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优化水培培养基和 NO/NH 比例以改善紫锥菊(Echinacea purpurea L.)精油成分。

Optimizing hydroponic culture media and NO/NH ratio for improving essential oil compositions of purple coneflower (Echinacea purpurea L.).

机构信息

Department of Soil Science, Faculty of Agriculture, Urmia University, Urmia, Iran.

Tasmanian Institute of Agriculture, University of Tasmania, Hobart, TAS, 7001, Australia.

出版信息

Sci Rep. 2021 Apr 13;11(1):8009. doi: 10.1038/s41598-021-87391-9.

Abstract

Medicinal plants represent a valuable commodity due to beneficial effects of their natural products on human health, prompting a need for finding a way to optimize/increase their production. In this study, a novel growing media with various perlite particle size and its mixture with peat moss was tested for hydroponic-based production of Echinacea purpurea medicinal plant under greenhouse conditions. The plant growth parameters such as plant height, total fresh leave weight, fresh root weight, total biomass, total chlorophyll, leaf area, and essential oil compositions were assessed. Perlite particle size in the growing media was varied from very coarse (more than 2 mm) to very fine (less than 0.5 mm), and the ratio between perlite and peat moss varied from 50:50 v/v to 30:70 v/v. In addition, two nitrate (NO) to ammonium (NH) ratios (90:10 and 70:30) were tested for each growing media. The medium containing very fine-grade perlite and 50:50 v/v perlite to peat moss ratio was found to be most optimal and beneficial for E. purpurea performance, resulting in maximal plant height, fresh and dry weight, leaf surface area, and chlorophyll content. It was also found that an increase in NO/NH ratio caused a significant increase in plant growth parameters and increase the plant essential oil content. The major terpene hydrocarbons found in extract of E. purpurea with the best growth parameters were germacrene D (51%), myrcene (15%), α-pinene (12%), β-caryophyllene (11%), and 1-Pentadecene (4.4%), respectively. The percentages of these terpene hydrocarbons were increased by increasing of NO/NH ratio. It can be concluded that decreasing the perlite particle size and increasing the NO/NH ratio increased the plant growth parameters and essential oil compositions in E. purpurea.

摘要

药用植物因其天然产物对人类健康的有益影响而成为一种有价值的商品,这促使人们需要寻找一种方法来优化/增加其产量。在这项研究中,在温室条件下,使用不同珍珠岩颗粒大小的新型生长介质及其与泥炭藓的混合物来进行紫锥菊药用植物的水培生产。评估了植物生长参数,如株高、总鲜叶重、鲜根重、总生物量、总叶绿素、叶面积和精油成分。生长介质中的珍珠岩颗粒大小从非常粗(大于 2 毫米)到非常细(小于 0.5 毫米)不等,珍珠岩和泥炭藓的比例从 50:50 v/v 到 30:70 v/v 不等。此外,还测试了每种生长介质的两种硝酸盐(NO)与铵(NH)比例(90:10 和 70:30)。结果发现,含有非常细级珍珠岩和 50:50 v/v 珍珠岩与泥炭藓比例的介质对紫锥菊的表现最为有利,导致最大的株高、鲜重和干重、叶片表面积和叶绿素含量。还发现,NO/NH 比例的增加会显著增加植物生长参数,并增加植物精油含量。在具有最佳生长参数的紫锥菊提取物中发现的主要萜类碳氢化合物是表-杜松烯 D(51%)、月桂烯(15%)、α-蒎烯(12%)、β-石竹烯(11%)和 1-十五烯(4.4%),分别。这些萜类碳氢化合物的百分比随着 NO/NH 比例的增加而增加。可以得出结论,减小珍珠岩颗粒大小并增加 NO/NH 比例会增加紫锥菊的植物生长参数和精油成分。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/aa7b/8044233/9220c33cb70b/41598_2021_87391_Fig1_HTML.jpg

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