首页> 外文期刊>World Journal of Microbiology & Biotechnology >Microbial transformation of water-insoluble substrates by two types of novel interface bioprocesses, tacky liquid-liquid interface bioreactor and non-aqueous sporular bioconversion system
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Microbial transformation of water-insoluble substrates by two types of novel interface bioprocesses, tacky liquid-liquid interface bioreactor and non-aqueous sporular bioconversion system

机译:两种新型界面生物处理的水不溶性基材的微生物转化,粘性液 - 液界面生物反应器和非水育术生物转化系统

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摘要

Although microbial transformation has been expected as a substitution technology for organic synthesis, microbial toxicity and water-insolubility of synthetic substrates prevent the practical application of the technology. For these problems, the authors have developed two types of interfacial bioprocesses, solid-liquid and liquid-liquid interface bioreactors and applied the systems to many microbial transformations. In the bioreactors, addition of substrates and accumulation of products were remarkably enhanced based on the toxicity alleviation effect on the interfaces and solubilization of substrates and/or products in an organic phase of the bioreactors. Recently, a novel tacky liquid-liquid interface bioreactor has been developed and applied to actinomycetes and yeasts. Furthermore, a novel bioconversion system with fungal spores in an organic phase has been constructed based on the combination of two facts as follows: (i) the fungal spores are never resting cells and are active ones like the vegetable cells, (ii) the fungal spores have the excellent solvent-tolerance. In this review, the tacky liquid-liquid interface bioreactor (L-L IBRtac) and the non-aqueous sporular bioconversion system with immobilized fungal spores (NASB) are mainly given outlines.
机译:虽然预期微生物转化作为有机合成的替代技术,但合成基材的微生物毒性和水不溶性可防止该技术的实际应用。对于这些问题,作者开发了两种类型的界面生物过程,固液和液体液体界面生物反应器,并将该系统应用于许多微生物转化。在生物反应器中,基于对生物反应器的有机相中的底物和/或产物的卵泡和/或产物的胃果和/或溶解的毒性缓解作用显着提高了产品的添加和产物的积累。最近,已经开发了一种新型粘性液 - 液界面生物反应器并应用于放线菌和酵母。此外,基于以下两个事实的组合构建了有机相中有机相中真菌孢子的新型生物转化系统,如下:(i)真菌孢子永远不会静置细胞,并且是植物细胞(II)真菌的活性物质孢子具有优异的耐溶剂耐受性。在该评价中,主要给出了具有固定的真菌孢子(NASB)的粘性液 - 液界面生物反应器(L-L Ibrtac)和非水育术生物转化系统。

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