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浮游动物的噩梦:幼虫拟态摇蚊(双翅目:摇蚊科)的快速高效捕捞篮。

Zooplankters' nightmare: The fast and efficient catching basket of larval phantom midges (Diptera: Chaoborus).

机构信息

Department of Animal Ecology, Evolution and Biodiversity, Ruhr-University Bochum, Bochum, Germany.

Department of Biological Sciences, Macquarie University, North Ryde NSW, Australia.

出版信息

PLoS One. 2019 Mar 22;14(3):e0214013. doi: 10.1371/journal.pone.0214013. eCollection 2019.

Abstract

Filter feeding zooplankton are a crucial component of limnic food webs. Copepods and cladocerans are important prey organisms for first-level predators like the common and abundant larvae of phantom midges (Chaoborus sp.). The latter possess a complex catching basket built of head appendages specialized to capture small crustaceans. The predator-prey-relationship of Chaoborus (Diptera, Nematocera) and Daphnia (Crustacea, Cladocera) has been studied in particular detail owing to the daphniids' ability to react upon the threat of predation with inducible defenses. Daphnia pulex expresses so-called 'neckteeth' in the presence of Chaoborus larvae that are discussed as a defensive trait that interferes with the larval head appendages and their effectiveness has been shown in several studies. Nonetheless, mode of function of these neckteeth is not understood and the hypothesis that they interfere with the predator's head appendages still has to be confirmed. To clarify the role of neckteeth in Daphnia, an understanding of the Chaoborus capture apparatus is essential. Here, we present a detailed three-dimensional analysis of Chaoborus obscuripes' larval head morphology as well as a kinematic analysis of the attack motion, which revealed an impressive strike velocity (14 ms to prey contact). The movement of the larvae's head appendages is reconstructed in the three-dimensional space using a combination of high-speed videography, micro-computed tomography and computer animation. Furthermore, we provide predation trial data to distinguish between pre- and post-attack defensive effects in D. pulex. Our findings suggest a combination of pre- and post-attack defenses with an average effectiveness of 50% each. With this study, we quantitatively describe prey capture kinematics of C. obscuripes and take a further step to reveal the neckteeth' mode of function in D. pulex.

摘要

滤食性浮游动物是湖泊食物网的关键组成部分。桡足类和枝角类是第一级捕食者(如常见且丰富的幻影摇蚊幼虫(Chaoborus sp.))的重要猎物。后者拥有一个复杂的捕捉篮,由专门用于捕捉小型甲壳类动物的头部附肢组成。由于桡足类(双翅目,毛翅目)和水蚤(甲壳纲,枝角目)的捕食者-猎物关系,水蚤具有在受到捕食威胁时产生诱导防御的能力,因此受到了特别详细的研究。在 Chaoborus 幼虫存在的情况下,Daphnia pulex 会表达所谓的“颈齿”,这些颈齿被认为是一种防御特征,会干扰幼虫的头部附肢,并且在几项研究中已经证明了其有效性。然而,这些颈齿的作用方式尚不清楚,并且它们干扰捕食者头部附肢的假设仍有待证实。为了澄清颈齿在 Daphnia 中的作用,了解 Chaoborus 的捕捉器是必不可少的。在这里,我们对 Chaoborus obscuripes 幼虫头部形态进行了详细的三维分析,并对攻击动作进行了运动学分析,结果显示出令人印象深刻的打击速度(从接触猎物到 14 毫秒)。使用高速摄像、微计算机断层扫描和计算机动画的组合,在三维空间中重建了幼虫头部附肢的运动。此外,我们提供了捕食试验数据,以区分 D. pulex 的攻击前和攻击后的防御效果。我们的研究结果表明,存在攻击前和攻击后的防御相结合的情况,平均有效性各为 50%。通过这项研究,我们定量描述了 C. obscuripes 的猎物捕捉运动学,并进一步揭示了 D. pulex 中颈齿的作用方式。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d983/6430396/f8cff7d89b99/pone.0214013.g001.jpg

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