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Growth promoting influence of siderophore-producing Pseudomonas strains GRP3A and PRS9 in maize (Zea mays L.) under iron limiting conditions

机译:限铁条件下玉米中产生铁载体的假单胞菌GRP3A和PRS9对玉米的生长促进作用

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摘要

Maize seeds were bacterized with siderophore-producing pseudomonads with the goal to develop a system suitable for better iron uptake under iron-stressed conditions. Siderophore production was compared in fluorescent Pseudomonas spp. GRP3A, PRS9 and P. chlororaphis ATCC 9446 in standard succinate (SSM) and citrate (SCM) media. Succinate was better suited for siderophore production, however, deferration of media resulted in increased siderophore production in all the strains. Maximum siderophore level (216.23 mug/ml) was observed in strain PRS9 in deferrated SSM after 72 h of incubation. Strains GRP3A and PRS9 were used for plant growth promotion experiments. Strains GRP3A and PRS9 were also antagonistic against the phytopathogens, Colletotrichum dematium, Rhizoctonia solani and Sclerotium rolfsii. Bacterization of maize seeds with strains GRP3A and PRS9 showed significant increase in germination percentage and plant growth. Maximum shoot and root length and dry weight were observed with 10muM Fe3+ along with bacterial inoculants suggesting application of siderophore producing plant growth promoting rhizobacterial strains in crop productivity in calcareous soil system.
机译:玉米种子用产生铁载体的假单胞菌进行杀菌,目的是开发一种适合在铁胁迫条件下更好地吸收铁的系统。在荧光假单胞菌属物种中比较了铁载体的产生。在标准琥珀酸盐(SSM)和柠檬酸盐(SCM)介质中的GRP3A,PRS9和绿腐霉ATCC 9446。琥珀酸酯更适合用于铁载体的生产,但是,培养基的延缓导致所有菌株中铁载体的产生增加。温育72小时后,在延缓的SSM中的PRS9菌株中观察到最大铁载体水平(216.23马克杯/毫升)。菌株GRP3A和PRS9用于植物生长促进实验。菌株GRP3A和PRS9也对植物病原体,炭疽菌,立枯丝核菌和小核菌有拮抗作用。用菌株GRP3A和PRS9对玉米种子进行的细菌化处理显示出发芽率和植物生长显着增加。在含10μMFe3 +和细菌接种剂的情况下观察到最大芽,根长和干重,这表明在钙质土壤系统中应用铁载体产生植物生长促进根瘤菌菌株可促进作物生产力。

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