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首页> 外文期刊>Microbiological Research >Combat of iron-deprivation through a plant growth promoting fluorescent Pseudomonas strain GRP3A in mung bean (Vigna radiata L. Wilzeck)
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Combat of iron-deprivation through a plant growth promoting fluorescent Pseudomonas strain GRP3A in mung bean (Vigna radiata L. Wilzeck)

机译:通过促进绿豆中荧光假单胞菌GRP3A的植物生长来对抗铁剥夺(Vigna radiata L.Wilzeck)

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Microorganisms and plants sustain themselves under iron-deprived conditions by releasing siderophores. Among others, fluorescent pseudomonads are known to exert extensive biocontrol action against soil and root borne phytopathogens through release of antimicrobials and siderophores. In this study, production and regulation of siderophores by fluorescent Pseudomonas strain GRP3A was studied. Among various media tested, standard succinate medium (SSM) promoted maximum siderophore production of 56.59 mg l(-1). There were low levels of siderophore in complex media like King's B medium, trypticase soya medium and nutrient medium (41.27, 29.86 and 27.63 mg l(-1)), respectively. In defferrated SSM, siderophore level was quantified to be 68.74 mg l(-1). Supplementation with iron (FeCl3) resulted in decreased siderophore levels depending on concentration. Siderophore production was promoted by Zn2+ (78.94 mg l(-1)), Cu2+ (68.80 mg l(-1)) whereas Co2+ (57.33 mg l(-1)) and Fe3+ reduced siderophore production (37.44 mg l(-1)) as compared to control (55.97 mg l(-1)). Strain GRP3A showed plant growth promotion under iron limited conditions.
机译:微生物和植物通过释放铁载体维持其在铁缺乏的条件下的生存。其中,已知荧光假单胞菌通过释放抗菌剂和铁载体对土壤和根源的植物病原体发挥广泛的生物防治作用。在这项研究中,研究了荧光假单胞菌菌株GRP3A对铁载体的产生和调控。在测试的各种培养基中,标准琥珀酸酯培养基(SSM)促进最大铁载体产生56.59 mg l(-1)。在King's B培养基,胰蛋白酶大豆培养基和营养培养基(41.27、29.86和27.63 mg l(-1))等复杂培养基中,铁载体的含量较低。在递减的SSM中,铁载体水平被定量为68.74 mg l(-1)。补充铁(FeCl3)会导致铁载体水平降低,具体取决于浓度。 Zn2 +(78.94 mg l(-1)),Cu2 +(68.80 mg l(-1))促进了铁载体的生成,而Co2 +(57.33 mg l(-1))和Fe3 +降低了铁载体的生成(37.44 mg l(-1) )与对照组(55.97 mg l(-1))相比。 GRP3A菌株在铁限制条件下显示出促进植物生长的作用。

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