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青贮预处理稻草:木聚糖酶和植物乳杆菌对半纤维素降解和纤维素转化的影响。

Ensiling as pretreatment of rice straw: The effect of hemicellulase and Lactobacillus plantarum on hemicellulose degradation and cellulose conversion.

机构信息

Institute of Ensiling and Processing of Grass, College of Agro-grassland Science, Nanjing Agricultural University, Nanjing 210095, China.

Jiangsu Academy of Agricultural Sciences, Nanjing 210014, China.

出版信息

Bioresour Technol. 2018 Oct;266:158-165. doi: 10.1016/j.biortech.2018.06.058. Epub 2018 Jun 23.

Abstract

The fermentation characteristics, structural carbohydrate degradation and enzymatic hydrolysis of rice straw ensiled with hemicellulase and Lactobacillus plantarum were examined. Fresh rice straw was ensiled in 1-L laboratory silos with no additive control (CK), L. plantarum (L), hemicellulase (HC) and hemicellulase + L. plantarum (HCL) for 6, 15, 30 and 60 days. All additives increased lactic acid concentration, and reduced pH and lignocellulosic content of the resulting silage relative to the control. The highest organic acid and residual sugar contents and lignocellulose degradation were observed in HCL silage. Hemicellulase alone or combined with L. plantarum improved the enzymatic hydrolysis with higher glucose yield and cellulose convertibility. Fresh rice straw ensiled with the combined additives increased feedstock preservation and cellulose conversion, and is thus recommended as a biological pretreatment for subsequent biofuel production.

摘要

研究了纤维素酶和植物乳杆菌青贮对稻草发酵特性、结构碳水化合物降解和酶水解的影响。新鲜稻草在 1 升实验室青贮筒中无添加剂对照(CK)、植物乳杆菌(L)、纤维素酶(HC)和纤维素酶+植物乳杆菌(HCL)中分别青贮 6、15、30 和 60 天。与对照相比,所有添加剂均提高了乳酸浓度,降低了青贮料的 pH 值和木质纤维素含量。在 HCL 青贮料中观察到最高的有机酸和残余糖含量以及木质纤维素降解。单独使用纤维素酶或与植物乳杆菌联合使用可提高酶水解的葡萄糖得率和纤维素转化率。用复合添加剂青贮的新鲜稻草增加了原料的保存和纤维素转化率,因此被推荐作为后续生物燃料生产的生物预处理方法。

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