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Effects of the Air Pollutant SO2 on Leaves

机译:空气污染物SO2对叶片的影响

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摘要

After SO2 has entered leaves of spinach (Spinacia oleracea) through open stomata and been hydrated in the aqueous phase of cell walls, the sulfite formed can be oxidized to sulfate by an apoplastic peroxidase that is normally involved in phenol oxidation. The oxidation of sulfite is competitive with the oxidation of phenolics. During sulfite oxidation, the peroxidase is inhibited. In the absence of ascorbate, which is a normal constituent of the aqueous phase of the apoplast, peroxidative sulfite oxidation facilitates fast additional sulfite oxidation by a radical chain reaction. By scavenging radicals, ascorbate inhibits chain initiation and sulfite oxidation. Even after exposure of leaves to high concentrations of SO2, which inhibited photosynthesis, the redox state of ascorbate remained almost unaltered in the apoplastic space of the leaves. It is concluded that the oxidative detoxification of SO2 in the apoplast outside the cells is slow. Its rate depends on the rate of apoplastic hydrogen peroxide generation and on the steady-state apoplastic concentrations of phenolics and sulfite. The affinity of the peroxidase for phenolics is higher than that for sulfite.
机译:SO2通过开放的气孔进入菠菜(Spinacia oleracea)的叶子中并在细胞壁的水相中水合后,形成的亚硫酸盐可以通过通常与苯酚氧化有关的非质子过氧化物酶氧化为硫酸盐。亚硫酸盐的氧化与酚醛的氧化竞争。在亚硫酸盐氧化过程中,过氧化物酶被抑制。在不存在质子体水相正常组成部分的抗坏血酸的情况下,过氧化亚硫酸盐的氧化有助于通过自由基链反应快速进行额外的亚硫酸盐氧化。通过清除自由基,抗坏血酸抑制了链引发和亚硫酸盐的氧化。即使在叶片暴露于抑制光合作用的高浓度SO2之后,抗坏血酸的氧化还原状态在叶片的质外体空间中也几乎保持不变。结论是细胞外的质外体中SO2的氧化解毒很慢。其速率取决于质外塑性过氧化氢的产生速率以及酚醛和亚硫酸盐的稳态质外塑性浓度。过氧化物酶对酚类的亲和力高于对亚硫酸盐的亲和力。

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