The rhizosphere as a reservoir for opportunistic human pathogenic bacteria

Ризосфера как резервуар условно-патогенных бактерий человека
Gabriele Berg, Leo Eberl, Anton Hartmann
2005-08-24

antibiotic resistancehorizontal gene transferopportunistic human pathogensplant-associated bacteriarhizosphere
During the last years, the number of human infections caused by opportunistic pathogens has increased dramatically. One natural reservoir of opportunistic pathogens is the rhizosphere, the zone around roots that is influenced by the plant. Due to a high content of nutrients, this habitat is a 'microbial hot-spot', where bacterial abundances including those with strong antagonistic traits are enhanced. Various bacterial genera, including Burkholderia, Enterobacter, Herbaspirillum, Ochrobactrum, Pseudomonas, Ralstonia, Staphylococcus and Stenotrophomonas, contain root-associated strains that can encounter bivalent interactions with both plant and human hosts. Mechanisms responsible for colonization of the rhizosphere and antagonistic activity against plant pathogens are similar to those responsible for colonization of human organs and tissues, and pathogenicity. Multiple resistances against antibiotics are not only found with clinical strains but also with strains isolated from the rhizosphere. High competition, the occurrence of diverse antibiotics in the rhizosphere, and enhanced horizontal gene transfer rates in this microenvironment appear to contribute to the high levels of natural resistances. While opportunistic bacteria from the rhizosphere have some properties in common, each of these emerging pathogens has its own features, which are discussed in detail for Burkholderia, Ochrobactrum and Stenotrophomonas.
1
Mechanisms supporting rhizosphere colonization and antagonism against plant pathogens overlap with mechanisms involved in human tissue colonization and pathogenicity.
2
Multidrug resistance occurs in rhizosphere-derived strains as well as clinical isolates, potentially driven by competition, diverse antibiotics, and enhanced horizontal gene transfer.
3
Opportunistic rhizosphere bacteria share some traits, but emerging pathogens such as Burkholderia, Ochrobactrum, and Stenotrophomonas retain distinct species-specific features.
4
Root-associated strains from multiple genera, including Burkholderia, Enterobacter, Pseudomonas, and Stenotrophomonas, can interact with both plants and humans.
5
The rhizosphere functions as a nutrient-rich microbial hotspot and a natural reservoir for opportunistic human pathogenic bacteria.

The rhizosphere as a reservoir of opportunistic human pathogenic bacteria

The occurrence, ecological interactions, colonization mechanisms, pathogenicity, and antibiotic resistance of rhizosphere-associated opportunistic human pathogens

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2005-08-24
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Gabriele Berg
Leo Eberl
Anton Hartmann
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