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Agro Physiological Characteristics of QPM Genotypes As Influenced by Irrigation and Plant Population in a Semi Arid Region of Nigeria

机译:尼日利亚半干旱地区灌溉和植物种群对QPM基因型农业生理特性的影响

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Maize is the agronomic grass species that is most sensitive to variations in plant population. An experiment was conducted to assess the response of agrophysiological characters of QPM genotypes to plant population under irrigated conditions in a semi arid ecology of Northern Nigeria. Field trials were conducted at the Irrigation Research Station, Institute for Agricultural Research, Kadawa (110 39’N, 08o 20’E) and 500m above sea level) during 2007, 2008 and 2009 dry seasons to study the effect of (Zea mays L.) genotypes (TZE-W Pop X 1368, EV-DT W99 STR and DMR-ESRW), four plant population (33,333, 44,444, 55,555 and 66,666 plants ha-1) and three irrigation scheduling (40, 60 and 80 centibars soil moisture tension) on the growth and yield of quality protein maize. A split plot design was used with combinations of genotypes and irrigation regimes assigned to the main plot and plant population assigned to the sub-plot. The treatments were replicated three times. The study revealed that genotype EV-DT W99 STR had significantly higher relative growth rate, crop growth rate and net assimilation rate. Increase in plant population significantly decreased leaf area index and net assimilation rate. Delayed irrigation significantly depressed total dry matter production. Based on the results obtained in this study, it can be concluded that the use of genotype EV-DT W99 STR, at 60 centibars irrigation scheduling and 55,555 plants ha-1 had resulted in good agrophysiological characters of QPM at Kadawa. Keywords: Quality protein maize genotypes, plant population, irrigation, agrophysiological characteristics
机译:玉米是对植物种群变化最敏感的农艺草种。在尼日利亚北部半干旱生态环境中,进行了一项试验,以评估灌溉条件下QPM基因型的农业生理特性对植物种群的响应。在2007年,2008年和2009年的旱季期间,在Kadawa(110 39'N,08o 20'E,海拔500m)农业研究所的灌溉研究站进行了田间试验,以研究(Zea mays L 。)基因型(TZE-W Pop X 1368,EV-DT W99 STR和DMR-ESRW),四种植物种群(33,333、44,444、55,555和66,666株ha-1植物)和三种灌溉计划(40、60和80厘泊土壤)水分张力)对优质蛋白玉米的生长和产量的影响。使用分割样地设计,将基因型和灌溉制度组合分配给主样地,将植物种群分配给子样地。处理重复3次。研究表明,基因型EV-DT W99 STR具有相对较高的相对生长速率,农作物生长速率和净同化率。植物种群的增加显着降低了叶面积指数和净同化率。延迟灌溉大大降低了干物质总产量。根据本研究的结果,可以得出结论,在60厘泊灌溉计划和55,555株ha-1植物上使用基因型EV-DT W99 STR,在Kadawa具有良好的QPM农业生理特性。关键词:优质蛋白玉米基因型,植物种群,灌溉,农业生理特性

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