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Antarctic microfungi as models for exobiology

机译:南极微真菌作为外生生物学模型

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摘要

Microfungi living in different Antarctic environments are generally well adapted to high stress conditions such as low temperatures, wide thermal fluctuations, high UV irradiance, and low water and nutrients availability; for this reason they could be investigated in order to explore limits of microbial life. Microfungi living in simple cryptoendolithic microbial communities inside the porosity of rocks in the Antarctic Dry Valleys, the closest terrestrial analogue of Mars, are particularly suitable for exobiological studies. Until now studies on exobiology focused mainly on prokaryotes; since cryptoendolithic black meristematic fungi are able to tolerate hard desiccation, high UV exposure, extremely low temperatures and wide thermal fluctuations, they are proposed as the best eukaryotic models for the biological exploration of Mars. Indeed, their adaptive strategies could be crucial as predictive tools in investigating the limits of life.
机译:生活在不同南极环境中的微真菌通常很好地适应了高应力条件,例如低温,宽广的热波动,高紫外线辐射以及水分和养分利用率低;因此,可以对其进行研究,以探索微生物生命的极限。生活在火星最接近的陆地类似物-南极干旱谷地岩石孔隙内的微隐菌微生物群落中,微真菌特别适合于外生物学研究。迄今为止,关于外生生物学的研究主要集中在原核生物上。由于隐岩质黑色分生真菌能够耐受硬质干燥,高紫外线暴露,极低的温度和宽广的热波动,因此被建议作为火星生物探索的最佳真核生物模型。确实,他们的适应性策略作为研究生活极限的预测工具可能至关重要。

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