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Production of poly-γ-glutamic acid by a thermotolerant glutamate-independent strain and comparative analysis of the glutamate dependent difference

机译:耐热谷氨酸不依赖菌株生产聚-γ-谷氨酸及其对谷氨酸依赖差异的比较分析

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摘要

Poly-γ-glutamic acid (γ-PGA) is a promising microbial polymer with wide applications in industry, agriculture and medicine. In this study, a novel glutamate-independent γ-PGA producing strain with thermotolerant characteristics was isolated and identified as Bacillus subtilis GXG-5, then its product was also characterized. The fermentation process was optimized by single-factor tests, and results showed that high temperature (50 °C) was especially suitable for the γ-PGA production by GXG-5. The γ-PGA yield reached 19.50 ± 0.75 g/L with substrate conversion efficiency of 78% at 50 °C in 10 L fermentor. Comparison of GXG-5 and GXA-28 (glutamate-dependent strain) under respective optimal fermentation conditions, the γ-PGA yield of GXG-5 was 19.0% higher than that of GXA-28, and GXG-5 was also superior to GXA-28 in the availability of carbon sources and substrates. Furthermore, the glutamate dependent difference between GXA-28 and GXG-5 was analyzed by genomic sequencing, results indicated that genes related to the glutamate dependent difference mainly involved in carbohydrate transport and metabolism and amino acid metabolism, and 13 genes related to γ-PGA synthesis were mutated in GXG-5. This study provided a potential glutamate-independent strain to replace glutamate-dependent strain for γ-PGA production, and shared novel information for understanding the glutamate dependent difference at the genomic level.Electronic supplementary materialThe online version of this article (10.1186/s13568-017-0512-0) contains supplementary material, which is available to authorized users.
机译:聚-γ-谷氨酸(γ-PGA)是一种有前途的微生物聚合物,在工业,农业和医药领域具有广泛的应用。在这项研究中,分离出具有耐热特性的新型不依赖谷氨酸的γ-PGA菌株,并将其鉴定为枯草芽孢杆菌GXG-5,然后对其产物进行了表征。通过单因素试验对发酵过程进行了优化,结果表明,高温(50°C)特别适用于GXG-5生产γ-PGA。在10 L发酵罐中,在50°C时γ-PGA的收率达到19.50±0.75 g / L,底物转化效率为78%。在最佳发酵条件下比较GXG-5和GXA-28(谷氨酸依赖性菌株),GXG-5的γ-PGA产量比GXA-28高19.0%,GXG-5也优于GXA -28碳源和底物的可用性。此外,通过基因组测序分析了GXA-28和GXG-5之间的谷氨酸依赖性差异,结果表明与谷氨酸依赖性差异相关的基因主要涉及碳水化合物的转运,代谢和氨基酸代谢,还有13个与γ-PGA相关的基因。合成在GXG-5中发生了突变。这项研究提供了一种潜在的不依赖谷氨酸盐的菌株来替代γ-PGA生产中的谷氨酸盐依赖的菌株,并分享了在基因组水平上了解谷氨酸盐依赖差异的新颖信息。电子补充材料本文的在线版本(10.1186 / s13568-017 -0512-0)包含补充材料,授权用户可以使用。

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