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Biomagnetic Priming-Possible Strategy to Revitalize Old Mustard Seeds

机译:振兴老芥菜种子的生物磁性启动策略

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Different priming methods were developed to improve seed germination and the early growth of seedlings. This study aimed to examine the combined effect of bacterial inoculation and static magnetic field on white mustard (Sinapis alba L.) germination. A plant growth-promoting bacterial strain Bacillus amyloliquefaciens D5 ARV was used for biopriming. The static magnetic field of 90 mT was applied for 5 and 15 min. Analyses of abscisic acid, chlorophyll, anthocyanins, flavonoids content, nitrogen balance index, and bacterial indole-3-acetic acid were used to explain observed effects. Bacterial inoculation improved seed germination, whereas exposure to 90 mT for 15 min suppressed germination. Such an unfavorable effect was neutralized when the treatment with the static magnetic field was combined with bacterial inoculation. The highest germination percentage was a result of synergistic action of B. amyloliquefaciens D5 ARV and 15 min long exposure to 90 mT, which induced an increase of 53.20% in the number of germinated seeds. The static magnetic field induced the increase of bacterial indole-3-acetic acid production threefold times. Biomagnetic priming caused a metabolic shift from primary to secondary metabolism in the white mustard seedlings. An adequate combination of biological priming and static magnetic field treatment can be successfully used in old seed revitalization and germination improvements. (c) 2021 Bioelectromagnetics Society
机译:开发了不同的引发方法以改善种子萌发和幼苗早期生长。本研究旨在研究细菌接种和静磁场对白芥菜(Sinapis Alba L.)萌发的综合作用。植物生长促进的细菌菌株芽孢杆菌淀粉醇素D5 ARV用于生物pliming。施用90mt的静磁场5和15分钟。使用脱落酸,叶绿素,花青素,黄酮类含量,氮平衡指数和细菌吲哚-3-乙酸的分析来解释观察到的作用。细菌接种改善种子萌发,而暴露于90mt抑制萌发。当用静磁场处理与细菌接种相结合时,使这种不利效果中和。最高的发芽率是B.淀粉氨酰胺D5 ARV的协同作用和15分钟暴露于90吨的结果,其在发芽种子的数量中诱导增加53.20%。静态磁场诱导细菌吲哚-3-乙酸产生的增加三倍时间。生物磁性引发导致母芥菜幼苗中初级代谢的代谢变化。可以成功地用于旧的种子振兴和萌发改善的生物灌注和静态磁场处理的充分组合。 (c)2021生物电磁学会

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