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1.
J Appl Microbiol ; 129(5): 1321-1336, 2020 Nov.
Artigo em Inglês | MEDLINE | ID: mdl-32367524

RESUMO

AIMS: The aim of this study was to find and use rhizobacteria able to confer plants advantages to deal with saline conditions. METHODS AND RESULTS: We isolated 24 different bacterial species from the rhizosphere of halophyte plants growing in Santiago del Estero, Argentina salt flat. Four strains were selected upon their ability to grow in salinity and their biochemical traits associated with plant growth promotion. Next, we tested the adhesion on soybean seeds surface and root colonization with the four selected isolates. Isolate 19 stood out from the rest and was selected for further experiments. This strain showed positive chemotaxis towards soybean root exudates and a remarkable ability to form biofilm both in vitro conditions and on soybean roots. Interestingly, this trait was enhanced in high saline conditions, indicating the extremely adapted nature of the bacterium to high salinity. In addition, this strain positively impacted on seed germination, plant growth and general plant health status also under saline stress. CONCLUSIONS: A bacterium isolate with outstanding ability to promote seed germination and plant growth under saline conditions was found. SIGNIFICANCE AND IMPACT OF THE STUDY: The experimental approach allowed us to find a suitable bacterial candidate for a biofertilizer intended to alleviate saline stress on crops. This would allow the use of soil now considered inadequate for agriculture and thus prevent further advancement of agriculture frontiers into areas of environmental value.


Assuntos
Pseudomonas stutzeri/fisiologia , Rizosfera , Estresse Salino/fisiologia , Argentina , Biofilmes/crescimento & desenvolvimento , Produtos Agrícolas/crescimento & desenvolvimento , Produtos Agrícolas/microbiologia , Germinação , Raízes de Plantas/microbiologia , Pseudomonas stutzeri/crescimento & desenvolvimento , Pseudomonas stutzeri/isolamento & purificação , Salinidade , Plantas Tolerantes a Sal/microbiologia , Sementes/crescimento & desenvolvimento , Sementes/microbiologia , Solo/química , Microbiologia do Solo , Glycine max/crescimento & desenvolvimento , Glycine max/microbiologia
2.
Plant Biol (Stuttg) ; 19(4): 608-617, 2017 Jul.
Artigo em Inglês | MEDLINE | ID: mdl-28194866

RESUMO

Citrus canker is a worldwide-distributed disease caused by Xanthomonas citri subsp. citri. One of the most used strategies to control the disease is centred on copper-based compounds that cause environmental problems. Therefore, it is of interest to develop new strategies to manage the disease. Previously, we reported the ability of the siderophore pyochelin, produced by the opportunistic human pathogen Pseudomonas aeruginosa, to inhibit in vitro several bacterial species, including X. citri subsp. citri. The action mechanism, addressed with the model bacterium Escherichia coli, was connected to the generation of reactive oxygen species (ROS). This work aimed to find a non-pathogenic strain from the lemon phyllosphere that would produce pyochelin and therefore serve in canker biocontrol. An isolate that retained its capacity to colonise the lemon phyllosphere and inhibit X. citri subsp. citri was selected and characterised as Pseudomonas protegens CS1. From a liquid culture of this strain, the active compound was purified and identified as the pyochelin enantiomer, enantio-pyochelin. Using the producing strain and the pure compound, both in vitro and in vivo, we determined that the action mechanism of X. citri subsp. citri inhibition also involved the generation of ROS. Finally, the potential application of P. protegens CS1 was evaluated by spraying the bacterium in a model that mimics the natural X. citri subsp. citri infection. The ability of P. protegens CS1 to reduce canker formation makes this strain an interesting candidate as a biocontrol agent.


Assuntos
Citrus/microbiologia , Pseudomonas/metabolismo , Fenóis/metabolismo , Doenças das Plantas/microbiologia , Doenças das Plantas/prevenção & controle , Espécies Reativas de Oxigênio/metabolismo , Tiazóis/metabolismo , Xanthomonas/efeitos dos fármacos
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