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Asymmetric neurotransmitter release enables rapid odor lateralization in Drosophila

机译:不对称的神经递质释放使果蝇迅速气味偏侧

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摘要

In Drosophila, most individual olfactory receptor neurons (ORNs) project bilaterally to both sides of the brain,. Having bilateral rather than unilateral projections may represent a useful redundancy. However, bilateral ORN projections to the brain should also compromise the ability to lateralize odors. Nevertheless, walking or flying Drosophila reportedly turn toward their more strongly stimulated antenna-. Here we show that each ORN spike releases ~40% more neurotransmitter from the axon branch ipsilateral to the soma, as compared to the contralateral branch. As a result, when an odor activates the antennae asymmetrically, ipsilateral central neurons begin to spike a few milliseconds before contralateral neurons, and ipsilateral central neurons also fire at a 30-50% higher rate. We show that a walking fly can detect a 5% asymmetry in total ORN input to its left and right antennal lobes, and can turn toward the odor in less time than it requires the fly to complete a stride. These results demonstrate that neurotransmitter release properties can be tuned independently at output synapses formed by a single axon onto two target cells with identical functions and morphologies. Our data also show that small differences in spike timing and spike rate can produce reliable differences in olfactory behavior.
机译:在果蝇中,大多数个体的嗅觉受体神经元(ORNs)两侧都向大脑的两侧投射 。具有双边而不是单方面的预测可能表示有用的冗余。但是,双侧ORN投射到大脑也应该损害气味异化的能力。不过,据报道,步行或飞行果蝇会转向受刺激更强烈的触角-。在这里,我们显示,与对侧分支相比,每个ORN尖峰都从同侧的轴突分支向躯体释放约40%的神经递质。结果,当气味不对称地激活触角时,同侧中枢神经元在对侧神经元之前几毫秒就开始突跳,同侧中枢神经元也以30-50%的高射速发射。我们表明,步行蝇可以检测到其左侧和右侧触角的总ORN输入中的5%不对称,并且可以比所需蝇完成大步的时间更短地转向气味。这些结果表明,神经递质释放特性可以在由单个轴突形成的具有两个功能和形态相同的两个靶细胞上形成的突触中独立地调节。我们的数据还表明,尖峰时间和尖峰率之间的细微差异可以产生可靠的嗅觉差异。

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