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烟草叶瘿中酚类化合物的模式

Patterns of phenolic compounds in leafy galls of tobacco.

作者信息

Vereecke D, Messens E, Klarskov K, De Bruyn A, Van Montagu M, Goethals K

机构信息

Laboratorium voor Genetica, Department of Genetics, Flanders Interuniversity Institute for Biotechnology,Universiteit Gent, K.L. Ledeganckstraat 35, B-9000, Gent, Belgium.

出版信息

Planta. 1997 Mar;201(3):342-8. doi: 10.1007/s004250050076.

Abstract

The chemical composition of ethanolic and aqueous extracts from leafy galls produced after infection of Nicotiana tabacum L. plants with Rhodococcus fascians was drastically changed compared to uninfected controls. Chlorogenic acid was abundant both in uninfected and infected plants, but caffeic acid and another cinnamoyl analogue were new in leafy galls. The most pronounced product induced in leafy galls was identified as 7-O-methyl-6-O-beta-D-glucopyranosyl coumarin (7-methyl esculin). This is the first report of the presence of this coumarin derivative in tobacco. Interestingly, 7-methyl esculin did not accumulate in the presence of avirulent R. fascians strains nor was it found in leafy galls on other plant species. However, it did appear in crown galls induced by Agrobacterium tumefaciens on tobacco plants. Intriguingly, none of the phenolics known to accumulate in Solanaceae under pathogen attack were found in leafy galls. 7-Methyl esculin barely affected growth of R. fascians nor was it catabolized. Microscopical analysis showed that autofluorescent compounds were located mainly in the abundant meristematic regions of the leafy galls. We postulate that 7-methyl esculin might locally influence plant cell division.

摘要

与未感染的对照相比,感染烟草叶瘤病菌(Rhodococcus fascians)的烟草(Nicotiana tabacum L.)植株所产生的带叶瘿瘤的乙醇提取物和水提取物的化学成分发生了显著变化。绿原酸在未感染和感染的植株中均大量存在,但咖啡酸和另一种肉桂酰类似物是带叶瘿瘤中的新成分。在带叶瘿瘤中诱导产生的最显著产物被鉴定为7-O-甲基-6-O-β-D-吡喃葡萄糖基香豆素(7-甲基七叶苷)。这是该香豆素衍生物在烟草中存在的首次报道。有趣的是,无毒的烟草叶瘤病菌菌株存在时,7-甲基七叶苷不会积累,在其他植物物种的带叶瘿瘤中也未发现。然而,它确实出现在根癌土壤杆菌(Agrobacterium tumefaciens)诱导的烟草植株冠瘿中。耐人寻味的是,在带叶瘿瘤中未发现已知在病原体攻击下茄科植物中积累的酚类物质。7-甲基七叶苷对烟草叶瘤病菌的生长几乎没有影响,也不会被分解代谢。显微镜分析表明,自发荧光化合物主要位于带叶瘿瘤丰富的分生组织区域。我们推测7-甲基七叶苷可能会局部影响植物细胞分裂。

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