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Comparison of Innovative Molecular Approaches and Standard Spore Assays for Assessment of Surface Cleanliness ▿

机译:评估表面清洁度的创新分子方法和标准孢子分析方法的比较 ▿

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摘要

A bacterial spore assay and a molecular DNA microarray method were compared for their ability to assess relative cleanliness in the context of bacterial abundance and diversity on spacecraft surfaces. Colony counts derived from the NASA standard spore assay were extremely low for spacecraft surfaces. However, the PhyloChip generation 3 (G3) DNA microarray resolved the genetic signatures of a highly diverse suite of microorganisms in the very same sample set. Samples completely devoid of cultivable spores were shown to harbor the DNA of more than 100 distinct microbial phylotypes. Furthermore, samples with higher numbers of cultivable spores did not necessarily give rise to a greater microbial diversity upon analysis with the DNA microarray. The findings of this study clearly demonstrated that there is not a statistically significant correlation between the cultivable spore counts obtained from a sample and the degree of bacterial diversity present. Based on these results, it can be stated that validated state-of-the-art molecular techniques, such as DNA microarrays, can be utilized in parallel with classical culture-based methods to further describe the cleanliness of spacecraft surfaces.
机译:比较了细菌孢子测定法和分子DNA芯片方法在航天器表面细菌丰度和多样性情况下评估相对清洁度的能力。从NASA标准孢子分析得出的菌落数对于航天器表面而言极低。但是,PhyloChip第三代(G3)DNA微阵列在同一样品集中解析了高度多样化的一组微生物的遗传特征。完全没有可培养孢子的样品显示具有100多种不同微生物系统型的DNA。此外,具有较高可培养孢子数量的样品在通过DNA微阵列分析后不一定会产生更大的微生物多样性。这项研究的结果清楚地表明,从样品获得的可培养孢子数与细菌多样性程度之间在统计学上没有显着相关性。根据这些结果,可以说,经过验证的最新分子技术(例如DNA微阵列)可以与基于经典培养的方法并行使用,以进一步描述航天器表面的清洁度。

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