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Automated Purification and Suspension Array Detection of 16S rRNA from Soil and Sediment Extracts by Using Tunable Surface Microparticles

机译:可调表面微粒自动从土壤和沉积物中提取的16S rRNA进行纯化和悬浮阵列检测

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摘要

Autonomous, field-deployable molecular detection systems require seamless integration of complex biochemical solutions and physical or mechanical processing steps. In an attempt to simplify the fluidic requirements for integrated biodetection systems, we used tunable surface microparticles both as an rRNA affinity purification resin in a renewable microcolumn sample preparation system and as the sensor surface in a flow cytometer detector. The tunable surface detection limits in both low- and high-salt buffers were 1 ng of total RNA (∼104 cell equivalents) in 15-min test tube hybridizations and 10 ng of total RNA (∼105 cell equivalents) in hybridizations with the automated system (30-s contact time). RNA fragmentation was essential for achieving tunable surface suspension array specificity. Chaperone probes reduced but did not completely eliminate cross-hybridization, even with probes sharing <50% identity to target sequences. Nonpurified environmental extracts did not irreparably affect our ability to classify color-coded microparticles, but residual environmental constituents significantly quenched the Alexa-532 reporter fluor. Modulating surface charge did not influence the interaction of soluble environmental contaminants with conjugated beads. The automated system greatly reduced the effects of fluorescence quenching, especially in the soil background. The automated system was as efficacious as manual methods for simultaneous sample purification, hybridization, and washing prior to flow cytometry detection. The implications of unexpected target cross-hybridization and fluorescence quenching are discussed relative to the design and implementation of an integrated microbial monitoring system.
机译:自主的,可现场部署的分子检测系统需要无缝集成复杂的生化解决方案以及物理或机械处理步骤。为了简化集成生物检测系统的流体需求,我们在可再生微柱样品制备系统中将可调表面微粒用作rRNA亲和纯化树脂,并在流式细胞仪检测器中用作传感器表面。在低盐和高盐缓冲液中,可调节的表面检测极限分别是:在15分钟试管杂交中,总RNA为1 ng(约10 4 细胞当量),总RNA为10 ng(〜10)与自动系统杂交的 5 个细胞当量(30秒接触时间)。 RNA片段化对于实现可调的表面悬浮阵列特异性至关重要。伴侣探针减少但不能完全消除交叉杂交,即使探针与靶序列的同一性小于50%。未经纯化的环境提取物不会不可避免地影响我们对颜色编码的微粒进行分类的能力,但是残留的环境成分会极大地终止Alexa-532报告分子的荧光。调节表面电荷不影响可溶性环境污染物与共轭珠的相互作用。自动化系统大大降低了荧光猝灭的影响,尤其是在土壤背景下。在流式细胞仪检测之前,自动系统与手动方法一样有效,可同时进行样品纯化,杂交和洗涤。相对于集成微生物监测系统的设计和实现,讨论了意外目标交叉杂交和荧光猝灭的含义。

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