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首页> 外文期刊>The Journal of Experimental Biology >Muscle membrane potential and insect chill coma
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Muscle membrane potential and insect chill coma

机译:肌膜电位和昆虫畏寒昏迷

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Chill-susceptible insects enter a reversible paralytic state, termed chill coma, at mild low temperatures. Chill coma is caused by neuromuscular impairment, allegedly triggered by cold-induced depolarization of muscle resting membrane potential (V-m). We used five Drosophila species that vary in cold tolerance (chill coma temperature spanning similar to 11 degrees C) and repeatedly measured muscle V-m during a downward temperature ramp (20 to -3 degrees C). Cold-tolerant species were able to defend their V-m down to lower temperatures, which is not explained by species-specific differences in initial V-m at 20 degrees C, but by cold-tolerant drosophilids defending V-m across a broad range of temperatures. We found support for a previously suggested 'critical threshold' of V-m, related to chill coma, in three of the five species. Interestingly, the cold-tolerant Drosophila species may enter coma as a result of processes unrelated to muscle depolarization as their V-m was not significantly depolarized at their chill coma temperatures.
机译:对寒冷敏感的昆虫在温和的低温下会进入可逆的麻痹状态,称为冷昏迷。寒冷昏迷是由神经肌肉损伤引起的,据称是由寒冷引起的肌肉静止膜电位(V-m)的去极化引起的。我们使用了五种果蝇物种,它们具有不同的耐寒性(冷昏迷温度范围类似于11摄氏度),并在温度下降(20至-3摄氏度)期间反复测量肌肉V-m。耐寒物种能够在较低的温度下防御其V-m,这不能通过20摄氏度时初始V-m的物种特异性差异来解释,而不能通过在宽广的温度范围内防御V-m的耐寒果蝇来解释。我们发现在五个物种中的三个物种中支持先前建议的与寒冷昏迷有关的V-m的“临界阈值”。有趣的是,耐寒果蝇物种可能由于与肌肉去极化无关的过程而进入昏迷状态,因为它们的V-m在冷昏迷温度下并未明显去极化。

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