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Nutrient germination improves DNA recovery from industrial Bacillus subtilis endospores during qPCR enumeration assays

机译:营养发芽可改善qPCR枚举测定过程中工业枯草芽孢杆菌内生孢子的DNA回收率

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摘要

Growth-independent microbial enumeration methods such as quantitative PCR require the efficient extraction of genomic DNA from targeted cells. endospores are popular inclusions in commercial products due to their hardiness and metabolic dormancy; however, this hardiness is known to render endospores resistant to traditional DNA isolation techniques. Metagenomic studies have sought to address this resistance through nutrient-based germination of bacterial endospores in environmental samples. In the present study, we sought to apply this technique to the enumeration of microbial products using an industrial strain of as a model organism. Germination was induced through incubation of axenic spore suspensions in an AGFK-based rich medium. Total spore count, dipicolinic acid release and OD absorbance were monitored over time to track the progression of spore populations through the stages of germination and outgrowth. Aerobic plate counts and flow cytometry were used to monitor cell populations for proliferation during the incubation period. Finally, quantitative PCR with taxon-specific primers was used to examine DNA recovery as a function of time. Results show that customized germination protocols, once appropriately validated for the species and product matrix under consideration, can result in more efficient DNA extraction and thus lower limits of detection for qPCR assays targeting industrial endospores in microbial products.
机译:与生长无关的微生物枚举方法,例如定量PCR,需要从目标细胞中有效提取基因组DNA。内生孢子由于其坚硬和代谢休眠而在商业产品中很受欢迎;然而,已知这种坚韧性使内生孢子对传统的DNA分离技术具有抵抗力。元基因组学研究试图通过环境样品中细菌内生孢子的基于营养的萌发来解决这种抗药性。在本研究中,我们试图将该技术应用于使用工业菌株作为模型生物的微生物产品枚举。通过在基于AGFK的丰富培养基中孵育轴生孢子悬浮液来诱导萌发。随着时间的推移监测总孢子数,二吡啶甲酸的释放和OD吸光度,以跟踪孢子种群在发芽和长出阶段的进程。有氧平板计数和流式细胞仪用于监测细胞群体在孵育期间的增殖。最后,使用具有分类单元特异性引物的定量PCR来检查随时间变化的DNA回收率。结果表明,针对所考虑的物种和产品基质进行适当验证的定制萌发方案,可导致更有效的DNA提取,从而降低针对微生物产品中工业内生孢子的qPCR检测的检测限。

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