首页> 美国卫生研究院文献>Molecules >Enhancement of Versatile Extracellular Cellulolytic and Hemicellulolytic Enzyme Productions by Lactobacillus plantarum RI 11 Isolated from Malaysian Food Using Renewable Natural Polymers
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Enhancement of Versatile Extracellular Cellulolytic and Hemicellulolytic Enzyme Productions by Lactobacillus plantarum RI 11 Isolated from Malaysian Food Using Renewable Natural Polymers

机译:使用可再生天然聚合物从马来西亚食品中分离的植物乳杆菌RI 11增强了多种细胞外纤维素分解和半纤维素分解酶的生产

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摘要

RI 11 was reported recently to be a potential lignocellulosic biomass degrader since it has the capability of producing versatile extracellular cellulolytic and hemicellulolytic enzymes. Thus, this study was conducted to evaluate further the effects of various renewable natural polymers on the growth and production of extracellular cellulolytic and hemicellulolytic enzymes by this novel isolate. Basal medium supplemented with molasses and yeast extract produced the highest cell biomass (log 10.51 CFU/mL) and extracellular endoglucanase (11.70 µg/min/mg), exoglucanase (9.99 µg/min/mg), β-glucosidase (10.43 nmol/min/mg), and mannanase (8.03 µg/min/mg), respectively. Subsequently, a statistical optimization approach was employed for the enhancement of cell biomass, and cellulolytic and hemicellulolytic enzyme productions. Basal medium that supplemented with glucose, molasses and soybean pulp (F5 medium) or with rice straw, yeast extract and soybean pulp (F6 medium) produced the highest cell population of log 11.76 CFU/mL, respectively. However, formulated F12 medium supplemented with glucose, molasses and palm kernel cake enhanced extracellular endoglucanase (4 folds), exoglucanase (2.6 folds) and mannanase (2.6 folds) specific activities significantly, indicating that the F12 medium could induce the highest production of extracellular cellulolytic and hemicellulolytic enzymes concomitantly. In conclusion, RI 11 is a promising and versatile bio-transformation agent for lignocellulolytic biomass.
机译:RI 11最近被报道是潜在的木质纤维素生物质降解剂,因为它具有产生多种细胞外纤维素分解酶和半纤维素分解酶的能力。因此,进行了这项研究以进一步评估各种可再生天然聚合物对这种新型分离物对细胞外纤维素分解酶和半纤维素分解酶的生长和产生的影响。补充糖蜜和酵母提取物的基础培养基产生最高的细胞生物量(log 10.51 CFU / mL)和细胞外内切葡聚糖酶(11.70 µg / min / mg),外切葡聚糖酶(9.99 µg / min / mg),β-葡萄糖苷酶(10.43 nmol / min) / mg)和甘露聚糖酶(8.03 µg / min / mg)。随后,采用统计优化方法来增强细胞生物量以及纤维素分解酶和半纤维素分解酶的产量。补充了葡萄糖,糖蜜和大豆浆的基础培养基(F5培养基)或稻草,酵母提取物和大豆浆(F6培养基)分别产生了最高的log 11.76 CFU / mL细胞群。但是,添加葡萄糖,糖蜜和棕榈仁饼的配方F12培养基可显着增强细胞外内切葡聚糖酶(4倍),外切葡聚糖酶(2.6倍)和甘露聚糖酶(2.6倍)的比活性,表明F12培养基可诱导最高的细胞外纤维素分解酶产量。和半纤维素分解酶同时出现。总之,RI 11是用于木质纤维素分解生物质的有前途且用途广泛的生物转化剂。

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