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首页> 外文期刊>The Journal of Experimental Biology >Metabolism and energy supply below the critical thermal minimum of a chill-susceptible insect
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Metabolism and energy supply below the critical thermal minimum of a chill-susceptible insect

机译:代谢和能量供应低于易感冷昆虫的临界热最小值

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When exposed to temperatures below their critical thermal minimum (CTmin), insects enter chill-coma and accumulate chilling injuries. While the critical thermal limits of water-breathing marine animals may be caused by oxygen-and capacity-limitation of thermal tolerance (OCLT), the mechanisms are poorly understood in air-breathing terrestrial insects. We used thermolimit respirometry to characterize entry into chill-coma in a laboratory population of fall field crickets (Gryllus pennsylvanicus). To detect potential oxygen limitation, we quantified muscle ATP, lactate and alanine concentrations in crickets following prolonged exposure to 0 degrees C (a temperature that causes chill-coma, chilling injury and eventual death). Although there was a sharp (44%) drop in the rate of CO2 emission at the CTmin and spiracular control was lost, there was a low, continuous rate of CO2 release throughout chill-coma, indicating that the spiracles were open and gas exchange could occur through the tracheal system. Prolonged exposure to 0 degrees C caused muscle ATP levels to increase marginally (rather than decrease as OCLT would predict), and there was no change in muscle lactate or alanine concentration. Thus, it appears that insects are not susceptible to OCLT at low temperatures but that the CTmin may instead be set by temperature effects on whole-animal ion homeostasis.
机译:当昆虫暴露在低于其最低临界热值(CTmin)的温度下时,昆虫进入冷昏迷并累积冷害。虽然呼吸氧气的海洋动物的临界热极限可能是由氧气和热耐受能力限制(OCLT)引起的,但在呼吸空气的陆生昆虫中却对其机理知之甚少。我们使用了热极限呼吸测定法来表征在落场(Gryllus pennsylvanicus)的实验室人群中进入昏迷的情况。为了检测潜在的氧气限制,我们对长时间暴露于0摄氏度(此温度会导致冷昏迷,寒冷伤害和最终死亡)后)中的肌肉ATP,乳酸和丙氨酸浓度进行定量。尽管CTmin处的CO2释放速率急剧下降(44%),失去了散瞳控制,但整个冷昏迷中的CO2释放速率持续较低,这表明气孔开放并且可以进行气体交换通过气管系统发生。长时间暴露于0摄氏度会导致肌肉ATP水平略有增加(而不是像OCLT所预测的那样降低),并且肌肉中的乳酸或丙氨酸浓度没有变化。因此,似乎昆虫在低温下不易受OCLT的影响,而CTmin可能由对整个动物离子稳态的温度影响来设定。

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