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两个嗅觉子系统在蜜蜂大脑中的差异处理。

Differential Processing by Two Olfactory Subsystems in the Honeybee Brain.

机构信息

Evolution, Genomes, Behavior and Ecology, CNRS, Univ Paris-Sud, IRD, Université Paris Saclay, 1 avenue de la Terrasse, 91198 Gif-sur-Yvette, France; Centre de Recherches sur la Cognition Animale, Centre de Biologie Intégrative (CBI), Université de Toulouse, CNRS, UPS, 31062 Toulouse Cedex 9, France.

Centre de Recherches sur la Cognition Animale, Centre de Biologie Intégrative (CBI), Université de Toulouse, CNRS, UPS, 31062 Toulouse Cedex 9, France.

出版信息

Neuroscience. 2018 Mar 15;374:33-48. doi: 10.1016/j.neuroscience.2018.01.029. Epub 2018 Jan 31.

Abstract

Among insects, Hymenoptera present a striking olfactory system with a clear neural dichotomy from the periphery to higher order centers, based on two main tracts of second-order (projection) neurons: the medial and lateral antennal lobe tracts (m-ALT and l-ALT). Despite substantial work on this dual pathway, its exact function is yet unclear. Here, we ask how attributes of odor quality and odor quantity are represented in the projection neurons (PNs) of the two pathways. Using in vivo calcium imaging, we compared the responses of m-ALT and l-ALT PNs of the honey bee Apis mellifera to a panel of 16 aliphatic odorants, and to three chosen odorants at eight concentrations. The results show that each pathway conveys differential information about odorants' chemical features or concentration to higher order centers. While the l-ALT primarily conveys information about odorants' chain length, the m-ALT informs about odorants' functional group. Furthermore, each tract can only predict chemical distances or bees' behavioral responses for odorants that differ according to its main feature, chain length or functional group. Generally l-ALT neurons displayed more graded dose-response relationships than m-ALT neurons, with a correspondingly smoother progression of inter-odor distances with increasing concentration. Comparison of these results with previous data recorded at AL input reveals differential processing by local networks within the two pathways. These results support the existence of parallel processing of odorant features in the insect brain.

摘要

在昆虫中,膜翅目表现出一种引人注目的嗅觉系统,从外周到高级中枢存在明显的神经二分法,这基于两条主要的二级(投射)神经元通路:内侧和外侧触角叶通路(m-ALT 和 l-ALT)。尽管对这条双通路进行了大量研究,但它的确切功能仍不清楚。在这里,我们探讨了气味质量和数量的属性是如何在两条通路的投射神经元(PNs)中表示的。我们使用活体钙成像技术,比较了蜜蜂 Apis mellifera 的 m-ALT 和 l-ALT PN 对 16 种脂肪族气味剂以及三种选定气味剂在八个浓度下的反应。结果表明,每条通路向高级中枢传递关于气味剂化学特征或浓度的不同信息。虽然 l-ALT 主要传递气味剂链长的信息,但 m-ALT 提供气味剂官能团的信息。此外,每条通路只能预测与其主要特征(链长或官能团)不同的气味剂的化学距离或蜜蜂的行为反应。通常,l-ALT 神经元的剂量-反应关系比 m-ALT 神经元更具分级性,随着浓度的增加,气味剂之间的距离呈平滑递增。将这些结果与在 AL 输入处记录的先前数据进行比较,揭示了两条通路内局部网络的差异处理。这些结果支持昆虫大脑中气味特征的并行处理的存在。

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