Effects of Different Fruit-based Multitier Systems On Soil Chemical Properties and Leaf Nutrient Acquisition Under Rainfed Plateau Conditions

IF 1.2 4区 农林科学 Q3 HORTICULTURE
Kumari Beauty, Mahesh Kumar Dhakar, Bikash Das, Sushanta Kumar Naik, B. C. Oraon, Reshma Shinde, B. P. Bhatt
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Abstract

The investigation examined a horti-silvi-agricultural system established four years ago, integrating various crops to optimize land use and productivity. This system included short-statured fruit crops such as Aonla and Peach as filler crops, with Mango and Mahogany serving as the main crops, while rice and ragi as intercrops. A split-plot design was employed, designating rice and ragi as main plots, and the following systems as subplots: Mahogany + Mango + Aonla, Mahogany + Mango + Peach, and Mahogany + Mango with no filler crop. The study revealed that the growth and development of filler crops were significantly influenced by the horti-silvi-agricultural system. Notably, in the Mahogany + Mango + Peach system, significant effects were observed on leaf nutrient levels (N, P, K, Ca, Mg) and carbohydrate content. The system also demonstrated greater soil moisture retention compared to a fallow system, with the peach-based combinations resulting in the highest reduction in electrical conductivity (EC). The organic carbon content in the horti-silvi-agricultural system’s soil was significantly higher than in a monocropping system, decreasing with soil depth. Additionally, the availability of nitrogen (N), phosphorus (P), and potassium (K) was higher in the surface layer of the Mango + Mahogany + Peach system. Overall, fruit tree-based systems were found to enhance soil organic matter, increase nutrient availability, and improve soil properties.

Abstract Image

雨养高原条件下不同果树多层系统对土壤化学性质和叶片养分获取的影响
这项调查研究了四年前建立的 "horti-silvi-农业系统",该系统整合了各种作物,以优化土地利用和提高生产率。该系统包括作为填充作物的芒果和桃花心木,以及作为间作作物的水稻和rabi。采用了分割地块设计,将水稻和芸苔作为主地块,以下系统作为副地块:桃花心木+芒果+芒拉、桃花心木+芒果+桃、桃花心木+芒果(无填充作物)。研究结果表明,填充作物的生长发育受 "硼-硅-硼 "农业系统的显著影响。值得注意的是,在桃花心木 + 芒果 + 桃子系统中,叶片养分水平(氮、磷、钾、钙、镁)和碳水化合物含量受到了显著影响。与休耕系统相比,该系统还显示出更强的土壤保湿能力,其中以桃为基础的组合导致导电率(EC)下降幅度最大。冬眠-硅藻-农业系统土壤中的有机碳含量明显高于单一种植系统,并随土壤深度的增加而减少。此外,芒果+桃花心木+桃子系统表层的氮(N)、磷(P)和钾(K)供应量较高。总体而言,果树系统能提高土壤有机质,增加养分供应,改善土壤性质。
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来源期刊
Erwerbs-Obstbau
Erwerbs-Obstbau 农林科学-园艺
CiteScore
1.70
自引率
15.40%
发文量
152
审稿时长
>12 weeks
期刊介绍: Erwerbs-Obstbau ist als internationales Fachorgan die führende Zeitschrift für Wissenschaftler, Berater und Praktiker im Erwerbsobstbau. Neben den wirtschaftlich führenden Obstarten widmet sich die Zeitschrift auch den Wildobstarten bzw. neuen Obstarten und deren zukünftige Bedeutung für die Ernährung des Menschen. Originalarbeiten mit zahlreichen Abbildungen, Übersichten und Tabellen stellen anwendungsbezogen den neuesten Kenntnisstand dar und schlagen eine Brücke zwischen Wissenschaft und Praxis. Die nach einem Begutachtungsprozeß zur Publikation angenommenen Originalarbeiten erscheinen in deutscher und englischer Sprache mit deutschem und englischem Titel. Review-Artikel, Buchbesprechungen und aktuelle Fachinformationen runden das Angebot ab.
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