Zboralski Antoine, Filion Martin
Agriculture and Agri-Food Canada, Saint-Jean-sur-Richelieu Research and Development Centre, Saint-Jean-sur-Richelieu, QC, Canada.
Front Microbiol. 2023 Jun 23;14:1198131. doi: 10.3389/fmicb.2023.1198131. eCollection 2023.
Climate change is increasingly affecting agriculture through droughts, high salinity in soils, heatwaves, and floodings, which put intense pressure on crops. This results in yield losses, leading to food insecurity in the most affected regions. Multiple plant-beneficial bacteria belonging to the genus have been shown to improve plant tolerance to these stresses. Various mechanisms are involved, including alteration of the plant ethylene levels, direct phytohormone production, emission of volatile organic compounds, reinforcement of the root apoplast barriers, and exopolysaccharide biosynthesis. In this review, we summarize the effects of climate change-induced stresses on plants and detail the mechanisms used by plant-beneficial strains to alleviate them. Recommendations are made to promote targeted research on the stress-alleviating potential of these bacteria.
气候变化正通过干旱、土壤高盐度、热浪和洪水等日益影响农业,这给农作物带来了巨大压力。这导致产量损失,在受影响最严重的地区引发粮食不安全问题。已证明多种属于该属的对植物有益的细菌可提高植物对这些胁迫的耐受性。涉及多种机制,包括改变植物乙烯水平、直接产生植物激素、释放挥发性有机化合物、强化根质外体屏障和胞外多糖生物合成。在本综述中,我们总结了气候变化诱导的胁迫对植物的影响,并详细阐述了植物有益菌株用于缓解这些胁迫的机制。还提出了促进针对这些细菌缓解胁迫潜力的定向研究的建议。