Gachon Claire, Baltz Rachel, Saindrenan Patrick
Institut de Biologie Moléculaire des Plantes du CNRS, 12 rue du Genéral Zimmer, 67084 Strasbourg Cedex, France.
Plant Mol Biol. 2004 Jan;54(1):137-46. doi: 10.1023/B:PLAN.0000028775.58537.fe.
Nicotiana tabacum Togt encodes a scopoletin glucosyltransferase (UDPglucose:scopoletin O -beta-D-glucosyltrans- ferase, EC 2.4.1.128) known to act in vitro on many different substrates including the 6-methoxy-7-hydroxy- coumarin scopoletin. This phenolic compound accumulates in vast amounts, essentially in its glucosylated form scopolin, in tobacco during the hypersensitive response (HR) to tobacco mosaic virus (TMV). To identify the physiological role of this pathogen-inducible UDP-Glc glucosyltransferase (UGT), we generated TOGT over-expressing transgenic plants. Although no endogenous scopoletin or scopolin could be detected before infection, the accumulation of both the aglycone and the glucoside was found to be 2-fold higher in transgenic plants after inoculation with TMV than in wild-type plants. Scopoletin UGT activity in plants over-expressing Togt was significantly higher during the HR than in control plants. This up-regulated activity was associated with a strong increase of the bright blue fluorescence surrounding the HR-necrotic lesions under UV light, which is known to correlate with scopoletin and scopolin abundance. Necrosis appeared sooner in transgenic plants and lesions developed faster, suggesting an accelerated HR. Unexpectedly, the viral content in each lesion was not significantly different in transgenic and in wild-type plants. These results are discussed in relation to the role of TOGT as the major UDP-Glc: scopoletin glucosyltransferase and to the importance of scopoletin accumulation during the HR.
烟草(Nicotiana tabacum)的Togt编码一种东莨菪素葡萄糖基转移酶(UDP葡萄糖:东莨菪素O-β-D-葡萄糖基转移酶,EC 2.4.1.128),已知该酶在体外可作用于许多不同底物,包括6-甲氧基-7-羟基香豆素东莨菪素。这种酚类化合物在烟草对烟草花叶病毒(TMV)的过敏反应(HR)期间大量积累,主要以其糖基化形式东莨菪苷存在。为了确定这种病原体诱导的UDP-葡萄糖基葡萄糖基转移酶(UGT)的生理作用,我们构建了过表达TOGT的转基因植物。尽管在感染前未检测到内源性东莨菪素或东莨菪苷,但接种TMV后,转基因植物中糖苷配基和糖苷的积累量比野生型植物高2倍。在HR期间,过表达Togt的植物中东莨菪素UGT活性显著高于对照植物。这种上调的活性与紫外线下HR坏死病斑周围亮蓝色荧光的强烈增加有关,已知该荧光与东莨菪素和东莨菪苷的丰度相关。转基因植物中坏死出现得更早,病斑发展得更快,表明HR加速。出乎意料的是,转基因植物和野生型植物中每个病斑的病毒含量没有显著差异。本文结合TOGT作为主要UDP-葡萄糖:东莨菪素葡萄糖基转移酶的作用以及HR期间东莨菪素积累的重要性对这些结果进行了讨论。