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Metabolic Reprogramming in Leaf Lettuce Grown Under Different Light Quality and Intensity Conditions Using Narrow-Band LEDs

机译:使用窄带LED在不同光质量和强度条件下种植的生菜中的代谢重编程

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摘要

Light-emitting diodes (LEDs) are an artificial light source used in closed-type plant factories and provide a promising solution for a year-round supply of green leafy vegetables, such as lettuce (Lactuca sativa L.). Obtaining high-quality seedlings using controlled irradiation from LEDs is critical, as the seedling health affects the growth and yield of leaf lettuce after transplantation. Because key molecular pathways underlying plant responses to a specific light quality and intensity remain poorly characterised, we used a multi-omics–based approach to evaluate the metabolic and transcriptional reprogramming of leaf lettuce seedlings grown under narrow-band LED lighting. Four types of monochromatic LEDs (one blue, two green and one red) and white fluorescent light (control) were used at low and high intensities (100 and 300 μmol·m−2·s−1, respectively). Multi-platform mass spectrometry-based metabolomics and RNA-Seq were used to determine changes in the metabolome and transcriptome of lettuce plants in response to different light qualities and intensities. Metabolic pathway analysis revealed distinct regulatory mechanisms involved in flavonoid and phenylpropanoid biosynthetic pathways under blue and green wavelengths. Taken together, these data suggest that the energy transmitted by green light is effective in creating a balance between biomass production and the production of secondary metabolites involved in plant defence.
机译:发光二极管(LED)是一种用于封闭型工厂工厂的人造光源,为全年供应绿叶蔬菜(例如生菜)提供了有希望的解决方案。使用受控的LED照射获得高质量的幼苗至关重要,因为幼苗的健康会影响移栽后生菜的生长和产量。由于植物对特定光质量和强度的响应所依据的关键分子途径仍然很难表征,因此我们使用了基于多组学的方法来评估在窄带LED照明下生长的莴苣幼苗的代谢和转录重编程。在低强度和高强度(100和300μμmol·m -2 ·s )下使用四种类型的单色LED(一种蓝色,两种绿色和一种红色)和白色荧光灯(对照)。 -1 )。基于多平台质谱的代谢组学和RNA-Seq用于确定莴苣植物响应不同光质和强度的代谢组和转录组的变化。代谢途径分析揭示了在蓝色和绿色波长下参与类黄酮和苯丙烷类生物合成途径的不同调控机制。综上所述,这些数据表明,绿光传输的能量可有效地在生物量生产与植物防御中涉及的次级代谢产物的生产之间建立平衡。

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