Lun Thang Lam, Tojo Shunya, Teruya Toshiaki, Kato-Noguchi Hisashi
Department of Applied Biological Science, Faculty of Agriculture, Kagawa University, Miki 761-0795, Kagawa, Japan.
The United Graduate School of Agricultural Sciences, Ehime University, Matsuyama 790-8566, Ehime, Japan.
Plants (Basel). 2023 Aug 17;12(16):2968. doi: 10.3390/plants12162968.
Linn., belonging to the Polygonaceae family, is distributed mostly in northern temperate climates. This species is a high-risk invasive plant and is thought to possess allelopathic potential. This study aimed to isolate and identify the allelopathic substances from . Aqueous methanol extracts of significantly inhibited the growth of alfalfa and Italian ryegrass seedlings in a species- and concentration-dependent manner. Activity-guided fractionation led to the isolation of two active compounds: dehydrovomifoliol and loliolide. A cress bioassay was used to determine the biological activity of dehydrovomifoliol, and cress, alfalfa, and Italian ryegrass were used to determine loliolide. Dehydrovomifoliol significantly suppressed the seedling growth of cress at the concentration of 1 mM, and the concentrations necessary for 50% growth inhibition (I values) of the roots and shoots were 1.2 and 2 mM, respectively. Loliolide significantly suppressed the shoot growth of cress, alfalfa, and Italian ryegrass at the concentration of 1 mM, and the concentrations necessary for I values of the shoots and roots were 0.15 to 2.33 and 0.33 to 2.23 mM, respectively. The findings of our study suggest the extracts of might have growth-inhibitory potential and that dehydrovomifoliol and loliolide might contribute as allelopathic agents.
该植物属于蓼科,主要分布在北温带气候地区。此物种是一种高风险入侵植物,被认为具有化感潜力。本研究旨在从该植物中分离和鉴定化感物质。该植物的甲醇水提取物以物种和浓度依赖的方式显著抑制苜蓿和意大利黑麦草幼苗的生长。通过活性导向分级分离法分离出两种活性化合物:脱氢催吐萝芙木醇和黑麦草内酯。采用水芹生物测定法测定脱氢催吐萝芙木醇的生物活性,用水芹、苜蓿和意大利黑麦草测定黑麦草内酯。脱氢催吐萝芙木醇在1 mM浓度下显著抑制水芹幼苗生长,根和芽50%生长抑制(I值)所需浓度分别为1.2 mM和2 mM。黑麦草内酯在1 mM浓度下显著抑制水芹、苜蓿和意大利黑麦草的芽生长,芽和根I值所需浓度分别为0.15至2.33 mM和0.33至2.23 mM。我们的研究结果表明该植物提取物可能具有生长抑制潜力,且脱氢催吐萝芙木醇和黑麦草内酯可能作为化感剂发挥作用。 (注:原文中部分植物名称未给出具体,这里用“该植物”指代)