生物
根际
土壤盐分
生物技术
盐度
渗透调节剂
非生物胁迫
细菌
根际细菌
非生物成分
芽孢杆菌(形态)
植物
微生物学
生态学
生物化学
基因
氨基酸
遗传学
脯氨酸
作者
María F. Valencia-Marín,Salvador Chávez-Avila,Paulina Guzmán-Guzmán,Ma. del Carmen Orozco-Mosqueda,Sergio de los Santos‐Villalobos,Bernard R. Glick,Gustavo Santoyo
标识
DOI:10.1016/j.biotechadv.2023.108303
摘要
Soil salinity is one of the most important abiotic factors that affects agricultural production worldwide. Because of saline stress, plants face physiological changes that have negative impacts on the various stages of their development, so the employment of plant growth-promoting bacteria (PGPB) is one effective means to reduce such toxic effects. Bacteria of the Bacillus genus are excellent PGPB and have been extensively studied, but what traits makes them so extraordinary to adapt and survive under harsh situations? In this work we review the Bacillus' innate abilities to survive in saline stressful soils, such as the production osmoprotectant compounds, antioxidant enzymes, exopolysaccharides, and the modification of their membrane lipids. Other survival abilities are also discussed, such as sporulation or a reduced growth state under the scope of a functional interaction in the rhizosphere. Thus, the most recent evidence shows that these saline adaptive activities are important in plant-associated bacteria to potentially protect, direct and indirect plant growth-stimulating activities. Additionally, recent advances on the mechanisms used by Bacillus spp. to improve the growth of plants under saline stress are addressed, including genomic and transcriptomic explorations. Finally, characterization and selection of Bacillus strains with efficient survival strategies are key factors in ameliorating saline problems in agricultural production.
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