叶面施肥磷和锌对石灰性盐碱地饲料玉米生物计量和质量属性的影响

Muhammad Amjad Bashir, A. Rehim, Namra Khurshid, Qurat-Ul-Ain Raza, Hifsa Khurshid, Hafiz M. U. Raza
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摘要

炎热的气候是导致盐碱化和钠化的主要原因,从而降低了作物的产量。盐渍化土壤的增加对全球生产力产生了不利影响。在盐碱条件下,磷和锌之间的拮抗作用导致养分缺乏和增加。本研究旨在确定在盐碱条件下叶面喷施磷和锌对玉米生物计量和饲料质量参数的针对性影响。实验采用三种钾(0、1、2、2.5%)和锌(0、1、1.5%)水平,三次重复。研究表明,施用 Z1P1(51.0%)能显著提高玉米的钾浓度,其次是 Z0P2(33.15%)和 Z1.5P2.5(28.0%)。施用 Z1P0(91.73%)提高了锌浓度,其次是 Z0P1(84.45%)和 Z1.5P1(84.18%)。Z1.5P2.5 提高了氮浓度(39.84%)。Z1.5P2 增加了总矿物质含量(156.71%),其次是 Z0P1(142.64%)和 Z0P2(141.99%)。Z1.5P1 的粗蛋白浓度有所提高(39.92%),其次是 Z0P2(11.92%)。与 Z0P0 相比,Z0P2.5(51.89%)提高了粗脂肪百分比,Z0P1(34.91%)次之。研究得出结论,在盐碱条件下叶面施肥 P 和 Zn 有助于减缓盐分对玉米饲料生物计量和质量参数的负面影响。
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Effect of Foliar Application of Phosphorus and Zinc on Biometric and Quality Attributes of Fodder Maize in Calcareous Saline-Sodic Soils
The hot climate is the major reason to promote salt salinization and sodication, which retards the crop productivity. The increase in salt-affected soils is adversely affecting worldwide productivity. The antagonistic effect among P and Zn causes nutrient deficiency and increases under saline conditions. The present study aimed to identify the targeted influence of foliar application of P and Zn on maize biometric and fodder quality parameters under saline-sodic conditions. The experiment was based on three P (0, 1, 2, 2.5%) and Zn levels (0, 1, and 1.5%), with three replications. The study showed that P concentration in maize was improved significantly with Z1P1 (51.0%) application, followed by Z0P2 (33.15%) and Z1.5P2.5 (28.0%). The Zn concentration enhanced with Z1P0 (91.73%), followed by Z0P1 (84.45%) and Z1.5P1 (84.18%). Nitrogen concentration improved with Z1.5P2.5 (39.84%). Total mineral contents were increased with Z1.5P2 (156.71%), followed by Z0P1 (142.64%) and Z0P2 (141.99%). Crude protein concentration was improved in Z1.5P1 (39.92%), followed by Z0P2 (11.92%). Crude fat percentage was increased with Z0P2.5 (51.89%), followed by Z0P1 (34.91%) as compared to Z0P0. The study concludes that foliar application of P and Zn in saline-sodic conditions helps retard the negative impacts of salts on biometric and quality parameters of maize fodder.
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