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首页> 外文期刊>BMC Plant Biology >Mechano-stimulated modifications in the chloroplast antioxidant system and proteome changes are associated with cold response in wheat
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Mechano-stimulated modifications in the chloroplast antioxidant system and proteome changes are associated with cold response in wheat

机译:机械刺激的叶绿体抗氧化系统修饰和蛋白质组变化与小麦的冷响应有关

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Background Mechanical wounding can cause morphological and developmental changes in plants, which may affect the responses to abiotic stresses. However, the mechano-stimulation triggered regulation network remains elusive. Here, the mechano-stimulation was applied at two different times during the growth period of wheat before exposing the plants to cold stress (5.6?°C lower temperature than the ambient temperature, viz., 5.0?°C) at the jointing stage. Results Results showed that mechano-stimulation at the Zadoks growth stage 26 activated the antioxidant system, and substantially, maintained the homeostasis of reactive oxygen species. In turn, the stimulation improved the electron transport and photosynthetic rate of wheat plants exposed to cold stress at the jointing stage. Proteomic and transcriptional analyses revealed that the oxidative stress defense, ATP synthesis, and photosynthesis-related proteins and genes were similarly modulated by mechano-stimulation and the cold stress. Conclusions It was concluded that mechano-stimulated modifications of the chloroplast antioxidant system and proteome changes are related to cold tolerance in wheat. The findings might provide deeper insights into roles of reactive oxygen species in mechano-stimulated cold tolerance of photosynthetic apparatus, and be helpful to explore novel approaches to mitigate the impacts of low temperature occurring at critical developmental stages.
机译:背景机械伤害会引起植物的形态和发育变化,这可能会影响对非生物胁迫的反应。但是,机械刺激触发的调节网络仍然难以捉摸。在此,在小麦的生长期,在两次不同的时间进行机械刺激,然后在拔节期将植物置于冷胁迫下(温度比环境温度低5.6?C,即5.0?C)。结果结果表明,在Zadoks生长阶段26的机械刺激激活了抗氧化剂系统,并基本上保持了活性氧的稳态。反过来,刺激改善了在拔节期暴露于冷胁迫下的小麦植株的电子传递和光合速率。蛋白质组学和转录分析表明,机械刺激和冷胁迫对氧化应激防御,ATP合成以及与光合作用相关的蛋白质和基因具有类似的调节作用。结论得出结论,机械刺激的叶绿体抗氧化系统修饰和蛋白质组变化与小麦的耐冷性有关。这些发现可能为活性氧物种在机械刺激的光合作用耐寒性中的作用提供更深入的见解,并有助于探索减轻关键发展阶段发生的低温影响的新方法。

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