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首页> 外文期刊>Journal of Plant Growth Regulation >Preparation and Standardisation of Smoke-Water for Seed Germination and Plant Growth Stimulation
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Preparation and Standardisation of Smoke-Water for Seed Germination and Plant Growth Stimulation

机译:种子萌发和植物生长刺激的烟水的制备与标准化

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Smoke-water (SW) has a positive effect on seed germination in many plant species and its application in various fields of plant science has become popular. The method of preparing SW is relatively easy and inexpensive. However, many researchers working in the field of smoke biology are still unfamiliar with preparing SW and testing it for bioactivity. Thus, the aim of this study was to develop a low-cost efficient apparatus to produce SW using grasses, its standardisation and quantification of major active biomolecules. The prepared crude SW was diluted with distilled water (SW:DW) to 75:25, 50:50 and 25:75 (v/v) and these sub-dilutions were further diluted to 1:500; 1:1000; 1:1500; 1:2000; 1:2500; 1:3000 and 1:3500 (v/v). For the standardisation of SW, lettuce seeds (Lactuca sativa L. cv. Grand Rapids) were tested to determine the best working concentration. The ratio 1:2500 (v/v) from the sub-dilution 25:75 (v/v) of SW was the best for germination of lettuce seeds in the dark, achieving 91% germination against the water control that had only 7-10% germination. This is the first study which reports the levels of stimulatory (karrikinolide 1, KAR(1) and karrikinolide 2, KAR(2)) and inhibitory (trimethylbutenolide, TMB) compounds present in SW using ultrahigh-performance liquid chromatography-electrospray positive ionisation tandem mass spectrometry (UHPLC-ESI(+)-MS/MS).
机译:烟水(SW)对许多植物种类的种子萌发具有积极影响,其在植物科学的各个领域的应用变得流行。制备SW的方法相对容易且便宜。然而,在烟雾生物学领域工作的许多研究人员仍然不熟悉制备SW并对生物活性进行测试。因此,本研究的目的是开发一种低成本的效率仪器,以使用草,其标准化和主要活性生物分子的标准化和定量。将制备的粗SW用蒸馏水(SW:DW)稀释至75:25,50:50和25:75(v / v),将这些副稀释液进一步稀释至1:500; 1:1000; 1:1500; 1:2000; 1:2500; 1:3000和1:3500(v / v)。为了确定最佳的工作浓度,对SW,莴苣种子的标准化(Lactuca Sativa L. CV。大急速)进行了测试。来自SW的亚稀释25:75(v / v)的比例1:2500(v / v)是在黑暗中获得生菜种子的萌发,从而降低了只有7-的水控制的91%萌发10%发芽。这是第一项研究,其报告刺激性水平(Karkinolide 1,Kar(1)和Karkikinolide 2,Kar(2))和SW中的抑制(三甲基丁烯醇醚,TMB)化合物使用超高化学液相色谱 - 电喷雾正离子串联串联串联质谱(UHPLC-ESI(+) - MS / MS)。

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