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Plastid Alternative Oxidase (PTOX) Promotes Oxidative Stress When Overexpressed in Tobacco

机译:烟草中过表达的质体替代氧化酶(PTOX)促进氧化应激

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摘要

Photoinhibition and production of reactive oxygen species were studied in tobacco plants overexpressing the plastid terminal oxidase (PTOX). In high light, these plants was more susceptible to photoinhibition than wild-type plants. Also oxygen-evolving activity of isolated thylakoid membranes from the PTOX-overexpressing plants was more strongly inhibited in high light than in thylakoids from wild-type plants. In contrast in low light, in the PTOX overexpressor, the thylakoids were protected against photoinhibition while in wild type they were significantly damaged. The production of superoxide and hydroxyl radicals was shown by EPR spin-trapping techniques in the different samples. Superoxide and hydroxyl radical production was stimulated in the overexpressor. Two-thirds of the superoxide production was maintained in the presence of DNP-INT, an inhibitor of the cytochrome b6f complex. No increase of the SOD content was observed in the overexpressor compared with the wild type. We propose that superoxide is produced by PTOX in a side reaction and that PTOX can only act as a safety valve under stress conditions when the generated superoxide is detoxified by an efficient antioxidant system.
机译:在过表达质体末端氧化酶(PTOX)的烟草植物中研究了光抑制作用和活性氧的产生。在强光下,这些植物比野生型植物更容易受到光抑制。同样,来自高表达PTOX的植物中分离的类囊体膜的放氧活性比来自野生型植物的类囊体中的氧气释放活性受到更强的抑制。相反,在弱光下,在PTOX过表达物中,类囊体被保护免受光抑制,而在野生型中它们被显着破坏。通过EPR自旋捕获技术在不同样品中显示了超氧化物和羟基自由基的产生。过表达子刺激了超氧化物和羟基自由基的产生。在细胞色素b6f复合物抑制剂DNP-INT的存在下,三分之二的超氧化物产量得以维持。与野生型相比,在过表达基因中未观察到SOD含量的增加。我们提出,超氧化物是由PTOX在副反应中产生的,并且当所产生的超氧化物被有效的抗氧化剂体系解毒时,PTOX只能在压力条件下充当安全阀。

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