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首页> 外文期刊>The Indian Journal of Agronomy >Effect of resource-conserving and planting techniques on productivity of maize (Zea mays)-wheat (Triticum aestivum) cropping system
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Effect of resource-conserving and planting techniques on productivity of maize (Zea mays)-wheat (Triticum aestivum) cropping system

机译:资源节约和种植技术对玉米-小麦种植系统生产力的影响

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摘要

A field experiment was conducted on a silty clay loam soil of Palampur during 2009-2011, to study effect of tillage and planting-management techniques in maize (Zea mays L.)-wheat {Triticum aestivum (L.) emend. Fiori & Paol.} cropping system. Zero tillage in rainy (kharif) and winter (rabi) seasons resulted comparable yield as with multi-crop planter, manual seed drill and conventional tillage methods. However, multi-crop planter and manual seed drill in the rainy season produced significantly highereffective plants/m^ of maize (8.0 and 7.8, respectively). In case of wheat, conventional tillage in the rainy season produced significantly the highest effective spikes/m^ (322.6) over the other treatments. However, multi-crop planter in the winter season produced significantly the highest effective spikes/m^ (337.6). Water productivity in the rainy season was minimum under zero tillage {41.3 kg maize grain equivalent yield (MEY)/ha-mm} and maximum under manual seed drill {48.5 kg (MEY)/ha-mm}, while water use was the lowest under manual seed drill and the maximum under zero tillage. System’s total energy output was the highest with conventional tillage in the rainy season and multi-crop planter in the winter season. In maize crop, manual seed drilland multi-crop planter in the rainy season produced significantly lower total weed count at 60 days after sowing (DAS). Similarly, the total weed dry weight at 90 DAS was lowest under manual seed drill. In wheat crop, multi-crop planter, manual seed drill and conventional tillage in the winter season produced significantly lower weed count (at 30 and 60 DAS, respectively) compared to zero tillage. Seeding with zero tillage, multi-crop planter and manual seed drill in the rainy season and the winter season could save 9, 11.5 and 6 man-days and 22, 16 and 9 man-days, respectively, over the conventional tillage.
机译:2009-2011年在Palampur的粉质粘土壤土上进行了田间试验,研究了耕作和种植管理技术对玉米(Zea mays L。)-小麦(Triticum aestivum(L.)emend)的影响。 Fiori&Paol。}种植系统。雨季(kharif)和冬季(rabi)的零耕作与多作播种机,手动播种机和常规耕作方法相比可产生可比的产量。然而,在雨季,多作物播种机和手动播种机产生的有效植株明显高于每百万玉米(分别为8.0和7.8)。就小麦而言,雨季的常规耕作比其他处理产生了最高的最高有效穗数/ m ^(322.6)。但是,冬季的多作播种机明显产生了最高的有效穗数/ m ^(337.6)。零耕{41.3 kg玉米当量单产(mey)/ ha-mm}时,雨季的水分生产率最低,而人工播种机{48.5 kg(mey)/ ha-mm}时的水分生产率最高,而用水量最低在手动播种机下,最大耕作在零耕种下。在雨季进行常规耕作并在冬季进行多作播种机时,系统的总能量输出最高。在玉米作物中,人工种子播种机和多季播种机在雨季播种(DAS)后第60天产生的总杂草数量明显降低。同样,在90 DAS下,手动播种机的杂草总干重最低。与零耕种相比,在冬季,多作播种机,手动播种机和常规耕作在小麦作物中产生的杂草数量明显减少(分别为30和60 DAS)。与常规耕作相比,在雨季和冬季以零耕种,多作播种机播种和手动播种播种可分别节省9、11.5和6个工日,以及22、16和9个工日。

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