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首页> 外文期刊>Microbes and Environments >Reducing Sugar-Producing Bacteria from Guts of Tenebrio Molitor Linnaeus (Yellow mealworm) for Lignocellulosic Waste Minimization
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Reducing Sugar-Producing Bacteria from Guts of Tenebrio Molitor Linnaeus (Yellow mealworm) for Lignocellulosic Waste Minimization

机译:从黄粉虫(黄粉虫)肠道中还原糖的细菌,以最小化木质纤维素废料

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摘要

The guts of Tenebrio Molitor Linnaeus (yellow mealworm) were used as inocula to isolate reducing sugar-producing bacteria during bioconversion of lignocellulose to reducing sugars in this study. Three carbon sources, i.e. , carboxymethyl cellulose (CMC), filter paper (FP), and lignocellulosic waste (LIG), were specifically selected; and two types of culturing media (M1 and M2) were used. After 6 months of sequential cultivation, lignocellulose ( i.e. , polysaccharides) degradation of enrichments M1-CMC (47.5%), M1-FP (73.3%), M1-LIG (70.4%), M2-CMC (55.7%), M2-FP (73.1%) and M2-LIG (71.7%) was achieved, respectively, with incubation for 48 h. Furthermore, seven bacterial strains were successfully isolated corresponding to most of the major bands detected by denaturing gradient gel electrophoresis analysis. The maximum reducing sugars yield by the combination of Agromyces sp. C42 and Stenotrophomonas sp. A10b was 56.7 mg g·LIG-1 of 48 h, which is approximate 2-5 times higher than the original enrichments and individual microbial strains. These findings suggest that bioconversion by microorganisms from mealworm guts has great application potential for lignocellulose hydrolysis.
机译:在本研究中,将黄粉虫的肠胆(黄色粉虫)用作接种物,以分离木质纤维素向还原糖的生物转化过程中的还原糖生产细菌。具体选择了三种碳源,即羧甲基纤维素(CMC),滤纸(FP)和木质纤维素废料(LIG)。使用两种类型的培养基(M1和M2)。在连续培养6个月后,木质素纤维素(即多糖)降解了M1-CMC(47.5%),M1-FP(73.3%),M1-LIG(70.4%),M2-CMC(55.7%),M2-孵育48 h分别获得FP(73.1%)和M2-LIG(71.7%)。此外,通过变性梯度凝胶电泳分析,成功分离出与大多数主要谱带相对应的七个细菌菌株。农杆菌属的最大还原糖产量。 C42和Stenotrophomonas sp。 A10b在48 h时为56.7 mg g·LIG -1 ,约为原始富集量和个别微生物菌株的2-5倍。这些发现表明,由粉虫肠道微生物进行的生物转化具有木质纤维素水解的巨大应用潜力。

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