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The effect of light quality on plant physiology, photosynthetic, and stress response in Arabidopsis thaliana leaves

机译:拟南芥植物生理学,光合作用和应力反应的轻质质量的影响

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The impacts of wavelengths in 500–600 nm on plant response and their underlying mechanisms remain elusive and required further investigation. Here, we investigated the effect of light quality on leaf area growth, biomass, pigments content, and net photosynthetic rate (Pn) across three Arabidopsis thaliana accessions, along with changes in transcription, photosynthates content, and antioxidative enzyme activity. Eleven-leaves plants were treated with BL; 450 nm, AL; 595 nm, RL; 650 nm, and FL; 400–700 nm as control. RL significantly increased leaf area growth, biomass, and promoted Pn. BL increased leaf area growth, carotenoid and anthocyanin content. AL significantly reduced leaf area growth and biomass, while Pn remained unaffected. Petiole elongation was further observed across accessions under AL. To explore the underlying mechanisms under AL, expression of key marker genes involved in light-responsive photosynthetic reaction, enzymatic activity of antioxidants, and content of photosynthates were monitored in Col-0 under AL, RL (as contrast), and FL (as control). AL induced transcription of GSH2 and PSBA , while downregulated NPQ1 and FNR2 . Photosynthates, including proteins and starches, showed lower content under AL. SOD and APX showed enhanced enzymatic activity under AL. These results provide insight into physiological and photosynthetic responses to light quality, in addition to identifying putative protective-mechanisms that may be induced to cope with lighting-stress in order to enhance plant stress tolerance.
机译:波长在500-600纳米对植物反应的影响及其潜在机制仍然难以实现,需要进一步调查。在这里,我们研究了在叶面积生长,生物质,颜料含量和净光合速​​率(PN)上的光质质量的影响,以及转录,光合素内容和抗氧化酶活性的变化。用BL处理11叶植物; 450 nm,al; 595 nm,rl; 650 nm,v; 400-700 nm作为控制。 RL显着增加了叶面积生长,生物质和促进PN。 BL增加叶面积生长,类胡萝卜素和花青素含量。 Al显着降低了叶面积生长和生物质,而PN保持不受影响。在Al下进一步观察到叶柄伸长率。为了探讨Al下的潜在机制,在Al,R1(与对比)下,在Col-0下监测参与光响应光合反应,抗氧化剂的酶活性,酶促活性和光合素含量的表达。 )。 A1诱导GSH2和PSBA的转录,而下调的NPQ1和FNR2。光合酯,包括蛋白质和淀粉,显示含量较低。 SOD和APX在Al下显示出增强的酶活性。除了识别可能诱导诱导照明应力的推定保护机制之外,这些结果还提供了对光质质量的生理和光合反应的洞察力。

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