首页> 美国卫生研究院文献>Frontiers in Plant Science >The effects of foliar fertilization with iron sulfate in chlorotic leaves are limited to the treated area. A study with peach trees (Prunus persica L. Batsch) grown in the field and sugar beet (Beta vulgaris L.) grown in hydroponics
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The effects of foliar fertilization with iron sulfate in chlorotic leaves are limited to the treated area. A study with peach trees (Prunus persica L. Batsch) grown in the field and sugar beet (Beta vulgaris L.) grown in hydroponics

机译:在硫酸盐的叶子中用硫酸铁叶面施肥的效果仅限于处理区域。田间种植桃树(Prunus persica L. Batsch)和水培种植甜菜(Beta vulgaris L.)的研究

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摘要

Crop Fe deficiency is a worldwide problem. The aim of this study was to assess the effects of foliar Fe applications in two species grown in different environments: peach (Prunus persica L. Batsch) trees grown in the field and sugar beet (Beta vulgaris L. cv. “Orbis”) grown in hydroponics. The distal half of Fe-deficient, chlorotic leaves was treated with Fe sulfate by dipping and using a brush in peach trees and sugar beet plants, respectively. The re-greening of the distal (Fe-treated) and basal (untreated) leaf areas was monitored, and the nutrient and photosynthetic pigment composition of the two areas were also determined. Leaves were also studied using chlorophyll fluorescence imaging, low temperature-scanning electron microscopy microanalysis, scanning transmission ion microscopy-particle induced X-ray emission and Perls Fe staining. The distal, Fe-treated leaf parts of both species showed a significant increase in Fe concentrations (across the whole leaf volume) and marked re-greening, with significant increases in the concentrations of all photosynthetic pigments, as well as decreases in de-epoxidation of xanthophyll cycle carotenoids and increases in photochemical efficiency. In the basal, untreated leaf parts, Fe concentrations increased slightly, but little re-greening occurred. No changes in the concentrations of other nutrients were found. Foliar Fe fertilization was effective in re-greening treated leaf areas both in peach trees and sugar beet plants. Results indicate that the effects of foliar Fe-sulfate fertilization in Fe-deficient, chlorotic leaves were minor outside the leaf surface treated, indicating that Fe mobility within the leaf is a major constraint for full fertilizer effectiveness in crops where Fe-deficiency is established and leaf chlorosis occurs.
机译:作物铁缺乏是一个世界性的问题。这项研究的目的是评估叶面施用铁对两种在不同环境中生长的物种的影响:田间种植的桃树(Prunus persica L. Batsch)和甜菜(Beta vulgaris L. cv。“ Orbis”)在水培法中。分别在桃树和甜菜植物中浸入并用刷子用硫酸铁处理缺铁的褪绿叶的远端一半。监测了远端(铁处理)和基部(未处理)叶区域的重新绿化,并确定了这两个区域的营养成分和光合色素成分。还使用叶绿素荧光成像,低温扫描电子显微镜显微分析,扫描透射离子显微镜颗粒诱导的X射线发射和Perls Fe染色研究了叶片。这两个物种的经铁处理的远端叶部分均显示出铁浓度(在整个叶体积上)显着增加,并显着重新绿化,所有光合色素的浓度显着增加,脱环氧化作用降低叶黄素循环类胡萝卜素的含量和光化学效率的提高。在未经处理的基部叶部分,Fe浓度略有增加,但几乎没有再绿化。没有发现其他营养素浓度的变化。叶面铁肥有效地使桃树和甜菜植物中经过处理的叶子区域重新绿化。结果表明,叶铁硫酸盐施肥对缺铁的,褪绿的叶在处理过的叶表面外部的影响很小,表明叶内的铁迁移率是建立缺铁作物的完全肥料有效性的主要制约因素。发生叶绿化。

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