首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Growth and bioactive phytochemicals in barley (Hordeum vulgare L.) sprouts affected by atmospheric pressure plasma during seed germination
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Growth and bioactive phytochemicals in barley (Hordeum vulgare L.) sprouts affected by atmospheric pressure plasma during seed germination

机译:在种子萌发过程中受大气压等离子体影响的大麦(Hordeum Vulgare L.)豆芽的生长和生物活性植物化学

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摘要

Barley sprouts are 5 to 20 day-old grown whole plants that are widely consumed as a functional vegetable due to their health-promoting compounds such as saponarin, gamma-Aminobutyric acid (GABA), and policosanols. Recent plasma applications have been a promising approach in the agricultural and food industries to produce bioactive phytochemicals in sprouted crops. Therefore, this study investigated the plasma effects on the whole plant and its bioactive phytochemicals compared with those of an untreated control in barley sprouts. The optimal plasma exposure during seed germination can change physical and chemical properties of fully hydrated seeds of barley, accelerate the early growth of its sprouts and enhance bioactive phytochemicals in the sprouts. Thus, a single 6 min exposure of the plasma enhanced the fresh weight of whole barley seedlings by 137.5% of the untreated control at 9 d after the exposure and enhanced the contents of the primary metabolites including soluble sugars and free amino acids, and secondary metabolites including special phytochemicals such as saponarin, GABA, and policosanols. Therefore, our results suggest that the optimal plasma exposure can be used as a promising seed priming technique for the whole plant and the bioactive phytochemicals of barley sprouts.
机译:大麦豆芽是5至20天龄的种植的整株植物,由于它们的健康促进化合物如皂甙,γ-氨基丁酸(GABA)和甘氨醇而被广泛消耗作为功能性蔬菜。最近的等离子体应用是农业和食品工业的有希望的方法,在发芽的作物中生产生物活性植物化学症。因此,该研究对整个植物及其生物活性植物化学物质的血浆效应与大麦豆芽中未处理的对照相比调查了全植物及其生物活性植物化学物质。种子萌发过程中最佳的血浆暴露可以改变大麦的完全水性种子的物理和化学性质,加速其芽的早期生长,并增强豆芽中的生物活性植物化学。因此,等离子体的单次6分钟暴露在暴露后9 d的未处理对照的137.5%提高了整个大麦幼苗的新鲜重量,并​​增强了包括可溶性糖和游离氨基酸的主要代谢物的内容物,以及仲代谢物包括特殊的植物化学物质,如皂甙,加巴和番茄醇。因此,我们的结果表明,最佳的血浆暴露可以用作整个植物的有前景的种子引发技术和大麦芽的生物活性植物化学。

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