Legume Intercropping for Weed Control Efficiency in Kharif Maize (Zea mays L.) under Amritsar Conditions

Nekpreet Singh, Rakesh Kumar
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Abstract

Background: Maize is referred to as the “Queen of Cereals” since it has highest genetic yield potential. So, Maize being a rainy season crop, suffers badly due to heavy weed infestation reducing the potential yield. Intercropping with legumes is the effective technique to control weed infestation. Therefore, this study is focused on to evaluate the legume intercropping for weed control efficiency in kharif maize (Zea mays L.) under Amritsar conditions. Methods: A field study was carried out to evaluate the effect of “Legume intercropping for weed control efficiency in kharif maize (Zea mays L.) under Amritsar conditions” at Student’s Research Farm, P.G. Department of Agriculture, Khalsa College Amritsar, during Kharif season 2021-2022. The experiment consists of six treatment combination which were tested in factorial randomized block design with three replications. The treatment consisted of T1 - sole maize, T2- paired row maize, T3- maize + green gram (1:1), T4- maize + green gram (2:2), T5- maize + black gram (1:1), T6- maize + black gram (2:2) and two weed management practices i.e. weedy check and pendimethalin at 0.75 kg ha-1 (pre-emergence). Result: The results indicated that maize + green gram (1:1) intercropping system registered considerably lowest weed density of both monocot and dicot weeds at 25 DAS (58.14 m2) and 50 DAS (61.72 m2) and also significantly lower weed dry matter at 25 DAS (2.06 q ha-1), 50 DAS (4.58 q ha-1), 75 DAS (5.88 q ha-1). Maize + green gram (1:1) treatment also recorded considerably highest weed control efficiency (17.57 %) at 25 DAS and (16.38%) at 50 DAS. The highest maize grain yield (38.85 q ha-1) was achieved in maize + green gram (1:1) followed by (37.68 q ha-1) maize + black gram (1:1) and (33.41 q ha-1) maize + green gram (2:2). Maize grain equivalent yield and benefit-cost ratio significantly superior in all the intercropping systems than pure stand yield of crop. The highest maize grain equivalent yield (66.78 q ha-1) and benefits: cost ratio (3.6) was obtained in maize + green gram (2:2) followed by (3.31) maize + black gram (2:2) and (2.5) maize + green gram (1:1). Pre-emergence application of pendimethalin at 0.75 kg ha-1 gave substantially lower weed density at25 DAS (56.05 m2), 50 DAS (57.97 m2) and weed dry matter at 25 DAS (2.16 q ha-1), 50 DAS (4.03 q ha-1) and 75 DAS (5.35 q ha-1) and significantly superior weed control efficiency at 25 DAS (30.97%) and 50 DAS (27.98 %) over weedy check. Significantly higher maize grain yield (36.94 q ha-1), legumes yield (8.87 q ha-1), maize grain equivalent yield (58.45 q ha-1) and benefits: cost ratio (3.19).
阿姆利则条件下豆科作物间作对玉米杂草防治效果的影响
背景:玉米被称为“谷物女王”,因为它具有最高的遗传产量潜力。因此,玉米作为一种雨季作物,由于杂草的严重侵扰而严重降低了潜在产量。豆科作物间作是防治杂草的有效技术。因此,本研究重点评价了在阿姆利则条件下,豆科作物间作玉米(Zea mays L.)防治杂草的效果。方法:实地研究进行了评估的影响“豆类间作除草效率秋收作物玉米(玉米l .)在阿姆利则的条件下“学生研究农场,P.G.农业部在秋收作物季节节日大学阿姆利则,2021 - 2022。试验包括6个处理组合,采用因子随机区组设计,3个重复。处理包括T1 -单行玉米、T2-对行玉米、T3-玉米+绿克(1:1)、T4-玉米+绿克(2:2)、T5-玉米+黑克(1:1)、T6-玉米+黑克(2:2)和两种杂草管理措施,即杂草检查和0.75 kg hm -1(羽化前)的喷甲脒。结果:玉米+绿克(1:1)间作模式下,单子叶和双子叶杂草密度在25达斯(58.14 m2)和50达斯(61.72 m2)时均显著降低,干物质在25达斯(2.06 q ha-1)、50达斯(4.58 q ha-1)、75达斯(5.88 q ha-1)时显著降低。玉米+绿克(1:1)处理在25 DAS和50 DAS时的防杂草效率分别为17.57%和16.38%。玉米+绿克(1:1)产量最高(38.85 q ha-1),其次是玉米+黑克(37.68 q ha-1)和玉米+绿克(33.41 q ha-1)(2:1)。各间作制度下玉米籽粒当量产量和效益成本比均显著优于单纯林分作物产量。玉米+绿克(2:2)的玉米籽粒当量产量最高(66.78 q ha-1),效益成本比最高(3.6),其次是玉米+黑克(2:2)和玉米+绿克(1:1)。拔苗期施用0.75 kg ha-1的双甲醚显著降低了25 DAS (56.05 m2)、50 DAS (57.97 m2)的杂草密度和25 DAS (2.16 q ha-1)、50 DAS (4.03 q ha-1)和75 DAS (5.35 q ha-1)的杂草干物质,显著提高了25 DAS(30.97%)和50 DAS(27.98%)的杂草防治效果。显著提高玉米单产(36.94 q ha-1)、豆类单产(8.87 q ha-1)、玉米单产(58.45 q ha-1)和效益成本比(3.19)。
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