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首页> 外文期刊>Applied Microbiology and Biotechnology >Improved biomass and protein production in solid-state cultures of an Aspergillus sojae strain harboring the Vitreoscilla hemoglobin
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Improved biomass and protein production in solid-state cultures of an Aspergillus sojae strain harboring the Vitreoscilla hemoglobin

机译:固态发酵含玻璃体血红蛋白的大豆曲霉菌株固态培养物中生物量和蛋白质产生的改善

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The biotechnological value of Aspergillus sojae ATCC 20235 (A. sojae) for production of pectinases in solid-state fermentation (SSF) has been demonstrated recently. However, a common drawback of fungal solid-state cultures is the poor diffusion of oxygen into the fungi that limits its growth and biological productivity. The bacterial Vitreoscilla hemoglobin (VHb) has favored the metabolism and productivities of various bacterial and yeast strains besides alleviating hypoxic conditions of its native host, but the use of VHb in filamentous fungi still remains poor explored. Based on the known effects of VHb, this study assessed its applicability to improve A. sojae performance in SSF. The VHb gene (vgb) under control of the constitutive Aspergillus nidulants gpdA promoter was introduced into the genome of A. sojae by Agrobacterium-mediated transformation. Successful fungal transformants were identified by fluorescence microscopy and polymerase chain reaction (PCR) analyses. In solid-state cultures, the content of protease, exo-polygalacturonase (exo-PG), and exo-polymethylgalacturonase (exo-PMG) of the transformed fungus (A. sojae vgb+) improved were 26, 60, and 44 % higher, respectively, in comparison to its parental strain (A. sojae wt). Similarly, biomass content was also 1.3 times higher in the transformant strain. No significant difference was observed in endo-polygalacturonase (endo-PG) content between both fungal strains, suggesting dissimilar effects of VHb towards different enzymatic productions. Overall, our results show that biomass, protease, and exo-pectinase content of A. sojae in SSF can be improved by transformation with VHb.
机译:最近已经证明了大豆曲霉ATCC 20235(大豆曲霉)在固态发酵(SSF)中生产果胶酶的生物技术价值。但是,真菌固态培养的一个共同缺点是氧气向真菌中的扩散较差,这限制了其生长和生物生产力。细菌玻璃体血红蛋白(VHb)除了缓解其天然宿主的低氧条件外,还有利于各种细菌和酵母菌株的代谢和生产力,但是在丝状真菌中使用VHb的方法仍然缺乏探索。基于VHb的已知作用,本研究评估了其在SSF中改善大豆曲霉性能的适用性。通过农杆菌介导的转化,将组成型曲霉gpdA启动子控制下的VHb基因(vgb)引入大豆大豆基因组。通过荧光显微镜和聚合酶链反应(PCR)分析鉴定成功的真菌转化体。在固态培养物中,转化真菌(A. sojae vgb +)的蛋白酶,外切半乳糖苷酶(exo-PG)和外切聚甲基半乳糖醛酸酶(exo-PMG)的含量分别提高了26%,60%和44%,与其亲本菌株(大豆油曲霉)相比。类似地,转化株中的生物质含量也高1.3倍。两种真菌菌株之间的内聚半乳糖醛酸酶(endo-PG)含量均未观察到显着差异,表明VHb对不同酶产生的影响不同。总体而言,我们的结果表明,通过用VHb进行转化,可以提高SSF中大豆油曲霉的生物量,蛋白酶和果胶酶含量。

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