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解脂耶氏酵母形态突变体能在生物反应器中实现持久的原位固定化。

Yarrowia lipolytica morphological mutant enables lasting in situ immobilization in bioreactor.

机构信息

Microbial Processes and Interactions, TERRA Teaching and Research Center, University of Liège - Gembloux Agro-Bio Tech, Av. de la Faculté, 2B. 5030, Gembloux, Belgium.

Micalis Institute, INRA, AgroParisTech (UMR1319), Université Paris-Saclay, Domaine de Vilvert (Bat.526), Jouy-en Josas, 78352, France.

出版信息

Appl Microbiol Biotechnol. 2018 Jul;102(13):5473-5482. doi: 10.1007/s00253-018-9006-5. Epub 2018 Apr 26.

Abstract

In the present study, we have isolated and characterized a Yarrowia lipolytica morphological mutant growing exclusively in the pseudohyphal morphology. The gene responsible for this phenotype, YALI0E06519g, was identified as homologous to the mitosis regulation gene HSL1 from Saccharomyces cerevisiae. Taking advantage of its morphology, we achieved the immobilization of the Δhsl1 mutant on the metallic structured packing of immobilized-cell bioreactors. We obtained significant cell retention and growth on the support during shake flask and bioreactor experiments without an attachment step prior to the culture. The system of medium aspersion on the packing ensured oxygen availability in the absence of agitation and minimized the potential release of cells in the culture medium. Additionally, the metallic packing proved its facility of cleaning and sterilization after fermentation. This combined use of morphological mutation and bioreactor design is a promising strategy to develop continuous processes for the production of recombinant protein and metabolites using Y. lipolytica. Graphical Abstract.

摘要

在本研究中,我们分离并鉴定了一株仅以假菌丝形态生长的异常酿酒酵母(Yarrowia lipolytica)形态突变株。负责该表型的基因 YALI0E06519g 被鉴定为与酿酒酵母的有丝分裂调控基因 HSL1 同源。利用其形态,我们成功地将Δhsl1 突变株固定在固定化细胞生物反应器的金属结构化填料上。在摇瓶和生物反应器实验中,无需在培养前进行附着步骤,我们在载体上获得了显著的细胞保留和生长。介质在填料上的分散系统确保了在没有搅拌的情况下氧气的可用性,并最大限度地减少了细胞在培养基中的潜在释放。此外,金属填料在发酵后易于清洁和消毒。这种形态突变和生物反应器设计的组合使用是一种很有前途的策略,可用于使用酿酒酵母(Yarrowia lipolytica)连续生产重组蛋白和代谢物的过程。

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