...
首页> 外文期刊>Microbial Cell Factories >Rocking Aspergillus : morphology-controlled cultivation of Aspergillus niger in a wave-mixed bioreactor for the production of secondary metabolites
【24h】

Rocking Aspergillus : morphology-controlled cultivation of Aspergillus niger in a wave-mixed bioreactor for the production of secondary metabolites

机译:摇摆曲霉菌:在波混生物反应器中形态控制的黑曲霉培养,用于生产次生代谢产物

获取原文

摘要

Filamentous fungi including Aspergillus niger are cell factories for the production of organic acids, proteins and bioactive compounds. Traditionally, stirred-tank reactors (STRs) are used to cultivate them under highly reproducible conditions ensuring optimum oxygen uptake and high growth rates. However, agitation via mechanical stirring causes high shear forces, thus affecting fungal physiology and macromorphologies. Two-dimensional rocking-motion wave-mixed bioreactor cultivations could offer a viable alternative to fungal cultivations in STRs, as comparable gas mass transfer is generally achievable while deploying lower friction and shear forces. The aim of this study was thus to investigate for the first time the consequences of wave-mixed cultivations on the growth, macromorphology and product formation of A. niger. We investigated the impact of hydrodynamic conditions on A. niger cultivated at a 5?L scale in a disposable two-dimensional rocking motion bioreactor (CELL-tainer?) and a BioFlo STR (New Brunswick?), respectively. Two different A. niger strains were analysed, which produce heterologously the commercial drug enniatin B. Both strains expressed the esyn1 gene that encodes a non-ribosomal peptide synthetase ESYN under control of the inducible Tet-on system, but differed in their dependence on feeding with the precursors d-2-hydroxyvaleric acid and l-valine. Cultivations of A. niger in the CELL-tainer resulted in the formation of large pellets, which were heterogeneous in size (diameter 300–800?μm) and not observed during STR cultivations. When talcum microparticles were added, it was possible to obtain a reduced pellet size and to control pellet heterogeneity (diameter 50–150?μm). No foam formation was observed under wave-mixed cultivation conditions, which made the addition of antifoam agents needless. Overall, enniatin B titres of about 1.5–2.3?g?L?1 were achieved in the CELL-tainer? system, which is about 30–50% of the titres achieved under STR conditions. This is the first report studying the potential use of single-use wave-mixed reactor systems for the cultivation of A. niger. Although final enniatin yields are not competitive yet with titres achieved under STR conditions, wave-mixed cultivations open up new avenues for the cultivation of shear-sensitive mutant strains as well as high cell-density cultivations.
机译:包括黑曲霉在内的丝状真菌是生产有机酸,蛋白质和生物活性化合物的细胞工厂。传统上,搅拌罐反应器(STRs)用于在高度可复制的条件下进行培养,以确保最佳的氧气吸收和高生长速率。但是,通过机械搅拌进行搅拌会产生高剪切力,从而影响真菌的生理和宏观形态。二维摇摆运动波混合生物反应器的培养可以为STR中的真菌培养提供可行的替代方法,因为通常可以实现可比的气体传质,同时部署较低的摩擦力和剪切力。因此,本研究的目的是首次调查波浪混合栽培对黑曲霉生长,宏观形态和产物形成的影响。我们研究了流体动力学条件对分别在一次性二维摇摆运动生物反应器(CELL-tainer?)和BioFlo STR(New Brunswick?)中以5?L规模培养的黑曲霉的影响。分析了两个不同的黑曲霉菌株,它们异源地产生了商品药物enniatinB。两个菌株都表达了在可诱导的Tet-on系统控制下编码非核糖体肽合成酶ESYN的esyn1基因,但它们对饲料的依赖性不同与前体d-2-羟基戊酸和1-缬氨酸。在CELL容器中进行黑曲霉的培养导致形成大颗粒,颗粒大小不一(直径300–800?μm),而在STR培养过程中未观察到。当添加滑石微粒时,可以减小颗粒尺寸并控制颗粒异质性(直径50-150μm)。在波浪混合培养条件下未观察到泡沫形成,这使得无需添加消泡剂。总体而言,在CELL样品瓶中获得了约1.5–2.3?g?L?1的恩尼汀B滴度。系统,大约是STR条件下获得的效价的30–50%。这是第一份研究一次性波混反应器系统在黑曲霉栽培中的潜在用途的报告。尽管最终的enenatin产量与在STR条件下获得的效价相比没有竞争力,但波混栽培为剪切敏感突变菌株的栽培以及高细胞密度的栽培开辟了新的途径。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号