首页> 外文期刊>Journal of Plant Nutrition >MOBILIZATION OF POTASSIUM FROM WASTE MICA BY PLANT GROWTH PROMOTING RHIZOBACTERIA AND ITS ASSIMILATION BY MAIZE (ZEA MAYS) AND WHEAT (TRITICUM AESTIVUM L.): A HYDROPONICS STUDY UNDER PHYTOTRON GROWTH CHAMBER
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MOBILIZATION OF POTASSIUM FROM WASTE MICA BY PLANT GROWTH PROMOTING RHIZOBACTERIA AND ITS ASSIMILATION BY MAIZE (ZEA MAYS) AND WHEAT (TRITICUM AESTIVUM L.): A HYDROPONICS STUDY UNDER PHYTOTRON GROWTH CHAMBER

机译:植物生长促进根瘤菌从小麦粉中迁移钾及其对玉米(玉米)和小麦(小麦)的同化作用:植物生长室下的水培研究

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摘要

A hydroponics study was carried out to evaluate the effect of three plant growth promoting rhizobacteria (PGPR) namely, Bacillus mucilaginosus, Azotobacter chroococcum, and Rhizobium spp. on their ability to mobilize potassium from waste mica using maize and wheat as the test crops under a phytotron growth chamber. Results revealed that PGPR significantly improved the assimilation of potassium by both maize and wheat, where waste mica was the sole source of potassium. This was translated into higher biomass accumulation, potassium content and uptake by plants as well as chlorophyll and crude protein content in plant tissue. Among the rhizobacteria, Bacillus mucilaginosus resulted in significantly higher mobilization of potassium than Azotobacter chroococcum and Rhizobium inoculation. Overall, inoculation of maize and wheat plants with these bacteria could be used to mobilize potassium from waste mica, which in turn could be used as a source of potassium for plant growth.
机译:进行了水培研究,以评估三种促进植物生长的根际细菌(PGPR)的作用,即粘液芽孢杆菌,嗜蓝固氮菌和根瘤菌。在光电子加速器生长室中利用玉米和小麦作为试验作物从废云母中调集钾的能力。结果表明,PGPR显着改善了玉米和小麦对钾的吸收,而云母是钾的唯一来源。这转化为较高的生物量积累,植物的钾含量和摄取量以及植物组织中的叶绿素和粗蛋白含量。在根瘤菌中,粘液芽孢杆菌比钾固氮菌和根瘤菌接种导致的钾动员明显更高。总体而言,用这些细菌接种玉米和小麦植物可用于从废云母中调集钾,而后者又可用作植物生长的钾源。

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