Microbial Technologies Division, Council of Scientific and Industrial Research-National Botanical Research Institute (CSIR-NBRI), Rana Pratap Marg, Lucknow 226001, India; Academy of Scientific and Innovative Research (AcSIR), Ghaziabad 201002, India.
Microbial Technologies Division, Council of Scientific and Industrial Research-National Botanical Research Institute (CSIR-NBRI), Rana Pratap Marg, Lucknow 226001, India.
Sci Total Environ. 2024 Dec 15;956:177321. doi: 10.1016/j.scitotenv.2024.177321. Epub 2024 Nov 8.
Plant growth-promoting rhizobacteria (PGPR) are gaining recognition as pivotal agents in bioremediation, particularly in arsenic-contaminated environments. These bacteria leverage quorum sensing, an advanced communication system, to synchronize their activities within the rhizosphere and refine their arsenic detoxification strategies. Quorum Sensing enables PGPR to regulate critical processes such as biofilm formation, motility, and the activation of arsenic-resistance genes. This collective coordination enhances their capacity to immobilize, transform, and detoxify arsenic, decreasing its bioavailability and harmful effects on plants. Furthermore, quorum sensing strengthens the symbiotic relationship between growth-promoting rhizobacteria and plant roots, facilitating better nutrient exchange and boosting plant tolerance to stress. The current review highlights the significant role of quorum sensing in improving the efficacy of PGPR in arsenic remediation. Understanding and harnessing the PGPR-mediated quorum sensing mechanism to decipher the complex signaling pathways and communication systems could significantly advance remediation strategy, promoting sustainable soil health and boosting agricultural productivity.
植物促生根际细菌(PGPR)作为生物修复中的关键因子而备受关注,尤其是在砷污染环境中。这些细菌利用群体感应这一先进的通讯系统,在根际中协调它们的活动,并优化其砷解毒策略。群体感应使 PGPR 能够调节生物膜形成、运动性和砷抗性基因的激活等关键过程。这种集体协调增强了它们固定、转化和解毒砷的能力,降低了砷的生物利用度及其对植物的有害影响。此外,群体感应还加强了促生根际细菌和植物根系之间的共生关系,促进了更好的养分交换,并提高了植物对胁迫的耐受性。本综述强调了群体感应在提高 PGPR 砷修复效率中的重要作用。理解和利用 PGPR 介导的群体感应机制来解析复杂的信号转导途径和通讯系统,可以显著推进修复策略,促进可持续的土壤健康和提高农业生产力。