Regulatory Mechanisms of Plant Growth-Promoting Rhizobacteria and Plant Nutrition against Abiotic Stresses in Brassicaceae Family

Регуляторные механизмы ризобактерий, стимулирующих рост растений, и питание растений против абиотических стрессов в семействе Brassicaceae
Arshad Jalal, Carlos Eduardo da Silva Oliveira, Fernando Shintate Galindo, Poliana Aparecida Leonel Rosa, Isabela Martins Bueno Gato, Bruno Horschut de Lima, Marcelo Carvalho Minhoto Teixeira Filho
2023-01-11

Brassicaceaeabiotic stressesnutrient managementplant growth-promoting rhizobacteria
Extreme environmental conditions, such as abiotic stresses (drought, salinity, heat, chilling and intense light), offer great opportunities to study how different microorganisms and plant nutrition can influence plant growth and development. The intervention of biological agents such as plant growth-promoting rhizobacteria (PGPRs) coupled with proper plant nutrition can improve the agricultural importance of different plant species. Brassicaceae (Cruciferae) belongs to the monophyletic taxon and consists of around 338 genera and 3709 species worldwide. Brassicaceae is composed of several important species of economical, ornamental and food crops (vegetables, cooking oils, forage, condiments and industrial species). Sustainable production of Brassicas plants has been compromised over the years due to several abiotic stresses and the unbalanced utilization of chemical fertilizers and uncertified chemicals that ultimately affect the environment and human health. This chapter summarized the influence of PGPRs and nutrient management in the Brassicaceae family against abiotic stresses. The use of PGPRs contributed to combating climate-induced change/abiotic factors such as drought, soil and water salinization and heavy metal contamination that limits the general performance of plants. Brassica is widely utilized as an oil and vegetable crop and is harshly affected by abiotic stresses. Therefore, the use of PGPRs along with proper mineral nutrients management is a possible strategy to cope with abiotic stresses by improving biochemical, physiological and growth attributes and the production of brassica in an eco-friendly environment.
1
Application of plant growth-promoting rhizobacteria (PGPRs) together with proper nutrient management mitigates abiotic stresses in Brassicaceae.
2
Combined PGPR inoculation and mineral nutrient management improve biochemical, physiological, growth attributes, and production of Brassica crops.
3
Integrating PGPRs and nutrient management offers an eco-friendly strategy to sustain Brassica production threatened by abiotic stresses and excessive chemical fertilizer use.
4
Mineral nutrient management together with PGPRs enhances biochemical, physiological, and growth attributes of Brassica crops.
5
PGPRs (plant growth-promoting rhizobacteria) combined with proper plant nutrition can improve Brassicaceae growth and development under abiotic stresses.
6
PGPRs help combat drought, soil and water salinization, and heavy metal contamination that limit Brassica performance.
7
Unbalanced use of chemical fertilizers and uncertified chemicals has compromised sustainable Brassica production and negatively affects environment and human health.
8
Use of PGPRs helps combat drought, soil and water salinization, and heavy metal contamination that limit plant performance.
9
Using PGPRs with appropriate plant nutrition offers an eco-friendly strategy to enhance agricultural resilience of Brassicaceae to climate-induced abiotic factors.

Brassicaceae plants (Brassica species) subjected to abiotic stresses

Effects of plant growth-promoting rhizobacteria (PGPRs) and nutrient management on biochemical, physiological, growth attributes and stress tolerance of Brassicaceae under abiotic stresses

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2023-01-11
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Arshad Jalal
Carlos Eduardo da Silva Oliveira
Fernando Shintate Galindo
Poliana Aparecida Leonel Rosa
Isabela Martins Bueno Gato
Bruno Horschut de Lima
Marcelo Carvalho Minhoto Teixeira Filho
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