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Temporal response dynamics of Drosophila olfactory sensory neurons depends on receptor type and response polarity

机译:果蝇嗅觉感觉神经元的时间反应动态取决于受体类型和反应极性。

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摘要

Insect olfactory sensory neurons (OSN) express a diverse array of receptors from different protein families, i.e. ionotropic receptors (IR), gustatory receptors (GR) and odorant receptors (OR). It is well known that insects are exposed to a plethora of odor molecules that vary widely in both space and time under turbulent natural conditions. In addition to divergent ligand specificities, these different receptors might also provide an increased range of temporal dynamics and sensitivities for the olfactory system. To test this, we challenged different Drosophila OSNs with both varying stimulus durations (10–2000 ms), and repeated stimulus pulses of key ligands at various frequencies (1–10 Hz). Our results show that OR-expressing OSNs responded faster and with higher sensitivity to short stimulations as compared to IR- and Gr21a-expressing OSNs. In addition, OR-expressing OSNs could respond to repeated stimulations of excitatory ligands up to 5 Hz, while IR-expressing OSNs required ~5x longer stimulations and/or higher concentrations to respond to similar stimulus durations and frequencies. Nevertheless, IR-expressing OSNs did not exhibit adaptation to longer stimulations, unlike OR- and Gr21a-OSNs. Both OR- and IR-expressing OSNs were also unable to resolve repeated pulses of inhibitory ligands as fast as excitatory ligands. These differences were independent of the peri-receptor environment in which the receptors were expressed and suggest that the receptor expressed by a given OSN affects both its sensitivity and its response to transient, intermittent chemical stimuli. OR-expressing OSNs are better at resolving low dose, intermittent stimuli, while IR-expressing OSNs respond more accurately to long-lasting odor pulses. This diversity increases the capacity of the insect olfactory system to respond to the diverse spatiotemporal signals in the natural environment.
机译:昆虫嗅觉感觉神经元(OSN)表达来自不同蛋白质家族的多种受体,即离子型受体(IR),味觉受体(GR)和气味受体(OR)。众所周知,在动荡的自然条件下,昆虫会接触到大量的气味分子,这些气味分子的时空变化很大。除了不同的配体特异性外,这些不同的受体还可能为嗅觉系统提供更大范围的时间动力学和敏感性。为了测试这一点,我们用不同的刺激持续时间(10–2000 ms)和不同频率(1–10 Hz)的关键配体重复刺激脉冲挑战了不同的果蝇OSN。我们的结果表明,与表达IR和Gr21a的OSN相比,表达OR的OSN对短刺激的反应更快,敏感性更高。此外,表达OR的OSN可以响应高达5 Hz的重复刺激性配体刺激,而表达IR的OSN需要约5倍更长的刺激和/或更高的浓度才能对相似的刺激持续时间和频率做出响应。然而,与OR-和Gr21a-OSN不同,表达IR的OSN没有表现出对更长的刺激的适应性。表达OR和IR的OSN也都不能像刺激性配体一样快地分辨抑制性配体的重复脉冲。这些差异与受体在其中表达的受体周围环境无关,并且表明给定OSN表达的受体既影响其敏感性,也影响其对瞬时,间歇性化学刺激的反应。表达OR的OSN更适合解决小剂量,间歇性刺激,而表达IR的OSN对持久的气味脉冲反应更准确。这种多样性增加了昆虫嗅觉系统响应自然环境中各种时空信号的能力。

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