Koyama Tomoyuki, Takahashi Ikuo, Asami Tadao
Graduate School of Agricultural and Life Sciences, The University of Tokyo.
J Pestic Sci. 2023 May 20;48(2):61-64. doi: 10.1584/jpestics.D22-034.
Cyclopropene derivatives have been used as extremely reactive units in organic chemistry owing to their high ring-strain energy. They have become popular reagents both for bioorthogonal chemistry and for chemical biology because of their small size and ability to be genetically encoded. In this context, we conducted an exploratory study to identify the biologically active cyclopropenes that affect normal plant growth. We synthesized several cycloprop-2-ene-1-carboxylic acid derivatives and evaluated their effects on the early growth stage of . Eventually, we identified the chemicals that affect apical hook development in . Their mode of action is different from those of ethylene receptor inhibition and gibberellin biosynthesis inhibition. We expect that some of the chemicals reported here can be new tools in chemical biology to determine useful molecular targets for herbicides or plant growth regulators.
环丙烯衍生物因其高环张力能而在有机化学中被用作极具反应活性的单元。由于其尺寸小且具有遗传编码能力,它们已成为生物正交化学和化学生物学中常用的试剂。在此背景下,我们进行了一项探索性研究,以鉴定影响正常植物生长的生物活性环丙烯。我们合成了几种环丙 - 2 - 烯 - 1 - 羧酸衍生物,并评估了它们对[具体植物]早期生长阶段的影响。最终,我们确定了影响[具体植物]顶端弯钩发育的化学物质。它们的作用模式不同于乙烯受体抑制和赤霉素生物合成抑制的作用模式。我们期望本文报道的一些化学物质能够成为化学生物学中的新工具,以确定除草剂或植物生长调节剂的有用分子靶点。