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Foliar applications of phosphate increase the yield of essential oil in menthol mint (Mentha arvensis)

机译:磷肥的叶面施用可提高薄荷薄荷(Mentha arvensis)中精油的产量

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Field experiments were conducted at Lucknow, India, to study the effect of foliar application of orthophosphoric acid and diammonium phosphate filtrate on the biosynthesis and yield of essential oil in transplanted menthol mint: a foliage rich and vegetatively harvested crop. A foliar spray of 10% diammonium phosphate filtrate on the plants of menthol mint enhanced the biosynthesis of essential oil in the leaves to the extent of 15.6–18.7% over the control. A spray of 0.1% orthophosphoric acid gave an increase in the range 8.0–9.4%. When different varieties of menthol mint were sprayed with 10% diammonium phosphate filtrate, the variety Kosi exhibited 13, 78.3 and 66% higher essential oil yield over the varieties Himalaya, Hariti and Kalka, respectively. At the same concentration of spray, the variety Kosi enhanced the essential oil yield by 60% compared with that of the control. The early transplanted crop (18 March) was found to be good in terms of higher essential oil production by about 31% than the later transplanted crop (31 March). It is recommended that in order to get a high essential oil yield from a transplanted mint crop, a foliar spray of 10% diammonium phosphate filtrate should be applied twice, first in the second week of April and second in the first week of June. The optimum time to transplant mint plantlets in the field is the third week of March. A putative working metabolic model of the phosphate effect on biosynthesis of essential oil in volatile plants has been proposed.
机译:在印度拉克瑙进行了田间试验,研究了叶面施用正磷酸和磷酸氢二铵滤液对薄荷薄荷(营养丰富且收获丰富的作物)移植薄荷薄荷的生物合成和精油产量的影响。在薄荷薄荷植物上喷洒10%磷酸氢二铵滤液的叶面喷剂比对照提高了叶片中精油的生物合成程度,达到15.6-18.7%。喷洒0.1%的正磷酸可增加8.0-9.4%的范围。当用10%的磷酸氢二铵滤液喷洒不同品种的薄荷薄荷时,Kosi品种比喜马拉雅,Hariti和Kalka品种的精油收率分别高13、78.3和66%。在相同的喷雾浓度下,与对照相比,Kosi品种的精油收率提高了60%。发现早期移植作物(3月18日)的精油产量比后期移植作物(3月31日)高约31%。建议为了从移植的薄荷作物中获得较高的精油产量,应在4月的第二个星期和6月的第一个星期的第二次应用10%磷酸氢二铵滤液的叶面喷雾两次。在田间移植薄荷苗的最佳时间是三月的第三周。有人提出了一个假定的代谢模型,该模型研究了磷酸盐对挥发性植物精油生物合成的影响。

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