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PhoR/PhoP two component regulatory system affects biocontrol capability of Bacillus subtilis NCD-2

机译:PhoR / PhoP两组分调节系统影响枯草芽孢杆菌NCD-2的生物防治能力

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摘要

The Bacillus subtilis strain NCD-2 is an important biocontrol agent against cotton verticillium wilt and cotton sore shin in the field, which are caused by Verticillium dahliae Kleb and Rhizoctonia solani Kuhn, respectively. A mutant of strain NCD-2, designated M216, with decreased antagonism to V. dahliae and R. solani, was selected by mini-Tn10 mutagenesis and in vitro virulence screening. The inserted gene in the mutant was cloned and identified as the phoR gene, which encodes a sensor kinase in the PhoP/PhoR two-component system. Compared to the wild-type strain, the APase activities of the mutant was decreased significantly when cultured in low phosphate medium, but no obvious difference was observed when cultured in high phosphate medium. The mutant also grew more slowly on organic phosphate agar and lost its phosphatidylcholine-solubilizing ability. The suppression of cotton seedling damping-off in vivo and colonization of the rhizosphere of cotton also decreased in the mutant strain when compared with the wild type strain. All of these characteristics could be partially restored by complementation of the phoR gene in the M216 mutant.
机译:枯草芽孢杆菌NCD-2菌株是田间棉花黄萎病和棉花疮胫的重要生物防治剂,棉花黄萎病和棉花疮胫分别是由黄萎病菌和茄根枯菌引起的。通过mini-Tn10诱变和体外毒力筛选,筛选出了NCD-2菌株的突变体,命名为M216,其对大丽果弧菌和茄形假单胞菌的拮抗作用降低。克隆了突变体中插入的基因,并将其鉴定为phoR基因,该基因在PhoP / PhoR两组分系统中编码传感器激酶。与野生型菌株相比,该突变体在低磷酸盐培养基中培养时APase活性明显降低,而在高磷酸盐培养基中培养时无明显差异。该突变体在有机磷酸琼脂上的生长也更加缓慢,并且失去了其磷脂酰胆碱的溶解能力。与野生型菌株相比,突变株在体内抑制棉花幼苗阻尼和抑制棉花根际定植。所有这些特征都可以通过M216突变体中phoR基因的互补而部分恢复。

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