Narrowing maize yield gaps in the rainfed plateau region of Odisha

IF 1.6 4区 农林科学 Q1 Agricultural and Biological Sciences Experimental Agriculture Pub Date : 2022-05-26 DOI:10.1017/S0014479722000187
Panneerselvam Peramaiyan, A. J. Mcdonald, Virender Kumar, P. Craufurd, Iftikar Wasim, N. Parida, S. Pattnaik, Balwinder Singh, A. Yadav, Anurag Ajay, Sudhanshu Singh, R. Malik
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引用次数: 1

Abstract

Abstract Maize is the primary staple crop cultivated during the monsoon season in eastern India. However, yield gaps are large because of multiple factors, including low adoption rates of good agronomic management practices. This study aimed to narrow the maize yield gap using diverse agronomic and varietal interventions through field experiments over 2 years (2013–2014) in the rainfed plateau region of Odisha. As a result, maize yield increased by 0.9, 0.74, and 0.17 Mg ha−1 under optimum plant population, fertilizer management, and herbicide-based weed management, respectively, over farmers’ current practices (Check). Moreover, when all three interventions were combined (‘best’ management practice), grain yields increased by 1.7 Mg ha−1 in conservation tillage and 2.2 Mg ha−1 in conventional tillage. We also observed that the combination of long-duration hybrids and best management practices (BMPs) increased grain yield by 4.0 Mg ha−1 and profitability by $888 ha−1 over farmers’ current practices. In addition, Nutrient Expert decision support tool-based fertilizer management along with BMPs increased grain yield by 1.7 Mg ha−1 and profitability by $314 ha−1 over farmers’ fertilizer practices (Check). These results suggest that the combination of maize hybrids and BMPs can improve the productivity and profitability of rainfed maize in the plateau region of Odisha. However, these entry points for intensification need to be placed in the context of varying investment requirements, input and output market conditions, and matched with farmer preferences and risk.
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缩小奥里萨邦旱作高原地区玉米产量差距
摘要玉米是印度东部季风季节种植的主要作物。然而,由于多种因素,包括良好农艺管理实践的采用率低,产量差距很大。本研究旨在通过2年(2013-2014年)在奥迪沙热带雨林高原地区的田间试验,采用不同的农艺和品种干预措施来缩小玉米产量差距。因此,在最佳植物种群、肥料管理和基于除草剂的杂草管理下,玉米产量分别比农民目前的做法增加了0.9、0.74和0.17 Mg ha−1(检查)。此外,当所有三种干预措施相结合(“最佳”管理实践)时,保护性耕作的粮食产量增加了1.7 Mg ha−1,传统耕作的粮食增产了2.2 Mg ha–1。我们还观察到,与农民目前的做法相比,长期杂交和最佳管理做法的结合使粮食产量增加了4.0 Mg ha−1,盈利能力增加了888 ha−1美元。此外,基于营养专家决策支持工具的化肥管理以及BMP使粮食产量比农民的化肥做法增加了1.7 Mg ha−1,盈利能力增加了314 ha−1美元(Check)。这些结果表明,玉米杂交种和BMP的组合可以提高奥迪沙高原地区雨养玉米的生产力和盈利能力。然而,这些集约化的切入点需要放在不同投资要求、投入和产出市场条件的背景下,并与农民的偏好和风险相匹配。
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来源期刊
Experimental Agriculture
Experimental Agriculture 农林科学-农艺学
CiteScore
2.50
自引率
6.20%
发文量
29
审稿时长
24 months
期刊介绍: With a focus on the tropical and sub-tropical regions of the world, Experimental Agriculture publishes the results of original research on field, plantation and herbage crops grown for food or feed, or for industrial purposes, and on farming systems, including livestock and people. It reports experimental work designed to explain how crops respond to the environment in biological and physical terms, and on the social and economic issues that may influence the uptake of the results of research by policy makers and farmers, including the role of institutions and partnerships in delivering impact. The journal also publishes accounts and critical discussions of new quantitative and qualitative methods in agricultural and ecosystems research, and of contemporary issues arising in countries where agricultural production needs to develop rapidly. There is a regular book review section and occasional, often invited, reviews of research.
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