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PMID: 16098559 Published · ppublish English Journal Article Research Support, Non-U.S. Gov't

Two bacterial strains isolated from a Zn-polluted soil enhance plant growth and mycorrhizal efficiency under Zn-toxicity.

Chemosphere ·Vol. 62 ·No. 9 ·2006-03-00 ·页码 1523-33

Vivas A, Biró B, Ruíz-Lozano JM, Barea JM, Azcón R

Abstract

In this study we investigated the interactions among plant, rhizosphere microorganisms and Zn pollution. We tested the influence of two bacterial strains isolated from a Zn-polluted soil on plant growth and on the symbiotic efficiency of native arbuscular mycorrhizal fungi (AMF) under Zn toxicity. The two bacterial strains exhibited Zn tolerance when cultivated under increasing Zn levels in the medium. However, strain B-I showed a higher Zn tolerance than strain B-II at the two highest Zn levels in the medium (75 and 100 mg l(-1) Zn). Molecular identification placed the strain B-I within the genus Brevibacillus. Our results showed that bacterial strain B-I consistently enhanced plant growth, N and P accumulation, as well as nodule number and mycorrhizal infection which demonstrated its plant-growth promoting (PGP) activity. This strain B-I has been shown to produce IAA (3.95 microg ml) and to accumulate 5.6% of Zn from the growing medium. The enhanced growth and nutrition of plants dually inoculated with the AMF and bacterium B-I was observed at three Zn levels assayed. This effect can be related to the stimulation of symbiotic structures (nodules and AMF colonization) and a decreased Zn concentration in plant tissues. The amount of Zn acquired per root weight unit was reduced by each one of these bacterial strains or AMF and particularly by the mixed bacterium-AMF inocula. These mechanisms explain the alleviation of Zn toxicity by selected microorganisms and indicate that metal-adapted bacteria and AMF play a key role enhancing plant growth under soil Zn contamination.

MeSH 主题词
Biodegradation, Environmental DNA, Bacterial/analysis Mycorrhizae/growth & development Rhizobium/isolation & purification Soil Microbiology Soil Pollutants/analysis Symbiosis Trifolium/growth & development,microbiology Zinc/analysis
化学物质
DNA, Bacterial Soil Pollutants Zinc
作者与单位
共 5 位作者,点击展开单位 / ORCID
Vivas A
Departamento de Microbiología del Suelo y Sistemas Simbióticos, Estación Experimental del Zaidín, CSIC, Prof. Albareda, 1, 18008 Granada, Spain.
Biró B
Ruíz-Lozano J M
Barea J M
Azcón R
Article Info
Journal
Chemosphere
Abbr.
Chemosphere
ISSN
0045-6535
Published
2006-03-00
电子出版
2005-00-10
页码
1523-33
Language
English
Country/Region
England
NLM ID
0320657
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