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Ecophysiological function of leaf 'windows' in Lithops species - 'Living Stones' that grow underground

机译:碎石种类的叶片“窗户”的生态生理功能-地下生长的“活石”

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Leaf temperatures were lower when light entry at the leaf tip window was prevented through covering the window with reflective tape, relative to leaf temperatures of plants with leaf tip windows covered with transparent tape. This was true when leaf temperatures were measured with an infrared thermometer, but not with a fine-wire thermocouple. Leaf tip windows of Lithops growing in high-rainfall regions of southern Africa were larger than the windows of plants (numerous individuals of 17 species) growing in areas with less rainfall and, thus, more annual insolation. The results of this study indicate that leaf tip windows of desert plants with an underground growth habit can allow entry of supra-optimal levels of radiant energy, thus most likely inhibiting photosynthetic activity. Consequently, the size of the leaf tip windows correlates inversely with habitat solar irradiance, minimising the probability of photoinhibition, while maximising the absorption of irradiance in cloudy, high-rainfall regions.
机译:与通过透明胶带覆盖叶尖窗的植物的叶温相比,通过用反射带覆盖叶尖窗防止光进入叶尖窗时,叶温较低。当用红外温度计而不是细线热电偶测量叶片温度时,情况就是如此。在南部非洲高雨量地区生长的石楠的叶尖窗大于在降雨少且因此每年日照量较大的地区生长的植物(17个物种的个体)的窗。这项研究的结果表明,具有地下生长习性的沙漠植物的叶尖窗可允许进入超最佳水平的辐射能,因此最有可能抑制光合作用。因此,叶尖窗的大小与栖息地的太阳辐射成反比,从而将光抑制的可能性降至最低,同时将多云,高降雨地区的辐射吸收最大化。

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