对无水缓步动物有限耐热性的新认识。

Q2 Agricultural and Biological Sciences
Ricardo Cardoso Neves, Robyn M Stuart, Nadja Møbjerg
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引用次数: 4

摘要

最近发现的一种极端耐受性的缓步动物对高温的耐受性上限是令人震惊的。尽管这些微型无脊椎动物能够忍受恶劣的环境条件,包括干燥、寒冷和高水平的辐射,但高温似乎是活跃的缓步动物的致命弱点。此外,暴露时间似乎是一个限制因素,否则高弹性的干燥(无水)缓步动物耐热性。事实上,干燥的缓步动物暴露在高温下24小时的存活率明显低于暴露在高温下1小时的存活率。在这里,我们研究了1周高温暴露对干燥缓步动物的影响,目的是阐明暴露时间超过24小时是否会进一步降低存活率。从我们的分析中,我们估计,在干燥状态下暴露在高温下24小时和1周的异斑梭菌,从63ºC到56ºC的死亡率显著降低50%。暴露时间与高温耐受性之间的负相关关系可能是由于细胞内温度对大分子稳态的干扰。我们假设高温使在维持和保护无水状态中起重要作用的分子变性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。

New insights into the limited thermotolerance of anhydrobiotic tardigrades.

New insights into the limited thermotolerance of anhydrobiotic tardigrades.

New insights into the limited thermotolerance of anhydrobiotic tardigrades.

New insights into the limited thermotolerance of anhydrobiotic tardigrades.

The recent discovery of an upper limit in the tolerance of an extremotolerant tardigrade to high temperatures is astounding. Although these microinvertebrates are able to endure severe environmental conditions, including desiccation, freezing and high levels of radiation, high temperatures seem to be an Achilles' heel for active tardigrades. Moreover, exposure-time appears to be a limiting factor for the heat stress tolerance of the otherwise highly resilient desiccated (anhydrobiotic) tardigrades. Indeed, the survival rate of desiccated tardigrades exposed to high temperatures for 24 hours is significantly lower than for exposures of only 1 hour. Here, we investigate the effect of 1 week of high temperature exposures on desiccated tardigrades with the aim of elucidating whether exposure-times longer than 24 hours decrease survival even further. From our analyses we estimate a significant decrease in the 50% mortality temperature from 63ºC to 56ºC for Ramazzottius varieornatus exposed to high temperatures in the desiccated tun state for 24 hours and 1 week, respectively. This negative correlation between exposure-time and tolerance to high temperatures probably results from the interference of intracellular temperature with the homeostasis of macromolecules. We hypothesize that high temperatures denature molecules that play a vital role in sustaining and protecting the anhydrobiotic state.

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来源期刊
Communicative and Integrative Biology
Communicative and Integrative Biology Agricultural and Biological Sciences-Agricultural and Biological Sciences (all)
CiteScore
3.50
自引率
0.00%
发文量
22
审稿时长
6 weeks
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