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Brevibacillus themoruber: a promising microbial cell factory for exopolysaccharide production.

机译:Themoruber短杆菌(Brevibacillus themoruber):一种生产外多糖的有前途的微生物工厂。

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Aims: This study aims to identify a high level exopolysaccharide (EPS) producer thermophile that in turn could be used as a model organism to study the biological mechanisms and whole genome organization of EPS-producing thermophilic bacteria. Methods and Results: Thermophilic isolates were screened, and then growth and EPS production of the best producer Brevibacillus thermoruber strain 423 were investigated under different carbon and nitrogen sources, temperature, pH and agitation rates. Rheological characterization revealed that the EPS behaved like a typical Newtonian fluid and viscosity of the EPS solution increased with increasing Ca2+ ion concentration. Chemical characterization by TLC, GC-MS, FT-IR and NMR suggested a heteropolymer structure with glucose as major monomer unit. High biocompatibility of pure EPS fractions suggested their potential use in biomedical applications. Conclusions: This study reports on the comprehensive description of microbial production conditions as well as chemical, rheological and biological characterization of the EPS produced by B. thermoruber strain 423. The bioreactor cultures were found to reach two times higher yields and three times higher productivities when compared with literature. Significance and Impact of the Study: Brevibacillus thermoruber strain 423 combined the advantages of its nonpathogenicity with the advantages of fast productivity and hence proved to be a very promising model organism and cell factory for microbial EPS production.
机译:目的:本研究旨在鉴定高水平的胞外多糖(EPS)生产嗜热菌,该嗜热菌又可以用作模型生物,以研究产生EPS的嗜热细菌的生物学机制和全基因组组织。方法和结果:筛选了嗜热菌,然后研究了不同碳源和氮源,温度,pH值和搅拌速率下最佳生产者嗜热布鲁氏菌菌株423的生长和EPS产量。流变学特性表明,EPS的行为类似于典型的牛顿流体,EPS溶液的粘度随Ca 2 + 离子浓度的增加而增加。通过TLC,GC-MS,FT-IR和NMR的化学表征表明杂多聚合物结构以葡萄糖为主要单体单元。纯EPS馏分的高生物相容性表明它们在生物医学应用中的潜在用途。结论:本研究报告了微生物生产条件的全面描述以及热布鲁氏菌菌株423产生的EPS的化学,流变学和生物学特性。与文学相比。研究的意义和影响:嗜热短杆菌423菌株结合了其非致病性的优点和快速生产的优点,因此被证明是微生物EPS生产的非常有希望的模型生物和细胞工厂。

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