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Effects of Ultraviolet-B Irradiance on Soybean 1: V. The Dependence of Plant Sensitivity on the Photosynthetic Photon Flux Density during and after Leaf Expansion

机译:紫外线B辐射对大豆的影响1:V.叶片扩张期间和扩张之后植物敏感性对光合光子通量密度的依赖性

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摘要

Soybeans (Glycine max [L.] Merr. cv Essex) were grown in a green-house, and the first trifoliate leaf was either allowed to expand under a high photosynthetic photon flux density (PPFD) (1.4 millimoles per square meter per second) or a low PPFD (0.8 millimoles per square meter per second). After full leaf expansion, plants from each treatment were placed into a factorial design experiment with two levels of ultraviolet-B (UV-B) radiation (0 and 80 milliwatts per square meter biologically effective UV-B) and two levels of concomitant PPFD (0.8 and 1.4 millimoles per square meter per second) resulting in a total of eight treatments. Measurements of net photosynthesis and the associated diffusion conductances, ribulose-1,5-bisphosphate carboxylase activity, chlorophyll and flavonoid concentrations, and leaf anatomy were examined for all treatments. Leaves expanded in the high PPFD were unaffected by UV-B radiation while those expanded in the low PPFD were sensitive to UV-B-induced damage. Likewise, plants which were UV-B irradiated concomitantly with the high PPFD were resistant to UV-B damage, while plants irradiated under the low PPFD were sensitive. The results of this study indicate that both anatomical/morphological and physiological/biochemical factors contribute toward plant sensitivity to UV-B radiation.
机译:大豆(Glycine max [L.] Merr。cv Essex)在温室中生长,并且允许第一片三叶叶在高光合光子通量密度(PPFD)(每秒1.4毫摩尔)下扩张。或较低的PPFD(每秒每平方米0.8毫摩尔)。叶片完全扩张后,将每种处理的植物置于因子分解设计实验中,采用两种水平的紫外线-B(UV-B)辐射(每平方米生物活性有效UV-B为0和80毫瓦)和两种水平的PPFD(每秒每平方米0.8和1.4毫摩尔),总共进行了八次处理。检查了所有处理的净光合作用及相关的扩散电导,1,5-核糖核糖羧化酶活性,叶绿素和类黄酮浓度以及叶片解剖结构的测量值。在高PPFD中扩张的叶片不受UV-B辐射的影响,而在低PPFD中扩张的叶片对UV-B诱导的伤害敏感。同样,用高PPFD照射UV-B的植物对UV-B的伤害具有抵抗力,而用低PPFD照射的植物则敏感。这项研究的结果表明,无论是解剖学/形态学还是生理学/生化因素都对植物对UV-B辐射的敏感性有贡献。

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