碳点和 Fe 对甜瓜缺铁的复合修复作用

Compound repair effect of carbon dots and Fe on iron deficiency in Cucumis melon L.

机构信息

School of Chemistry, Chemical Engineering and Life Sciences, Wuhan University of Technology, Wuhan, 430070, PR China.

School of Chemistry, Chemical Engineering and Life Sciences, Wuhan University of Technology, Wuhan, 430070, PR China.

出版信息

Plant Physiol Biochem. 2019 Sep;142:137-142. doi: 10.1016/j.plaphy.2019.06.035. Epub 2019 Jun 28.

Abstract

Iron-deficiency is one of the most widespread micronutrient deficiency faced by plants, and proper iron supplementation is essential for the growth of crops and for people to obtain iron from food. In order to explore new methods of iron supplementation, we studied the repair effect of CDs on iron-deficient (Cucumis melo L.) muskmelon. Iron-deficient muskmelons were treated with different concentrations of Fe, CDs and their complexes. The results showed that CDs significantly increased the iron transport rate and it is noteworthy that 75 mg/L CDs increased the iron transport rate of 0.7 mg/L Fe by 134%. The compound treatment reduced the oxidative stress caused by iron deficiency, such as the CAT activity in the leaves of the compound treatment group was 10%-50% lower than that of the iron supplementation alone. Fluorescent imaging results of melon proved that CDs entered into the muskmelon seedlings. In combination with the above results and the adsorption of CDs, we speculated that the way CDs promoted iron absorption and transport was most likely to combine with Fe and co-transport in melon, which changed the content of reactive oxygen species and other free radicals, thus causing changes of physiological state of melon. This study confirmed that CDs had a positive effect on the iron deficiency of muskmelon, and improved the growth of muskmelon under the condition of iron deficiency, which has a certain reference value for further optimization of iron supplementation solution.

摘要

缺铁是植物面临的最普遍的微量营养素缺乏之一,适当的补铁对于作物的生长和人们从食物中获取铁至关重要。为了探索补铁的新方法,我们研究了 CDs 对缺铁(Cucumis melo L.)甜瓜的修复作用。用不同浓度的 Fe、CDs 及其配合物处理缺铁甜瓜。结果表明,CDs 显著提高了铁的转运速率,值得注意的是,75mg/L CDs 将 0.7mg/L Fe 的铁转运速率提高了 134%。复合处理减轻了缺铁引起的氧化应激,例如复合处理组叶片中的 CAT 活性比单独补铁组低 10%-50%。甜瓜的荧光成像结果证明 CDs 进入了甜瓜幼苗。结合以上结果和 CDs 的吸附作用,我们推测 CDs 促进铁吸收和转运的方式很可能是与 Fe 结合并在甜瓜中共同转运,从而改变活性氧物质和其他自由基的含量,进而引起甜瓜生理状态的变化。本研究证实 CDs 对甜瓜缺铁具有积极作用,并改善了缺铁条件下甜瓜的生长,对进一步优化补铁溶液具有一定的参考价值。

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