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Isolation Of Rpob Mutations Causing Rifampicinresistance In Bacillus Subtilis Spores Exposedrnto Simulated Martian Surface Conditions

机译:暴露于模拟火星表面条件的枯草芽孢杆菌孢子中引起利福平抗性的Rpob突变的分离

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Bacterial spores are considered prime candidates for Earth-to-Mars transport by natural processes and human spaceflight activities. Previous studies have shown that exposure of Bacillus subtilis spores to ultrahigh vacuum (UHV) characteristic of space both increased the spontaneous mutation rate and altered the spectrum of mutation in various marker genes; but, to date, mutagenesis studies have not been performed on spores exposed to milder low pressures encountered in the martian environment. Mutations to rifampicin-resistance (Rif~R) were isolated in B. subtilis spores exposed to simulated martian atmosphere (99.9% CO_2, 710 Pa) for 21 days in a Mars Simulation Chamber (MSC) and compared to parallel Earth controls. Exposure in the MSC reduced spore viability by ~67% compared to Earth controls, but this decrease was not statistically significant (P = 0.3321). The frequency of mutation to Rif~R was also not significantly increased in the MSC compared to Earth-exposed spores (P = 0.479). Forty-two and 51 Rif~R mutant spores were isolated from the MSC- and Earth-exposed controls, respectively. Nucleotide sequencing located the Rif~R mutations in the rpoB gene encoding the β subunit of RNA polymerase at residue V135F of the N-cluster and at residues Q469K/L, H482D/P/R/Y, and S487L in Cluster I. No mutations were found in rpoB Clusters II or III. Two new alleles, Q469L and H482D, previously unreported in B. subtilis rpoB, were isolated from spores exposed in the MSC; otherwise, only slight differences were observed in the spectra of spontaneous Rif~R mutations from spores exposed to Earth vs. the MSC. However, both spectra are distinctly different from Rif~R mutations previously reported arising from B. subtilis spores exposed to simulated space vacuum.
机译:细菌孢子被认为是自然过程和人类太空飞行活动进行地对火星运输的主要候选者。先前的研究表明,枯草芽孢杆菌孢子暴露于空间的超高真空(UHV)特性既增加了自发突变率,又改变了各种标记基因的突变谱。但是,迄今为止,尚未对在火星环境中遇到较轻的低压的孢子进行诱变研究。在火星模拟箱(MSC)中暴露于模拟火星大气(99.9%CO_2,710 Pa)中21天的枯草芽孢杆菌孢子中,分离出了对利福平抗性的突变(Rif_R),并与平行的地球对照进行了比较。与地球对照相比,MSC中的暴露使孢子活力降低了约67%,但这种降低没有统计学意义(P = 0.3321)。与暴露于地球的孢子相比,MSC中突变为Rif〜R的频率也没有显着增加(P = 0.479)。分别从暴露于MSC和暴露于地球的对照中分离出42个和51个Rif_R突变体孢子。核苷酸测序将Nif簇的V135F残基和簇I的Q469K / L,H482D / P / R / Y和S487L残基的编码RNA聚合酶β亚基的rpoB基因的Rif〜R突变定位。无突变在rpoB聚类II或III中被发现。从MSC中暴露的孢子中分离出了以前在枯草芽孢杆菌rpoB中未报道的两个新等位基因Q469L和H482D;否则,在暴露于地球对MSC的孢子的自发Rif〜R突变的光谱中仅观察到细微差异。然而,这两个光谱与先前报道的枯草芽孢杆菌孢子暴露于模拟空间真空下引起的Rif〜R突变明显不同。

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