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蓝光增强了黄瓜叶片的代谢变化,但紫外线与可见光谱中的光信号通路的相互作用对其产生了不同的影响。

Metabolic changes in cucumber leaves are enhanced by blue light but differentially affected by UV interactions with light signalling pathways in the visible spectrum.

机构信息

Aarhus University, Plant Food and Climate, Department of Food Science, Agrofoodpark 48, DK-8200 Aarhus, Denmark.

School of Science and Technology, Man-Technology-Environment Research Centre (MTM), Örebro University, SE-70182 Örebro, Sweden.

出版信息

Plant Sci. 2022 Aug;321:111326. doi: 10.1016/j.plantsci.2022.111326. Epub 2022 May 16.

Abstract

Ultraviolet radiation (UV, 280-400 nm) as an environmental signal triggers metabolic acclimatory responses. However, how different light qualities affect UV acclimation during growth is poorly understood. Here, cucumber plants (Cucumis sativus) were grown under blue, green, red, or white light in combination with UV. Their effects on leaf metabolites were determined using untargeted metabolomics. Blue and white growth light triggered increased levels of compounds related to primary and secondary metabolism, including amino acids, phenolics, hormones, and compounds related to sugar metabolism and the TCA cycle. In contrast, supplementary UV in a blue or white light background decreased leaf content of amino acids, phenolics, sugars, and TCA-related compounds, without affecting abscisic acid, auxin, zeatin, or jasmonic acid levels. However, in plants grown under green light, UV induced increased levels of phenolics, hormones (auxin, zeatin, dihydrozeatin-7-N-dihydrozeatin, jasmonic acid), amino acids, sugars, and TCA cycle-related compounds. Plants grown under red light with UV mainly showed decreased sugar content. These findings highlight the importance of the blue light component for metabolite accumulation. Also, data on interactions of UV with green light on the one hand, and blue or white light on the other, further contributes to our understanding of light quality regulation of plant metabolism.

摘要

紫外辐射(UV,280-400nm)作为环境信号,触发代谢适应反应。然而,不同的光质如何影响生长过程中的 UV 适应仍知之甚少。本研究采用非靶向代谢组学方法,在蓝光、绿光、红光或白光与 UV 组合下培养黄瓜植株(Cucumis sativus),以确定其对叶片代谢物的影响。蓝光和白光生长光引发了与初级和次级代谢相关的化合物水平的增加,包括氨基酸、酚类、激素以及与糖代谢和 TCA 循环相关的化合物。相比之下,在蓝光或白光背景下补充 UV 会降低叶片中氨基酸、酚类、糖和 TCA 相关化合物的含量,但不影响脱落酸、生长素、玉米素或茉莉酸的水平。然而,在绿光下生长的植物中,UV 诱导了酚类、激素(生长素、玉米素、二氢玉米素-7-N-二氢玉米素、茉莉酸)、氨基酸、糖和 TCA 循环相关化合物水平的增加。在红光下生长并接受 UV 的植物主要表现出糖含量的降低。这些发现强调了蓝光成分对代谢物积累的重要性。此外,关于 UV 与绿光相互作用以及与蓝光或白光相互作用的数据,进一步加深了我们对光质调控植物代谢的理解。

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