Department of Applied Biological Chemistry, The University of Tokyo, Tokyo, Japan.
PLoS One. 2011;6(7):e21723. doi: 10.1371/journal.pone.0021723. Epub 2011 Jul 8.
We previously discovered a lead compound for strigolactone (SL) biosynthesis inhibitors, TIS13 (2,2-dimethyl-7-phenoxy-4-(1H-1,2,4-triazol-1-yl)heptan-3-ol). Here, we carried out a structure-activity relationship study of TIS13 to discover more potent and specific SL biosynthesis inhibitor because TIS13 has a severe side effect at high concentrations, including retardation of the growth of rice seedlings. TIS108, a new TIS13 derivative, was found to be a more specific SL biosynthesis inhibitor than TIS13. Treatment of rice seedlings with TIS108 reduced SL levels in both roots and root exudates in a concentration-dependent manner and did not reduce plant height. In addition, root exudates of TIS108-treated rice seedlings stimulated Striga germination less than those of control plants. These results suggest that TIS108 has a potential to be applied in the control of root parasitic weeds germination.
我们之前发现了一种独脚金内酯(SL)生物合成抑制剂的先导化合物,TIS13(2,2-二甲基-7-苯氧基-4-(1H-1,2,4-三唑-1-基)庚-3-醇)。在这里,我们对 TIS13 进行了结构-活性关系研究,以发现更有效和更特异的 SL 生物合成抑制剂,因为 TIS13 在高浓度下具有严重的副作用,包括水稻幼苗生长迟缓。发现 TIS108,一种新的 TIS13 衍生物,比 TIS13 具有更高的特异性 SL 生物合成抑制剂。用 TIS108 处理水稻幼苗可使根和根分泌物中的 SL 水平以浓度依赖的方式降低,而不会降低株高。此外,TIS108 处理的水稻幼苗的根分泌物刺激独脚金发芽的能力低于对照植物。这些结果表明,TIS108 有可能应用于控制根寄生杂草的发芽。