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首页> 外文期刊>Plant Biotechnology >Enhanced high temperature tolerance in transgenic rice seedlings with elevated levels of alternative oxidase, OsAOX1a
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Enhanced high temperature tolerance in transgenic rice seedlings with elevated levels of alternative oxidase, OsAOX1a

机译:交替氧化酶OsAOX1a含量升高,转基因水稻幼苗的高温耐受性增强

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The cyanide-insensitive alternative oxidase (AOX) respiratory pathway can reduce the excessive production of reactive oxygen species. Here we showed that transgenic rice seedlings transformed with OsAOX1a for rice alternative oxidase under the control of ubiquitin promoter exhibited thermotolerance after acute exposure, 41-45 degrees C for 10 min, or chronic exposure, 37 degrees C for up to 8 days. In contrast, these high temperature stresses resulted in significant growth inhibition in wild-type and transgenic plants with antisense OsAOX1a. The enhanced tolerance was significant in shoot growth, suggesting that the increased levels of AOX protein would dissipate the excess reductants produced in the chloroplasts suffering from oxidative damage due to high temperature stress.
机译:对氰化物不敏感的替代氧化酶(AOX)呼吸途径可以减少活性氧的过量产生。在这里,我们显示了在泛素启动子控制下,用OsAOX1a转化为水稻替代氧化酶的转基因水稻幼苗在41-45摄氏度急性暴露10分钟或在37摄氏度长期暴露长达8天后表现出耐热性。相反,这些高温胁迫导致带有反义OsAOX1a的野生型和转基因植物受到明显的生长抑制。增强的耐受性在枝条生长中是显着的,表明增加的AOX蛋白水平将消散由于高温胁迫而遭受氧化损伤的叶绿体中产生的过量还原剂。

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