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Bioenergy feedstock-specific enrichment of microbial populations during high-solids thermophilic deconstruction

机译:在高固体热嗜热解构过程中,生物能源原料的富集微生物群体

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摘要

Thermophilic microbial communities that are active in a high-solids environment offer great potential for the discovery of industrially relevant enzymes that efficiently deconstruct bioenergy feedstocks. In this study, finished green waste compost was used as an inoculum source to enrich microbial communities and associated enzymes that hydrolyze cellulose and hemicellulose during thermophilic high-solids fermentation of the bioenergy feedstocks switchgrass and corn stover. Methods involving the disruption of enzyme and plant cell wall polysaccharide interactions were developed to recover xylanase and endoglucanase activity from deconstructed solids. Xylanase and endoglucanase activity increased by more than a factor of 5, upon four successive enrichments on switchgrass. Overall, the changes for switchgrass were more pronounced than for corn stover; solids reduction between the first and second enrichments increased by a factor of four for switchgrass while solids reduction remained relatively constant for corn stover. Amplicon pyrosequencing analysis of small-subunit ribosomal RNA genes recovered from enriched samples indicated rapid changes in the microbial communities between the first and second enrichment with the simplified communities achieved by the third enrichment. The results demonstrate a successful approach for enrichment of unique microbial communities and enzymes active in a thermophilic high-solids environment.
机译:高固体环境中活跃的嗜热微生物群落具有有效解构生物能原料的工业相关酶的发现提供了极大的潜力。在该研究中,完成的绿色废物堆肥用作造物源,以富集微生物社区和相关酶,其在生物能量原料开关和玉米秸秆中嗜热的高固体发酵过程中水解纤维素和半纤维素。涉及破坏酶和植物细胞壁多糖相互作用的方法,以回收来自解构固体的木聚糖酶和内葡聚糖酶活性。木瓜酶和内切葡聚糖酶活性增加了超过5倍,在切换术中的四个连续富集。总体而言,SwitchGrass的变化比玉米秸秆更加明显;对于玉米秸秆,第一和第二富集之间的固体降低增加了四个用于切换的四个倍数,而固体还原仍然相对恒定。从富集样品中回收的小亚基核糖体RNA基因的扩增子焦磷酸乳头测序分析表明,第一和第二次富集之间的微生物社区与第三种富集所取得的简化社区之间的快速变化。结果表明,在嗜热高固体环境中富集的富集独特的微生物群和酶的成功方法。

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