, the individual level feeding behavior of a copepod, Temora longicornis, was examined which offered 4 similarly sized strains of toxic dinoflagellate Alexandrium spp. and a non-toxic control strain of the dinoflagellate Protoceratium reticulatum. The strains varied in their cellular toxin concentration and composition and in lytic activity. High-speed video observations revealed four distinctly different strain-specific feeding responses of the copepod during 4 h incubations: (i) the ‘normal’ feeding behavior, in which the feeding appendages were beating almost constantly to produce a feeding current and most (90%) of the captured algae were ingested; (ii) the beating activity of the feeding appendages was reduced by ca. 80% during the initial 60 min of exposure, after which very few algae were captured and ingested; (iii) capture and ingestion rates remained high, but ingested cells were regurgitated; and (iv) the copepod continued beating its appendages and captured cells at a high rate, but after 60 min, most captured cells were rejected. The various prey aversion responses observed may have very different implications to the prey and their ability to form blooms: consumed but regurgitated cells are dead, captured but rejected cells survive and may give the prey a competitive advantage, while reduced feeding activity of the grazer may be equally beneficial to the prey and its competitors. These behaviors were not related to lytic activity or overall paralytic shellfish toxins (PSTs) content and composition and suggest that other cues are responsible for the responses.
机译:浮游动物对有毒藻类的反应是高度可变的,甚至对于分类学上密切相关的物种或同一物种的不同品系也是如此。在这里,检查了pe足类(Temora longicornis)的个体水平进食行为,该行为提供了4种大小相似的有毒的鞭毛藻亚历山大藻属的菌株。和无鞭毛网藻原角藻的无毒对照菌株。菌株的细胞毒素浓度和组成以及裂解活性各不相同。高速视频观察揭示了4足类在4 h孵化过程中四种不同的菌株特异性饲喂反应:(i)``正常''饲喂行为,其中饲喂附属物几乎不断跳动以产生饲喂电流,大多数(90 %)被捕获的藻类被摄入; (ii)喂食附件的跳动活动降低了约。在接触的最初60分钟内80%,此后很少藻类被捕获和摄入; (iii)捕获和摄取率仍然很高,但是摄取的细胞反流; (iv)pe足类动物继续以很高的速度殴打其附肢和捕获的细胞,但60分钟后,大多数捕获的细胞被排斥。观察到的各种猎物厌恶反应可能对猎物及其形成开花的能力产生非常不同的影响:被消耗但反流的细胞死亡,被捕获但被拒绝的细胞存活并可能为猎物提供竞争优势,而放牧者的进食活动可能降低对猎物及其竞争对手同样有利。这些行为与裂解活性或总体麻痹性贝类毒素(PST)的含量和组成无关,并暗示其他提示负责反应。

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