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Genomic and transcriptomic analysis of carbohydrate utilization by Paenibacillus sp. JDR-2: systems for bioprocessing plant polysaccharides

机译:Paenibacillus sp。对碳水化合物利用的基因组和转录组学分析。 JDR-2:植物多糖生物加工系统

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摘要

BackgroundPolysaccharides comprising plant biomass are potential resources for conversion to fuels and chemicals. These polysaccharides include xylans derived from the hemicellulose of hardwoods and grasses, soluble β-glucans from cereals and starch as the primary form of energy storage in plants. Paenibacillus sp. JDR-2 (Pjdr2) has evolved a system for bioprocessing xylans. The central component of this xylan utilization system is a multimodular glycoside hydrolase family 10 (GH10) endoxylanase with carbohydrate binding modules (CBM) for binding xylans and surface layer homology (SLH) domains for cell surface anchoring. These attributes allow efficient utilization of xylans by generating oligosaccharides proximal to the cell surface for rapid assimilation. Coordinate expression of genes in response to growth on xylans has identified regulons contributing to depolymerization, importation of oligosaccharides and intracellular processing to generate xylose as well as arabinose and methylglucuronate. The genome of Pjdr2 encodes several other putative surface anchored multimodular enzymes including those for utilization of β-1,3/1,4 mixed linkage soluble glucan and starch.
机译:背景技术包含植物生物质的多糖是转化为燃料和化学品的潜在资源。这些多糖包括源自硬木和草半纤维素的木聚糖,来自谷物的可溶性β-葡聚糖和淀粉,这些淀粉是植物中能量存储的主要形式。芽孢杆菌JDR-2(Pjdr2)已开发出用于生物处理木聚糖的系统。该木聚糖利用系统的主要组成部分是一种多模块糖苷水解酶家族10(GH10)内切木聚糖酶,具有用于结合木聚糖的碳水化合物结合模块(CBM)和用于细胞表面锚定的表面层同源性(SLH)域。这些属性可通过产生邻近细胞表面的寡糖来快速吸收,从而有效利用木聚糖。响应于木聚糖生长的基因的协调表达已确定调节子,该调节子有助于解聚,寡糖的导入和细胞内加工以产生木糖以及阿拉伯糖和葡萄糖醛酸甲酯。 Pjdr2的基因组编码其他几种假定的表面锚定多模块酶,包括那些利用β-1,3/ 1,4混合键联可溶性葡聚糖和淀粉的酶。

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