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Photosystem I Is an Early Target of Photoinhibition in Barley Illuminated at Chilling Temperatures

机译:光系统I是大麦中光抑制的早期目标 在低温下照亮

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摘要

Light-induced damage to photosystem I (PSI) was studied during low-light illumination of barley (Hordeum vulgare L.) at chilling temperatures. A 4-h illumination period induced a significant inactivation of PSI electron transport activity. Flash-induced P700 absorption decay measurements revealed progressive damage to (a) the iron-sulfur clusters FA and FB, (b) the iron-sulfur clusters FA, FB, and FX, and (c) the phylloquinone A1 and the chlorophyll A0 or P700 of the PSI electron acceptor chain. Light-induced PSI damage was also evidenced by partial degradation of the PSI-A and PSI-B proteins and was correlated with the appearance of smaller proteins. Aggravated photodamage was observed upon illumination of barley leaves infiltrated with KCN, which inhibits Cu,Zn-superoxide dismutase and ascorbate peroxidase. This indicates that the photodamage of PSI in barley observed during low-light illumination at chilling temperatures arises because the defense against active oxygen species by active oxygen-scavenging enzymes is insufficient at these specific conditions. The data obtained demonstrate that photoinhibition of PSI at chilling temperatures is an important phenomenon in a cold-tolerant plant species.
机译:在低温下大麦(Hordeum vulgare L.)的弱光照明过程中,研究了光诱导对光系统I(PSI)的损害。 4小时的照射期导致PSI电子传输活性明显失活。闪光诱导的P700吸收衰减测量结果显示出对(a)铁硫簇FA和FB,(b)铁硫簇FA,FB和FX以及(c)叶醌A1和叶绿素A0或PSI电子受体链的P700。 PSI-A和PSI-B蛋白的部分降解也证明了光诱导的PSI损伤,并且与较小蛋白的出现有关。照射KCN的大麦叶片受光照后观察到加剧的光损伤,这抑制了Cu,Zn-超氧化物歧化酶和抗坏血酸过氧化物酶。这表明在低温下在低温下观察到大麦中PSI的光损伤是由于活性物质对活性氧的防御作用 在这些特定条件下,除氧酶不足。 获得的数据表明,PSI在冷却时具有光抑制作用 温度是耐寒植物的重要现象 种类。

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