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亲生物发光二极管光源系统的光谱改变了罗勒属和薰衣草属植物的精油成分及植物形态。

Light spectra of biophilic LED-sourced system modify essential oils composition and plant morphology of L. and L.

作者信息

Beatrice Peter, Saviano Gabriella, Reguzzoni Marcella, Divino Fabio, Fantasma Francesca, Chiatante Donato, Montagnoli Antonio

机构信息

Department of Biotechnology and Life Sciences, University of Insubria, Varese, Italy.

Department of Biosciences and Territory, University of Molise, Pesche, Italy.

出版信息

Front Plant Sci. 2023 Jan 19;14:1093883. doi: 10.3389/fpls.2023.1093883. eCollection 2023.

Abstract

Investigating morphological and molecular mechanisms that plants adopt in response to artificial biophilic lighting is crucial for implementing biophilic approaches in indoor environments. Also, studying the essential oils (EOs) composition in aromatic plants can help unveil the light influence on plant metabolism and open new investigative routes devoted to producing valuable molecules for human health and commercial applications. We assessed the growth performance and the EOs composition of and grown under an innovative artificial biophilic lighting system (CoeLux), that enables the simulation of natural sunlight with a realistic sun perception, and compared it to high-pressure sodium lamps (control) We found that plants grown under the CoeLux light type experienced a general suppression of both above and belowground biomass, a high leaf area, and a lower leaf thickness, which might be related to the shade avoidance syndrome. The secondary metabolites composition in the plants' essential oils was scarcely affected by both light intensity and spectral composition of the CoeLux light type, as similarities above 80% were observed with respect to the control light treatments and within both plant species. The major differences were detected with respect to the EOs extracted from plants grown under natural sunlight (52% similarity in and 75% in ). Overall, it can be speculated that the growth of these two aromatic plants under the CoeLux lighting systems is a feasible strategy to improve biophilic approaches in closed environments that include both plants and artificial sunlight. Among the two plant species analyzed, showed an overall better performance in terms of both morphological traits and essential oil composition. To increase biomass production and enhance the EOs quality (e.g., higher menthol concentrations), further studies should focus on technical solutions to raise the light intensity irradiating plants during their growth under the CoeLux lighting systems.

摘要

研究植物对人工亲生物照明所采用的形态学和分子机制,对于在室内环境中实施亲生物方法至关重要。此外,研究芳香植物中的精油(EOs)成分有助于揭示光照对植物新陈代谢的影响,并开辟新的研究途径,致力于生产对人类健康和商业应用有价值的分子。我们评估了在创新的人工亲生物照明系统(CoeLux)下生长的[植物名称1]和[植物名称2]的生长性能和EOs成分,该系统能够以逼真的太阳感知模拟自然阳光,并将其与高压钠灯(对照)进行比较。我们发现,在CoeLux光型下生长的植物,地上和地下生物量普遍受到抑制,叶面积较大,叶片厚度较低,这可能与避荫综合征有关。植物精油中的次生代谢物成分几乎不受CoeLux光型的光强和光谱组成的影响,因为在对照光处理以及两种植物物种中均观察到相似度超过80%。与在自然阳光下生长的植物所提取的EOs相比,检测到了主要差异([植物名称1]中相似度为52%,[植物名称2]中为75%)。总体而言,可以推测,这两种芳香植物在CoeLux照明系统下的生长是一种可行的策略,可改善包括植物和人工阳光的封闭环境中的亲生物方法。在所分析的两种植物物种中,[植物名称1]在形态特征和精油成分方面总体表现更好。为了提高生物量产量并提升EOs质量(例如,提高薄荷醇浓度),进一步的研究应侧重于技术解决方案,以提高植物在CoeLux照明系统下生长期间照射到的光强。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2bef/9893021/941c5e7045b4/fpls-14-1093883-g001.jpg

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