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Extracellular ATP signaling: Induction of superoxide accumulation and possible regulation by ectoapyrases in Arabidopsis thaliana.

机译:细胞外ATP信号转导:拟南芥中超酶解诱导超氧化物的积累和可能的调节。

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摘要

Plants are constantly assaulted with abiotic and biotic stresses. They have developed mechanisms to transduce those stresses into adaptive physiological responses, including the production of reactive oxygen species as an intermediate signal, a mechanism they share in common with animal responses to stress. In animals, extracellular ATP (xATP) is a signal that induces the production of reactive oxygen species. In this dissertation, we document that xATP can serve as a signal also in plants by inducing superoxide production via NADPH oxidases. We also characterize intermediate elements in the ATP signaling pathway, downstream gene expression changes and the possible regulation of this signal by apyrases in Arabidopsis thaliana.; ATP-treated Arabidopsis leaves had increased superoxide accumulation. Inhibitors of the P2 receptors that initiate xATP responses in animals were able to block ATP-induced superoxide production in Arabidopsis. Mutants missing NADPH oxidase subunits did not show ATP-induced superoxide accumulation, indicating that NADPH oxidase activity is responsible for the ATP-induced superoxide production. A cation channel blocker, a calcium chelator, and a calmodulin antagonist also blocked this ATP response, implicating increases in [Ca2+]cyt and the activation of calmodulin as intermediate signaling steps between xATP and superoxide production. Genes that are induced by various stresses were up-regulated by xATP, including genes involved in the biosynthesis of jasmonates and ethylene.; Ectoapyrases are enzymes that hydrolyze extracellular nucleotides. Arabidopsis apyrases were assessed as possible regulators of the xATP signal, a role they could carry out directly by quenching the signal and indirectly by increasing the AMP product that can readily be converted to adenosine, a negative feedback suppressor of ATP effects in animals, although this has not been demonstrated in plants to date. Adenosine decreased ATP-induced superoxide production, and three independent lines overexpressing the apyrase gene, Atapy2 (A&barbelow;rabidopsis t&barbelow;haliana apyrase 2&barbelow;) had reduced superoxide production in response to ATP treatment. The level of two mRNAs encoding apyrases increased in response to wounding, but only Atapy2 had increased gene expression when treated with oligalacturonic acid (OGA). These differences suggest differential regulation of these similar apyrases. This dissertation provides evidence for a novel signal transduction pathway in Arabidopsis leading to the induction of superoxide production and the possible regulation of this pathway by apyrases.
机译:植物不断受到非生物和生物胁迫的侵害。他们开发了将这些压力转化为适应性生理反应的机制,包括产生活性氧作为中间信号,这是它们与动物对压力的反应共有的机制。在动物中,细胞外ATP(xATP)是诱导活性氧产生的信号。在本文中,我们证明了xATP还可通过通过NADPH氧化酶诱导超氧化物的产生而在植物中充当信号。我们还表征了拟南芥中的ATP通过信号传导途径中的中间元件,下游基因表达的变化以及该信号的可能调节。 ATP处理的拟南芥叶片具有增加的超氧化物积累。在动物中引发xATP反应的P2受体抑制剂能够阻止拟南芥中ATP诱导的超氧化物产生。缺少NADPH氧化酶亚基的突变体未显示ATP诱导的超氧化物积累,表明NADPH氧化酶活性是ATP诱导的超氧化物产生的原因。阳离子通道阻滞剂,钙螯合剂和钙调蛋白拮抗剂也阻断了该ATP反应,暗示[Ca2 +] cyt的增加和钙调蛋白的活化是xATP和超氧化物产生之间的中间信号传递步骤。 xATP上调了各种胁迫诱导的基因,包括参与茉莉酸酯和乙烯生物合成的基因。乙酰磷酸酶是水解细胞外核苷酸的酶。拟南芥被认为是xATP信号的可能调节剂,它们可以通过淬灭信号直接发挥作用,并通过增加AMP产物而间接发挥作用,该AMP产物很容易转化为腺苷,腺苷是动物对ATP的负反馈抑制因子,尽管这迄今为止尚未在植物中证明。腺苷降低了ATP诱导的超氧化物生成,并且三个过表达ATP酶基因的独立系Atapy2(A&barbelow; rabidopsis t&barbe; haliana apyrase 2&barbelow;)响应于ATP处理而降低了过氧化物的生成。响应受伤,两个编码无主链淀粉的mRNA的水平增加,但是当用低聚半乳糖醛酸(OGA)处理时,只有Atapy2的基因表达增加。这些差异表明这些相似的主链的差异调节。本论文为拟南芥中一种新的信号转导途径提供了证据,该信号转导途径诱导了超氧化物的产生,并可能被无须果胶调节。

著录项

  • 作者

    Song, Charlotte Jarlen.;

  • 作者单位

    The University of Texas at Austin.;

  • 授予单位 The University of Texas at Austin.;
  • 学科 Biology Botany.; Biology Plant Physiology.; Biology Cell.
  • 学位 Ph.D.
  • 年度 2004
  • 页码 119 p.
  • 总页数 119
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;植物学;细胞生物学;
  • 关键词

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