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PyroTRF-ID: a novel bioinformatics methodology for the affiliation of terminal-restriction fragments using 16S rRNA gene pyrosequencing data

机译:PyroTRF-ID:一种新颖的生物信息学方法用于使用16S rRNA基因焦磷酸测序数据进行末端限制片段的连接

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摘要

BackgroundIn molecular microbial ecology, massive sequencing is gradually replacing classical fingerprinting techniques such as terminal-restriction fragment length polymorphism (T-RFLP) combined with cloning-sequencing for the characterization of microbiomes. Here, a bioinformatics methodology for pyrosequencing-based T-RF identification (PyroTRF-ID) was developed to combine pyrosequencing and T-RFLP approaches for the description of microbial communities. The strength of this methodology relies on the identification of T-RFs by comparison of experimental and digital T-RFLP profiles obtained from the same samples. DNA extracts were subjected to amplification of the 16S rRNA gene pool, T-RFLP with the HaeIII restriction enzyme, 454 tag encoded FLX amplicon pyrosequencing, and PyroTRF-ID analysis. Digital T-RFLP profiles were generated from the denoised full pyrosequencing datasets, and the sequences contributing to each digital T-RF were classified to taxonomic bins using the Greengenes reference database. The method was tested both on bacterial communities found in chloroethene-contaminated groundwater samples and in aerobic granular sludge biofilms originating from wastewater treatment systems.
机译:背景技术在分子微生物生态学中,大规模测序正在逐步取代经典的指纹技术,例如末端限制性片段长度多态性(T-RFLP)与克隆测序相结合来表征微生物组。在这里,开发了用于基于焦磷酸测序的T-RF识别(PyroTRF-ID)的生物信息学方法,以结合焦磷酸测序和T-RFLP方法来描述微生物群落。这种方法的优势在于,通过比较从相同样品获得的实验和数字T-RFLP谱图,可以鉴定T-RF。对DNA提取物进行16S rRNA基因库扩增,用HaeIII限制性酶进行T-RFLP,454标签编码的FLX扩增子焦磷酸测序以及PyroTRF-ID分析。从经过去噪的完整焦磷酸测序数据集生成数字T-RFLP谱,并使用Greengenes参考数据库将有助于每个数字T-RF的序列分类到分类学分类中。对该方法进行了测试,不仅对受氯乙烯污染的地下水样品中的细菌群落以及源自废水处理系统的好氧颗粒污泥生物膜进行了测试。

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