Suppr超能文献

节肢动物的嗅觉导航。

Olfactory navigation in arthropods.

机构信息

Neuroscience Institute, NYU School of Medicine, 435 E 30th St., New York, NY, 10016, USA.

出版信息

J Comp Physiol A Neuroethol Sens Neural Behav Physiol. 2023 Jul;209(4):467-488. doi: 10.1007/s00359-022-01611-9. Epub 2023 Jan 20.

Abstract

Using odors to find food and mates is one of the most ancient and highly conserved behaviors. Arthropods from flies to moths to crabs use broadly similar strategies to navigate toward odor sources-such as integrating flow information with odor information, comparing odor concentration across sensors, and integrating odor information over time. Because arthropods share many homologous brain structures-antennal lobes for processing olfactory information, mechanosensors for processing flow, mushroom bodies (or hemi-ellipsoid bodies) for associative learning, and central complexes for navigation, it is likely that these closely related behaviors are mediated by conserved neural circuits. However, differences in the types of odors they seek, the physics of odor dispersal, and the physics of locomotion in water, air, and on substrates mean that these circuits must have adapted to generate a wide diversity of odor-seeking behaviors. In this review, we discuss common strategies and specializations observed in olfactory navigation behavior across arthropods, and review our current knowledge about the neural circuits subserving this behavior. We propose that a comparative study of arthropod nervous systems may provide insight into how a set of basic circuit structures has diversified to generate behavior adapted to different environments.

摘要

利用气味寻找食物和伴侣是最古老和高度保守的行为之一。从苍蝇到飞蛾再到螃蟹等节肢动物,它们使用广泛相似的策略来导航到气味源,例如将流量信息与气味信息整合、比较传感器之间的气味浓度、并随时间整合气味信息。由于节肢动物共享许多同源的大脑结构——用于处理嗅觉信息的触角叶、用于处理流动的机械传感器、用于联想学习的蘑菇体(或半椭圆体)以及用于导航的中央复合体,这些密切相关的行为很可能是由保守的神经回路介导的。然而,它们所寻求的气味类型、气味扩散的物理特性以及在水、空气和基质上的运动物理特性的差异意味着这些回路必须适应于产生广泛多样的气味寻找行为。在这篇综述中,我们讨论了在节肢动物的嗅觉导航行为中观察到的共同策略和专门化,并回顾了我们目前对支持这种行为的神经回路的了解。我们提出,对节肢动物神经系统的比较研究可能为理解一组基本的电路结构如何多样化以产生适应不同环境的行为提供了线索。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0376/10354148/2df759d82a4f/359_2022_1611_Fig1_HTML.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验