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Metatranscriptomic analysis of lignocellulolytic microbial communities involved in high-solids decomposition of rice straw

机译:涉及稻草高固含量分解的木质纤维素分解微生物群落的转录组学分析

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摘要

BackgroundNew lignocellulolytic enzymes are needed that maintain optimal activity under the harsh conditions present during industrial enzymatic deconstruction of biomass, including high temperatures, the absence of free water, and the presence of inhibitors from the biomass. Enriching lignocellulolytic microbial communities under these conditions provides a source of microorganisms that may yield robust lignocellulolytic enzymes tolerant to the extreme conditions needed to improve the throughput and efficiency of biomass enzymatic deconstruction. Identification of promising enzymes from these systems is challenging due to complex substrate-enzyme interactions and requirements to assay for activity. In this study, metatranscriptomes from compost-derived microbial communities enriched on rice straw under thermophilic and mesophilic conditions were sequenced and analyzed to identify lignocellulolytic enzymes overexpressed under thermophilic conditions. To determine differential gene expression across mesophilic and thermophilic treatments, a method was developed which pooled gene expression by functional category, as indicated by Pfam annotations, since microbial communities performing similar tasks are likely to have overlapping functions even if they share no specific genes.
机译:背景技术需要新的木质纤维素分解酶,以在生物酶对工业生物进行解构过程中存在的苛刻条件下保持最佳活性,所述酶包括高温,不存在游离水以及存在来自生物质的抑制剂。在这些条件下富集木质纤维素分解微生物群落提供了微生物来源,该微生物来源可以产生鲁棒的木质纤维素分解酶,其耐受提高生物量酶解构筑的通量和效率所需的极端条件。由于复杂的底物-酶相互作用和活性测定要求,从这些系统中鉴定有希望的酶是具有挑战性的。在这项研究中,对来自在高温和中温条件下富含稻草的堆肥微生物群落的转录组进行了测序和分析,以鉴定在高温条件下过表达的木质纤维素分解酶。为了确定嗜温和嗜热处理之间的差异基因表达,开发了一种方法,该方法按功能类别汇总基因表达,如Pfam注释所示,因为执行相似任务的微生物群落即使不共享特定基因也可能具有重叠功能。

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