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烟草中超敏反应的一种新激发子:一种真菌糖蛋白可引发细胞死亡、防御基因表达、水杨酸生成以及系统获得性抗性的诱导。

A new elicitor of the hypersensitive response in tobacco: a fungal glycoprotein elicits cell death, expression of defence genes, production of salicylic acid, and induction of systemic acquired resistance.

作者信息

Baillieul F, Genetet I, Kopp M, Saindrenan P, Fritig B, Kauffmann S

机构信息

Institut de Biologie Moléculaire des Plantes du CNRS, Université Louis Pasteur, Strasbourg, France.

出版信息

Plant J. 1995 Oct;8(4):551-60. doi: 10.1046/j.1365-313x.1995.8040551.x.

Abstract

A 32 kDa glycoprotein whose effects in tobacco and other Nicotianae mimic a typical hypersensitive response, was isolated from Phytophthora megasperma. Infiltration of a few nanograms of the protein into leaves caused the formation of lesions that closely resemble hypersensitive response lesions. Transcripts of genes encoding enzymes of the phenylpropanoid and sesquiterpenoid pathways accumulated rapidly after elicitor application followed by salicylic acid production. Cellular damage, restricted to the infiltrated zone, occurred only several hours later, at a time when expression of PR protein genes was activated. After several days systemic acquired resistance was also induced. Thus, tobacco plant cells that perceived the glycoprotein generated a cascade of signals acting at local, short, and long distances, and causing the coordinate expression of specific defence responses in a way similar to hypersensitivity to tobacco mosaic virus. The glycoprotein represents a powerful tool to investigate further the signals and their transduction pathways involved in induced disease resistance. It may also be useful to engineer broad disease protection in a Nicotianae and possibly into crop plant species.

摘要

从大雄疫霉中分离出一种32 kDa的糖蛋白,其在烟草和其他烟草属植物中的作用模拟了典型的过敏反应。将几纳克这种蛋白注入叶片会导致形成与过敏反应损伤极为相似的病斑。在施加激发子后,紧接着水杨酸产生,苯丙烷类和倍半萜类途径的编码酶基因的转录本迅速积累。细胞损伤仅局限于注射区域,仅在数小时后出现,此时病程相关蛋白基因的表达被激活。几天后还诱导了系统获得性抗性。因此,感知到该糖蛋白的烟草植物细胞产生了一系列在局部、短期和长期起作用的信号,并以类似于对烟草花叶病毒过敏的方式导致特定防御反应的协同表达。这种糖蛋白是进一步研究诱导抗病性中涉及的信号及其转导途径的有力工具。它也可能有助于在烟草属植物甚至可能在作物植物物种中构建广泛的病害保护。

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