首页> 外文期刊>Astrobiology >Bacillus subtilis Spore Survival and Expression of Germination-Induced Bioluminescence After Prolonged Incubation Under Simulated Mars Atmospheric Pressure and Composition: Implications for Planetary Protection and Lithopanspermia
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Bacillus subtilis Spore Survival and Expression of Germination-Induced Bioluminescence After Prolonged Incubation Under Simulated Mars Atmospheric Pressure and Composition: Implications for Planetary Protection and Lithopanspermia

机译:枯草芽孢杆菌的孢子存活和模拟火星大气压力和组成下长时间孵化后萌发诱导的生物发光的表达:对行星保护和紫精的影响。

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Bacterial endospores in the genus Bacillus are considered good models for studying interplanetary transfer of microbes by natural or human processes. Although spore survival during transfer itself has been the subject of considerable study, the fate of spores in extraterrestrial environments has received less attention. In this report we subjected spores of a strain of Bacillus subtilis, containing luciferase resulting from expression of an sspB-luxAB gene fusion, to simulated martian atmospheric pressure (7-18 mbar) and composition (100% CO_2) for up to 19 days in a Mars simulation chamber. We report here that survival was similar between spores exposed to Earth conditions and spores exposed up to 19 days to simulated martian conditions. However, germination-induced bioluminescence was lower in spores exposed to simulated martian atmosphere, which suggests sublethal impairment of some endogenous spore germination processes.
机译:芽孢杆菌属的细菌内生孢子被认为是研究微生物通过自然或人为过程进行行星际转移的良好模型。尽管孢子在转移过程中的存活本身一直是大量研究的主题,但在外星环境中孢子的命运却很少受到关注。在本报告中,我们对枯草芽孢杆菌菌株的孢子进行了长达19天的模拟火星大气压力(7-18 mbar)和组成(100%CO_2)的模拟火星大气压(7-18 mbar),其中含有由sspB-luxAB基因融合体表达产生的荧光素酶。火星模拟舱我们在这里报告说,暴露于地球条件下的孢子与暴露于模拟火星条件下长达19天的孢子的存活率相似。然而,暴露于模拟火星大气的孢子中发芽诱导的生物发光较低,这表明某些内源性孢子发芽过程具有亚致死性损伤。

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