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A Rapid Sensitive Low-Cost Assay for Detecting Hydrogenotrophic Methanogens in Anaerobic Digesters Using Loop-Mediated Isothermal Amplification

机译:使用回路介导的等温扩增技术快速灵敏低成本地检测厌氧消化池中的氢营养型产甲烷菌

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摘要

Understanding how the presence, absence, and abundance of different microbial genera supply specific metabolic functions for anaerobic digestion (AD) and how these impact on gas production is critical for a long-term understanding and optimization of the AD process. The strictly anaerobic methanogenic archaea are essential for methane production within AD microbial communities. Methanogens are a phylogenetically diverse group that can be classified into three metabolically distinct lineages based on the substrates they use to produce methane. While process optimization based on physicochemical parameters is well established in AD, measurements that could allow manipulation of the underlying microbial community are seldom used as they tend to be non-specific, expensive, or time-consuming, or a combination of all three. Loop-mediated isothermal amplification (LAMP) assays combine a simple, rapid, low-cost detection technique with high sensitivity and specificity. Here, we describe the optimization of LAMP assays for the detection of four different genera of hydrogenotrophic methanogens: and spp. By targeting archaeal elongation factor 2 (aEF2), these LAMP assays provide a rapid, low-cost, presence/absence indication of hydrogenotrophic methanogens that could be used as a real-time measure of process conditions. The assays were shown to be sensitive to 1 pg of DNA from most tested methanogen species, providing a route to a quantitative measure through simple serial dilution of samples. The LAMP assays described here offer a simple, fast, and affordable method for the specific detection of four different genera of hydrogenotrophic methanogens. Our results indicate that this approach could be developed into a quantitative measure that could provide rapid, low-cost insight into the functioning and optimization of AD and related systems.
机译:了解不同微生物属的存在,缺失和丰富如何为厌氧消化(AD)提供特定的代谢功能,以及这些对产气量的影响对于长期了解和优化AD过程至关重要。严格厌氧的产甲烷古菌对于AD微生物群落中的甲烷生产至关重要。产甲烷菌是系统发生多样性的群体,根据它们用于产生甲烷的底物,可以分为三个代谢不同的谱系。尽管在AD中已经很好地建立了基于理化参数的过程优化的方法,但由于它们倾向于非特异性,昂贵或费时,或三者结合,因此很少使用可用于控制潜在微生物群落的测量方法。环介导的等温扩增(LAMP)分析结合了简单,快速,低成本的检测技术,具有很高的灵敏度和特异性。在这里,我们描述了用于检测氢营养型产甲烷菌的四个不同属的LAMP测定的优化:和spp。通过靶向古细菌伸长因子2(aEF2),这些LAMP分析可提供快速,低成本,氢营养型产甲烷菌存在/不存在的指示,可用作过程条件的实时量度。结果表明,该方法对大多数测试产甲烷菌物种的1 pg DNA敏感,从而提供了通过简单连续稀释样品即可进行定量测量的途径。此处描述的LAMP分析提供了一种简单,快速且价格合理的方法,用于特异性检测氢营养型产甲烷菌的四个不同属。我们的结果表明,该方法可以发展为一种定量方法,可以为AD和相关系统的功能和优化提供快速,低成本的见解。

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