首页> 外文OA文献 >Effect of UV Radiation and Evaluated CO2 on Morphological Traits, Yield and Yield Components of Canola (Brassica napus L.) Grown under Water Deficit Stress
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Effect of UV Radiation and Evaluated CO2 on Morphological Traits, Yield and Yield Components of Canola (Brassica napus L.) Grown under Water Deficit Stress

机译:紫外线辐射和评价CO2对水资源缺陷应力下碳加油(Brassica Napus L.)生长的形态性状,产量和产量组分的影响

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摘要

In this study, we studied the combined effects of UV radiation, CO2 and water stress on the morphological traits, yield and yield components of canola (Brassica napus cv. �Okapi� and �Talaye�) under twelve growth conditions: complete irrigation with ambient CO2 with UV-A (control), complete irrigation with ambient CO2 with UV-B, complete irrigation with ambient CO2 with UV-C, limited irrigation with ambient CO2 with UV-A, limited irrigation with ambient CO2 with UV-B, limited irrigation with ambient CO2 with UV-C, complete irrigation with elevated CO2 with UV-A, complete irrigation with elevated CO2 with UV-B, complete irrigation with elevated CO2 with UV-C, limited irrigation with elevated CO2 with UV-A, limited irrigation with elevated CO2 with UV-B and limited irrigation with elevated CO2 with UV-C. The results showed that water stress significantly decreased all of traits except for the oil percentage. Additionally, an elevated level of CO2 significantly increased the final yield, 1000-seed weight, oil yield, plant height, specific leaf area and number of branches per plant, whereas UV radiation decreased all of the traits in this experiment. Elevated CO2 ameliorated the adverse effects of UV radiation in the final yield, seed weight, oil percentage, oil yield, plant height, specific leaf area and number of branches per plant. This study showed that elevated CO2 can partially ameliorate some of the adverse effects of UV radiation in canola plants. Furthermore, in this study, we observed that the increase in the yield was due to the increase in the seed weight and number of branches caused by elevated CO2 in canola plants. In addition, the maximum yield was obtained from the �Talaye� cultivar under conditions of sunlight, full irrigation and elevated CO2.
机译:在这项研究中,我们研究了下12个生长条件的紫外线辐射,CO 2和水胁迫对卡诺拉的形态性状,产量和产量构成的组合效果(蔓菁栽培霍加皮和TALAYE):与周围完全灌溉具有UV-A(对照)的CO 2,用UV-B与环境CO2的完全灌溉,与环境CO2完全灌溉,具有UV-C的有限灌溉,具有UV-A的UV-A有限的灌溉,具有UV-B的环境CO2,有限的环境CO2,有限具有UV-C的环境CO2的环境CO2,用UV-A的升高的CO 2完全灌溉,CO 2的升高,具有UV-B的升高,CO2升高,具有UV-C的升高,具有UV-A的升高,有限的CO2,有限用UV-B升高的CO 2灌溉和具有UV-C的升高的CO 2灌溉。结果表明,除油百分比外,水胁迫明显降低了所有特征。另外,CO 2水平升高显着增加了最终产量,1000种种子重量,油产量,植物高度,特定叶面积和每株分支的数量,而UV辐射降低了该实验中的所有特征。升高的二氧化碳改善了紫外线辐射的不利影响,以最终产量,种子重量,油百分比,油产量,植物高度,特异性叶面积和每株分支数量。本研究表明,升高的CO2可以部分改善紫外线辐射在油菜植物中的一些不良反应。此外,在这项研究中,我们观察到产量的增加是由于油菜植物升高的CO 2引起的种子重量和分支数量的增加。此外,在阳光下的条件下,从阳光,全灌和升高的CO 2下获得最大产量。

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