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首页> 外文期刊>The Journal of Experimental Biology >Photoperiod-induced plasticity of thermosensitivity and acquired thermotolerance in Locusta migratoria
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Photoperiod-induced plasticity of thermosensitivity and acquired thermotolerance in Locusta migratoria

机译:光周期诱导的南方蝗的热敏性和获得性耐热性的可塑性

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The mechanisms by which different life histories affect neural circuits are largely unknown. We show that the thermosensitivity and thermotolerance of neural circuit operation are affected in a complex dynamic fashion by photoperiod, prior heat experience and the sex of the animal. We compared thermosensitivity and thermotolerance of ventilatory motor pattern generation in locusts reared under two photoperiods (12:12 and 16:8; i.e. 12 h:12 h and 16 h:8 h L:D, respectively) before and after heat shock pre-treatment (HS:3 h, 45 degrees C) in order to determine the effect of daylength on properties of neural function. We monitored central pattern generator (CPG) output electromyographically from muscle 161 in the second abdominal segment during ramped increases in temperature and also measured the time taken for the circuit to fail at high temperatures and the time taken to recover on return to room temperature. There were effects of photoperiod, heat pre-treatment and the sex of the animal on ventilatory rate, time-to-failure and time-to-recovery. The ventilatory motor pattern of 16: 8 and 12: 12 locusts responded differently to increasing and maintained high temperature stress in both control and heat shocked locusts. We found that 12: 12 locusts were generally more robust than 16: 8 locusts: they lived longer, they showed greater tolerance to high temperatures, and they recovered more quickly from temperature-induced circuit failure. A faster ventilatory rate in 12: 12 animals at high temperatures may have accelerated evaporative cooling to mediate improved temperature tolerance.
机译:不同的生活史影响神经回路的机制在很大程度上尚不清楚。我们显示神经周期操作的热敏性和热耐受性受光周期,先前的热经验和动物的性别以复杂的动态方式影响。我们比较了在热休克前和后两个光周期(分别为12:12和16:8;即12 h:12 h和16 h:8 h L:D)下饲养的蝗虫中呼吸机马达模式生成的热敏性和热耐受性。治疗(HS:3 h,45摄氏度),以确定日龄对神经功能特性的影响。我们在温度逐渐升高的过程中监测了从第二腹部的肌肉161肌电图输出的中央模式发生器(CPG)的肌电图,还测量了电路在高温下失效所需的时间以及恢复到室温所需的时间。光周期,热预处理和动物的性别对通气率,失败时间和恢复时间都有影响。在控制蝗虫和热休克蝗虫中,16:8和12:12蝗虫的通风马达模式对增加和维持高温胁迫的反应不同。我们发现12:12蝗虫通常比16:8蝗虫更健壮:它们寿命更长,对高温表现出更大的耐受力,并且从温度引起的电路故障中恢复得更快。高温下12:12只动物的换气速度更快,可能会加速蒸发冷却以介导提高的温度耐受性。

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