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Methylobacterium-plant interaction genes regulated by plant exudate and quorum sensing molecules
Nóbrega Dourado, Manuella; Cristina Bogas, Andrea; M. Pomini, Armando; Dini Andreote, Fernando; Carolina Quecine, Maria; J. Marsaioli, Anita; Luiz Araújo, Welington.
Afiliação
  • Nóbrega Dourado, Manuella; Universidade de São Paulo Departamento de Genética.
  • Cristina Bogas, Andrea; Universidade de São Paulo Departamento de Genética.
  • M. Pomini, Armando; Universidade Estadual de Maringá Departamento de Química.
  • Dini Andreote, Fernando; Universidade de São Paulo Escola Superior de Agricultura Luiz de Queiróz Departamento de Ciências do Solos.
  • Carolina Quecine, Maria; Universidade de São Paulo Departamento de Genética.
  • J. Marsaioli, Anita; Universidade de Campinas Instituto de Química.
  • Luiz Araújo, Welington; Universidade de São Paulo Instituto de Ciências Biomédicas Departamento de Microbiologia.
Article em En | VETINDEX | ID: vti-445026
Biblioteca responsável: BR68.1
ABSTRACT
Bacteria from the genus Methylobacterium interact symbiotically (endophytically and epiphytically) with different plant species. These interactions can promote plant growth or induce systemic resistance, increasing plant fitness. The plant colonization is guided by molecular communication between bacteria-bacteria and bacteria-plants, where the bacteria recognize specific exuded compounds by other bacteria (e.g. homoserine molecules) and/or by the plant roots (e.g. flavonoids, ethanol and methanol), respectively. In this context, the aim of this study was to evaluate the effect of quorum sensing molecules (N-acyl-homoserine lactones) and plant exudates (including ethanol) in the expression of a series of bacterial genes involved in Methylobacterium-plant interaction. The selected genes are related to bacterial metabolism (mxaF), adaptation to stressful environment (crtI, phoU and sss), to interactions with plant metabolism compounds (acdS) and pathogenicity (patatin and phoU). Under in vitro conditions, our results showed the differential expression of some important genes related to metabolism, stress and pathogenesis, thereby AHL molecules up-regulate all tested genes, except phoU, while plant exudates induce only mxaF gene expression. In the presence of plant exudates there is a lower bacterial density (due the endophytic and epiphytic colonization), which produce less AHL, leading to down regulation of genes when compared to the control. Therefore, bacterial density, more than plant exudate, influences the expression of genes related to plant-bacteria interaction.
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Texto completo: 1 Base de dados: VETINDEX Idioma: En Revista: Braz. J. Microbiol. Ano de publicação: 2013 Tipo de documento: Article
Texto completo: 1 Base de dados: VETINDEX Idioma: En Revista: Braz. J. Microbiol. Ano de publicação: 2013 Tipo de documento: Article