氮和硫水平对印度中央邦温迪亚高原地区印度芥菜 [Brassica juncea (L.) Czern & Coss] 生长特性和产量的影响

Shreyansh Pandey, Vikash Prasad Mishra, Deepak Kher, Anand Rao Azad, Anil Prakash
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摘要

2022 年的 Rabi 季节,在中央邦的 Vindhya 高原地区,SAGE 大学博帕尔分校的农田里进行了一项田间试验。目的是研究氮和硫营养对印度芥菜(Brassica juncea L.)生长和产量的影响。实验土壤为砂质壤土,pH 值呈弱碱性,排水性良好。尽管有适量的磷和钾,但土壤中的有机碳和氮含量较低,电导率较低,为 1.65 dS/m(1:2,土壤:水)。试验包括 27 个氮和硫处理组合,采用三重复的分层设计。处理包括三个氮水平(100、120 和 140 千克/公顷-1)和三个硫水平(20、40 和 60 千克/公顷-1)。研究重点是评估这些处理对芥菜生长、产量和养分吸收的影响。结果表明,芥菜的各种作物属性,如株高、绿叶数-1、分枝数-1、纤毛植株数-1、纤毛种子数-1、千粒重,以及产量(生物产量、种子产量和出油率),都随着氮含量从 100 千克/公顷到 140 千克/公顷的增加而显著提高。同样,施用 60 千克 S ha-1 的植株高度、绿叶数量、干物质产量、油产量最高,净收益在各种硫水平中也最高。140 千克氮(公顷-1)和 60 千克硫(公顷-1)的组合被证明具有成本效益,与其他氮和硫水平相比,产量、净收益和 B:C 比率都有所提高。因此,本研究建议施用 60 千克 S ha-1 和 140 千克 N ha-1,以提高芥菜作物的产量、净收益和效益成本比。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of Nitrogen and Sulphur Levels on Growth Attributes and Yield of Indian Mustard [Brassica juncea (L.) Czern & Coss] in Vindhya Plateau Region of Madhya Pradesh, India
In the Rabi season of 2022, a field experiment was conducted in the Vindhya plateau region of Madhya Pradesh at the agricultural field of SAGE University Bhopal. The objective was to investigate the impact of nitrogen and sulfur nutrition on the growth and yield of Indian mustard (Brassica juncea L.). The experimental soil, characterized as sandy loam with a slightly alkaline pH, exhibited good drainage. Despite having a moderate amount of available phosphorus and potassium, the soil had low levels of organic carbon and nitrogen, with a low electrical conductivity of 1.65 dS/m (1:2, soil: water). The experiment comprised 27 nitrogen and sulfur treatment combinations in a split-plot design with three replications. The treatments included three nitrogen levels (100, 120, and 140 kg ha-1) and three sulfur levels (20, 40, and 60 kg ha-1). The mustard variety Giriraj was cultivated, and the study focused on evaluating the effects of these treatments on growth, yield, and nutrient uptake. Results indicated that various mustard crop attributes, such as plant height, number of green leaves-1, branches plant-1, siliqua plant-1, seeds siliqua-1, and 1000 seed weight, as well as yields (biological, seed, and oil yield), exhibited significant increases with rising nitrogen levels from 100 kg N ha-1 to 140 kg N ha-1. Similarly, applying 60 kg S ha-1 resulted in maximum plant height, number of green leaves, dry matter production, oil yield, and the highest net returns among sulfur levels. The combination of 140 kg N ha-1 and 60 kg S ha-1 proved to be cost-effective, leading to increased yields, net returns, and a higher B:C ratio compared to other nitrogen and sulfur levels. Therefore, this study recommends the application of 60 kg S ha-1 and 140 kg N ha-1 for enhancing mustard crop yields, net returns, and the benefit-cost ratio.
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