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Assessing the efficacy of co-inoculation of wheat seedlings with the associative bacteria Paenibacillus polymyxa 1465 and Azospirillum brasilense Sp245

机译:评估小麦幼苗与缔合的细菌Paenibacillus polymyxa 1465和azospirillum brasilense sp245的疗效

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Co-inoculation of associative bacteria, which have high nitrogen-fixing activity, tolerance for environmental conditions, and the ability to compete with the natural microflora, is used widely to enhance the growth and yields of agricultural plants. We evaluated the ability of 2 co-inoculated plant-growth-promoting rhizobacteria, Paenibacillus polymyxa 1465 and Azospirillum brasilense Sp245, to colonize roots of wheat (Triticum aestivum L. 'Saratovskaya 29') seedlings, and we assessed the morphometric parameters of wheat early in its development. Analysis by ELISA with polyclonal antibodies raised against the exopolysaccharide of P. polymyxa 1465 and the lipopolysaccharide of A. brasilense Sp245 demonstrated that the root-colonizing activity of A. brasilense was higher when the bacterium was co-inoculated with P. polymyxa than when it was inoculated singly. Immunofluorescence microscopy with Alexa Fluor 532-labeled antibodies revealed sites of attachment of co-inoculated P. polymyxa and A. brasilense and showed that the 2 bacteria colonized similar regions of the roots. Co-inoculation exerted a negative effect on wheat seedling development, inhibiting root length by 17.6%, total root weight by 11%, and total shoot weight by 12%. Under certain conditions, dual inoculation of wheat may prove ineffective, apparently owing to the competition between the rhizobacteria for colonization sites on the plant roots. The findings from this study may aid in developing techniques for mixed bacterial inoculation of cultivated plants.
机译:共用细菌的共同检查,具有高氮固定活性,对环境条件的耐受性以及与天然微生物群体竞争的能力,广泛地用于增强农业植物的生长和产量。我们评估了2个共接种植物生长促进的根瘤菌,paenibacillus polymyxa 1465和azospirillum brasilense sp245的能力,以殖民化小麦(Triticum aestivum l.'saratovskaya 29')幼苗,我们早期评估了小麦的形态学参数在发展中。 ELISA分析与P. polymyxa 1465的外谐糖升高的多克隆抗体和A.Basilense SP245的脂多糖的升高表明,当细菌与P. polymyxa共同接种时,A的根殖民化活性较高单独接种。具有Alexa Fluor 532标记的抗体的免疫荧光显微镜显示出联合接种的P. polycyxa和A. brasilense的附着位点,并显示出2个细菌的殖民殖民地区的类似区域。共同接种施加对小麦幼苗发育的负面影响,抑制根长度为17.6%,总根重量为11%,总枝重12%。在某些条件下,对小麦的双重接种可能是无效的,显然是由于植物根部殖民地区的根瘤菌之间的竞争。本研究的发现可能有助于开发用于培养植物的混合细菌接种技术。

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