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细胞外ATP的信号传导作用及其在丹参毛状根培养物诱导中对Ca2+通量的依赖性。

The signaling role of extracellular ATP and its dependence on Ca2+ flux in elicitation of Salvia miltiorrhiza hairy root cultures.

作者信息

Wu Shu-Jing, Liu Yuan-Shuai, Wu Jian-Yong

机构信息

Department of Applied Biology and Chemical Technology, The Hong Kong Polytechnic University, Hung Hom, Kowloon, Hong Kong, PR China.

出版信息

Plant Cell Physiol. 2008 Apr;49(4):617-24. doi: 10.1093/pcp/pcn033. Epub 2008 Mar 6.

Abstract

The application of a polysaccharide elicitor from yeast extract, YE, to Salvia miltiorrhiza hairy root cultures induced transient release of ATP from the roots to the medium, leading to a dose-dependent increase in the extracellular ATP (eATP) level. The eATP level rose to a peak (about 6.5 nM with 100 mg l(-1) YE) at about 10 h after YE treatment, but dropped to the control level 6 h later. The elicitor-induced ATP release was dependent on membrane Ca2+ influx, and abolished by the Ca2+ chelator EGTA or the channel blocker La3+. The YE-induced H2O2 production was strongly inhibited by reactive blue (RB), a specific inhibitor of membrane purinoceptors. On the other hand, the application of exogenous ATP at 10-100 microM to the cultures also induced rapid and dose-dependent increases in H2O2 production and medium pH, both of which were effectively blocked by RB and EGTA. The non-hydrolyzable ATP analog ATPgammaS was as effective as ATP, but the hydrolyzed derivatives ADP or AMP were not so effective in inducing the pH and H2O2 increases. Our results suggest that ATP release is an early event and that eATP plays a signaling role in the elicitation of plant cell responses; Ca2+ is required for activation of the elicitor-induced ATP release and the eATP signal transduction. This is the first report on ATP release induced by a fungal elicitor and its involvement in the elicitor-induced responses in plant cells.

摘要

将酵母提取物(YE)中的一种多糖激发子应用于丹参毛状根培养物,可诱导根中ATP短暂释放到培养基中,导致细胞外ATP(eATP)水平呈剂量依赖性增加。YE处理后约10小时,eATP水平升至峰值(100 mg l(-1) YE时约为6.5 nM),但6小时后降至对照水平。激发子诱导的ATP释放依赖于膜Ca2+内流,并被Ca2+螯合剂EGTA或通道阻滞剂La3+消除。YE诱导的H2O2产生受到膜嘌呤受体特异性抑制剂活性蓝(RB)的强烈抑制。另一方面,向培养物中施加10 - 100 microM的外源ATP也会诱导H2O2产生和培养基pH值迅速且呈剂量依赖性增加,这两者均被RB和EGTA有效阻断。不可水解的ATP类似物ATPγS与ATP效果相同,但水解衍生物ADP或AMP在诱导pH值和H2O2增加方面效果不佳。我们的结果表明,ATP释放是一个早期事件,eATP在植物细胞反应的激发中起信号作用;Ca2+是激发子诱导的ATP释放和eATP信号转导激活所必需的。这是关于真菌激发子诱导ATP释放及其参与植物细胞激发子诱导反应的首次报道。

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