最大限度地提高芒果品种 Dashehari 的果实质量和产量:微量营养素处理的影响

Vishal Vijayvargiya, Gurpreet Singh
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引用次数: 0

摘要

研究背景该研究旨在通过对印度拉贾斯坦邦的 Dashehari 芒果品种进行微量营养元素处理,提高其果实质量和产量。微量营养元素在植物生长和发育中起着至关重要的作用,缺乏微量营养元素会导致产量不达标和果实质量下降。本研究旨在调查施用微量营养元素对芒果树的影响,特别是对 Dashehari 品种的影响,以提高芒果产量和质量。通过了解微量营养素处理的影响,该研究旨在为可持续农业实践提供有价值的见解,从而优化芒果种植,提高农业生产率。研究方法研究对土壤和树木施用了硼砂、硫酸亚铁和硫酸锌,共分为 10 个处理。在 10 月份的第一周,对名为 Dashehari 的 18 年生芒果品种的土壤进行了处理,并在花蕾初生、盛花期和豌豆期的整个阶段进行了叶面喷洒。调查采用了三重复随机区组设计。研究结果结果表明,被称为 "T9 "的处理--在土壤中施用 125 克硼砂,然后在叶面上施用 0.2%的硼砂--产生的芒果果实质量和数量最高。此外,在土壤中每棵树施用 125 克 ZnSO4,然后在叶面上施用 0.4% ZnSO4,以及在土壤中每棵树施用 125 克 FeSO4,然后在叶面上施用 0.4% FeSO4 的处理方法也显示出良好的效果。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Maximizing Fruit Quality and Production of Mango cv Dashehari: The Impact of Micronutrient Treatments
Background: The research aims to enhance fruit quality and production of the Dashehari mango variety through micronutrient treatments in Rajasthan, India. Micronutrients play a crucial role in plant growth and development and their deficiency can lead to suboptimal yields and reduced fruit quality. This study seeks to investigate the effects of micronutrient application on mango trees, particularly focusing on the Dashehari variety, to improve both the quantity and quality of mango production. By understanding the impact of micronutrient treatments, the research aims to provide valuable insights into sustainable agricultural practices that can optimize mango cultivation and contribute to increased agricultural productivity. Methods: The research administered borax, ferrous sulphate and zinc sulphate to soil and trees in 10 treatments. The soil of an 18-year-old mango variety named Dashehari was treated in the first week of October with foliar sprays throughout the flower bud initiation, full bloom and pea stage initiation stages. A three-replication randomized block design was employed for the investigation. Result: The results show that the treatment known as “T9”-Application of borax to the soil in the amount of 125 grams, followed by the application of borax to the foliar in the amount of 0.2 per cent-produced the highest quality and quantity of mango fruit. Additionally, treatments of soil application of ZnSO4 per tree 125 g, followed by foliar application of ZnSO4 0.4% and soil application of FeSO4 per tree 125 g, followed by foliar application of FeSO4 0.4%, also showed promising results.
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