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Identification of Novel Putative Bacterial Feruloyl Esterases From Anaerobic Ecosystems by Use of Whole-Genome Shotgun Metagenomics and Genome Binning

机译:通过使用全基因组霰弹枪偏心组学和基因组烧结从厌氧生态系统中鉴定新型推定细菌Feruloys酯酶

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摘要

Feruloyl esterases (FAEs) can reduce the recalcitrance of lignocellulosic biomass to enzymatic hydrolysis, thereby enhancing biorefinery potentials or animal feeding values of the biomass. In addition, ferulic acid, a product of FAE activity, has applications in pharmaceutical and food/beverage industries. It is therefore of great interest to identify new FAEs to enhance understanding about this enzyme family. For this purpose, we used whole-genome shotgun metagenomics and genome binning to explore rumens of dairy cows, large intestines of horses, sediments of freshwater and forest topsoils to identify novel prokaryotic FAEs and trace the responsible microorganisms. A number of prokaryotic genomes were recovered of which, genomes of Clostridiales order and Candidatus Rhabdochlamydia genus showed FAE coding capacities. In total, five sequences were deemed as putative FAE. The BLASTP search against non-redundant protein database of NCBI indicated that these putative FAEs represented novel sequences within this enzyme family. The phylogenetic analysis showed that at least three putative sequences shared evolutionary lineage with FAEs of type A and thus could possess specific activities similar to this type of FAEs, something that is not previously found outside fungal kingdom. We nominate Candidatus Rhabdochlamydia genus as a novel FAE producing taxonomic unit.
机译:阿魏酸酯酶(FAE工程师)可以木质纤维素生物质的不顺应减少酶水解,从而提高生物炼制电位或动物喂食所述生物质的值。此外,阿魏酸,FAE活性的产物,在制药和食品/饮料工业中的应用。因此极大的兴趣,以确定新的现场应用工程师,以增进了解这个酶家族。为此,我们采用全基因组鸟枪法宏基因组学和基因组分级探索奶牛,马大肠,淡水和森林表土沉积物,以确定新的原核生物现场应用工程师和跟踪负责微生物瘤胃。许多原核的基因组,回收其中,梭菌顺序和暂定Rhabdochlamydia属的基因组中表明FAE编码能力。总共五个序列被视为推定FAE。针对NCBI的非冗余蛋白质数据库中的BLASTP搜索表明,这些推定的FAE表示此酶家族内新序列。系统发生分析表明,至少有三个推测的序列共享的进化谱系与类型A的的FAE并且因此可以具有类似于这种类型的FAE的,一些不先前发现外真菌王国具体活动。我们提名暂定Rhabdochlamydia属作为一种新型的FAE产生分类单位。

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