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番茄对日终红/远红光和绿光的生理及植物化学响应 。(注:原句中“L.”可能有误,推测应该是某种植物名称,这里先按字面翻译,若有准确植物名可替换“L.”进行更准确翻译 )

Physiological and Phytochemical Responses of L. to End-of-Day Red/Far-Red and Green Light.

作者信息

Lozano-Castellanos Luisa F, Pennisi Giuseppina, Navas-Gracia Luis Manuel, Orsini Francesco, Sánchez-Hernández Eva, Martín-Ramos Pablo, Correa-Guimaraes Adriana

机构信息

TADRUS Research Group, Department of Agricultural and Forestry Engineering, ETSIIAA, University of Valladolid, Avda. Madrid 44, 34004 Palencia, Spain.

Research Group on Biodiversity and Dynamics of Tropical Ecosystems-GIBDET, Faculty of Engineering Forestry, University of Tolima, Ibagué 730006, Colombia.

出版信息

Biology (Basel). 2025 Jul 24;14(8):935. doi: 10.3390/biology14080935.

Abstract

L. is a widely used medicinal plant whose secondary metabolism and morphology are influenced by light. This study evaluated the effects of 2 and 4 h end-of-day (EOD) red/far-red (R:FR) and green (G) light on the growth, physiology, and phytochemical profile of hydroponically grown under a constant red/blue light background, compared with a red/blue control without EOD treatment. Morphological, physiological (gas exchange, chlorophyll fluorescence), biochemical (chlorophyll, anthocyanin), and chemical composition (attenuated total reflectance-Fourier transform infrared spectroscopy (ATR-FTIR) and Gas Chromatography-Mass Spectrometry (GC-MS)) were evaluated. EOD G 2 h enhanced photosynthetic pigments, anthocyanins, and biomass, while control plants showed higher phenolic content. EOD R:FR induced stem elongation but reduced pigment and metabolite accumulation. GC-MS revealed organ-specific metabolic specialization, with flowers displaying greater chemical diversity than leaves. EOD G favored sesquiterpene diversity in flowers, while EOD R:FR increased nitrogen-containing compounds and unsaturated fatty acids. Vibrational data supported these shifts, with spectral signatures of esters, phenolics, and lipid-related structures. Bioactive compounds, including -cadinol and carboxylic acids, were identified across treatments. These findings demonstrate that EOD light modulates physiological and metabolic traits in , highlighting EOD G as an enhancer of biomass and phytochemical richness for pharmaceutical applications under controlled conditions.

摘要

罗勒是一种广泛使用的药用植物,其次级代谢和形态受光照影响。本研究评估了在恒定红蓝光背景下,每天结束时(EOD)2小时和4小时的红/远红(R:FR)光及绿光对水培罗勒生长、生理和植物化学特征的影响,并与未进行EOD处理的红/蓝对照进行比较。对形态、生理(气体交换、叶绿素荧光)、生化(叶绿素、花青素)和化学成分(衰减全反射-傅里叶变换红外光谱(ATR-FTIR)和气相色谱-质谱联用(GC-MS))进行了评估。EOD绿光照射2小时可增强光合色素、花青素和生物量,而对照植物的酚类含量更高。EOD红/远红光诱导茎伸长,但减少色素和代谢物积累。GC-MS显示了器官特异性的代谢特化,花朵比叶片表现出更大的化学多样性。EOD绿光有利于花朵中倍半萜的多样性,而EOD红/远红光增加了含氮化合物和不饱和脂肪酸。振动数据支持了这些变化,酯类、酚类和脂质相关结构具有光谱特征。在所有处理中都鉴定出了包括β-杜松醇和羧酸在内的生物活性化合物。这些发现表明,EOD光可调节罗勒的生理和代谢特性,突出了EOD绿光作为可控条件下药用生物质和植物化学丰富度增强剂的作用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/60e4/12383836/b0a766fb60f0/biology-14-00935-g001.jpg

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