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鉴定一种假定的电压门控Ca2+通道作为水稻中激发子诱导的过敏细胞死亡和丝裂原活化蛋白激酶激活的关键调节因子。

Identification of a putative voltage-gated Ca2+ channel as a key regulator of elicitor-induced hypersensitive cell death and mitogen-activated protein kinase activation in rice.

作者信息

Kurusu Takamitsu, Yagala Toshikazu, Miyao Akio, Hirochika Hirohiko, Kuchitsu Kazuyuki

机构信息

Department of Applied Biological Science, Tokyo University of Science, 2641 Yamazaki, Noda, Chiba 278-8510, Japan.

出版信息

Plant J. 2005 Jun;42(6):798-809. doi: 10.1111/j.1365-313X.2005.02415.x.

Abstract

Elicitor-triggered transient membrane potential changes and Ca2+ influx through the plasma membrane are thought to be important during defense signaling in plants. However, the molecular bases for the Ca2+ influx and its regulation remain largely unknown. Here we tested effects of overexpression as well as retrotransposon (Tos17)-insertional mutagenesis of the rice two-pore channel 1 (OsTPC1), a putative voltage-gated Ca(2+)-permeable channel, on a proteinaceous fungal elicitor-induced defense responses in rice cells. The overexpressor showed enhanced sensitivity to the elicitor to induce oxidative burst, activation of a mitogen-activated protein kinase (MAPK), OsMPK2, as well as hypersensitive cell death. On the contrary, a series of defense responses including the cell death and activation of the MAPK were severely suppressed in the insertional mutant, which was complemented by overexpression of the wild-type gene. These results suggest that the putative Ca(2+)-permeable channel determines sensitivity to the elicitor and plays a role as a key regulator of elicitor-induced defense responses, activation of MAPK cascade and hypersensitive cell death.

摘要

激发子引发的瞬时膜电位变化以及钙离子通过质膜的内流被认为在植物防御信号传导过程中很重要。然而,钙离子内流及其调控的分子基础仍 largely 未知。在此,我们测试了水稻双孔通道1(OsTPC1,一种假定的电压门控钙离子通透通道)的过表达以及反转录转座子(Tos17)插入诱变对水稻细胞中蛋白质类真菌激发子诱导的防御反应的影响。过表达植株对激发子诱导氧化爆发、丝裂原活化蛋白激酶(MAPK)OsMPK2的激活以及过敏细胞死亡表现出增强的敏感性。相反,插入突变体中包括细胞死亡和MAPK激活在内的一系列防御反应受到严重抑制,而野生型基因的过表达可对其进行互补。这些结果表明,假定的钙离子通透通道决定了对激发子的敏感性,并作为激发子诱导的防御反应、MAPK级联激活和过敏细胞死亡的关键调节因子发挥作用。

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