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The sigma 54 genes rpoN1 and rpoN2 of Xanthomonas citri subsp. citri play different roles in virulence, nutrient utilization and cell motility
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作者 gibson kamau gicharu SUN Dong-ling +4 位作者 HU Xun FAN Xiao-jing ZHUO Tao WU Chuan-wan ZOU Hua-song 《Journal of Integrative Agriculture》 SCIE CAS CSCD 2016年第9期2032-2039,共8页
The sigma factor 54(σ^(54)) controls the expression of many genes in response to nutritional and environmental conditions. There are two σ^(54) genes, rpo N1(XAC1969) and rpo N2(XAC2972), in Xanthomonas ci... The sigma factor 54(σ^(54)) controls the expression of many genes in response to nutritional and environmental conditions. There are two σ^(54) genes, rpo N1(XAC1969) and rpo N2(XAC2972), in Xanthomonas citri subsp. citri. To investigate their functions, the deletion mutants ΔrpoN1, ΔrpoN2 and ΔrpoN1N2 were constructed in this study. All the mutants delayed canker development in low concentration inoculation in citrus plants. The bacterial growth of mutants was retarded in the medium supplemented with nitrogen and carbon resources. Under either condition, the influence degree caused by deletion of rpoN 2 was larger than the deletion of rpoN 1. Remarkably, the mutant ΔrpoN 1 showed a reduction in cell motility, while the mutant Δrpo N2 increased cell motility. Our data suggested that the rpoN 1 and rpoN 2 play diverse roles in X. citri subsp. citri. 展开更多
关键词 Xanthomonas citri subsp citri rpoN cell motility citrus canker full virulence
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茄科作物青枯菌NADH脱氢酶F亚基在细胞运动和致病性中的功能研究(英文) 被引量:1
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作者 童建华 gibson kamau gicharu +3 位作者 户勋 范晓静 卓涛 邹华松 《微生物学报》 CAS CSCD 北大核心 2019年第10期1968-1968,1960-1967,共2页
【目的】劳尔氏菌(Ralstonia solanacearum)在茄科作物上引起严重的细菌性青枯病,本研究旨在发掘青枯劳尔氏菌与致病相关的基因。【方法】利用Tn5转座子构建随机插入突变体,分析生物膜形成、细胞运动和致病性;对有表型变化的突变体,运用... 【目的】劳尔氏菌(Ralstonia solanacearum)在茄科作物上引起严重的细菌性青枯病,本研究旨在发掘青枯劳尔氏菌与致病相关的基因。【方法】利用Tn5转座子构建随机插入突变体,分析生物膜形成、细胞运动和致病性;对有表型变化的突变体,运用TAIL-PCR方法鉴定Tn5插入位点,确定所突变的基因。【结果】以模式菌株GMI000为出发菌,总共获得了400个突变体,其中2个突变体不能形成生物膜,在软琼脂平板上的运动能力下降;接种感病番茄植物,这2个突变体都不能引起萎焉症状。TAIL-PCR结果显示,2个突变体的Tn5插入位点都在NADH脱氢酶F亚基(nuoF)中,距离翻译起始位点分别为103-bp和225-bp。ripAY基因启动子推动的nuoF基因互补载体,完全恢复了2个突变体的表型。【结论】NADH脱氢酶复合物是微生物呼吸电子传递链中的第一步催化酶。我们的结果表明,NADH脱氢酶复合物对R. solanacearum生物膜形成、细胞运动和致病性也有重要作用。 展开更多
关键词 青枯菌 NADH脱氢酶 致病性 nuoF 运动
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