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首页> 外文期刊>Applied Soil Ecology >Characterization of cultivable putative endophytic plant growth promoting bacteria associated with maize cultivars (Zea mays L.) and their inoculation effects in vitro
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Characterization of cultivable putative endophytic plant growth promoting bacteria associated with maize cultivars (Zea mays L.) and their inoculation effects in vitro

机译:与玉米栽培品种(Zea mays L.)有关的可培养的内生植物促生长细菌的特性及其体外接种效果

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Maize (Zea mays L.) plants can establish beneficial associations with various nitrogen fixing and plant growth promoting bacteria (PGPB). Twenty-two putative endophytic bacteria isolated from maize plants were identified and characterized by the presence of nifH, IAA production, siderophores and phosphate solubilizing capacity. In addition, inoculation experiments to evaluate plant growth promotion were conducted under laboratory conditions. High diversity of diazotrophic bacteria associated to maize plants was found, including the genera Rhanella, Pantoea, Rhizobium, Pseudomona, Herbaspirillum, Enterobacter, Brevundimonas and Burkholderia. All strains produce IAA in vitro but only P. fluorescens (EMA68) produces siderophores. Phosphate solubilization capability was detected in eighteen strains and Rhanella spp. (EMA83) showed the highest potential. There were significant differences between controls and inoculated plants. Positive effects across maize cultivars were observed with 10 isolates from 22, whose inoculation resulted in an increase on shoot biomass over uninoculated controls without N. H. frisingense, EMA117 was the only strain that showed positive effect on both maize cultivars. It was observed a significant interaction between inoculation treatment x maize cultivars in shoot and root dry weight (P < 0.05). Only one strain, Pseudomona flourescen, increased significantly the growth of the radicle compared to that of the controls without inoculation. In conclusion, maize inoculation experiments showed significant increases in shoot dry weight under controlled conditions but it is not clearly related to IAA production, P solubilization capacity or to more N efficiency assimilation. There is a potential PGPB in maize cultivars, but the results indicate the need for a better understanding of plant-bacteria interactions and to investigate plant colonization by endophytic bacteria
机译:玉米(Zea mays L.)植物可以与各种固氮和植物生长促进细菌(PGPB)建立有益的联系。鉴定并鉴定了从玉米植物中分离出来的22种内生细菌,并通过nifH的存在,IAA的产生,铁载体和磷酸盐的溶解能力进行了表征。另外,在实验室条件下进行接种实验以评估植物的生长促进。发现与玉米植物相关的重氮营养细菌高度多样性,包括Rhanella,Pantoea,根瘤菌,Pseudomona,Herbspirillum,肠杆菌,Brevundimonas和Burkholderia属。所有菌株在体外均产生IAA,但仅荧光假单胞菌(EMA68)产生铁载体。在18个菌株和Rhanella spp中检测到了磷酸盐增溶能力。 (EMA83)表现出最高的潜力。对照和接种植物之间存在显着差异。用22个中的10个分离株观察到了对整个玉米品种的积极影响,它们的接种导致芽生生物量比未接种N. H. frisingense的未接种对照增加,EMA117是唯一对两个玉米品种都表现出积极影响的菌株。观察到接种处理x玉米品种的地上部和根部干重之间存在显着的相互作用(P <0.05)。与没有接种的对照相比,只有一种菌株粉状假单胞菌显着增加了胚根的生长。总之,玉米接种实验显示在受控条件下茎干重量显着增加,但与IAA产量,P增溶能力或更多的N效率吸收没有明显关系。玉米品种中存在潜在的PGPB,但结果表明需要更好地了解植物与细菌的相互作用并研究内生细菌对植物的定殖

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