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Differential responses of double petal and multi petal jasmine to shading: I. Photosynthetic characteristics and chloroplast ultrastructure

机译:双瓣和多瓣茉莉对遮阳的差异响应:I.光合特性和叶绿体超微结构

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A double petal (DP) and a multi petal (MP) type jasmine (Jasminum sambac Ait.) growth and flowering was known largely affected by different levels of irradiance. Here, our objective was to determine the effects of shade on photosynthesis related characteristics and chloroplast ultrastructure of these two types. In both types, net photosynthetic rate (Pn), stomatal conductance (g _s) and transpiration rate increased with decreasing irradiance from 100% to 20%, while both maximum and variable fluorescence showed a steady increase, and photochemical and nonphotochemical quenching indexes declined. At each conducted time, chlorophyll a, b and carotenoids contents in DP type shaded leaves increased whereas those in MP type decreased at 5% irradiance (considered as extreme shade). The maximum photochemical efficiency of photosystem II of DP plants showed subtle changes but that of MP plants declined by shading thereafter 21 days of treatment. Observation of chloroplast ultrastructure showed its best development in the leaves of DP and MP types mostly from 50% to 20% irradiance (considered as weak and moderate shade, respectively). At each shade treatment, Pn, g _s and water use efficiency of DP-jasmine were always higher than those of MP-jasmine, thus the shade tolerance ability of the former was higher than that of the latter. The results showed that full sunlight and 5% natural irradiance caused photoinhibition and light deficiency of jasmine plants respectively, and modulating chloroplast development by the more numbers of thylakoids and grana to contain more photosynthetic pigments is an important shade tolerance mechanism of DP type.
机译:已知双瓣(DP)和多瓣(MP)型茉莉(Jasminum sambac Ait。)的生长和开花受到不同程度的辐照度的影响。在这里,我们的目的是确定阴影对这两种类型的光合作用相关特性和叶绿体超微结构的影响。在两种类型中,净光合速率(Pn),气孔导度(g _s)和蒸腾速率都随着辐照度从100%降低到20%而增加,而最大和可变荧光都显示稳定增长,而光化学和非光化学猝灭指数下降。在每次进行时,在5%辐照度下,DP型遮荫叶片的叶绿素a,b和类胡萝卜素含量增加,而MP型遮荫叶片的叶绿素a,b和类胡萝卜素含量降低(被认为是极度遮荫)。 DP植物的光系统II的最大光化学效率显示出细微的变化,但是MP植物的光化学效率在21天的处理后因遮蔽而下降。叶绿体超微结构的观察表明,DP和MP型叶片的最佳发育主要在辐照度为50%至20%时(分别被视为弱阴影和中等阴影)。在每次遮光处理中,DP-茉莉的Pn,g_s和水分利用效率始终高于MP-茉莉,因此前者的耐荫性要高于后者。结果表明,充足的日照和5%的自然辐射分别引起茉莉花植物的光抑制和光缺乏,并通过增加类囊体和类固醇的数量来调节叶绿体的发育以包含更多的光合色素,这是DP型重要的耐荫性机制。

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