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首页> 外文期刊>Planetary and space science >What can we learn from the toughest animals of the Earth? Water bears (tardigrades) as multicellular model organisms in order to perform scientific preparations for lunar exploration
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What can we learn from the toughest animals of the Earth? Water bears (tardigrades) as multicellular model organisms in order to perform scientific preparations for lunar exploration

机译:我们可以从地球上最艰难的动物中学到什么?作为多细胞模型生物的水熊(缓坡动物),以进行科学的月球探测准备

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Space missions of long duration required a series of preliminary experiments on living organisms, validated by a substantial phase of ground simulation experiments, in the field of micro- and intermediate gravities, radiobiology, and, for planetary explorations, related to risks deriving from regolith and dust exposure. In this review, we present the tardigrades, whose characteristics that recommend them as an emerging model for space biology. They are microscopic animals but are characterized by a complex structural organization similar to that of larger animals; they can be cultured in lab in small facilities, having small size; they are able to produce clonal lineages by means of parthenogenesis; they can completely suspend their metabolism when entering in dormant states (anhydrobiosis induced by dehydration and cryobiosis induced by freezing); desiccated anhydrobiotic tardigrades are able to withstand chemical and physical extremes, but a large tolerance is showed also by active animals; they can be stored in dry state for many years without loss of viability. Tardigrades have already been exposed to space stressors on Low Earth Orbit several times. The relevance of ground-based and space studies on tardigrades rests on the presumption that results could suggest strategies to protect organisms, also humans, when exposed to the space and lunar environments.
机译:长时间的太空飞行需要在微重力和中等重力,放射生物学以及行星探索中进行的一系列有关活生物体的初步实验,该实验已通过地面模拟实验的实质性阶段进行了验证,并且对于行星探索而言,与重石化和灰尘暴露。在这篇综述中,我们介绍了缓速动物,其特性推荐它们成为空间生物学的新兴模型。它们是微观动物,但特征是类似于大型动物的复杂结构组织。它们可以在小规模的小型设施的实验室中进行培养;它们能够通过孤雌生殖产生克隆谱系;当进入休眠状态时,它们可以完全停止新陈代谢(脱水引起的脱水生物和冰冻引起的冷冻生物);脱水的脱水生物缓坡剂能够承受化学和物理极限,但是活跃的动物也表现出很大的耐受性;它们可以在干燥状态下保存多年而不会丧失生存能力。缓坡已经多次暴露在低地球轨道上的空间压力源中。陆基和空间研究对缓坡的相关性基于这样的假设,即结果可能提出了在暴露于太空和月球环境时保护生物体以及人类的策略。

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