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Role of dissimilatory fermentative iron-reducing bacteria in fe uptake by common bean (Phaseolus vulgaris L.) plants grown in alkaline soil.

机译:异化发酵铁还原细菌在碱性土壤中生长的普通豆类植物(Phaseolus vulgaris L.)的fe吸收中的作用。

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摘要

Iron (Fe) is an essential element for plant growth and development. Some plant growth-promoting rhizobacteria can increase Fe uptake by plants through reduction of Fe(III) to Fe(II) at the root surface. The aim of this work was to identify novel bacterial strains with high Fe(III) reduction ability and to evaluate their role in plant Fe uptake. Four bacterial strains (UMCV1 to UMCV4) showing dissimilatory Fe-reducing activity were isolated from the rhizosphere of bean and maize plants and further identified by 16S rDNA amplification and sequence analysis. From these analyses, UMCV1 and UMCV2 isolates were identified as Bacillus megaterium and Arthrobacter spp., respectively, whereas UMCV3 and UMCV4 were identified as Stenotrophomonas maltophilia. All four isolates showed Fe reduction in a nonflooded soil and when associated with roots of bean plants grown in alkaline soil or in mineral medium. In addition, the bacterial isolates were able to stimulate plant growth in vitro and on a broad level, plants grown in inoculated soil were generally bigger and with higher Fe content than those grown in sterilized soil. These results indicate that bacterial species isolated from the rhizosphere of bean and maize plants contribute significantly to Fe uptake by plants likely through increased Fe(III) reduction in the rhizosphere..
机译:铁(Fe)是植物生长发育的重要元素。一些促进植物生长的根际细菌可以通过将根表面的Fe(III)还原为Fe(II)来增加植物对铁的吸收。这项工作的目的是确定具有高Fe(III)还原能力的新型细菌菌株,并评估其在植物体内铁吸收中的作用。从豆和玉米植物的根际中分离出四种具有降低铁还原活性的细菌菌株(UMCV1至UMCV4),并通过16S rDNA扩增和序列分析进一步鉴定。从这些分析中,UMCV1和UMCV2分离株分别被鉴定为巨大芽孢杆菌和节杆菌属,而UMCV3和UMCV4被鉴定为嗜麦芽窄食单胞菌。所有四种分离物在未淹没的土壤中以及与在碱性土壤或矿物培养基中生长的豆类植物的根相关时均显示出铁减少。另外,细菌分离株能够在体外刺激植物的生长,并且在广泛的水平上,接种土壤中生长的植物通常比灭菌土壤中的植物更大,铁含量更高。这些结果表明,从豆类和玉米植物的根际中分离出的细菌物种可能通过增加根际中的Fe(III)还原而显着促进植物吸收Fe。

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