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首页> 外文期刊>Catalysis in industry >Production of Biocatalysts on the Basis of Recombinant Heterologous Xylanase Producer Strains in the Penicillium verruculosum Fungus: Their Application in the Hydrolysis of Timber and Wood Processing Industry Wastes
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Production of Biocatalysts on the Basis of Recombinant Heterologous Xylanase Producer Strains in the Penicillium verruculosum Fungus: Their Application in the Hydrolysis of Timber and Wood Processing Industry Wastes

机译:基于重组异源木聚糖酶生产菌在青霉菌中生产生物催化剂:它们在木材和木材加工业废物水解中的应用

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摘要

The aim of this work was to create biocatalysts with an increased heterologous expression of endo-β-1,4-xylanase of P. canescens using recombinant P. verruculosum strains, to analyze the properties of new enzyme preparations, and to study the saccharifying activity of these preparations in the hydrolysis of plant raw materials, such as hogged aspen and detarred pine wood wastes of the timber and wood processing industries. The xylanase activity of the existing enzymatic preparations is insufficiently high to hydrolyze a xylan-rich biomass. The creation of increasingly xylanolytically active P. verruculosum-based recombinant strains containing homologous or heter- ologous genes of xylanase and mannanase is therefore a problem of great interest. Using the methods of genetic engineering, we obtained enzymatic preparations that are biocatalysts for the hydrolysis of plant raw material wastes of the sawmilling and wood processing industries and, according to the data of chromatographic fractionation, have compositions of 45–60% cellulase and 20–50% xylanase (which is optimal for the saccharifying of bagasse, along with aspen and pine wood). The originality of our technique lies in the creation of biocatalysts with predetermined properties, thus reducing appreciably the cost of enzyme preparation by eliminating the need to mix components of the carbohydrase complex for the hydrol-ysis of plant raw materials, e.g., aspen and pine wood.
机译:这项工作的目的是使用重组绿疣假单胞菌菌株创建具有增强的甘蔗假单胞菌内-β-1,4-木聚糖酶异源表达的生物催化剂,分析新酶制剂的特性,并研究糖化活性。这些制剂中的一部分用于水解植物原料,例如木材和木材加工工业中的碎白杨木和去皮松木废料。现有酶制剂的木聚糖酶活性不足以水解富含木聚糖的生物质。因此,引起越来越多的具有木聚糖分解活性的基于疣状假单胞菌的重组菌株的产生,该菌株含有木聚糖酶和甘露聚糖酶的同源或异源基因。使用基因工程方法,我们获得了酶制剂,它们是水解锯木厂和木材加工业的植物原料废物的生物催化剂,并且根据色谱分离的数据,其组成为45-60%的纤维素酶和20- 50%的木聚糖酶(最适合用于蔗渣,白杨和松木的糖化)。我们技术的独创性在于创造具有预定特性的生物催化剂,从而消除了将碳水化合物酶复合物的成分混合以水解植物原料(如白杨和松木)的需要,从而显着降低了酶的制备成本。 。

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