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An improved versatile and efficient modular plasmid assembly system for expression analyses of genes in

机译:一种改进的通用和高效的模块化质粒组装系统用于基因的表达分析

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摘要

Xanthomonas oryzae pathovars oryzae (Xoo) and oryzicola (Xoc) infect rice, causing bacterial blight and bacterial leaf streak, respectively, which are two economically important bacterial diseases in paddy fields. The interactions of Xoo and Xoc with rice can be used as models for studying fundamental aspects of bacterial pathogenesis and host tissue specificity. However, an improved vector system for gene expression analysis is desired for Xoo and Xoc because some broad host range vectors that can replicate stably in X. oryzae pathovars are low‐copy number plasmids. To overcome this limitation, we developed a modular plasmid assembly system to transfer the functional DNA modules from the entry vectors into the pHM1‐derived backbone vectors on a high‐copy number basis. We demonstrated the feasibility of our vector system for protein detection, and quantification of virulence gene expression under laboratory conditions and in association with host rice and nonhost tobacco cells. This system also allows execution of a mutant complementation equivalent to the single‐copy chromosomal integration system and tracing of pathogens in rice leaf. Based on this assembly system, we constructed a series of protein expression and promoter‐probe vectors suitable for classical double restriction enzyme cloning. These vector systems enable cloning of all genes or promoters of interest from Xoo and Xoc strains. Our modular assembly system represents a versatile and highly efficient toolkit for gene expression analysis that will accelerate studies on interactions of X. oryzae with rice.
机译:Xanthomonas Oryzae Pathovars oryzae(xoo)和oryzicola(xoc)感染米饭,分别引起细菌枯萎病和细菌叶片条纹,这是稻田中的两个经济上重要的细菌疾病。 XOO和XOC与水稻的相互作用可用作研究细菌发病机制和宿主组织特异性的基本方面的模型。然而,XOO和XOC期望用于基因表达分析的改进的载体系统,因为可以在X. oryzae病变中稳定复制的一些宽的宿主范围载体是低拷贝数质粒。为了克服这种限制,我们开发了一种模块化质粒组装系统,以在高拷贝数基础上将功能性DNA模块从入口载体转移到PHM1衍生的骨架向量中。我们证明了我们的蛋白质检测系统的可行性,以及实验室条件下的毒力基因表达的定量和与宿主水稻和非健康烟草细胞相关的定量。该系统还允许执行相当于单拷贝染色体集成系统的突变互补和稻叶中病原体的追踪。基于该组装系统,我们构建了一系列蛋白质表达和适用于经典双限制酶克隆的启动子探针载体。这些载体系统能够克隆来自XOO和XOC菌株的所有感兴趣的基因或促进者。我们的模块化装配系统代表了一种多功能和高效的基因表达分析工具包,其将加速研究X. Oryzae与米饭的相互作用。

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