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Chassis organism from Corynebacterium glutamicum - a top-down approach to identify and delete irrelevant gene clusters

机译:谷氨酸棒杆菌底盘生物-一种自上而下的方法来鉴定和删除无关的基因簇

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摘要

For synthetic biology applications, a robust structural basis is required, which can be constructed either from scratch or in a top-down approach starting from any existing organism. In this study, we initiated the top-down construction of a chassis organism from Corynebacterium glutamicum ATCC 13032, aiming for the relevant gene set to maintain its fast growth on defined medium. We evaluated each native gene for its essentiality considering expression levels, phylogenetic conservation, and knockout data. Based on this classification, we determined 41 gene clusters ranging from 3.7 to 49.7 kbp as target sites for deletion. 36 deletions were successful and 10 genome-reduced strains showed impaired growth rates, indicating that genes were hit, which are relevant to maintain biological fitness at wild-type level. In contrast, 26 deleted clusters were found to include exclusively irrelevant genes for growth on defined medium. A combinatory deletion of all irrelevant gene clusters would, in a prophage-free strain, decrease the size of the native genome by about 722 kbp (22%) to 2561 kbp. Finally, five combinatory deletions of irrelevant gene clusters were investigated. The study introduces the novel concept of relevant genes and demonstrates general strategies to construct a chassis suitable for biotechnological application.
机译:对于合成生物学应用,需要坚固的结构基础,可以从头开始或以自上而下的方式从任何现有生物开始构建。在这项研究中,我们启动了谷氨酸棒杆菌ATCC 13032底盘生物的自上而下的构建,旨在使相关基因集在定义的培养基上保持其快速生长。考虑到表达水平,系统发育保守性和敲除数据,我们评估了每个天然基因的必要性。基于此分类,我们确定了41个基因簇,其范围从3.7到49.7 kbp,作为缺失的目标位点。成功删除了36个基因,减少了10个基因组减少的菌株显示了减慢的生长速度,表明基因被击中,这与保持野生型水平的生物适应性有关。相比之下,发现26个缺失的簇仅包含无关的基因以在确定的培养基上生长。在无言语的菌株中,所有不相关基因簇的组合缺失将使天然基因组的大小减少约722 kbp(22%)至2561 kbp。最后,研究了五个无关基因簇的组合缺失。该研究介绍了相关基因的新概念,并展示了构建适合生物技术应用的底盘的一般策略。

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