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Photosynthesis Enhancement in Maize via Nontoxic Orange Carbon Dots

机译:通过无毒橙色碳点玉米光合作用增强

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The sustained increase in leaf photosynthesis may increase crop yield. Due to many limitations, plants use much less photosynthetic capacity than is theoretically possible. Plant nanobionics investigates nanoparticle application in living plants, which improves certain plant functions. We synthesized and tested nontoxic orange carbon dots (o-CDs) for the photosynthetic efficiency increase in maize (Zea mays L.). We applied o-CDs foliarly or by adding to the growth solution. The photosynthetic parameters and content of photosynthetic pigments were recorded. The total phenolic content (TPC) and total antioxidant activity (TAA) were measured to monitor the plant antioxidant response to o-CDs. The photosynthetic parameters' values were higher for foliar than for solution application. The 1 mg/L o-CDs applied foliarly and 5 mg/L in solution increased photosynthetic parameters in leaves. The o-CDs raised photosynthetic pigments. The TAA and TPC results indicate reduced antioxidant activity in the plant organs more exposed to o-CDs, depending on the way of application.
机译:叶片光合作用的持续增加可能会提高作物产量。由于许多限制,植物使用的光合能力比理论上可能的要少得多。植物纳米仿生学研究纳米粒子在活体植物中的应用,从而改善某些植物功能。我们合成并测试了无毒橙色碳点(o-CDs),以提高玉米(Zea mays L.)的光合效率。我们通过叶面或向生长溶液中添加o-CDs。记录光合参数和光合色素含量。通过测定总酚含量(TPC)和总抗氧化活性(TAA)来监测植物对o-CDs的抗氧化反应。叶面施肥的光合参数值高于溶液施肥。叶面施用1 mg/L o-CDs和溶液中施用5 mg/L o-CDs可提高叶片的光合参数。o-CDs提高了光合色素。TAA和TPC结果表明,更多接触o-CDs的植物器官抗氧化活性降低,具体取决于施用方式。

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