Changes The Molecular Mechanisms of Root Development in L. Growing Under Water Stress.

Renata Silva, Luanna Filgueiras, Bruna Santos, Mariana Coelho, Maria Silva, Germán Estrada-Bonilla, Marcia Vidal, José Ivo Baldani, Carlos Meneses

Journal: International journal of molecular sciences 2020;21(1):333

PMID: 31947822

Abstract

BACKGROUND

Inoculation with has shown to influence root development in red rice plants, and more recently, the induced systemic tolerance (IST) response to drought was also demonstrated. The goal of this study was to evaluate the inoculation effect of strain Pal5 on the amelioration of drought stress and root development in red rice ( L.).

METHODS

The experimental treatments consist of red rice plants inoculated with and without Pal5 in presence and absence of water restriction. Physiological, biochemical, and molecular analyses of plant roots were carried out, along with measurements of growth and biochemical components.

RESULTS

The plants showed a positive response to the bacterial inoculation, with root growth promotion and induction of tolerance to drought. An increase in the root area and higher levels of osmoprotectant solutes were observed in roots. Bacterial inoculation increased the drought tolerance and positively regulated certain root development genes against the water deficit in plants.

CONCLUSION

Pal5 strain inoculation favored red rice plants by promoting various root growth and developmental mechanisms against drought stress, enabling root development and improving biochemical composition.

Address: Departamento de Biologia-Centro de Ciências Biológicas e da Saúde / Programa de Pós-Graduação em Ciências Agrárias, Universidade Estadual da Paraíba, Rua Baraúnas, 351, Bairro Universitário, Campina Grande-PB 58429-500, Brazil.; Corporación Colombiana de Investigación Agropecuaria-AGROSAVIA. Centro de Investigación Tibaitatá-Km 14 Vía Mosquera-Bogotá, Cundinamarca, Colombia.; Embrapa Agrobiologia, Rodovia BR 465, km 07, Seropédica-RJ 23891-000, Brazil.
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