首页> 外文期刊>Legume research >Crop diversification of predominant Pearl millet based cropping system for higher productivity, resource-use efficiency and profitability in Semi-Arid Rajasthan
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Crop diversification of predominant Pearl millet based cropping system for higher productivity, resource-use efficiency and profitability in Semi-Arid Rajasthan

机译:基于优势珍珠小米的作物多样化,以获得更高的生产率,资源利用效率和半干旱拉贾斯坦邦的盈利能力

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摘要

Continuous adoption of pearl millet-wheat cropping system led to reduction in productivity which put a serious threat to its sustainability in semi-arid eastern plain zone of Rajasthan, India. Crop diversification with wider choice with a variety of crops is being promoted as an alternative to profit maximization with enhanced soil fertility status. Therefore, a long term experiment was initiated to evaluate the production potential, sustainability, resource-use efficiency and economics of nine pearl millet based cropping systems. Result revealed that system productivity in terms of pearl millet equivalent yield (PMEY) was highest (30488 kg ha(-1)) with groundnut-wheat-cluster bean-onion crop rotation. Moreover, groundnut-wheat-cluster bean-onion recorded the highest SYI and land use efficiency (0.65 and 73.97%) followed by pearl millet-wheat-cluster bean-barley sequence (0.63 and 65.75%). The groundnut-wheat-cluster bean-onion also generated highest number of man days/ha/year (405). The highest values of organic carbon were found under green grammustard-pearl millet-lentil and cluster bean-pea-pearl millet-lentil. The maximum value of available P was recorded with cluster bean-mustard-green gram-garden cress followed by the groundnut-wheat-cluster bean-onion sequence. Available K decreased significantly from their initial values in all the cropping systems except groundnut-wheat-cluster bean-onion crop rotation. Among the various systems, groundnut-wheat-cluster bean-onion realized the highest net returns (213000 ha(-1)), followed by pearl millet-wheat-cluster bean-barley (163254 ha(-1)). Overall, it can be concluded that under the semi-arid agro climatic conditions of Rajasthan, groundnutwheat-cluster bean-onion, followed by pearl millet-wheat-cluster bean-barley, were more productive, sustainable, resource use efficient and remunerative than other cropping systems.
机译:持续采用珍珠小麦种植制度导致生产力降低,这对印度拉贾斯坦邦半干旱东部普通区的可持续性严重威胁。随着各种作物的更广泛选择的作物多样化正在被推广为利润最大化的替代方案,以提高土壤肥力状态。因此,启动了长期的实验,以评估九个珍珠米特的种植系统的生产潜力,可持续性,资源利用效率和经济学。结果表明,珍珠米特的珍珠米(PMEY)的系统生产率最高(30488千克HA(-1)),与小麦簇豆洋葱作物旋转。此外,Trestnut-麦粉豆洋葱记录了最高的Syi和土地利用效率(0.65和73.97%),然后记录珍珠小麦 - 小麦簇豆大麦序列(0.63和65.75%)。 Troundnut-Wheat-Cluster Bean-Onion也产生了最多数量的人日/公顷/年(405)。有机碳的最高值在Green Grambustard-Pearl Millet-扁豆和豆豌豆珍珠米勒 - 扁豆上发现。可用P的最大值被记录为群豆芥末绿革兰花园水芹,然后是幼儿 - 小麦簇豆洋葱序列。可用k从所有裁剪系统中的初始值显着下降,除了磨碎的小麦簇豆洋葱作物旋转。在各种系统中,地生 - 小麦簇豆洋葱实现了最高的净返回(213000公顷(-1)),其次是珍珠小麦 - 小麦簇豆大麦(163254 ha(-1))。总体而言,可以得出结论,在拉贾斯坦邦的半干旱农业气候条件下,粉底粉末豆洋葱,其次是珍珠小麦 - 小麦群豆大麦,更加富有成效,可持续,资源利用高效且重新改善而不是其他裁剪系统。

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