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Evaluation of Vegetative Growth Parameters in Biofield Treated Bottle Gourd (Lagenaria siceraria) and Okra (Abelmoschus esculentus)

机译:生物野化处理过的葫芦(Lagenaria siceraria)和秋葵(Abelmoschus esculentus)的营养生长参数评估

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The objective of the study was to assess the growth contributing characters of biofield treated bottle gourd (Lagenaria siceraria) and okra (Abelmoschus esculentus) seeds. The seeds of both crops were divided into two groups, one was kept aside and denoted as untreated, while the other group was subjected biofield energy treatment. The variabilities in growth contributing parameters were studied and compared with their control. Further the level of glutathione (GSH) in okra leaves, along with DNA fingerprinting in bottle gourd were analyzed using RAPD method. After germination, the plants of bottle gourd were reported to be strong and erect with better canopy as compared with the control. The vegetative growth of okra plants after biofield energy treatment was found to be stout with small canopy, strong steam, and more fruits per nodes, that contributed high yield as compared with the control. However, endogenous level of GSH in the leaves of okra was increased by 47.65% as compared to the untreated group, which may suggest an improved immunity of okra crops. Besides, the DNA fingerprinting data, showed polymorphism (42%) between treated and untreated samples of bottle gourd. The overall results suggest that the biofield energy treatment on bottle gourd and okra seeds, results an improved overall growth of plant and yield, which may enhance flowering and fruiting per plant. Study results conclude that the biofield energy treatment could be an alternate method to improve the crop yield in agricultural science.
机译:该研究的目的是评估经过生物场处理的葫芦(Lagenaria siceraria)和秋葵(Abelmoschus esculentus)种子的生长贡献特性。两种农作物的种子分为两组,一组放在一边,表示未处理,而另一组则经过生物田能量处理。研究了促生长参数的变化,并将其与对照进行比较。此外,使用RAPD方法分析了秋葵叶片中谷胱甘肽(GSH)的含量以及葫芦中的DNA指纹图谱。据报道,与对照相比,发芽的葫芦植物强壮,直立,冠层更好。生物田能源处理后,秋葵植物的营养生长较矮,冠层较小,蒸汽旺盛,每个结点的果实更多,与对照相比贡献了高产。然而,与未处理组相比,黄秋葵叶片中的内源性谷胱甘肽水平增加了47.65%,这可能表明黄秋葵作物的免疫力得到了改善。此外,DNA指纹数据显示,处理过的葫芦和未处理过的葫芦样品之间存在多态性(42%)。总体结果表明,对葫芦和秋葵种子进行生物场能量处理,可改善植物的整体生长和产量,从而提高单株植物的开花结果。研究结果表明,在农业科学领域中,生物田能量处理可能是提高作物产量的另一种方法。

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