首页> 美国卫生研究院文献>Plant Physiology >Isoprene Produced by Leaves Protects the Photosynthetic Apparatus against Ozone Damage Quenches Ozone Products and Reduces Lipid Peroxidation of Cellular Membranes
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Isoprene Produced by Leaves Protects the Photosynthetic Apparatus against Ozone Damage Quenches Ozone Products and Reduces Lipid Peroxidation of Cellular Membranes

机译:叶子产生的异戊二烯保护光合作用设备免受臭氧破坏抑制臭氧产品的产生并减少细胞膜的脂质过氧化作用

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摘要

Many plants invest carbon to form isoprene. The role of isoprene in plants is unclear, but many experiments showed that isoprene may have a role in protecting plants from thermal damage. A more general antioxidant action has been recently hypothesized on the basis of the protection offered by exogenous isoprene in nonemitting plants exposed to acute ozone doses. We inhibited the synthesis of endogenous isoprene by feeding fosmidomycin and observed that Phragmites australis leaves became more sensitive to ozone than those leaves forming isoprene. Photosynthesis, stomatal conductance, and fluorescence parameters were significantly affected by ozone only in leaves on which isoprene was not formed. The protective effect of isoprene was more evident when the leaves were exposed for a long time (8 h) to relatively low (100 nL L−1) ozone levels than when the exposure was short and acute (3 h at 300 nL L−1). Isoprene quenched the amount of H2O2 formed in leaves and reduced lipid peroxidation of cellular membranes caused by ozone. These results indicate that isoprene may exert its protective action at the membrane level, although a similar effect could be obtained if isoprene reacted with ozone before forming active oxygen species. Irrespective of the mechanism, our results suggest that endogenous isoprene has an important antioxidant role in plants.
机译:许多植物将碳投入形成异戊二烯。异戊二烯在植物中的作用尚不清楚,但许多实验表明,异戊二烯可能在保护植物免受热损害中起作用。根据外源异戊二烯在暴露于急性臭氧剂量的非排放植物中所提供的保护作用,最近推测了一种更一般的抗氧化剂作用。我们通过喂入磷霉素抑制了内源性异戊二烯的合成,并观察到芦苇的叶子比形成异戊二烯的叶子对臭氧更敏感。臭氧仅在未形成异戊二烯的叶片中受到光合作用,气孔导度和荧光参数的显着影响。当叶子长时间暴露于相对较低(100 nL L −1 )的臭氧水平下(8 h)时,异戊二烯的保护作用比短暂而短暂的暴露(3)更明显。 h在300 nL L -1 )。异戊二烯淬灭了叶片中形成的H2O2的量,并减少了由臭氧引起的细胞膜脂质过氧化作用。这些结果表明异戊二烯可以在膜水平上发挥其保护作用,尽管如果异戊二烯在形成活性氧物种之前与臭氧反应可以获得类似的效果。无论机理如何,我们的结果表明内源异戊二烯在植物中具有重要的抗氧化作用。

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