This study investigates the impact of long-term heavy metal contamination on the culturable, heterotrophic, functional and genetic diversity of rhizobacterial communities of perennial grasses in water meadow soil. The culturable heterotrophic diversity was investigated by colony appearance on solid LB medium. Genetic diversity was measured as bands in denaturing gradient gel electrophoresis (DGGE) obtained directly from rhizosphere soil and rhizoplane DNA extracts, and from the corresponding culturable communities. In the two rhizospheric fractions the DGGE profiles of the direct DNA extracts were similar and stable among replicates, whereas in the enriched cultures the profiles of the fractions differed, but among the replicates they were ...
© 2016, Płociniczak, Sinkkonen, Romantschuk, Sułowicz and Piotrowska-Seget.Environmental pollution b...
A plant growth-promoting bacterial (PGPB) strain SC2b was isolated from the rhizosphere of Sedum plu...
Bacterial communities of rhizospheric soils play an important role in the tolerance and uptake of me...
Soil heavy metal contamination resulting from mining activities constitutes a major environmental pr...
The role of soil microbiota, specifically rhizospheric microorganisms, in the development of phytore...
Heavy metals adversely influence microorganisms, affecting their growth, abundance, genetic diversit...
This study aimed at the isolation and characterization of metal(loid)-tolerant bacteria from the rhi...
The heavy metals at high concentration are generally toxic to the plants for their metabolism and gr...
In recent years, culture-independent methods have been used in preference to traditional isolation t...
International audienceHaving a glimpse of the relationships between the zinc and cadmium hyper accum...
Heavy metal contamination of soil is a widespread global problem due to persistence in the environme...
Several heavy metal resistant strains were isolated from the soil/rhizosphere of spontaneous plants,...
In this work, we evaluated the ability of rhizobacteria isolated from a metal-contaminated site to p...
Copper and zinc are essential micronutrients in plants but, at high concentrations, they are toxic. ...
Populations of Rhizobium leguminosarum bv. viciae were investigated from plots of a long-term sewage...
© 2016, Płociniczak, Sinkkonen, Romantschuk, Sułowicz and Piotrowska-Seget.Environmental pollution b...
A plant growth-promoting bacterial (PGPB) strain SC2b was isolated from the rhizosphere of Sedum plu...
Bacterial communities of rhizospheric soils play an important role in the tolerance and uptake of me...
Soil heavy metal contamination resulting from mining activities constitutes a major environmental pr...
The role of soil microbiota, specifically rhizospheric microorganisms, in the development of phytore...
Heavy metals adversely influence microorganisms, affecting their growth, abundance, genetic diversit...
This study aimed at the isolation and characterization of metal(loid)-tolerant bacteria from the rhi...
The heavy metals at high concentration are generally toxic to the plants for their metabolism and gr...
In recent years, culture-independent methods have been used in preference to traditional isolation t...
International audienceHaving a glimpse of the relationships between the zinc and cadmium hyper accum...
Heavy metal contamination of soil is a widespread global problem due to persistence in the environme...
Several heavy metal resistant strains were isolated from the soil/rhizosphere of spontaneous plants,...
In this work, we evaluated the ability of rhizobacteria isolated from a metal-contaminated site to p...
Copper and zinc are essential micronutrients in plants but, at high concentrations, they are toxic. ...
Populations of Rhizobium leguminosarum bv. viciae were investigated from plots of a long-term sewage...
© 2016, Płociniczak, Sinkkonen, Romantschuk, Sułowicz and Piotrowska-Seget.Environmental pollution b...
A plant growth-promoting bacterial (PGPB) strain SC2b was isolated from the rhizosphere of Sedum plu...
Bacterial communities of rhizospheric soils play an important role in the tolerance and uptake of me...