首页> 外文会议>2011 International Conference on Remote Sensing, Environment and Transportation Engineering >Light responses of the gas exchange parameters of Campsis radicans (L.) Seem leaves under different soil moisture conditions
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Light responses of the gas exchange parameters of Campsis radicans (L.) Seem leaves under different soil moisture conditions

机译:不同土壤水分条件下喜树(Campsis radicans(L.))叶片的气体交换参数的光响应

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Little is known about the optimum soil moisture and light intensity necessary for the growth of Campsis radicans (L.) Seem. Using the CIRAS-2 portable photosynthesis system, light responses of the photosynthetic and physiological parameters of three-year-old C. radicans leaves, such as net photosynthetic rate (PN), transpiration rate (E) and water use efficiency (WUE), were measured under different soil moisture conditions. Results showed that PN and WUE of the leaves have critical responses to the levels of soil moisture and the variation of photosynthetically-active radiation (PAR). Non-rectangular hyperbola model was used to simulate a light-response curve with a convexity of approximately 1. With the increase of soil mass water content (Wm) (Wm ranged from 5.5 to 19.4%), light compensation point declined while light saturation point, maximum PN, and apparent quantum yield increased. When Wm was about 19.4%, light compensation point was at the minimum (21.61 µmol m−2 s−1) and light saturation point was at the maximum (1400 µmol m−2 s−1). For the plant to grow normally and have higher PN and WUE synchronously, the range of Wm needed to be from 13.5 to 19.4% and the optimum Wm at about 19.4%, with the minimum value of Wm at 7.7%. The higher adaptability of C.radicans to light conditions was observed, and high PN and WUE were recorded when PAR ranged from 800 to 1600 µmol m−2 s−1.
机译:关于Campsis radicans(L.)Seem生长所需的最佳土壤湿度和光强度知之甚少。使用CIRAS-2便携式光合作用系统,研究了三岁的萝卜(C. radicans)叶片的光合和生理参数的光响应,例如净光合速率(P N ),蒸腾速率(E)。在不同的土壤湿度条件下测量土壤水分利用效率(WUE)。结果表明,叶片的PN和WUE对土壤水分水平和光合有效辐射(PAR)的变化具有关键响应。使用非矩形双曲线模型来模拟凸度约为1的光响应曲线。随着土壤质量含水量(Wm)的增加(Wm在5.5至19.4%之间),光补偿点下降而光饱和点下降,最大P N 和表观量子产率增加。当Wm约为19.4%时,光补偿点最小(21.61 µmol m -2 s -1 ),光饱和点最大(1400 µmol m) −2 s −1 )。为了使植物正常生长并同时具有较高的P N 和WUE,Wm的范围需要从13.5%到19.4%,最佳Wm约为19.4%,其中Wm的最小值为7.7%。当PAR在800至1600 µmol m −2 s 范围内时,观察到C.radicans对光照条件的适应性较高,并记录了较高的P N 和WUE。 -1

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