Biotechnological applications of serpentine soil bacteria for phytoremediation of trace metals.
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Rhizosphere bacteria of Costularia spp. from ultramafic soils in New Caledonia: diversity, tolerance to extreme edaphic conditions, and role in plant growth and mineral nutrition.Microbiological functioning, diversity, and structure of bacterial communities in ultramafic soils from a tropical savanna.Distribution patterns of microbial communities in ultramafic landscape: a metagenetic approach highlights the strong relationships between diversity and environmental traits.Rhizospheric Bacterial Strain Brevibacterium casei MH8a Colonizes Plant Tissues and Enhances Cd, Zn, Cu Phytoextraction by White MustardThe role of plant-associated bacteria in the mobilization and phytoextraction of trace elements in contaminated soilsMaking phytoremediation work better: maximizing a plant's growth potential in the midst of adversity.Arbuscular mycorrhizal fungi in phytoremediation of contaminated areas by trace elements: mechanisms and major benefits of their applications.A more complete picture of metal hyperaccumulation through next-generation sequencing technologies.Growth and Metal Accumulation of an Alyssum murale Nickel Hyperaccumulator Ecotype Co-cropped with Alyssum montanum and Perennial Ryegrass in Serpentine Soil.Cd and Ni transport and accumulation in the halophyte Sesuvium portulacastrum: implication of organic acids in these processes.Bacterial exopolysaccharide and biofilm formation stimulate chickpea growth and soil aggregation under salt stress.Effect of metal tolerant plant growth promoting bacteria on growth and metal accumulation in Zea mays plants grown in fly ash amended soil.Copper-resistant bacteria reduces oxidative stress and uptake of copper in lentil plants: potential for bacterial bioremediation.Assessment of rhizospheric culturable bacteria of Phragmites australis and Juncus effusus from polluted sites.Effects of Pisolithus tinctorius and Cenococcum geophilum inoculation on pine in copper-contaminated soil to enhance phytoremediation.Inoculation of Ni-resistant plant growth promoting bacterium Psychrobacter sp. strain SRS8 for the improvement of nickel phytoextraction by energy crops.Arsenic-tolerant plant-growth-promoting bacteria isolated from arsenic-polluted soils in South Korea.Metallophores and Trace Metal BiogeochemistryEffect of bacterial inoculation of strains ofpseudomonas aeruginosa, alcaligenes feacalisandbacillus subtilison germination, growth and heavy metal (cd, cr, and ni) uptake ofbrassica juncea
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P2860
Biotechnological applications of serpentine soil bacteria for phytoremediation of trace metals.
description
article científic
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article scientifique
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articolo scientifico
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artigo científico
@pt
bilimsel makale
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scientific article published on January 2009
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vedecký článok
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vetenskaplig artikel
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videnskabelig artikel
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vědecký článek
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name
Biotechnological applications ...... toremediation of trace metals.
@en
Biotechnological applications ...... toremediation of trace metals.
@nl
type
label
Biotechnological applications ...... toremediation of trace metals.
@en
Biotechnological applications ...... toremediation of trace metals.
@nl
prefLabel
Biotechnological applications ...... toremediation of trace metals.
@en
Biotechnological applications ...... toremediation of trace metals.
@nl
P2093
P2860
P1476
Biotechnological applications ...... toremediation of trace metals.
@en
P2093
Majeti Narasimha Vara Prasad
Mani Rajkumar
Noriharu Ae
P2860
P304
P356
10.1080/07388550902913772
P577
2009-01-01T00:00:00Z