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Response of different crop growth and yield to enhanced UV-B radiation under field conditions

机译:在现场条件下,不同作物生长的反应和产量增强UV-B辐射

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Enhanced UV-B radiation due to stratospheric ozone depletion may have impacts on the productivity of agricultural crops. Which crop will be more sensitive to increased UV-B has received little attention. This paper presents a comparative study of the effects of supplemental UV-B on plant height, leaf area, biomass and yield among soybean, cotton, corn and wheat which were cultivated in fields in Nanjing, China. The experimental results showed that the four crops response to enhanced UV-B irradiation was shortened plant height, decreased leaf area and reduced biomass and yield of crops. Using the same criteria, the response of soybean and cotton to elevated UV-B is bigger than that of wheat and corn. RI (response index) is an integrated index which is the accumulation of relative change in plant height, leaf area, biomass and yield, reflecting general impact of increased UV-B on crops. The results suggested that the RI for the four crops was minus, demonstrating a negative impact of enhanced UV-B on the crops. According to the RI, the soybean and cotton belong to the sensitive plants category, wheat is a moderately sensitive plant and corn is a tolerant plant.
机译:增强型UV-B由于平坦臭氧耗竭引起的辐射可能对农业作物的生产率产生影响。哪些作物对UV-B增加更敏感,已收到很少的关注。本文介绍了南京南京植物,棉花,玉米和小麦植物高,叶面积,生物量和产量对植物高度,叶面积,生物量和产量的对比研究。实验结果表明,四种作物对增强的UV-B辐射进行抗衡较短,植物高度,降低的叶面积和减少生物质和作物产量。使用相同的标准,大豆和棉花升高的UV-B的响应大于小麦和玉米。 RI(响应指数)是综合指标,其是植物高度,叶面积,生物质和产量的相对变化的积累,反映了增加的UV-B对作物的一般影响。结果表明,四种作物的RI是减去的,表明增强型UV-B对作物的负面影响。根据RI,大豆和棉属于敏感植物类别,小麦是一种适度敏感的植物,玉米是耐植物。

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