Ueda Hiroaki, Sugimoto Yukihiro
Graduate School of Agricultural Science, Kobe University, Rokkodai, Kobe, Japan.
Biosci Biotechnol Biochem. 2010;74(8):1662-7. doi: 10.1271/bbb.100285. Epub 2010 Aug 7.
The root parasitic plant, Striga hermonthica, constrains the production of several agronomically important poaceous crops in the arid and semiarid tropical regions of Sub-Saharan Africa. The parasite is incompatible with the model legume, Lotus japonicus. Studies at the molecular and metabolic levels have revealed that expression of the genes involved in the biosynthesis of vestitol, a legume-specific phytoalexin, was highly up-regulated in L. japonicus roots challenged with S. hermonthica. High-performance liquid chromatography and mass spectroscopy confirmed the presence of vestitol in the exudate released from L. japonicus roots inoculated with S. hermonthica seedlings. Fluorescence, similar to that emitted by authentic vestitol, was displayed on the surface of L. japonicus roots to which successful attachment of S. hermonthica had been achieved. Vestitol exerted a limited inhibitory effect on S. hermonthica germination, but it significantly inhibited seedling growth. These results indicate that vestitol biosynthesis in L. japonicus was induced by S. hermonthica attachment and that vestitol contributed, at least in part, to the host's defence mechanism and acted as a chemical barrier against the intrusion of the parasite.
根寄生植物独脚金(Striga hermonthica)限制了撒哈拉以南非洲干旱和半干旱热带地区几种具有重要农艺价值的禾本科作物的产量。这种寄生虫与模式豆科植物百脉根(Lotus japonicus)不亲和。分子和代谢水平的研究表明,在受到独脚金挑战的百脉根根部,参与豆科植物特异性植保素红豆素生物合成的基因表达高度上调。高效液相色谱和质谱分析证实,接种独脚金幼苗的百脉根根部渗出物中存在红豆素。在成功附着独脚金的百脉根根表面呈现出与纯红豆素发出的荧光相似的荧光。红豆素对独脚金种子萌发的抑制作用有限,但它显著抑制了幼苗生长。这些结果表明,百脉根中红豆素的生物合成是由独脚金的附着诱导的,并且红豆素至少部分地有助于宿主的防御机制,并作为一种化学屏障抵御寄生虫的入侵。