Sagor G H M, Cong Run-Zi, Berberich Thomas, Takahashi Hideki, Takahashi Yoshihiro, Kusano Tomonobu
Graduate School of Life Sciences, Tohoku University, Sendai, Miyagi, Japan.
Plant Signal Behav. 2009 Apr;4(4):316-8. doi: 10.4161/psb.4.4.8104.
We have proposed that the polyamine spermine functions as a signaling molecule to evoke defense reactions/cell death in -gene bearing infected with tobacco mosaic virus (TMV). In this work we examined whether this spermine-based signal transduction pathway is present in other plants such as . For this purpose, we used the experimental system of cucumber mosaic virus-yellow strain (CMV-Y) and thaliana ecotype C24 carrying the resistance gene, in which a hypersensitive response is triggered. Almost all spermine-responsive genes in Arabidopsis were similarly regulated as in the TMV- system. In addition to the formerly identified spermine-signal component genes such as alternative oxidase- and mitogen-activated protein kinase 3 (WIPK orthologue)-genes, , encoding an endoplasmic reticulum (ER)-localized transcription factor, was identified as a spermine-responsive gene, indicating that the ER may be involved in a spermine-signaling pathway. Treatment with polyamine oxidase inhibitors prior to CMV inoculation suppressed the expression of the genes mentioned above and compromised the host defense against CMV. Furthermore, exogenously added spermine suppressed the multiplication of CMV in Arabidopsis as did spermidine but less efficiently, while putrescine did not show such effects. Collectively, we conclude that the spermine-signaling pathway plays an important defensive role in as well as in when those plants are attacked by incompatible viral pathogens.
我们曾提出,多胺精胺作为一种信号分子,可在携带抗病基因的烟草花叶病毒(TMV)感染植物中引发防御反应/细胞死亡。在这项研究中,我们检测了这种基于精胺的信号转导途径是否存在于其他植物中,比如拟南芥。为此,我们使用了黄瓜花叶病毒黄化株系(CMV-Y)和携带抗病基因的拟南芥生态型C24的实验系统,在该系统中会触发超敏反应。拟南芥中几乎所有对精胺有反应的基因的调控方式都与TMV系统中的相似。除了先前鉴定出的精胺信号成分基因,如交替氧化酶和丝裂原活化蛋白激酶3(WIPK同源物)基因外,编码一种内质网(ER)定位转录因子的基因也被鉴定为精胺反应基因,这表明内质网可能参与了精胺信号通路。在接种CMV之前用多胺氧化酶抑制剂处理,会抑制上述基因的表达,并损害宿主对CMV的防御能力。此外,外源添加的精胺能抑制CMV在拟南芥中的增殖,亚精胺也有同样的作用,但效果稍差,而腐胺则没有这种作用。总的来说,我们得出结论,当这些植物受到不相容病毒病原体攻击时,精胺信号通路在拟南芥以及其他植物中都发挥着重要的防御作用。