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首页> 外文期刊>The Journal of Experimental Biology >Mechanism allowing an insect to survive complete dehydration and extreme temperatures
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Mechanism allowing an insect to survive complete dehydration and extreme temperatures

机译:使昆虫在完全脱水和极端温度下生存的机制

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Cryptobiosis describes the state of an organism whose body water is completely dehydrated and metabolic activity has become undetectable. Our study aimed to elucidate the physiological mechanism of cryptobiosis in the highest cryptobiotic invertebrate, Polypedilum vanderplanki. Larvae of this insect rapidly accumulated a large amount of the carbohydrate, trehalose, (18% of dry body mass) during desiccation for 2 days, suggesting that a high level of trehalose accumulation contributed to the successful induction of cryptobiosis in P. vanderplanki as well as in other lower cryptobiotic organisms. When larvae deprived of the brain, suboesophageal ganglion (SG) and thoracic ganglia (TG) were completely dehydrated and then rehydrated, they were able to recover and move actively. During desiccation, such larvae also accumulated trehalose, although only about half as much as the intact larvae. It is concluded that the brain, SG and TG do not affect the induction and termination of cryptobiosis, and hence in this higher multicellular animal cryptobiosis is independent of brain, SG and TG regulation, just as in plants or in unicellular organisms. [References: 28]
机译:隐孢子虫病描述了一种生物体的状态,该生物体的身体体内的水分被完全脱水,代谢活动变得不可检测。我们的研究旨在阐明最高隐性无脊椎动物无脊椎动物Polypedilum vanderplanki的隐匿生物的生理机制。该昆虫的幼虫在干燥2天后迅速积聚了大量的碳水化合物海藻糖(占干体重的18%),这表明高水平的海藻糖积聚也有助于成功地诱导斑节对虾的隐伏生物。和其他低等隐性生物一样。当剥夺幼虫的大脑,食管下神经节(SG)和胸神经节(TG)完全脱水,然后再进行脱水时,它们能够恢复并主动活动。在干燥过程中,这种幼虫也积聚了海藻糖,尽管仅为完整幼虫的一半左右。结论是,大脑,SG和TG不会影响隐孢子虫的诱导和终止,因此,在这种较高的多细胞动物隐菌病中,就像植物或单细胞生物一样,它不受大脑,SG和TG的调节。 [参考:28]

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