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首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >Effect of UV radiation and altitude characteristics on the functional traits and leaf optical properties in Saxifraga hostii at the alpine and montane sites in the Slovenian Alps
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Effect of UV radiation and altitude characteristics on the functional traits and leaf optical properties in Saxifraga hostii at the alpine and montane sites in the Slovenian Alps

机译:斯洛文尼亚阿尔卑斯阿尔卑斯山高山和蒙氧铝位点萨克菲拉戈宿主中紫外线辐射和高度特征对斯洛文尼亚阿尔山山的函数性状和叶光学性质的影响

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摘要

UV radiation affects the biochemical, physiological and morphological responses of plants. The effect is most pronounced at high altitude, such as alpine regions, and low latitude environments. The effect of UV radiation is impacted by different environmental conditions including temperature. We examined the response of the alpine plant Saxifraga hostii Tausch subsp. hostii growing at two altitudes (montane, 1100 m a.s.l. and alpine, 1500 m a.s.l.) in the Slovenian Alps. Selected ecophysiological, anatomical and pigment analyses along with measurements of the leaf optical properties were carried out during the growing season from July to September. Plants were grown under two different UV levels, near-ambient UV (UV) and reduced UV (UV-) radiation, and temperature conditions were monitored at both altitudes. Saxifraga hostii exhibited high photochemical efficiency of photosystem II and stomatal conductance under near-ambient UV radiation in August, which indicates that it is a well-acclimated plant. In September, photochemical efficiency was higher under reduced UV at the alpine altitude which together with a lower photosynthetic pigment content indicate delayed senescence for plants growing under reduced UV. Most leaf tissue thicknesses were not affected by UV radiation and altitude difference. There was a trend of increased stomatal density and reduced stomatal length on both leaf surfaces under near-ambient UV in August. However, there was no effect of UV attenuation or location at the alpine or montane site on the content of UV-B absorbing compounds, which implies the plant's tolerance of UV-B radiation. Saxifraga hostii leaves showed high absorption in the UV spectrum at higher altitudes, as shown by their optical properties. This study shows that Saxifraga hostii is well-acclimated to ambient UV radiation and to the environmental conditions at both altitudes. The effect of UV radiation is impacted by site conditions and this produces diverse plant responses, which contribute to the specific functional traits of Saxifraga hostii in the high-altitude environment.
机译:紫外线辐射影响植物的生物化学,生理和形态学响应。该效果在高海拔地区最明显,如高山地区和低纬度环境。 UV辐射的效果受到不同环境条件的影响,包括温度。我们检查了高山植物Saxifraga Hostii Tausch Subsp的反应。 Hostii在斯洛文尼亚阿尔卑斯山的两个高度(Montane,1100米A.S.L.和Alpine,1500米A.S.L.)。从7月至9月的生长季节进行了所选生态学,解剖学和颜料分析以及叶光学性质的测量。植物在两种不同的UV水平下生长,近乎环境紫外(UV)和降低的UV(UV-)辐射,并且在两个高度上监测温度条件。 Saxifraga Hostii在八月的近乎环境紫外线辐射下光学化效率和在近乎环境紫外线辐射下的光学效率,这表明它是一种适应良好的植物。在9月,在高山海拔高原降低的紫外线下,与较低的光合颜料含量一起表明在降低紫外线下生长的植物的延迟衰老较高。大多数叶片组织厚度不受UV辐射和高度差异的影响。 8月份在近乎环境紫外线下,在叶片表面下,气孔密度增加和气孔长度降低。然而,在高原或蒙铝网站上没有紫外线衰减或位置的影响,含量为UV-B吸收化合物的含量,这意味着植物对UV-B辐射的耐受性。 Saxifraga hostii叶片在UV光谱中显示出高度高度的高吸收,如它们的光学性质所示。本研究表明,Saxifraga Hostii适应环境紫外线辐射和两性的环境条件。 UV辐射的效果受到现场条件的影响,这产生了不同的植物反应,这有助于高原环境中的Saxifraga Hostii的特定功能性状。

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