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Article Dans Une Revue Applied and Environmental Microbiology Année : 2002

Seasonal fluctuations and long-term persistence of pathogenic populations of Agrobacterium spp. in soils.

Résumé

Short- and long-term persistence of pathogenic (i.e., tumor forming) agrobacteria in soil was investigated in six nursery plots with a history of high crown gall incidence. No pathogenic Agrobacterium strains were isolated in soil samples taken in fall and winter in any plots, but such strains were isolated from both bulk soils and weed rhizospheres (over 0.5 x 10(5) pathogenic CFU/g of bulk soil or rhizosphere) in three out of six plots in spring and summer. PCR amplifications of a vir sequence from DNA extracted from soil confirmed the presence of Ti plasmids in summer and their absence in fall and winter. The results indicate that strains that harbor a Ti plasmid had an unforeseen positive fitness versus Ti plasmid-free strains in soil and rhizosphere in spring and summer in spite of the apparent absence of tumor, and hence of opines. The gain of fitness occurred during a bloom of all cultivable agrobacteria observed only in conducive soils. An evolution of the pathogenic population was recorded during a 4-year period in one particularly conducive soil. In 1990, the pathogenic population in this soil consisted of only biovar 1 strains harboring both octopine- and nopaline-type Ti plasmids. In 1994, it consisted of only nopaline-type Ti plasmids equally distributed among biovar 1 and 2 strains. These results suggest that nopaline-type Ti plasmids conferred a better survival ability than octopine-type Ti plasmids to biovar 2 agrobacteria under the present field conditions.

Dates et versions

hal-00145324 , version 1 (09-05-2007)

Identifiants

Citer

Z. Krimi, A. Petit, Christophe Mougel, Y. Dessaux, X. Nesme. Seasonal fluctuations and long-term persistence of pathogenic populations of Agrobacterium spp. in soils.. Applied and Environmental Microbiology, 2002, 68 (7), pp.3358-65. ⟨10.1128/AEM.68.7.3358-3365.2002⟩. ⟨hal-00145324⟩
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