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1.
Int J Phytoremediation ; 18(1): 41-7, 2016.
Article in English | MEDLINE | ID: mdl-26529094

ABSTRACT

Waste dumps generated by mining activities contain heavy metals that are dispersed into areas leading to significant environmental contamination. The objectives of this study were (i) to survey native plants and their associated AM fungal communities from waste soils in a Moroccan mine site and (ii) to follow Eucalyptus growth in soil collected from the waste-mine. AM spores from native plant species were collected from the mining site and the surrounding uncontaminated areas were multiplied and inoculated onto Eucalyptus camaldulensis. The results showed that (i) the native plant species recorded in the waste did not show an active metal uptake, (ii) the selected native plant species are associated with AM mycorrhizal fungi and (iii) the use of AM fungi adapted to these drastic conditions can improve the growth of the fast-growing tree, E. camaldulensis and its tolerance to high soil Cu content. In conclusion, it is suggested that in order to define efficient low-cost phytostabilization processes, the use of native resources (i.e., mixtures of native mycorrhizal fungi) in combination with fast-growing tree species such as Eucalyptus, could be used to optimize the establishment of a permanent cover plant in contaminated areas.


Subject(s)
Eucalyptus/metabolism , Metals, Heavy/metabolism , Mycorrhizae/metabolism , Soil Pollutants/metabolism , Symbiosis , Biodegradation, Environmental , Introduced Species , Mining , Morocco
2.
New Phytol ; 184(3): 694-707, 2009 Nov.
Article in English | MEDLINE | ID: mdl-19732350

ABSTRACT

The decline of take-all disease (Gaeumannomyces graminis var. tritici), which may take place during wheat monocropping, involves plant-protecting, root-colonizing microorganisms. So far, however, most work has focused on antagonistic fluorescent pseudomonads. Our objective was to assess the changes in rhizobacterial community composition during take-all decline of field-grown wheat. The study was based on the development and utilization of a taxonomic 16S rRNA-based microarray of 575 probes, coupled with cloning-sequencing and quantitative PCR. Plots from one experimental field grown with wheat for 1 yr (low level of disease), 5 yr (high level of disease) or 10 yr (low level of disease, suppressiveness reached) were used. Microarray data discriminated between the three stages. The outbreak stage (5 yr) was mainly characterized by the prevalence of Proteobacteria, notably Pseudomonas (Gammaproteobacteria), Nitrosospira (Betaproteobacteria), Rhizobacteriaceae, Sphingomonadaceae, Phyllobacteriaceae (Alphaproteobacteria), as well as Bacteroidetes and Verrucomicrobia. By contrast, suppressiveness (10 yr) correlated with the prevalence of a broader range of taxa, which belonged mainly to Acidobacteria, Planctomycetes, Nitrospira, Chloroflexi, Alphaproteobacteria (notably Azospirillum) and Firmicutes (notably Thermoanaerobacter). In conclusion, take-all decline correlated with multiple changes in rhizobacterial community composition, far beyond the sole case of pseudomonads.


Subject(s)
Ascomycota/pathogenicity , Bacteria/isolation & purification , Plant Diseases/microbiology , Plant Diseases/prevention & control , Soil Microbiology , Triticum/growth & development , Triticum/microbiology , Bacteria/classification , Bacteria/genetics , Bacterial Physiological Phenomena , Ecosystem , Oligonucleotide Array Sequence Analysis , Phylogeny , Plant Roots/microbiology , Pseudomonadaceae/genetics , Pseudomonadaceae/isolation & purification , Pseudomonadaceae/physiology , RNA, Bacterial/genetics , RNA, Ribosomal, 16S/genetics , Species Specificity , Symbiosis
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