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Transcriptome and secretome analysis of Aspergillus fumigatus in the presence of sugarcane bagasse

机译:在甘蔗甘蔗渣存在下曲霉病的转录组和综合分析

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Sugarcane bagasse has been proposed as a lignocellulosic residue for second-generation ethanol (2G) produced by breaking down biomass into fermentable sugars. The enzymatic cocktails for biomass degradation are mostly produced by fungi, but low cost and high efficiency can consolidate 2G technologies. A. fumigatus plays an important role in plant biomass degradation capabilities and recycling. To gain more insight into the divergence in gene expression during steam-exploded bagasse (SEB) breakdown, this study profiled the transcriptome of A. fumigatus by RNA sequencing to compare transcriptional profiles of A. fumigatus grown on media containing SEB or fructose as the sole carbon source. Secretome analysis was also performed using SDS-PAGE and LC-MS/MS. The maximum activities of cellulases (0.032?U?mL-1), endo-1,4-β--xylanase (10.82?U?mL-1) and endo-1,3-β glucanases (0.77?U?mL-1) showed that functional CAZymes (carbohydrate-active enzymes) were secreted in the SEB culture conditions. Correlations between transcriptome and secretome data identified several CAZymes in A. fumigatus. Particular attention was given to CAZymes related to lignocellulose degradation and sugar transporters. Genes encoding glycoside hydrolase classes commonly expressed during the breakdown of cellulose, such as GH-5, 6, 7, 43, 45, and hemicellulose, such as GH-2, 10, 11, 30, 43, were found to be highly expressed in SEB conditions. Lytic polysaccharide monooxygenases (LPMO) classified as auxiliary activity families AA9 (GH61), CE (1, 4, 8, 15, 16), PL (1, 3, 4, 20) and GT (1, 2, 4, 8, 20, 35, 48) were also differentially expressed in this condition. Similarly, the most important enzymes related to biomass degradation, including endoxylanases, xyloglucanases, β-xylosidases, LPMOs, α-arabinofuranosidases, cellobiohydrolases, endoglucanases and β-glucosidases, were also identified in the secretome. This is the first report of a transcriptome and secretome experiment of Aspergillus fumigatus in the degradation of pretreated sugarcane bagasse. The results suggest that this strain employs important strategies for this complex degradation process. It was possible to identify a set of genes and proteins that might be applied in several biotechnology fields. This knowledge can be exploited for the improvement of 2G ethanol production by the rational design of enzymatic cocktails.
机译:已经提出了通过将生物量分解为可发酵的糖而产生的第二代乙醇(2g)的木质纤维素残留物。用于生物质降解的酶促鸡尾酒主要由真菌产生,但低成本和高效率可以整合2G技术。 A. Fumigatus在植物生物质降解能力和回收中起着重要作用。为了在蒸汽爆炸的甘蔗渣(SEB)崩溃期间获得更多地洞察基因表达的分歧,通过RNA测序将A. fumigatus的转录组分解为比较含有SEB或果糖的培养基上的A. fumigatus的转录谱碳源。还使用SDS-PAGE和LC-MS / MS进行秘密分析。纤维素酶的最大活性(0.032?U?ML-1),endo-1,4-β - 木聚糖酶(10.82〜u?mL-1)和endo-1,3-β葡聚糖酶(0.77?U?ml- 1)表明,在SEB培养条件下分泌功能性辛糖(碳水化合物 - 活性酶)。转录组和综述数据之间的相关性鉴定了A. fumigatus中的几个辛酸。特别注意与木质纤维素降解和糖转运蛋白有关的巨蜥。发现在纤维素粒度分解期间常见的糖苷水解酶类别的基因,例如GH-5,6,7,43,45和半纤维素,例如GH-2,10,11,30,43,高度表达在SEB条件下。裂解多糖单氧基酶(LPMO)分类为辅助活性家族AA9(GH61),CE(1,4,8,15,16),PL(1,3,4,20)和GT(1,2,4,8,在这种情况下也差异表达了20,35,48)。类似地,在秘书中还鉴定了与生物质降解有关的生物质降解,包括内氧酰酶,木糖葡聚糖酶,β-木糖苷酶,LPMOS,α-阿拉伯呋喃糖苷酶,纤维素酶,内切葡聚糖酶和β-葡糖苷酶。这是在预处理甘蔗甘蔗渣降解中曲霉病转录组和综合实验的第一个报告。结果表明,该应变采用了这种复杂的降解过程的重要策略。可以鉴定一组可能在几种生物技术领域应用的基因和蛋白质。通过酶鸡尾酒的合理设计,可以利用这种知识来改善2g乙醇生产。

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