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首页> 外文期刊>Plant physiology >Enhanced Oxidative Stress Resistance through Activation of a Zinc Deficiency Transcription Factor in Brachypodium distachyon
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Enhanced Oxidative Stress Resistance through Activation of a Zinc Deficiency Transcription Factor in Brachypodium distachyon

机译:通过激活短枝曲霉中的锌缺乏转录因子增强抗氧化应激能力。

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Identification of viable strategies to increase stress resistance of crops will become increasingly important for the goal of global food security as our population increases and our climate changes. Considering that resistance to oxidative stress is oftentimes an indicator of health and longevity in animal systems, characterizing conserved pathways known to increase oxidative stress resistance could prove fruitful for crop improvement strategies. This report argues for the usefulness and practicality of the model organism Brachypodium distachyon for identifying and validating stress resistance factors. Specifically, we focus on a zinc deficiency B. distachyon basic leucine zipper transcription factor, BdbZIP10, and its role in oxidative stress in the model organism B. distachyon. When overexpressed, BdbZIP10 protects plants and callus tissue from oxidative stress insults, most likely through distinct and direct activation of protective oxidative stress genes. Increased oxidative stress resistance and cell viability through the overexpression of BdbZIP10 highlight the utility of investigating conserved stress responses between plant and animal systems.
机译:随着全球人口的增长和气候的变化,为全球粮食安全的目标确定提高作物抗逆性的可行策略将变得越来越重要。考虑到对氧化应激的抗性通常是动物系统健康和长寿的指标,表征已知增加氧化应激抗性的保守途径可能证明对作物改良策略很有用。这份报告认为模式生物Brachypodium distachyon用于识别和验证抗逆性因子的实用性和实用性。具体而言,我们专注于缺锌的B. distachyon碱性亮氨酸拉链转录因子BdbZIP10及其在模型生物B. distachyon中的氧化应激中的作用。当过表达时,BdbZIP10可以保护植物和愈伤组织免受氧化应激损害,最有可能通过保护性氧化应激基因的独特而直接的激活。通过过表达BdbZIP10来提高抗氧化应激能力和细胞活力,这突出了研究动植物系统之间保守的应激反应的实用性。

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