Allelopathy Group, Department of Organic Chemistry, Institute of Biomolecules (INBIO), Campus CEIA3, School of Science, University of Cádiz, C/ República Saharaui, 7, 11510, Puerto Real (Cádiz), Spain; Institute of Pharmacy/Pharmacognosy, Center for Molecular Biosciences Innsbruck (CMBI), University of Innsbruck, CCB, Innrain 80/82, 6020, Innsbruck, Austria.
Institute of Pharmacy/Pharmacognosy, Center for Molecular Biosciences Innsbruck (CMBI), University of Innsbruck, CCB, Innrain 80/82, 6020, Innsbruck, Austria; Institute of Pharmacognosy, University of Szeged, Eötvös u. 6, H-6720, Szeged, Hungary; Department of Aquatic Sciences and Assessment, Swedish University of Agricultural Sciences, SE, 75007, Uppsala, Sweden.
Phytochemistry. 2023 Nov;215:113838. doi: 10.1016/j.phytochem.2023.113838. Epub 2023 Aug 28.
Six different furanocoumarins were isolated from the aerial parts of Ducrosia anethifolia and tested in vitro for plant cell elongation in etiolated wheat coleoptile. They were also tested for their ability to control three different weeds: ribwort plantain, annual ryegrass, and common purslane. These compounds exhibited strong inhibition of plant cell elongation. In the case of (+)-heraclenin, the IC was lower than 20 μM, indicating a better inhibition than the positive control Logran®. Computational experiments for docking and molecular dynamics revealed for the investigated furanocoumarins bearing an epoxide moiety an improved fitting and stronger interaction with the auxin-like TIR1 ubiquitin ligase. Furthermore, the formed inhibition complex remained also stable during dynamic evaluation. Bidental interaction at the active site, along with an extended hydrogen-bond lifetime, explained the enhanced activity of the epoxides. The in vitro weed bioassay results showed that Plantago lanceolata was the most affected weed for germination, root, and shoot development. In addition, (+)-heraclenin displayed better inhibition values than positive control even at 300 μM concentration.
从杜香的地上部分分离出 6 种呋喃香豆素,并在暗培养的小麦胚芽鞘中进行体外植物细胞伸长试验。它们还被测试了控制三种不同杂草的能力:繁缕、一年生黑麦草和马齿苋。这些化合物对植物细胞伸长表现出强烈的抑制作用。在(+)-heraclenin 的情况下,IC 低于 20μM,表明抑制作用优于阳性对照 Logran®。对接和分子动力学的计算实验表明,对于研究的呋喃香豆素,带有环氧化物部分的呋喃香豆素与拟生长素样 TIR1 泛素连接酶的拟合更好,相互作用更强。此外,在动态评估过程中,形成的抑制复合物仍然稳定。在活性部位的双齿相互作用,以及延长的氢键寿命,解释了环氧化物活性的增强。体外杂草生物测定结果表明,繁缕是受发芽、根和芽发育影响最大的杂草。此外,即使在 300μM 浓度下,(+)-heraclenin 的抑制值也优于阳性对照。