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首页> 外文期刊>Photochemistry and Photobiology: An International Journal >Enhanced UV-B radiation increases glyphosate resistance in velvetleaf (Abutilon theophrasti)
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Enhanced UV-B radiation increases glyphosate resistance in velvetleaf (Abutilon theophrasti)

机译:增强的UV-B辐射可增加绒毛草的抗草甘膦性(Abutilon theophrasti)

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摘要

Depletion of the ozone layer leads to increasing UV-B radiation on the earth's surface, which may affect weeds and their responses to herbicides. However, the effect of increased UV-B radiation on weeds and the interaction of weeds and herbicides are still obscure. The objective of this study was to compare glyphosate efficacy on velvetleaf that was grown under with and without increased UV-B radiation. Leaf area, dry weight and net photosynthesis of velvetleaf seedlings were adversely affected by increased UV-B radiation. Leaf cuticle wax significantly increased by 28% under increased UV-B radiation. Glyphosate efficacy on velvetleaf, evaluated by shoot dry weight, was significantly decreased by increased UV-B radiation. Exposure to increased UV-B radiation significantly decreased ~(14)C-glyphosate absorption from 49% to 43%, and also resulted in less ~(14)C-glyphosate translocation out of treated leaves and less glyphosate accumulation in newly expanded leaves. The decrease in glyphosate efficacy was due to changes in absorption and distribution, which were attributed to increased cuticle wax and decreased photosynthesis caused by increased UV-B radiation. These results suggest that the responses of weeds to herbicides may be affected by increased UV-B radiation, to the extent that higher rates may be required to achieve the desired effects.
机译:臭氧层的消耗导致地球表面UV-B辐射增加,这可能会影响杂草及其对除草剂的反应。但是,UV-B辐射增加对杂草以及杂草与除草剂之间的相互作用的影响仍然不清楚。这项研究的目的是比较草甘膦对在有和没有增加UV-B辐射的条件下生长的绒毛的功效。 UV-B辐射增加对绒毛幼苗的叶面积,干重和净光合作用产生不利影响。在增加UV-B辐射的情况下,叶表皮蜡显着增加了28%。草甘膦对绒毛的功效(通过枝干重量评估)因UV-B辐射增加而显着降低。暴露于增加的UV-B辐射下会使〜(14)C-草甘膦的吸收率从49%显着降低至43%,并且还导致较少的〜(14)C-草甘膦从处理过的叶片中移位出来,而草甘膦在新扩展的叶片中的积累较少。草甘膦功效的下降是由于吸收和分布的变化所致,这归因于表皮蜡的增加和由UV-B辐射增加引起的光合作用的降低。这些结果表明,杂草对除草剂的反应可能会受到增加的UV-B辐射的影响,以达到实现所需效果所需的更高速率。

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