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Supplemental irrigation effect on canola yield components under semiarid climatic conditions.

机译:在半干旱气候条件下,补充灌溉对油菜籽产量构成要素的影响。

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With the availability of irrigation water, supplemental irrigation in winter-grown crops, such as lentil, wheat, and barley, has been intensely practiced to prevent crop yield losses due to the incidence of intermittent drought stress. In the crop growing seasons of 2006-2007 and 2008-2009, a study was conducted to determine the effect of supplemental irrigations on Canola (Brassica napus L. cv. Elvis F1) under the semiarid climatic conditions of the Harran plain, Sanliurfa, Turkey. A sprinkler irrigation system was used to irrigate the study plots. The irrigation treatments included 0.0, 0.25, 0.50, 0.75, and 1.0 (full irrigation) of Class-A pan evaporation amounts. The full irrigation treatment during both years consisted of 250 and 225 mm, respectively. In turn, crop water use values during the same years and treatments were 462 and 449 mm. In general, plant height and 1000 seed weight ranged from 140 to 165 cm and from 2.5 to 3.3 g, respectively, and these variables significantly differed among irrigation treatments (p<0.05). Crop yield and above ground biomass measurements were affected by irrigation treatments and varied from 1094 to 3943 kg ha-1 and from 6746 to 18,311 kg ha-1, respectively (p<0.05). Similarly, harvest index values were affected (p<0.05) and ranged from 0.16 to 0.23 on average. The water use efficiency obtained in the different treatments indicated a strong positive relationship between crop yield and irrigation. Overall, our results indicate that supplemental irrigation substantially increased canola yield; however, for an optimum yield, full irrigation is suggested.
机译:随着灌溉水的供应,已经强烈实践了对冬季生长的农作物(例如小扁豆,小麦和大麦)的补充灌溉,以防止由于间歇性干旱胁迫的发生而导致作物减产。在2006-2007年和2008-2009年的农作物生长季节,进行了一项研究,以确定在半干旱气候条件下补充灌溉对油菜(Brassica napus L.cv. Elvis F1)的影响。哈兰平原,土耳其桑尼乌法。使用喷灌系统灌溉研究地块。灌溉处理包括0.0、0.25、0.50、0.75和1.0(完全灌溉)的A级锅蒸发量。两年中的完全灌溉处理分别为250 mm和225 mm。反过来,在相同年份和处理期间的作物用水量分别为462和449毫米。通常,株高和1000种子重量分别为140至165 cm和2.5至3.3 g,这些变量在灌溉处理之间存在显着差异( p <0.05)。作物产量和地上生物量的测量值受到灌溉处理的影响,分别从1094到3943 kg ha -1 和6746到18,311 kg ha -1 p <0.05)。同样,收割指数值也受到影响( p <0.05),平均范围为0.16至0.23。不同处理获得的水分利用效率表明作物产量与灌溉之间存在很强的正相关关系。总的来说,我们的结果表明补充灌溉大大提高了油菜籽的产量。但是,为获得最佳产量,建议完全灌溉。

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