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Surface motility in Pseudomonas sp. DSS73 is required for efficient biological containment of the root-pathogenic microfungi Rhizoctonia solani and Pythium ultimum

机译:Pseudomonas sp中的表面运动。 DSS73需要高效的生物抑制根病发生微生犬Rhizoctonia solani和茄子

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Pseudomonas sp. DSS73 was isolated from the rhizoplane of sugar beet seedlings. This strain exhibits antagonism towards the root-pathogenic microfungi Pythium ultimum and Rhizoctonia solani. Production of the cyclic lipopeptide amphisin in combination with expression of flagella enables the growing bacterial culture to move readily over the surface of laboratory media. Amphisin is a new member of a group of dual-functioning compounds such as tensin, viscosin and viscosinamid that display both biosurfactant and antifungal properties. The ability of DSS73 to efficiently contain root-pathogenic microfungi is shown to arise from amphisin-dependent surface translocation and growth by which the bacterium can lay siege to the fungi. The synergistic effects of surface motility and synthesis of a battery of antifungal compounds efficiently contain and terminate growth of the microfungi.
机译:Pseudomonas sp。从甜菜幼苗的rhizoplane中分离出DSS73。该菌株对根病发生微生钠钙氨基鎓Ultimum和Rhizoctonia solani表现出拮抗作用。环状脂肽两性与鞭毛的表达一起生产使得生长的细菌培养物能够容易地在实验室介质表面上移动。 Amphisin是一组双重功能化合物的新成员,如苔藓素,粘菌素和粘氨酸吲哚胺,其显示生物活性剂和抗真菌性能。 DSS73有效地含有根致致病微生物的能力被显示出从依赖依赖性表面易位和生长产生,并且细菌可以将围绕真菌偏移。表面活力和合成抗真菌化合物的合成的协同作用有效含有和终止微生物的生长。

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