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首页> 外文期刊>Biotechnology for Biofuels >Secretome diversity and quantitative analysis of cellulolytic Aspergillus fumigatus Z5 in the presence of different carbon sources
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Secretome diversity and quantitative analysis of cellulolytic Aspergillus fumigatus Z5 in the presence of different carbon sources

机译:存在不同碳源的烟曲霉Z5的分泌组多样性和定量分析

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Background Aspergillus fumigatus Z5 has a strong ability to decompose lignocellulose biomass, and its extracellular protein secretion has been reported in earlier studies employing traditional techniques. However, a comprehensive analysis of its secretion in the presence of different carbon sources is still lacking. The goal of this work was to identify, quantify and compare the secretome of A. fumigatus Z5 in the presence of different carbon sources to understand in more details the mechanisms of lignocellulose decomposition by Aspergillus fumigatus Z5. Results Cellulolytic A. fumigatus Z5 was grown in the presence of glucose (Gl), Avicel (Av) and rice straw (RS), and the activities of several lignocellulosic enzymes were determined with chromatometry method. The maximum activities of endoglucanase, exoglucanase, β-glucosidase, laminarinase, lichenase, xylanase and pectin lyase were 12.52, 0.59, 2.30, 2.37, 1.68, 15.02 and 11.40 U·ml-1, respectively. A total of 152, 125 and 61 different proteins were identified in the presence of RS, Av and Gl, respectively, and the proteins were functionally divided into glycoside hydrolases, lipases, peptidases, peroxidases, esterases, protein translocating transporters and hypothetical proteins. A total of 49 proteins were iTRAQ-quantified in all the treatments, and the quantification results indicated that most of the cellulases, hemicellulases and glycoside hydrolases were highly upregulated when rice straw and Avicel were used as carbon sources (compared with glucose). Conclusions The proteins secreted from A. fumigatus Z5 in the present of different carbon source conditions were identified by LC-MS/MS and quantified by iTRAQ-based quantitative proteomics. The results indicated that A. fumigatus Z5 could produce considerable cellulose-, hemicellulose-, pectin- and lignin-degrading enzymes that are valuable for the lignocellulosic bioenergy industry.
机译:背景技术烟曲霉Z5具有很强的分解木质纤维素生物质的能力,并且在早期采用传统技术进行的研究中已经报道了其胞外蛋白的分泌。但是,仍然缺乏对其在不同碳源存在下的分泌的综合分析。这项工作的目的是在存在不同碳源的情况下鉴定,定量和比较烟曲霉Z5的分泌组,以更详细地了解烟曲霉Z5分解木质纤维素的机理。结果在有葡萄糖(Gl),Avicel(Av)和稻草(RS)的条件下生长了烟曲霉Z5,并用色谱法测定了几种木质纤维素酶的活性。内切葡聚糖酶,外切葡聚糖酶,β-葡萄糖苷酶,层粘连蛋白酶,地衣酶,木聚糖酶和果胶裂解酶的最大活性分别为12.52、0.59、2.30、2.37、1.68、15.02和11.40 U·ml-1。在RS,Av和G1存在下分别鉴定出总共152、125和61种不同的蛋白质,并且将这些蛋白质在功能上分为糖苷水解酶,脂肪酶,肽酶,过氧化物酶,酯酶,蛋白质转运转运蛋白和假设的蛋白质。在所有处理中,总共对49种蛋白质进行了iTRAQ定量,定量结果表明,当使用稻草和Avicel作为碳源(与葡萄糖相比)时,大多数纤维素酶,半纤维素酶和糖苷水解酶均上调。结论通过LC-MS / MS鉴定了在不同碳源条件下烟曲霉Z5分泌的蛋白质,并通过基于iTRAQ的定量蛋白质组学对其进行了定量。结果表明,烟曲霉Z5可以产生可降解的纤维素,半纤维素,果胶和木质素降解酶,对木质纤维素生物能源产业具有重要意义。

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