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Culture-independent method for identification of microbial enzyme-encoding genes by activity-based single-cell sequencing using a water-in-oil microdroplet platform

机译:使用油包水微滴平台通过基于活动的单细胞测序,通过文化独立的方法鉴定微生物酶编码基因

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Environmental microbes are a great source of industrially valuable enzymes with potent and unique catalytic activities. Unfortunately, the majority of microbes remain unculturable and thus are not accessible by culture-based methods. Recently, culture-independent metagenomic approaches have been successfully applied, opening access to untapped genetic resources. Here we present a methodological approach for the identification of genes that encode metabolically active enzymes in environmental microbes in a culture-independent manner. Our method is based on activity-based single-cell sequencing, which focuses on microbial cells showing specific enzymatic activities. First, at the single-cell level, environmental microbes were encapsulated in water-in-oil microdroplets with a fluorogenic substrate for the target enzyme to screen for microdroplets that contain microbially active cells. Second, the microbial cells were recovered and subjected to whole genome amplification. Finally, the amplified genomes were sequenced to identify the genes encoding target enzymes. Employing this method, we successfully identified 14 novel β-glucosidase genes from uncultured bacterial cells in marine samples. Our method contributes to the screening and identification of genes encoding industrially valuable enzymes.
机译:环境微生物是具有有效和独特催化活性的工业上有价值的酶的重要来源。不幸的是,大多数微生物仍然无法培养,因此无法通过基于培养的方法获得。最近,已经成功地应用了与文化无关的宏基因组学方法,为未开发的遗传资源提供了机会。在这里,我们提出了一种方法学方法,用于以与培养无关的方式识别环境微生物中编码代谢活性酶的基因。我们的方法基于基于活动的单细胞测序,该测序专注于显示特定酶活性的微生物细胞。首先,在单细胞水平上,环境微生物被包裹在油包水微滴中,该微滴具有用于目标酶的荧光底物,以筛选含有微生物活性细胞的微滴。第二,回收微生物细胞并进行全基因组扩增。最后,对扩增的基因组进行测序,以鉴定编码靶酶的基因。利用这种方法,我们成功地从海洋样本中未培养的细菌细胞中鉴定了14个新的β-葡萄糖苷酶基因。我们的方法有助于筛选和鉴定编码工业上有价值的酶的基因。

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