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Photosynthetic acclimation of rhododendrons to light intensity in relation to leaf water-related traits

机译:叶片与叶水相关性状相关rhododendrons对光强度的光合作用

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Leaves under high light may suffer from risks caused by excessive light energy and dehydration. However, it remains unclear how leaf water-related traits affect the photosynthetic acclimation of plants to light intensity. We investigated the photosynthesis and leaf water-related traits of two hybrids (Rhododendron 'XXL' and 'Furnivall's daughter') and one native species (Rhododendron delavayi) under different growth irradiances to determine the importance of leaf water-related traits on the photosynthetic acclimation of rhododendrons to irradiance. Compared to plants under low light, the values for light saturation point (LSP), stomatal density (SD), leaf dry mass per unit area, and vein density (D-v) in the three rhododendrons were higher under high light, but the values for chlorophyll content and leaf size were lower. There were significant differences in light-saturated photosynthetic rate (P-max), stomatal conductance (g(s)), transpiration rate (T-r), and non-photochemical quenching (NPQ) in R. delavayi and Rhododendron 'XXL' between plants grown under high and low irradiance levels, but not in 'Furnivall's daughter'. The positive correlations of D-v and SD with P-max, T-r, and LSP indicate that the increase in water transport capacity can improve water supply to meet transpirational demand and regulate photosynthetic performance under high irradiance. Meanwhile, the decrease in chlorophyll content and the increase in NPQ prevent the photodamage of photosystem II by decreasing light absorption and enhancing heat dissipation, respectively, when the plants are exposed to high light. These results suggest that adjusting leaf water-related traits and reducing the damage on photosystem II caused by excess light play important roles in the photosynthetic acclimation of rhododendrons to growth irradiance.
机译:在高光下的叶子可能遭受过度光能和脱水引起的风险。然而,仍然不明确叶子水有关的性状如何影响植物的光合作用适应光强度。我们调查了两个杂种(Rhododendron'XXL'和'Furnivall的女儿')的光合作用和叶子水有关的性状,以及在不同的增长恐怖症下的一种本土(Rhododendron Delavayi),以确定叶水有关的性状对光合作用的重要性杜鹃花辐照规范。与低光下的植物相比,在高光下,三个氟代克罗氏龙静脉饱和点(LSP),气孔密度(SD),叶片干块(DV)的值较高,但值叶绿素含量和叶片尺寸较低。在植物之间的R. delavayi和Rhododendron'XXL'中的光饱和光合速率(p-max),气孔率(g(s),蒸腾率(tr)和非光化学淬火(NPQ)存在显着差异。在高低辐照水平下成长,但不在“Furnivall的女儿”中。 D-V和SD与P-MAX,T-R和LSP的正相关表明,水运输能力的增加可以改善供水,以满足经过分散需求,并在高辐照度下调节光合作用。同时,叶绿素含量的降低和NPQ的增加通过分别降低光吸收和增强散热时,通过降低光系统II的光透过,当植物暴露于高光时。这些结果表明,调整叶水有关的性状并降低过量光线引起的光系统II的损害在杜鹃花的光合作用中发挥重要作用。

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