Biological Chemistry Department, Centre for Sustainable Pest and Disease Management, Rothamsted Research, Harpenden, Herts, UK.
Phytochemistry. 2010 Jun;71(8-9):904-8. doi: 10.1016/j.phytochem.2010.02.015. Epub 2010 Mar 6.
In East African small-holder farming of maize, the cattle forage legume, Desmodium uncinatum is used as an intercrop due to its allelopathic inhibition of parasitism by Striga hermonthica, an obligate parasitic weed that can devastate the maize crop. Bioassay-guided fractionation of the root extract of D. uncinatum revealed isoschaftoside to be the main compound in the most potent fraction inhibiting growth of germinated S. hermonthica radicles. Bioassays repeated with isoschaftoside isolated from a different plant source, Passiflora incarnata, proved it to be a biologically active component. Analysis of the root exudates produced by hydroponically grown D. uncinatum showed isoschaftoside to be present in the hydroponic media at biologically active concentrations of 10-100 nM.
在东非的玉米小农种植中,由于反刍动物采食黎豆(Desmodium uncinatum)可以抑制对寄生杂草独脚金(Striga hermonthica)的寄生,因此将其作为间作作物。独脚金是一种专性寄生杂草,会严重破坏玉米作物。对 D. uncinatum 根提取物的生物测定导向分级显示,异甘草素是最有效抑制萌发的独脚金幼根生长的化合物。重复用不同植物来源的异甘草素(Passiflora incarnata)进行生物测定,证明其是一种具有生物活性的成分。对水培 D. uncinatum 产生的根系分泌物进行分析表明,异甘草素以具有生物活性的 10-100 nM 浓度存在于水培介质中。