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Growth and physiological state of beech seedlings grown in a nursery in different light conditions

机译:不同光照条件下苗圃中山毛榉幼苗的生长和生理状态

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Seedlings of European beech of two populations (from the 4th and 7th forest altitudinal zone) were grown in a shaded and unshaded plastic greenhouse. The objective was to compare seedling growth and the function of assimilatory organs and to determine their reactions after transfer to different light conditions.Seedlings grown in the unshaded plastic greenhouse (the sun variant) were taller and stronger at the end of the first growing season and had the higher weight and volume of shoots and root systems than seedlings grown in the shade. A higher number of leaves, larger total leaf area and higher dry matter of leaves per 1 plant were determined in seedlings grown in the sun. The average area of one leaf was larger in seedlings grown in the shade. The higher photosynthetic electron transport rate (ETR) determined from the light curves of chlorophyll fluorescence in seedlings grown in the sun was apparently connected with the higher photosynthetic rate and more intensive growth of these seedlings. The transfer of seedlings from full sun to shade resulted only in small changes in chlorophyll fluorescence (Fv/Fm, ETR). On the contrary, the transfer of seedlings from the shaded plastic greenhouse to the sun induced photoinhibition leading to a significant reduction in the maximum quantum yield of photochemistry Fv/Fm and in the photosynthetic electron transport rate (ETR).
机译:在有阴影和无阴影的塑料温室中,种植了两个种群的欧洲山毛榉幼苗(分别来自第4和7林高地带)。目的是比较幼苗的生长和同化器官的功能,并确定它们在转移到不同光照条件下的反应。在未遮荫的塑料温室(日光温室)中生长的幼苗在第一个生长季节结束时更高,更强。与在阴凉处生长的幼苗相比,具有更高的芽和根系重量和体积。在阳光下生长的幼苗中,每1种植物的叶片数量更多,总叶面积更大且叶片干物质更高。在阴凉处生长的幼苗中,一片叶子的平均面积更大。由叶绿素荧光的光曲线确定的较高的光合电子传输速率(ETR)显然与这些幼苗的较高的光合速率和更强的生长有关。幼苗从充足的阳光下转移到阴凉处只会导致叶绿素荧光的微小变化(Fv / Fm,ETR)。相反,将幼苗从阴凉的塑料温室转移到阳光下会引起光抑制作用,从而导致光化学Fv / Fm的最大量子产率和光合电子传输速率(ETR)大大降低。

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