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1.
Environ Microbiol ; 23(10): 5659-5669, 2021 10.
Artículo en Inglés | MEDLINE | ID: mdl-33684235

RESUMEN

The bacterium Paenibacillus polymyxa is found naturally in diverse niches. Microbiome analyses have revealed enrichment in the genus Paenibacillus in soils under different adverse conditions, which is often accompanied by improved growth conditions for residing plants. Furthermore, Paenibacillus is a member of the core microbiome of several agriculturally important crops, making its close association with plants an interesting research topic. This review covers the versatile interaction possibilities of P. polymyxa with plants and its applicability in industry and agriculture. Thanks to its array of produced compounds and traits, P. polymyxa is likely an efficient plant growth-promoting bacterium, with the potential of biofertilization, biocontrol and protection against abiotic stresses. By contrast, cases of phytotoxicity of P. polymyxa have been described as well, in which growth conditions seem to play a key role. Because of its adjustable character, we propose this bacterial species as an outstanding model for future studies on host-microbe communications and on the manner how the environment can influence these interactions.


Asunto(s)
Paenibacillus polymyxa , Paenibacillus , Paenibacillus/genética , Paenibacillus polymyxa/genética , Desarrollo de la Planta , Plantas
2.
Mol Plant Microbe Interact ; 32(9): 1162-1174, 2019 Sep.
Artículo en Inglés | MEDLINE | ID: mdl-30933667

RESUMEN

Soil microbial communities hold great potential for sustainable and ecologically compatible agriculture. Although numerous plant-beneficial bacterial strains from a wide range of taxonomic groups have been reported, very little evidence is available on the plant-beneficial role of bacteria from the genus Caulobacter. Here, the mode of action of a Caulobacter strain, designated RHG1, which had originally been identified through a microbial screen for plant growth-promoting (PGP) bacteria in maize (Zea mays), is investigated in Arabidopsis thaliana. RHG1 colonized both roots and shoots of Arabidopsis, promoted lateral root formation in the root, and increased leaf number and leaf size in the shoot. The genome of RHG1 was sequenced and was utilized to look for PGP factors. Our data revealed that the bacterial production of nitric oxide, auxins, cytokinins, or 1-aminocyclopropane-1-carboxylate deaminase as PGP factors could be excluded. However, the analysis of brassinosteroid mutants suggests that an unknown PGP mechanism is involved that impinges directly or indirectly on the pathway of this growth hormone.


Asunto(s)
Caulobacter , Interacciones Huésped-Patógeno , Zea mays , Caulobacter/genética , Raíces de Plantas/microbiología , Zea mays/crecimiento & desarrollo , Zea mays/microbiología
3.
FEMS Microbiol Ecol ; 92(8)2016 08.
Artículo en Inglés | MEDLINE | ID: mdl-27279415

RESUMEN

Here we discuss the advantages of the majority of this versatile and diverse group of microorganisms for plant health and growth as demonstrated by their contribution to disease-suppressive soils, their antifungal and antibacterial activities, their ability to produce volatile compounds and their capacity to enhance plant biomass. Although much is still to be discovered about the colonization strategies and molecular interactions between plant roots and these microorganisms, they are destined to become important players in the field of plant growth-promoting rhizobacteria for agriculture.


Asunto(s)
Desarrollo de la Planta/fisiología , Raíces de Plantas/microbiología , Plantas/microbiología , Streptomyces/crecimiento & desarrollo , Simbiosis/fisiología , Agricultura , Agentes de Control Biológico , Suelo , Microbiología del Suelo
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