Cruz Catarina, Cardoso Paulo, Santos Jacinta, Matos Diana, Figueira Etelvina
Department of Biology, University of Aveiro, 3810-193 Aveiro, Portugal.
Centre for Environmental and Marine Studies, Department of Biology & CESAM, University of Aveiro, 3810-193 Aveiro, Portugal.
Plants (Basel). 2022 Oct 29;11(21):2912. doi: 10.3390/plants11212912.
Climate change and anthropogenic activities are responsible for extensive crop yield losses, with negative impact on global agricultural production. The occurrence of extreme weather events such as drought is a big challenge for agriculture, negatively impacting crops. Thus, methodologies reducing crop dependence on water will be a great advantage. Plant roots are colonized by soil bacteria, that can establish beneficial associations with plants, increasing crop productivity and plant tolerance to abiotic stresses. The aim of this study was to promote plant growth and to increase crop tolerance to drought by inoculation with osmotolerant bacterial strains. For that, bacteria were isolated from plants growing in Sal Island (Cape Verde) and identified. The osmotolerance and plant-growth promotion (PGP) abilities of the strains were determined. A maize seed cultivar tolerant to drought was inoculated with the strains evidencing best PGP capacity and osmo-tolerance. Results evidenced the ability of some bacterial strains increasing the development and inducing osmotolerance in plants. These results evidence the potential of osmotolerant bacteria to further increase the level of tolerance of maize varieties tolerant to drought, decreasing the dependence of this crop on irrigation, and open new perspectives to growth maize in drought affected areas and to use water more efficiently.
气候变化和人类活动导致了大量的作物产量损失,对全球农业生产产生负面影响。干旱等极端天气事件的发生对农业来说是一个巨大挑战,会对作物产生负面影响。因此,减少作物对水的依赖的方法将具有很大优势。植物根系被土壤细菌定殖,这些细菌可以与植物建立有益的共生关系,提高作物生产力和植物对非生物胁迫的耐受性。本研究的目的是通过接种耐渗透细菌菌株来促进植物生长并提高作物对干旱的耐受性。为此,从佛得角萨尔岛生长的植物中分离并鉴定细菌。测定了这些菌株的耐渗透性和植物生长促进(PGP)能力。用表现出最佳PGP能力和耐渗透性的菌株接种一种耐旱玉米种子品种。结果证明了一些细菌菌株能够促进植物发育并诱导植物产生耐渗透性。这些结果证明了耐渗透细菌在进一步提高耐旱玉米品种耐受性水平、降低该作物对灌溉的依赖方面的潜力,并为在干旱影响地区种植玉米和更有效地利用水资源开辟了新的前景。