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首页> 外文期刊>Plant Production Science >Elementary Identification of Phenolic Allelochemicals from Dwarf Lilyturf Plant (Ophiopogon japonicus K.) and Their Growth-Inhibiting Effects for Two Weeds in Paddy Rice Field
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Elementary Identification of Phenolic Allelochemicals from Dwarf Lilyturf Plant (Ophiopogon japonicus K.) and Their Growth-Inhibiting Effects for Two Weeds in Paddy Rice Field

机译:矮化百合草植物酚类化感物质的初步鉴定及其对两种稻田杂草的生长抑制作用

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Dwarf lilyturf (Ophiopogon japonicus K.), used as a weed-suppressing cover crop and a medicinal plant, was suggested to be a promising natural herbicide to control weeds in the rice field through its allelopathic potential. Allelopathic chemicals from the dwarf lilyturf were identified and their growth-inhibiting effects on two major weeds in the rice field in Japan were examined. High pressure liquid chromatograph (HPLC) analysis showed the existence of at least six allelopathic chemicals, viz., salicylic acid, syringic acid, syringaldehyde, vanillic acid, ρ-hydroxybenzoic acid and sinapic acid in dwarf lilyturf plant. The chemical detected at the highest concentration was salicylic acid (251.04 μg g-1), which occupied more than half of total allelopathic chemicals detected (317.16 μg g-1), followed by syringic acid (37.30 μg g-1), syringaldehyde(13.30 μg g-1) and sinapic acid (11.03 μg g-1). The chemicals detected at the lowest concentration was vanillic acid (1.69 μg g-1). Salicylic acid displayed the most inhibitory effects on germination and growth of both barnyardgrass (Echinochloa crusgalli L.) and monchoria (Monochoria vaginalis P.). This compound might play a key role in dwarf lilyturf allelopathy.
机译:矮化百合(Ophiopogon japonicus K.)被用作抑制杂草的覆盖作物和药用植物,被认为是一种有前途的天然除草剂,可通过其化感作用来控制稻田中的杂草。鉴定了矮化百合皮中的化感化学物质,并研究了它们对日本稻田中两种主要杂草的生长抑制作用。高压液相色谱(HPLC)分析显示矮化百合草植物中至少存在六种化感化学物质,即水杨酸,丁香酸,丁香醛,香草酸,对羟基苯甲酸和芥子酸。在最高浓度下检测到的化学物质是水杨酸(251.04μgg-1),占检测到的所有化感化学物质(317.16μgg-1)的一半以上,其次是丁香酸(37.30μgg-1),丁香醛( 13.30μgg-1)和芥子酸(11.03μgg-1)。在最低浓度下检测到的化学物质为香草酸(1.69μgg-1)。水杨酸对bar草(Echinochloa crusgalli L.)和Monchoria(Monochoria阴道菌P.)的萌发和生长表现出最大的抑制作用。该化合物可能在矮化百合草化感作用中起关键作用。

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