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首页> 外文期刊>Journal of Plant Physiology >Exogenous allantoin increases Arabidopsis seedlings tolerance to NaCl stress and regulates expression of oxidative stress response genes
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Exogenous allantoin increases Arabidopsis seedlings tolerance to NaCl stress and regulates expression of oxidative stress response genes

机译:外源性丙二蛋白将拟南芥幼苗耐受性增加对NaCl胁迫并调节氧化应激反应基因的表达

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摘要

Allantoin is a nitrogenous compound derived from purine catabolism that contributes to nitrogen recycling in plants. Accumulation of allantoin in plant tissues and a potential role in protection of plants from abiotic stress conditions has been identified. The present work shows that application of exogenous allantoin increased stress tolerance of Arabidopsis seedlings when germinated on, or subjected to the media containing NaCl. Allantoin-induced tolerance to NaCl stress was associated with decreased production of superoxide and hydrogen peroxide in seedlings. To understand the molecular mechanism, the effect of exogenous allantoin treatment on expression of several stress-related genes was investigated. Exogenous allantoin altered the expression of several antioxidant encoding genes and upregulated the expression of two genes involved in oxidative stress tolerance, SOS1 and RCD1, in the presence or absence of NaCl. Allantoin increased the NaCl tolerance of abscisic acid insensitive mutants, suggesting that it can function independently of abscisic acid signaling. These results provide additional evidence for the role of allantoin in enhancing plants tolerance to oxidative stress.
机译:丙二醇是一种衍生自嘌呤分解代谢的含氮化合物,其有助于植物中的氮气再循环。鉴定了含有非生物胁迫条件保护植物组织中紫杉醇的含蓄和潜在作用。本作者表明,在发芽时,外源性丙氨酸的应用增加了拟南芥幼苗的胁迫耐受性,或对含有NaCl的培养基进行拟南芥幼苗。对NaCl胁迫的含量诱导的耐受性与幼苗中超氧化物和过氧化氢的产生降低有关。为了了解分子机制,研究了外源性丙氨酸治疗对几种应激相关基因表达的影响。外源性丙二蛋白改变了几种抗氧化剂编码基因的表达,并上调了在存在或不存在NaCl的存在或不存在下参与氧化胁迫耐受性,SOS1和RCD1的两个基因的表达。 Allantoin增加了脱落酸不敏感突变体的NaCl耐受性,表明它可以独立地起作用的脱落酸信号传导。这些结果提供了额外的证据,以促使丙屈素增强植物耐受氧化应激的耐受性。

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