首页> 外文期刊>Carbohydrate Polymers: Scientific and Technological Aspects of Industrially Important Polysaccharides >Distinct wall polymer deconstruction for high biomass digestibility under chemical pretreatment in Miscanthus and rice
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Distinct wall polymer deconstruction for high biomass digestibility under chemical pretreatment in Miscanthus and rice

机译:不同墙体聚合物解构,用于米兰和稻米化学预处理下的高生物量消化率

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Miscanthus is a leading bioenergy crop and rice provides enormous biomass for biofuels. Using Calcofluor White staining, this work in situ observed an initial lignocellulose hydrolysis in two distinct Miscanthus accessions, rice cultivar (NPB), and Osfc16 mutant after mild chemical pretreatments. In comparison, the M. sin and Osfc16 respectively exhibited weak Calcofluor fluorescence compared to the M. sac and NPB during enzymatic hydrolysis, consistent with the high biomass saccharification detected in vitro. Using xyloglucan-directed monoclonal antibodies (mAbs), xyloglucan deconstruction was observed from initial cellulose hydrolysis, whereas the M. sin and Osfc16 exhibited relatively strong immunolabeling using xylan-directed mAb, confirming previous findings of xylan positive impacts on biomass saccharification. Furthermore, the M. sin showed quick disappearance of RG-I immunolabeling with varied HG labelings between acid and alkali pretreatments. Hence, this study demonstrated a quick approach to explore wall polymer distinct deconstruction for enhanced biomass saccharification under chemical pretreatment in bioenergy crops.
机译:Miscanthus是一家领先的生物能源作物,稻米为生物燃料提供巨大的生物质。使用Compofluor白色染色,这项原位的工作观察了在温和化学预处理后两种明显的MISCanthus释放,水稻品种(NPB)和OSFC16突变体中的初始木质纤维素水解。相比之下,与酶水解期间的M. SAC和NPB相比,M.In和OSFC16分别表现出弱钙荧光荧光。使用Xyloglucan定向的单克隆抗体(MAB),从初始纤维素水解中观察到木葡聚糖解构,而M.IN和OSFC16使用木聚糖的MAB表现出相对强烈的免疫标记,证实了Xylan阳性影响的先前发现对生物质糖化的阳性影响。此外,M.In显示RG-I免疫标记的快速消失,酸和碱预处理之间的不同HG贴图。因此,本研究表明了一种快速探讨了生物能量作物中化学预处理下增强生物质糖化的壁聚合物明显解构的快速方法。

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