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通过微尺度培养实现对淡紫灰链霉菌的快速可靠菌株鉴定

Fast and reliable strain characterization of Streptomyces lividans through micro-scale cultivation.

作者信息

Koepff Joachim, Keller Matthias, Tsolis Konstantinos C, Busche Tobias, Rückert Christian, Hamed Mohamed B, Anné Jozef, Kalinowski Joern, Wiechert Wolfgang, Economou Anastassios, Oldiges Marco

机构信息

Forschungszentrum Jülich GmbH, Institute of Bio- and Geosciences, IBG-1: Biotechnology, Leo-Brandt-Straße, 52428, Jülich, Germany.

Laboratory of Molecular Bacteriology, Department of Microbiology and Immunology, Rega Institute for Medical Research, KU Leuven-University of Leuven, Leuven, Belgium.

出版信息

Biotechnol Bioeng. 2017 Sep;114(9):2011-2022. doi: 10.1002/bit.26321. Epub 2017 May 23.

Abstract

Filamentous organisms of the genus Streptomyces play an important role in industrial production processes, due to their extensive secondary metabolism variability, as well as their ability to secrete efficiently large amounts of (heterologous) proteins. While genetic engineering tools are available to rapidly build up large strain libraries, the subsequent strain screening and bioprocess development still constitutes a bottleneck. This is due to the lack of reliable parallelized and accelerated cultivation techniques for morphologically challenging organisms. To address this challenge, we developed an integrated cultivation workflow for Streptomyces lividans based on a parallelized shaken 48-well microtiter-plate (MTP) cultivation device. In a first step, a feasible pre-culture method was identified and validated, revealing high comparability in subsequent main cultivations (coefficient of variation of 1.1% for in-plate replicates and 3.2% between different pre-cultures). When validating the growth performance in 1 mL MTP cultivation against an established 1,000 mL lab-scale cultivation system, highly comparable cultivation patterns were found for online (pH, dissolved oxygen), as well as for offline derived parameters (glucose uptake, cell-dry-weight, and pellet size). Additionally, the two cultivation regimes were compared with respect to transcriptional and protein secretion activity of Streptomyces, showing overall good comparability with minor, but well explainable discrepancies, most probably caused by different energy dissipation (shaking vs. stirring) and adaption effects due to different illumination conditions. Embedded within the presented cultivation workflow, the 1 mL MTP-based parallelized cultivation system seems to be a suitable screening tool for filamentous and industrial relevant organisms like Streptomyces. This can contribute to widen the field of application for these organisms and facilitate screening and early-stage bioprocess development. Biotechnol. Bioeng. 2017;114: 2011-2022. © 2017 Wiley Periodicals, Inc.

摘要

链霉菌属的丝状生物体在工业生产过程中发挥着重要作用,这归因于其广泛的次级代谢变异性以及高效分泌大量(异源)蛋白质的能力。虽然有基因工程工具可用于快速构建大型菌株库,但随后的菌株筛选和生物工艺开发仍然是一个瓶颈。这是因为缺乏针对形态具有挑战性的生物体的可靠并行化和加速培养技术。为应对这一挑战,我们基于并行化振荡48孔微量滴定板(MTP)培养装置,开发了一种用于淡紫链霉菌的综合培养工作流程。第一步,确定并验证了一种可行的预培养方法,结果表明在随后的主要培养中具有高度可比性(板内重复的变异系数为1.1%,不同预培养之间为3.2%)。当针对已建立的1000 mL实验室规模培养系统验证1 mL MTP培养中的生长性能时,发现在线(pH、溶解氧)以及离线衍生参数(葡萄糖摄取、细胞干重和菌球大小)的培养模式具有高度可比性。此外,还比较了两种培养方式在链霉菌转录和蛋白质分泌活性方面的情况,总体显示出良好的可比性,存在一些微小但可合理解释的差异,很可能是由不同的能量耗散(振荡与搅拌)以及不同光照条件导致的适应效应引起的。嵌入所提出的培养工作流程中,基于1 mL MTP的并行化培养系统似乎是用于丝状且与工业相关的生物体(如链霉菌)的合适筛选工具。这有助于拓宽这些生物体的应用领域,并促进筛选和早期生物工艺开发。《生物技术与生物工程》2017年;114:2011 - 2022。© 2017威利期刊公司

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