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首页> 外文期刊>Applied and Environmental Microbiology >Cloning of Genes Involved in the Synthesis of Pyrrolnitrin from Pseudomonas fluorescens and Role of Pyrrolnitrin Synthesis in Biological Control of Plant Disease
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Cloning of Genes Involved in the Synthesis of Pyrrolnitrin from Pseudomonas fluorescens and Role of Pyrrolnitrin Synthesis in Biological Control of Plant Disease

机译:荧光假单胞菌合成吡咯菌素相关基因的克隆及其在植物病害生物防治中的作用

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A soil isolate of Pseudomonas fluorescens (BL915) was shown to be an effective antagonist of Rhizoctonia solani-induced damping-off of cotton. Investigation of the biological basis of this antagonism revealed that the strain produces pyrrolnitrin, a secondary metabolite known to inhibit R. solani and other fungi. Mutants of strain BL915 that did not produce pyrrolnitrin and did not suppress damping-off of cotton by R. solani were generated by exposure to N-methyl-N′ -nitro-N-nitrosoguanidine. A gene region that was capable of restoring pyrrolnitrin production to the non-pyrrolnitrin-producing mutants and of conferring this ability upon two other P. fluorescens strains not otherwise known to produce this compound or to be capable of suppressing damping-off caused by R. solani was isolated from strain BL915. The non-pyrrolnitrin-producing strains (mutants of BL915 and the other two P. fluorescens strains) which synthesized pyrrolnitrin after the introduction of the gene region from strain BL915 were also shown to be equal to strain BL915 in their ability to suppress R. solani-induced damping-off of cotton. These results indicate that we have isolated from P. fluorescens BL915 a gene(s) that has a role in the synthesis of pyrrolnitrin and that the production of this compound has a role in the ability of this strain to control damping-off of cotton by R. solani.
机译:荧光假单胞菌(BL915)的土壤分离物被证明是茄状枯萎病菌诱导的棉花阻尼的有效拮抗剂。对这种拮抗作用的生物学基础进行的研究表明,该菌株产生了吡咯硝菌素,这是一种次生代谢产物,已知可以抑制茄形梭菌和其他真菌。通过暴露于N-甲基-N'-硝基-N-亚硝基胍,产生了不产生吡咯菌素且不抑制solani R. solani阻尼棉花的菌株BL915的突变体。一个基因区域,它能够将吡咯硝菌素的产生恢复为不产生吡咯菌素的突变体,并且可以将这种能力赋予另外两个未知的荧光假单胞菌菌株以产生该化合物,或者能够抑制由R引起的衰减。从菌株BL915中分离出solani。在从菌株BL915导入基因区域后合成吡咯硝酸的非吡咯菌素生产菌株(BL915的突变体和另外两个荧光假单胞菌菌株)也显示出与菌株BL915相同的抑制溶胶状梭菌的能力。引起的棉花阻尼。这些结果表明,我们已经从荧光假单胞菌BL915中分离出了一种在吡咯硝酸酯的合成中起作用的基因,并且该化合物的产生在该菌株控制棉花的棉花阻尼方面具有一定作用。索拉尼(R. solani)。

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