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拉曼光谱能高度精确地区分年轻的雄性和雌性大麻植株。

Raman spectroscopy enables highly accurate differentiation between young male and female hemp plants.

机构信息

Department of Biochemistry and Biophysics, Texas A&M University, College Station, TX, 77843, USA.

Department of Soil and Crop Sciences, Texas A&M University, College Station, TX, 77843, USA.

出版信息

Planta. 2022 Mar 13;255(4):85. doi: 10.1007/s00425-022-03865-8.

Abstract

Hand-held Raman spectroscopy can be used for highly accurate differentiation between young male and female hemp plants. This differentiation is based on significantly different concentration of lutein in these plants. Last year, a global market of only industrial hemp attained the value of USD 4.7 billion. It is by far the fastest growing market with projected growth of 22.5% between 2021 and 2026. Hemp (Cannabis sativa L.) is a dioecious species that has separate male and female plants. In hemp farming, female plants are strongly preferred because male plants do not produce sufficient amount of cannabinoids. Male plants are also eliminated to minimize a possibility of uncontrolled cross-fertilization of plants. Silver treatments can induce development of male flowers on genetically female plants in order to produce feminized seed. Resulting cannabinoid hemp production fields should contain 100% female plants. However, any unintended pollination from male plants can produce unwanted males in production fields. Therefore, there is a growing demand for a label-free, non-invasive, and confirmatory approach that can be used to differentiate between male and female plants before flowering. In this study, we examined the extent to which Raman spectroscopy, an emerging optical technique, can be used for the accurate differentiation between young male and female hemp plants. Our findings show that Raman spectroscopy enables differentiation between male and female plants with 90% and 94% accuracy on the level of young and mature plants, respectively. Such analysis is entirely non-invasive and non-destructive to plants and can be performed in seconds using a hand-held spectrometer. High-performance liquid chromatography (HPLC) analysis and collected Raman spectra demonstrate that this spectroscopic differentiation is based on significantly different concentrations of carotenoids in male vs female plants. These findings open up a new avenue for quality control of plants grown in both field and a greenhouse.

摘要

手持式拉曼光谱技术可用于高度准确地区分年轻的雄性和雌性大麻植物。这种区分是基于这些植物中叶黄素浓度的显著差异。去年,全球工业大麻市场仅达到 47 亿美元的价值。这是迄今为止增长最快的市场,预计 2021 年至 2026 年期间的增长率为 22.5%。大麻(Cannabis sativa L.)是一种雌雄异株的植物,有单独的雄性和雌性植物。在大麻种植中,雌性植物更受欢迎,因为雄性植物不会产生足够数量的大麻素。为了最大限度地减少植物不受控制的异花授粉的可能性,雄性植物也被淘汰。银处理可以诱导遗传上为雌性的植物发育雄性花朵,以生产雌性化的种子。由此产生的大麻素大麻生产田应包含 100%的雌性植物。然而,任何来自雄性植物的意外授粉都可能在生产田中产生不需要的雄性植物。因此,对一种非侵入性、非破坏性、可用于在开花前区分雌雄植物的无标签、确证性方法的需求日益增长。在这项研究中,我们研究了拉曼光谱(一种新兴的光学技术)在多大程度上可用于准确区分年轻的雄性和雌性大麻植物。我们的研究结果表明,拉曼光谱能够在年轻和成熟植物水平上分别以 90%和 94%的准确率区分雄性和雌性植物。这种分析对植物完全是非侵入性和非破坏性的,可以使用手持式光谱仪在几秒钟内完成。高效液相色谱(HPLC)分析和收集的拉曼光谱表明,这种光谱区分是基于雄性与雌性植物中叶黄素浓度的显著差异。这些发现为田间和温室中种植的植物的质量控制开辟了新的途径。

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