首页> 美国卫生研究院文献>Frontiers in Plant Science >Supplemental macronutrients and microbial fermentation products improve the uptake and transport of foliar applied zinc in sunflower (Helianthus annuus L.) plants. Studies utilizing micro X-ray florescence
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Supplemental macronutrients and microbial fermentation products improve the uptake and transport of foliar applied zinc in sunflower (Helianthus annuus L.) plants. Studies utilizing micro X-ray florescence

机译:补充的大量营养素和微生物发酵产品可改善向日葵(Helianthus annuus L.)植物中叶面施用锌的吸收和运输。利用微X射线荧光进行研究

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摘要

Enhancing nutrient uptake and the subsequent elemental transport from the sites of application to sites of utilization is of great importance to the science and practical field application of foliar fertilizers. The aim of this study was to investigate the mobility of various foliar applied zinc (Zn) formulations in sunflower (Helianthus annuus L.) and to evaluate the effects of the addition of an organic biostimulant on phloem loading and elemental mobility. This was achieved by application of foliar formulations to the blade of sunflower (H. annuus L.) and high-resolution elemental imaging with micro X-ray fluorescence (μ-XRF) to visualize Zn within the vascular system of the leaf petiole. Although no significant increase of total Zn in petioles was determined by inductively-coupled plasma mass-spectrometer, μ-XRF elemental imaging showed a clear enrichment of Zn in the vascular tissues within the sunflower petioles treated with foliar fertilizers containing Zn. The concentration of Zn in the vascular of sunflower petioles was increased when Zn was applied with other microelements with EDTA (commercial product Kick-Off) as compared with an equimolar concentration of ZnSO4 alone. The addition of macronutrients N, P, K (commercial product CleanStart) to the Kick-Off Zn fertilizer, further increased vascular system Zn concentrations while the addition of the microbially derived organic biostimulant “GroZyme” resulted in a remarkable enhancement of Zn concentrations in the petiole vascular system. The study provides direct visualized evidence for phloem transport of foliar applied Zn out of sites of application in plants by using μ-XRF technique, and suggests that the formulation of the foliar applied Zn and the addition of the organic biostimulant GroZyme increases the mobility of Zn following its absorption by the leaf of sunflower.
机译:从施肥地点到利用地点提高养分吸收和随后的元素运输,对叶面肥料的科学和实际应用非常重要。这项研究的目的是调查各种叶面施用的锌(Zn)制剂在向日葵(Helianthus annuus L.)中的迁移率,并评估添加有机生物刺激剂对韧皮部负载和元素迁移率的影响。这是通过将叶面制剂应用于向日葵叶片(H. annuus L.)并用微X射线荧光(μ-XRF)进行高分辨率元素成像以使叶柄的脉管系统中的锌可视化来实现的。尽管通过电感耦合等离子体质谱仪未确定叶柄中总Zn的显着增加,但μ-XRF元素成像显示了用含锌叶面肥料处理的向日葵叶柄中维管组织中锌的明显富集。与单独等摩尔浓度的ZnSO4相比,当将Zn与其他含EDTA的微量元素一起施用时,向日葵叶柄的血管中Zn的浓度会增加。向开式锌肥中添加大量营养素N,P,K(商品CleanStart),进一步增加了血管系统中的锌浓度,同时添加了微生物衍生的有机生物刺激剂“ GroZyme”,导致锌中锌的浓度显着提高。叶柄血管系统。该研究提供了直接的可视化证据,表明使用μ-XRF技术将叶面施用的锌韧皮部从植物的施用部位运出,并建议叶面施用的锌的配方和有机生物刺激剂GroZyme的添加增加了Zn的迁移率然后被向日葵的叶子吸收。

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