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增强型生长驱动逐步诱导表达系统在耐盐脱硫硫代碱弧菌中的开发。

Enhanced growth-driven stepwise inducible expression system development in haloalkaliphilic desulfurizing Thioalkalivibrio versutus.

机构信息

Key Laboratory of Green Process and Engineering, State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences (CAS), Beijing 100190, China; University of Chinese Academy of Sciences, Beijing 100049, China.

Key Laboratory of Green Process and Engineering, State Key Laboratory of Biochemical Engineering, Institute of Process Engineering, Chinese Academy of Sciences (CAS), Beijing 100190, China; University of Chinese Academy of Sciences, Beijing 100049, China; Processes Design and Development Department, Egyptian Petroleum Research Institute, Nasr City, 11727 Cairo, Egypt.

出版信息

Bioresour Technol. 2019 Sep;288:121486. doi: 10.1016/j.biortech.2019.121486. Epub 2019 May 15.

Abstract

Highly toxic and flammable HS gas has become an environmental threat. Because of its ability to efficiently remove HS by oxidation, Thioalkalivibrio versutus is gaining more attention. Haloalkaliphilic autotrophs, like the bio-desulfurizing T. versutus, grow weakly. Weak growth makes any trial for developing potent genetic tools required for genetic engineering far from achieved. In this study, the fed-batch strategy improved T. versutus growth by 1.6 fold in maximal growth rate, 9-fold in O.D values and about 3-fold in biomass and protein productions. The strategy also increased the favorable desulfurization product, sulfur, by 2.7 fold in percent yield and 1.5-fold in diameter. A tight iron-inducible expression system for T. versutus was successfully developed. The system was derived from fed-batch cultivation coupled with new design, build, test and validate (DPTV) approach. The inducible system was validated by toxin expression. Fed-batch cultivation coupled with DPTV approach could be applied to other autotrophs.

摘要

高毒性和易燃的 HS 气体已经成为一种环境威胁。由于其能够通过氧化有效地去除 HS,Thioalkalivibrio versutus 越来越受到关注。像生物脱硫 T. versutus 这样的嗜盐自养生物生长较弱。生长较弱使得任何开发用于基因工程的有效遗传工具的尝试都远未实现。在这项研究中,分批补料策略使 T. versutus 的生长速度提高了 1.6 倍,最大生长速率提高了 9 倍,OD 值提高了约 3 倍,生物量和蛋白质产量提高了 3 倍。该策略还将有利的脱硫产物硫的产率提高了 2.7 倍,直径提高了 1.5 倍。成功开发了一种用于 T. versutus 的紧密铁诱导表达系统。该系统源自分批补料培养,并结合了新的设计、构建、测试和验证 (DPTV) 方法。诱导系统通过毒素表达进行了验证。分批补料培养与 DPTV 方法的结合可应用于其他自养生物。

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