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An improved protein expression system for T3SS genes regulation analysis in Xanthomonas oryzae pv. oryzae 被引量:2
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作者 XU Jin-bo ZHANG Cui-ping +5 位作者 WUNIERBIEKE Mei-li YANG Xiao-fei LI Yi-lang CHEN Xiao-bin CHEN Gong-you ZOU Li-fang 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2019年第6期1189-1198,共10页
Xanthomonas oryzea pv.oryzae(Xoo)is the causal agent of bacterial blight of rice,which is a significant threat to many of rice-growing regions.The type Ⅲ secretion system(T3SS)is an essential virulence factor in Xoo.... Xanthomonas oryzea pv.oryzae(Xoo)is the causal agent of bacterial blight of rice,which is a significant threat to many of rice-growing regions.The type Ⅲ secretion system(T3SS)is an essential virulence factor in Xoo.Expression of the T3SS is often induced in the host environment or in hrp-inducing medium but is repressed in nutrient-rich medium.The elucidation of molecular mechanism underlying induction of T3SS genes expression is a very important step to lift the veil on global virulence regulation network in Xoo.Thus,an efficient and reliable genetic tool system is required for detection of the T3SS proteins.In this study,we constructed a protein expression vector pH3-flag based on the backbone of pHM1,a most widely used vector in Xoo strains,especially a model strain PXO99A.This vector contains a synthesized MCS-FLAG cassette that consists of a multiple cloning site(MCS),containing a modified pUC18 polylinker,and Flag as a C-terminal tag.The cassette is flanked by transcriptional terminators to eliminate interference of external transcription enabling detection of accurate protein expression.We evaluated the potential of this expression vector as T3SS proteins detection system and demonstrated it is applicable in the study of T3SS genes expression regulation in Xoo.This improved expression system could be very effectively used as a molecular tool in understanding some virulence genes expression and regulation in Xoo and other Xanthomonas spp. 展开更多
关键词 XANTHOMONAS ORYZAE pv.oryzae broad-host range VECTOR expression VECTOR T3ss genes
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利用桥梁载体策略构建水稻条斑病菌T3SS基因诱导表达检测体系 被引量:1
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作者 吾尼尔别克·美丽 杨小菲 +6 位作者 张翠萍 杨瑞环 李生樟 李逸朗 陈功友 陈晓斌 邹丽芳 《植物病理学报》 CAS CSCD 北大核心 2019年第6期846-856,共11页
水稻条斑病菌(Xanthomonas oryzae pv.oryzicola,Xoc)侵染水稻,引起细菌性条斑病(bacterial leaf streak,BLS)。Xoc主要依靠hrp基因簇(T3SS基因)编码的III型分泌系统(type III secretion system,T3SS)将效应蛋白注入水稻细胞中,激发寄... 水稻条斑病菌(Xanthomonas oryzae pv.oryzicola,Xoc)侵染水稻,引起细菌性条斑病(bacterial leaf streak,BLS)。Xoc主要依靠hrp基因簇(T3SS基因)编码的III型分泌系统(type III secretion system,T3SS)将效应蛋白注入水稻细胞中,激发寄主水稻的感(抗)病性。为了准确在Xoc中进行T3SS基因表达调控的分析,本研究设计出桥梁载体策略,将目标基因的启动子或者功能片段构建在高拷贝的桥梁载体,获得融合表达元件,通过亚克隆的方式将融合元件转入骨架载体上,获得用于转录表达和蛋白表达分析的载体。为了验证该策略的可行性,选取hrpG、hrpX和hrcC基因构建了相应的启动子探针载体和蛋白表达载体,将这些载体导入毒性调控子基因trh、lrpX和zur的突变体中,GUS活性测定、荧光定量PCR以及蛋白免疫杂交结果显示:在trh、lrpX和zur的突变体中,hrpG、hrpX和hrcC的转录表达水平、mRNA水平和蛋白表达水平呈现一致。这表明这套桥梁载体策略能够有效应用于T3SS基因转录表达和蛋白表达的分析。综上所述,运用桥梁载体能够克服低拷贝载体DNA遗传操作效率低的缺陷,这一策略也适用于毒性相关基因调控机理的研究,这将为Xoc-水稻互作研究提供高效的工作系统。 展开更多
关键词 水稻条斑病菌 T3ss基因 启动子探针载体 蛋白表达载体
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