根际细菌
根际
非生物成分
生物技术
生物
非生物胁迫
植物生长
计算生物学
环境生物技术
生化工程
化学
细胞外
蛋白质组
生产力
拉伤
代谢工程
基因组
胞外聚合物
作者
Mohammad Shahid,Talat Ilyas,Zaryab Shafi
标识
DOI:10.1021/acs.jafc.6c02760
摘要
Plant productivity has become increasingly affected by various abiotic and biotic factors such as drought, salinity, metal toxicity, heat/cold stresses, and pathogen pressure that disrupt soil-plant interactions. Plant growth-promoting rhizobacteria (PGPR)-secreted exopolysaccharides (EPSs) play a significant role in maintaining rhizosphere stability through promoting soil aggregation, increasing the soil water retention capacity, and proper ion management. In addition, EPSs provide extracellular binding sites for toxic metals and facilitate the formation of stress-tolerant biofilms. Production of EPSs is under the strict control of sophisticated regulatory systems, linking environmental conditions and adaptive mechanisms at the genetic level. Novel advancements in omics and genome editing techniques could be used in the development of improved EPS-secreting strains with enhanced stress-resistance capabilities. Potential applications include PGPR formulations for seed coating, bioinoculants, and soil treatments; however, strain heterogeneity and environmental variability represent important challenges.
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