首页> 美国卫生研究院文献>Scientific Reports >pH effects on plant calcium fluxes: lessons from acidification-mediated calcium elevation induced by the γ-glutamyl-leucine dipeptide identified from Phytophthora infestans
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pH effects on plant calcium fluxes: lessons from acidification-mediated calcium elevation induced by the γ-glutamyl-leucine dipeptide identified from Phytophthora infestans

机译:pH对植物钙通量的影响:从疫霉疫霉中鉴定的γ-谷氨酰-亮氨酸二肽诱导的酸化介导的钙升高的经验教训

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摘要

Cytosolic Ca2+ ([Ca2+]cyt) elevation is an early signaling response upon exposure to pathogen-derived molecules (so-called microbe-associated molecular patterns, MAMPs) and has been successfully used as a quantitative read-out in genetic screens to identify MAMP receptors or their associated components. Here, we isolated and identified by mass spectrometry the dipeptide γ-Glu-Leu as a component of a Phytophthora infestans mycelium extract that induces [Ca2+]cyt elevation. Treatment of Arabidopsis seedlings with synthetic γ-Glu-Leu revealed stimulatory effects on defense signaling, including a weak enhancement of the expression of some MAMP-inducible genes or affecting the refractory period to a second MAMP elicitation. However, γ-Glu-Leu is not a classical MAMP since pH adjustment abolished these activities and importantly, the observed effects of γ-Glu-Leu could be recapitulated by mimicking extracellular acidification. Thus, although γ-Glu-Leu can act as a direct agonist of calcium sensing receptors in animal systems, the Ca2+-mobilizing activity in plants reported here is due to acidification. Low pH also shapes the Ca2+ signature of well-studied MAMPs (e.g. flg22) or excitatory amino acids such as glutamate. Overall, this work serves as a cautionary reminder that in defense signaling studies where Ca2+ flux measurements are concerned, it is important to monitor and consider the effects of pH.
机译:胞质Ca 2 + ([Ca 2 + ] cyt)升高是暴露于病原体衍生的分子(所谓的微生物相关分子模式,MAMP)后的早期信号反应),并已成功地用作遗传筛选中的定量读数,以识别MAMP受体或其相关成分。在这里,我们通过质谱法分离并鉴定了二肽γ-Glu-Leu,其是致病疫霉菌丝体提取物的成分,其诱导[Ca 2 + ] cyt升高。用合成的γ-Glu-Leu处理拟南芥幼苗显示出对防御信号的刺激作用,包括一些MAMP诱导基因表达的微弱增强或影响第二次MAMP诱导的不应期。但是,γ-Glu-Leu不是经典的MAMP,因为pH调节取消了这些活性,重要的是,通过模拟细胞外酸化作用,可以概括观察到的γ-Glu-Leu的作用。因此,尽管γ-Glu-Leu可以在动物系统中充当钙敏感受体的直接激动剂,但此处报道的植物中Ca 2 + 的迁移活性是由于酸化引起的。低pH值还会影响经过充分研究的MAMP(例如flg22)或兴奋性氨基酸(如谷氨酸)的Ca 2 + 标记。总体而言,这项工作提醒我们注意,在涉及Ca 2 + 通量测量的防御信号研究中,监测和考虑pH值的影响很重要。

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