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首页> 外文期刊>Arthropod Structure & Development >How do mandibles sense? - The sensory apparatus of larval mandibles in Palaemon elegans Rathke, 1837 (Decapoda, Palaemonidae)
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How do mandibles sense? - The sensory apparatus of larval mandibles in Palaemon elegans Rathke, 1837 (Decapoda, Palaemonidae)

机译:下颌骨如何感觉? -1837年线虫拉克斯(Palaemon elegans Rathke)幼虫下颌骨的感觉装置(十足兽科的十足兽科)

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The mandibles of decapod zoea-I larvae are robustly built masticating mouthparts equipped with several processes and spines. Superficial examination of these sturdy, inflexible structures can suggest that they are lacking sensory receptors. However, detailed TEM analysis of their ultrastructure revealed up to 11 sensillar cell clusters on the gnathal edges of the mandibles of the zoea-I in Palaemon elegans Rathke, 1837. Based on ultrastructural criteria we distinguish 7 types of sensilla: mechanoreceptors, chemoreceptors and mechano- and chemoreceptors. One sensory unit located at the base of the 'lacinia mobilis' exhibits the typical features of a crustacean mechanosensitive sensillum with an external seta and corresponding ultrastructure. Another unit shows features indicating bimodal contact chemosensitivity. A third one is similar to known olfactory chemoreceptors. Using the concept of modality-specific structures we analyse the structure and functional morphology of each sensillum, and give a comprehensive overview of the sensory abilities of zoea mandibles. We take a closer look at the ultrastructure of the 'lacinia mobilis', providing further features to trace its evolutionary history in Decapoda, and thus contributing to a better understanding of malacostracan phylogeny. (C) 2012 Elsevier Ltd. All rights reserved.
机译:十足动物ZOEA-I幼虫的下颌是坚固的咀嚼型口器,配有多个过程和棘突。对这些坚固的,不易弯曲的结构进行表面检查可能表明它们缺乏感觉受体。然而,对其超微结构的详细TEM分析显示,在1837年Palaemon elegans Rathke的zoea-I下颌骨咬合边缘,多达11个感觉细胞簇。根据超微结构标准,我们区分了7种类型的感官:机械感受器,化学感受器和机械感受器。 -和化学感受器。位于“运动发酵菌”底部的一个感觉单元表现出甲壳类机械敏感感官的典型特征,该感官具有外部刚毛和相应的超微结构。另一个单元显示指示双峰接触化学敏感性的特征。第三个类似于已知的嗅觉化学感受器。使用特定于形态的结构的概念,我们分析了每个sensillum的结构和功能形态,并全面概述了zoea下颌骨的感觉能力。我们将仔细研究“运动浆果素”的超微结构,提供进一步的特征以追踪其在十足动物中的进化历史,从而有助于更好地了解疟原虫的系统发育。 (C)2012 Elsevier Ltd.保留所有权利。

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