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New perspectives on viable microbial communities in low-biomass cleanroom environments

机译:低生物量洁净室环境中可行的微生物群落的新观点

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摘要

The advent of phylogenetic DNA microarrays and high-throughput pyrosequencing technologies has dramatically increased the resolution and accuracy of detection of distinct microbial lineages in mixed microbial assemblages. Despite an expanding array of approaches for detecting microbes in a given sample, rapid and robust means of assessing the differential viability of these cells, as a function of phylogenetic lineage, remain elusive. In this study, pre-PCR propidium monoazide (PMA) treatment was coupled with downstream pyrosequencing and PhyloChip DNA microarray analyses to better understand the frequency, diversity and distribution of viable bacteria in spacecraft assembly cleanrooms. Sample fractions not treated with PMA, which were indicative of the presence of both live and dead cells, yielded a great abundance of highly diverse bacterial pyrosequences. In contrast, only 1% to 10% of all of the pyrosequencing reads, arising from a few robust bacterial lineages, originated from sample fractions that had been pre-treated with PMA. The results of PhyloChip analyses of PMA-treated and -untreated sample fractions were in agreement with those of pyrosequencing. The viable bacterial population detected in cleanrooms devoid of spacecraft hardware was far more diverse than that observed in cleanrooms that housed mission-critical spacecraft hardware. The latter was dominated by hardy, robust organisms previously reported to survive in oligotrophic cleanroom environments. Presented here are the findings of the first ever comprehensive effort to assess the viability of cells in low-biomass environmental samples, and correlate differential viability with phylogenetic affiliation.
机译:系统发育DNA微阵列和高通量焦磷酸测序技术的出现极大地提高了检测混合微生物组合中不同微生物谱系的分辨率和准确性。尽管用于检测给定样品中微生物的方法种类繁多,但是评估系统发育谱系中这些细胞的差异活力的快速而可靠的方法仍然难以捉摸。在这项研究中,PCR前单叠氮化丙锭(PMA)处理与下游焦磷酸测序和PhyloChip DNA微阵列分析相结合,以更好地了解航天器组装洁净室中活细菌的频率,多样性和分布。未经PMA处理的样品级分表明存在活细胞和死细胞,可产生大量高度多样化的细菌焦磷酸序列。相比之下,所有焦磷酸测序读数中只有1%至10%是由一些健壮的细菌谱系引起的,这些读数来自经过PMA预处理的样品馏分。经PMA处理和未经处理的样品馏分的PhyloChip分析结果与焦磷酸测序结果一致。在没有航天器硬件的无尘室中检测到的活细菌种群比在装有关键任务航天器硬件的无尘室中观察到的细菌种群要多样化得多。后者由以前据报道可在贫营养洁净室环境中生存的强壮而强大的生物所控制。本文介绍的是首次全面评估低生物量环境样品中细胞活力并将相关差异性与系统发育联系相关联的发现。

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