首页> 美国卫生研究院文献>International Journal of Molecular Sciences >Influence of Green Red and Blue Light Emitting Diodes on Multiprotein Complex Proteins and Photosynthetic Activity under Different Light Intensities in Lettuce Leaves (Lactuca sativa L.)
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Influence of Green Red and Blue Light Emitting Diodes on Multiprotein Complex Proteins and Photosynthetic Activity under Different Light Intensities in Lettuce Leaves (Lactuca sativa L.)

机译:绿光红光和蓝光发光二极管对莴苣叶片中不同光强度下多蛋白复合蛋白和光合活性的影响

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摘要

The objective of this study was to investigate the response of light emitting diodes (LEDs) at different light intensities (70 and 80 for green LEDs, 88 and 238 for red LEDs and 80 and 238 μmol m−2 s−1 for blue LEDs) at three wavelengths in lettuce leaves. Lettuce leaves were exposed to (522 nm), red (639 nm) and blue (470 nm) LEDs of different light intensities. Thylakoid multiprotein complex proteins and photosynthetic metabolism were then investigated. Biomass and photosynthetic parameters increased with an increasing light intensity under blue LED illumination and decreased when illuminated with red and green LEDs with decreased light intensity. The expression of multiprotein complex proteins including PSII-core dimer and PSII-core monomer using blue LEDs illumination was higher at higher light intensity (238 μmol m−2 s−1) and was lowered with decreased light intensity (70–80 μmol m−2 s−1). The responses of chloroplast sub-compartment proteins, including those active in stomatal opening and closing, and leaf physiological responses at different light intensities, indicated induced growth enhancement upon illumination with blue LEDs. High intensity blue LEDs promote plant growth by controlling the integrity of chloroplast proteins that optimize photosynthetic performance in the natural environment.
机译:这项研究的目的是研究发光二极管(LED)在不同光强度下的响应(绿色LED为70和80,红色LED为88和238,以及80和238μmolm −2 莴苣叶片中三个波长处的s −1 (用于蓝色LED)。生菜叶片暴露于不同光强度的(522 nm),红色(639 nm)和蓝色(470 nm)LED。然后研究类囊体多蛋白复合蛋白和光合代谢。在蓝色LED照明下,生物量和光合参数随光强度的增加而增加,而在红色和绿色LED照明时,生物质和光合参数会降低。在较高的光强度下(238μmolm -2 s -1 ),蓝色LED照明下包括PSII-核心二聚体和PSII-核心单体在内的多蛋白复合蛋白的表达更高。并随着光强度的降低而降低(70-80μmolm -2 s -1 )。叶绿体小室蛋白的响应,包括在气孔打开和关闭中活跃的蛋白,以及在不同光强度下的叶片生理响应,均表明在蓝色LED照射下诱导了生长增强。高强度的蓝色LED通过控制叶绿体蛋白的完整性来促进植物的生长,从而优化自然环境中的光合性能。

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