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Effects of graphene oxide on PCR amplification for microbial community survey

机译:石墨烯氧化物对微生物群落调查PCR扩增的影响

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Graphene oxide (GO) has been suggested as an efficient assistant additive to eliminate non-specific amplification of the polymerase chain reaction (PCR). Although many studies have focused on exploring its molecular mechanism, the practice of GO on the quantitation of microbial community has not been implemented yet. In this study, GO was added in PCR system to explore the changes on removing typical amplification errors, such as chimera and mismatches on two kinds of mock communities (an evenly mixed and a staggered mock communities) and environmental samples. High-throughput sequencing of bacterial and fungal communities, based on 16S rRNA genes and internal transcribed spacers (ITS) respectively, showed that GO could significantly increase large segmental error (chimeric sequence) in PCR procedure while had no specific effect on point error (mismatched sequence). Besides, GO reduced the α-diversity of community, and changed the composition of fungal community more obviously than bacterial community. Our study provides the first quantitative data on microbial community level to prove the negative effect of GO, and also indicates that there may be a more complex interaction between GO and comprehensive DNA fragments in PCR process.
机译:已经提出了石墨烯氧化物(GO)作为一种有效的助剂添加剂,以消除聚合酶链反应的非特异性扩增(PCR)。虽然许多研究侧重于探索其分子机制,但尚未实施微生物群落定量的实践。在这项研究中,在PCR系统中添加了在PCR系统中探讨了去除典型放大误差的变化,例如嵌合体和两种模拟社区(均匀混合和交错的嘲笑社区)和环境样品的不匹配。细菌和真菌社区的高通量测序分别基于16S rRNA基因和内部转录的间隔物(其)显示,GO可以显着增加PCR过程中的大节段误差(嵌合序列),同时对点误差没有具体影响(不匹配顺序)。此外,降低了社区的α-多样性,并更明显地改变了真菌群落的组成明显多于细菌群落。我们的研究提供了关于微生物群落一级的第一个定量数据,以证明GO的负面影响,并且还表明PCR过程中的GO和综合DNA片段之间可能存在更复杂的相互作用。

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