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A Novel Primer Mixture for GH48 Genes: Quantification and Identification of Truly Cellulolytic Bacteria in Biogas Fermenters

机译:GH48基因的一种新型引物混合物:沼气发酵罐中真正纤维素渗碳的定量和鉴定

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摘要

Genomic studies revealed the glycoside hydrolases of family 48 (GH48) as a powerful marker for the identification of truly cellulolytic bacteria. Here we report an improved method for detecting cellulolytic bacteria in lab-scale biogas fermenters by using GH48 genes as a molecular marker in DNA and RNA samples. We developed a mixture of primers for the specific amplification of a GH48 gene region in a broad range of bacteria. Additionally, we built a manually curated reference database containing GH48 gene sequences directly linked to the corresponding taxonomic information. Phylogenetic correlation analysis of GH48 to 16S rRNA gene sequences revealed that GH48 gene sequences with 94% identity belong with high confidence to the same genus. Applying this analysis, GH48 amplicon reads revealed that at mesophilic fermenter conditions, 50–99% of the OTUs appear to belong to novel taxa. In contrast, at thermophilic conditions, GH48 gene sequences from the genus Hungateiclostridium dominated with 60–91% relative abundance. The novel primer combinations enabled detection and relative quantification of a wide spectrum of GH48 genes in cellulolytic microbial communities. Deep phylogenetic correlation analysis and a simplified taxonomic identification with the novel database facilitate identification of cellulolytic organisms, including the detection of novel taxa in biogas fermenters.
机译:基因组研究揭示了家庭48(GH48)的糖苷水解酶作为鉴定真正的纤维素分解细菌的强大标记。在这里,我们通过使用GH48基因在DNA和RNA样品中的分子标记中,通过使用GH48基因来报告一种检测脂肪溶解细菌的改进方法。我们开发了在广泛的细菌中进行GH48基因区的特异性扩增的引物的混合物。此外,我们构建了一种手动策划的参考数据库,其包含直接链接到相应的分类信息的GH48基因序列。 GH48至16S rRNA基因序列的系统发育相关性分析表明,具有94%同一性的GH48基因序列属于对同一属的高度置信度。应用该分析,GH48扩增子读取显示,在嗜培素发酵罐条件下,50-99%的OTUS似乎属于新的分类群。相比之下,在嗜热条件下,Hungateiclostridium属的GH48基因序列以60-91%的相对丰度为主。新型引物组合能够使纤维素溶解微生物群落中的宽谱的检测和相对定量进行检测和相对定量。新型数据库的深层系统发育相关分析与简化的分类鉴定有助于鉴定纤维素溶解生物,包括检测沼气发酵罐中的新分类群。

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