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评估恶臭假单胞菌KT2440基因组中的染色体插入位点以进行可预测的生物系统设计。

Evaluation of chromosomal insertion loci in the Pseudomonas putida KT2440 genome for predictable biosystems design.

作者信息

Chaves Julie E, Wilton Rosemarie, Gao Yuqian, Munoz Nathalie Munoz, Burnet Meagan C, Schmitz Zachary, Rowan John, Burdick Leah H, Elmore Joshua, Guss Adam, Close Dan, Magnuson Jon K, Burnum-Johnson Kristin E, Michener Joshua K

机构信息

Biosciences Division, Oak Ridge National Laboratory, P.O. Box 2008, MS6342 Oak Ridge, Tennessee, 37831-6342, USA.

Argonne National Laboratory, USA.

出版信息

Metab Eng Commun. 2020 Jul 19;11:e00139. doi: 10.1016/j.mec.2020.e00139. eCollection 2020 Dec.

Abstract

The development of strains for industrial production of fuels and chemicals will require the integration of heterologous genes and pathways into the chromosome. Finding the most appropriate integration site to maximize strain performance is an essential part of the strain design process. We characterized seven chromosomal loci in KT2440 for integration of a fluorescent protein expression construct. Insertion in five of the loci did not affect growth rate, but fluorescence varied by up to 27-fold. Three sites displaying a diversity of phenotypes with the fluorescent reporter were also chosen for the integration of a gene encoding a muconate importer. Depending on the integration locus, expression of the importer varied by approximately 3-fold and produced significant phenotypic differences. This work demonstrates the impact of the integration location on host viability, gene expression, and overall strain performance.

摘要

开发用于工业生产燃料和化学品的菌株需要将异源基因和途径整合到染色体中。找到最合适的整合位点以最大化菌株性能是菌株设计过程的重要组成部分。我们对KT2440中的七个染色体位点进行了表征,用于整合荧光蛋白表达构建体。在其中五个位点插入不影响生长速率,但荧光变化高达27倍。还选择了三个用荧光报告基因显示出不同表型的位点来整合编码粘康酸转运蛋白的基因。根据整合位点的不同,转运蛋白的表达变化约3倍,并产生了显著的表型差异。这项工作证明了整合位置对宿主活力、基因表达和整体菌株性能的影响。

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