首页> 美国卫生研究院文献>Journal of Experimental Botany >Elevated atmospheric CO2 concentration ameliorates effects of NaCl salinity on photosynthesis and leaf structure of Aster tripolium L.
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Elevated atmospheric CO2 concentration ameliorates effects of NaCl salinity on photosynthesis and leaf structure of Aster tripolium L.

机译:升高的大气CO2浓度可改善NaCl盐度对紫trip的光合作用和叶片结构的影响。

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摘要

This study investigated the interaction of NaCl-salinity and elevated atmospheric CO2 concentration on gas exchange, leaf pigment composition, and leaf ultrastructure of the potential cash crop halophyte Aster tripolium. The plants were irrigated with five different salinity levels (0, 25, 50, 75, 100% seawater salinity) under ambient and elevated (520 ppm) CO2. Under saline conditions (ambient CO2) stomatal and mesophyll resistance increased, leading to a significant decrease in photosynthesis and water use efficiency (WUE) and to an increase in oxidative stress. The latter was indicated by dilations of the thylakoid membranes and an increase in superoxide dismutase (SOD) activity. Oxidative stress could be counteracted by thicker epidermal cell walls of the leaves, a thicker cuticle, a reduced chlorophyll content, an increase in the chlorophyll a/b ratio and a transient decline of the photosynthetic efficiency. Elevated CO2 led to a significant increase in photosynthesis and WUE. The improved water and energy supply was used to increase the investment in mechanisms reducing water loss and oxidative stress (thicker cell walls and cuticles, a higher chlorophyll and carotenoid content, higher SOD activity), resulting in more intact thylakoids. As these mechanisms can improve survival under salinity, A. tripolium seems to be a promising cash crop halophyte which can help in desalinizing and reclaiming degraded land.
机译:这项研究调查了NaCl盐度和大气CO2浓度升高对潜在经济作物盐生植物紫苑紫花苜蓿气体交换,叶片色素成分和叶片超微结构的相互作用。在环境和升高的(520 ppm)CO2下,用五种不同的盐度水平(0、25、50、75、100%的海水盐度)灌溉植物。在盐水条件下(环境CO2),气孔和叶肉抗性增强,导致光合作用和水分利用效率(WUE)显着降低,氧化应激增加。后者通过类囊体膜的扩张和超氧化物歧化酶(SOD)活性的增加来指示。叶片的表皮细胞壁变厚,表皮变厚,叶绿素含量降低,叶绿素a / b比例增加以及光合效率的暂时下降可以抵消氧化胁迫。二氧化碳含量升高导致光合作用和WUE显着增加。改善的水和能源供应用于增加减少水分流失和氧化应激的机制的投资(更厚的细胞壁和角质层,更高的叶绿素和类胡萝卜素含量,更高的SOD活性),从而产生更完整的类囊体。由于这些机制可以提高盐分下的存活率,因此,A。tripolium似乎是一种有前途的经济作物盐生植物,可以帮助对退化土地进行脱盐和开垦。

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