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GROWING JATROPHA CURCAS WITH RAINWATER HARVESTING IN HILLY TRACT OF SOUTH WESTERN RAJASTHAN, INDIA

机译:印度拉贾斯坦邦西南部丘陵地带种植有雨水的麻疯树

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Survival and growth of Jatropha curcas was examined in relation to slope gradient and rainwater harvesting treatments with a view to use this species in revegetation of degraded hilly area with its socio-economic benefits. Varying slopes were <20%, 10-20% and >20%, whereas rainwater harvesting treatments were control (CL), contour trench, (CT), Gardonie (G), Box trench (BT) and V-ditch (V). Soil water content (SWC) was greater (p < 0.05) <10 % area and decrease in order <10% <>20%<10-20% slope areas.SWC was lowest in the CL plots, whereas it was highest in Gradonie plots in August. The increase in SWC over control was by 16% and 24% in August 2006 and 2007, respectively. SWC was highest in CT in June 2006 and in' BT'in June 2007, and the improvement in SWC resulted from rainwater harvesting was by 51% and 15% in the respective treatments influencing survival and growth of J. curcas. The lowest survival in >20% slope area indicated its susceptibility to water stress, further supported by the highest growth in BT plots with the highest soil water. Plants were tallest (p < 0.05) in <10% and smallest in >20% slope area. The plants growing along the contour trench were tallest (p < 0.05), whereas plants growing in the control plots were smallest (p <0.05) suggesting the beneficial effects of water harvesting on the growth of J. curcas in degraded areas. Conclusively Jatropha curcas can be used to restore degraded hilly tract utilizing rainwater harvesting.
机译:考察了麻疯树的生存和生长与坡度和雨水收集处理的关系,以期利用该树种在退化的丘陵地区重新植被,并具有社会经济效益。不同的坡度分别为<20%,10-20%和> 20%,而雨水收集的处理方式为对照(CL),等高沟(CT),Gardonie(G),箱形沟(BT)和V型沟(V) 。土壤水分含量(SWC)较大(p <0.05)<10%面积,并以<10%<> 20%<10-20%的坡度顺序降低.SWC在CL图中最低,而在Gradonie中最高在八月的情节。 2006年8月和2007年,SWC超出控制范围的增长分别为16%和24%。 SWC在2006年6月的CT中最高,在2007年6月的“ BT”中,SWC的提高是由于雨水收集对影响麻疯树的生存和生长的各个处理分别提高了51%和15%。在> 20%的坡度区域中,最低的生存率表明其对水分胁迫的敏感性,并得到土壤水含量最高的BT地块最高生长的支持。坡度小于10%的植物最高(p <0.05),坡度大于20%的植物最小。沿等高线生长的植物最高(p <0.05),而在对照地块中生长的植物最小(p <0.05),表明集水对退化地区麻疯树生长的有利影响。麻疯树最终可以利用雨水收集来恢复退化的丘陵地带。

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