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首页> 外文期刊>Progress in Neurobiology: An International Review Journal >Crustacean olfactory systems: A comparative review and a crustacean perspective on olfaction in insects
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Crustacean olfactory systems: A comparative review and a crustacean perspective on olfaction in insects

机译:甲壳动物嗅觉系统:对昆虫嗅的比较审查和甲壳类动物透视

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Malacostracan crustaceans display a large diversity of sizes, morphs and life styles. However, only a few representatives of decapod taxa have served as models for analyzing crustacean olfaction, such as crayfish and spiny lobsters. Crustaceans bear multiple parallel chemosensory pathways represented by different populations of unimodal chemosensory and bimodal chemo- and mechanosensory sensilla on the mouthparts, the walking limbs and primarily on their two pairs of antennae. Here, we focus on the olfactory pathway associated with the unimodal chemosensory sensilla on the first antennal pair, the aesthetascs. We explore the diverse arrangement of these sensilla across malacostracan taxa and point out evolutionary transformations which occurred in the central olfactory pathway. We discuss the evolution of chemoreceptor proteins, comparative aspects of active chemoreception and the temporal resolution of crustacean olfactory system. Viewing the evolution of crustacean brains in light of energetic constraints can help us understand their functional morphology and suggests that in various crustacean lineages, the brains were simplified convergently because of metabolic limitations. Comparing the wiring of afferents, interneurons and output neurons within the olfactory glomeruli suggests a deep homology of insect and crustacean olfactory systems. However, both taxa followed distinct lineages during the evolutionary elaboration of their olfactory systems. A comparison with insects suggests their olfactory systems 6 especially that of the vinegar fly 6 to be superb examples for "economy of design". Such a comparison also inspires new thoughts about olfactory coding and the functioning of malacostracan olfactory systems in general. (C) 2017 Elsevier Ltd. All rights reserved.
机译:Malacostracan Crustaceans展示了大量的尺寸,变形和生活方式。然而,只有少数杜诸车类别的代表曾担任分析甲壳类嗅的模型,例如小龙虾和多刺龙虾。甲壳类动物在口袋上的不同群体的不同群体表示不同的平行化学感应途径,主要是在口服,行走的肢体上,主要是在他们的两对天线上。在这里,我们专注于与第一antennal对的多相型化学感染率相关的嗅觉途径,含有紫外线。我们探讨了这些Sensilla在Malacostracan分类群中的不同安排,并指出了中央嗅觉途径发生的进化转化。我们讨论了化学聚乙烯蛋白的演变,活性化学意义的比较方面和甲壳类嗅觉系统的时间分辨率。根据精力充沛的约束观察甲壳类动物的演变可以帮助我们了解其功能形态,并表明在各种甲壳类谱系中,由于代谢限制,大脑被融合。比较嗅觉血小杂物内的交感器,中间核和输出神经元的布线表明昆虫和甲壳类动物嗅觉系统的深层同源性。然而,在嗅觉系统的进化阐述期间,两个分类群都遵循了不同的谱系。与昆虫的比较表明他们的嗅觉系统6尤其是醋飞行6的速度为“设计经济”的精湛的例子。这样的比较也激发了关于嗅觉编码的新思路和常规的Malacostracan嗅觉系统的运作。 (c)2017 Elsevier Ltd.保留所有权利。

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