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首页> 外文期刊>Notulae Botanicae Horti Agrobotanici Cluj-Napoca >Integrated Effect of Plant Density, N Rates and Irrigation Regimes on the Biomass Production, N Content, PAR Use Efficiencies and Water Productivity of Rice Under Irrigated Semiarid Environment
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Integrated Effect of Plant Density, N Rates and Irrigation Regimes on the Biomass Production, N Content, PAR Use Efficiencies and Water Productivity of Rice Under Irrigated Semiarid Environment

机译:半干旱环境下植物密度,氮素含量和灌溉制度对水稻生物量,氮含量,PAR利用效率和水分生产率的综合影响

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Two field experiments were conducted for two years (2000 and 2001) at Agronomic Research Area, University of Agriculture Faisalabad (UAF), Pakistan. There were 15 treatment combinations for experiment-I having three plant densities, viz., one seedling hill-1 (PD1), two seedlings hill-1 (PD2) and three seedlings hill-1 (PD3) and five nitrogen rates, viz., 0, (N0); 50, (N50); 100, (N100); 150, (N150); and 200 (N200) kg N ha-1. Experiment-II also included 15 treatments having three plant densities, viz., one seedling hill-1 (PD1), two seedlings hill-1 (PD2) and three seedlings hill-1 (PD3) and five irrigation regimes, viz., 62.5 cm (I1), 77.5 cm (I2), 92.5 cm (I3), 107.5 cm (I4), and 122.5 cm (I5). A randomized complete block design (RCBD) was employed with three repetitions. The results for experiment-I revealed that the highest biomass (1438 g m-2), grain yield (497 g m-2), crop growth rate (15.36 g m-2 d-1), net assimilation rate (4.24 g m-2 d-1) were observed in the treatment having combination of two seedlings hill-1 and 200 kg N ha-1 (PD2N200). The agronomic and economic nitrogen and PAR use efficiencies were also higher in this treatment. In case of experiment-II, the highest biomass and grain yield were obtained in case of treatment having combination of two seedlings hill-1 and 107.5 cm irrigation regime (PD2I107.5). The irrigation application based water productivity ranged from 0.36 kg mm-3 to 0.61 kg mm-1, irrigation plus precipitation based water productivity ranged from 0.32 kg mm-3 to 0.55 kg mm-3 and evapotranspiration based water productivity ranged from 0.65 kg mm-3 to 0.84 kg mm-3 among 15 treatments combination of plant density and irrigation regimes. This study concludes that for increasing the benefits for the resource-poor growers, the integration of crop management practices is an optimum strategy to substantially increase the resources use efficiency under irrigated semiarid environment.
机译:在巴基斯坦费萨拉巴德农业大学(UAF)的农艺研究区进行了为期两年(2000年和2001年)的两次田间试验。实验I有15种处理组合,具有三种植物密度,即一株苗山1(PD1),两株苗山1(PD2)和三株苗山1(PD3)和五种氮素比率。 ,0,(N0); 50,(N50); 100,(N100); 150,(N150);和200(N200)kg N ha-1。实验二还包括15种处理方法,分别具有三种植物密度,即一株苗山1(PD1),两株苗山1(PD2)和三株苗山1(PD3),以及五种灌溉方式,即62.5。厘米(I1),77.5厘米(I2),92.5厘米(I3),107.5厘米(I4)和122.5厘米(I5)。随机重复使用完整的块设计(RCBD)进行三个重复。实验一的结果表明,最高生物量(1438 g m-2),谷物产量(497 g m-2),作物生长速率(15.36 g m-2 d-1),净同化率(4.24 g m)在结合有两个幼苗hill-1和200 kg N ha-1(PD2N200)的处理中观察到-2 d-1)。在该处理中,农艺和经济氮和PAR的使用效率也更高。在实验II的情况下,在结合了两个幼苗hill-1和107.5 cm灌溉制度(PD2I107.5)的处理下,获得了最高的生物量和谷物产量。基于灌溉应用的水生产率范围从0.36 kg mm-3到0.61 kg mm-1,基于灌溉加降水的水生产率范围从0.32 kg mm-3到0.55 kg mm-3,基于蒸散的水生产率范围从0.65 kg mm-在15种植物密度和灌溉制度的组合中,3至0.84 kg mm-3。这项研究的结论是,为了增加资源贫乏的种植者的利益,作物管理实践的整合是在灌溉半干旱环境下大幅提高资源利用效率的最佳策略。

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