The role of plant-associated rhizobacteria in plant growth, biocontrol and abiotic stress management

根际细菌 根际 泛菌 生物 多粘菌拟杆菌 拟杆菌 非生物胁迫 微生物菌剂 固氮菌 植物 铁载体 假单胞菌 细菌 生物化学 遗传学 16S核糖体RNA 基因
作者
Basharat Ahmad Bhat,Lubna Tariq,Showkat Nissar,Sheikh Tajamul Islam,Shahid Ul Islam,Zahid Ahmed Mangral,Noshin Ilyas,R. Z. Sayyed,Muthusamy Govarthanan,Woong Kim,Tanvir Ul Hasan Dar
出处
期刊:Journal of Applied Microbiology [Wiley]
卷期号:133 (5): 2717-2741 被引量:17
标识
DOI:10.1111/jam.15796
摘要

The rhizosphere is the region around the plant roots where maximum microbial activities occur. In the rhizosphere, microorganisms' beneficial and harmful activities affect plant growth and development. The mutualistic rhizospheric bacteria which improve plant growth and health are known as plant growth-promoting rhizobacteria (PGPR). They are very important due to their ability to help the plant in diverse ways. PGPR such as Pseudomonas, Bacillus, Azospirillum, Azotobacter, Arthrobacter, Achromobacter, Micrococcus, Enterobacter, Rhizobium, Agrobacterium, Pantoea and Serratia are now very well known. Rhizomicrobiome plays critical roles in nutrient acquisition and assimilation, improved soil texture, secreting and modulating extracellular molecules such as hormones, secondary metabolites, antibiotics and various signal compounds, all leading to the enhancement of plant growth and development. The microbes and compounds they secrete constitute valuable biostimulants and play pivotal roles in modulating plant stress responses. In this review, we highlight the rhizobacteria diversity and cutting-edge findings focusing on the role of a PGPR in plant growth and development. We also discussed the role of PGPR in resisting the adverse effects arising from various abiotic (drought, salinity, heat, heavy metals) stresses.
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