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Autotoxicity and Allelopathy of 34-Dihydroxyacetophenone Isolated from Picea schrenkiana Needles

机译:云杉针叶中34-二羟基苯乙酮的自身毒性和化感作用

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摘要

Bioassay-guided fractionation of the diethyl ether fraction of a water extract of Picea schrenkiana needles led to the isolation of the phenolic compound 3,4-dihydroxy- acetophenone (DHAP). The allelopathic effects of DHAP were evaluated under laboratory conditions on P. schrenkiana, rice (Oryza sativa L.), wheat (Triticum aestivum L.), radish (Raphanus sativus L.), lettuce (Latuca sativa L.), cucumber (Cucumis sativus L.) and mung bean (Phaseolus radiatus L.). DHAP significantly inhibited seed germination and seedling growth of P. schrenkiana at concentrations of 2.5 mM and 0.5 mM (p < 0.05). Soil analysis revealed that P. schrenkiana forest soils contained exceptionally high DHAP concentrations (mean = 0.51 ± 0.03 mg/g dry soil), sufficient to inhibit natural P. schrenkiana recruitment. DHAP also exhibited strong allelopathic potential. It significantly inhibited wheat and lettuce seed germination at concentrations of 1 mM and 0.5 mM (p < 0.05). The active compound also completely inhibited root growth of the six test species at high concentrations. Our results suggest a dual role of DHAP, both as an allelochemical and as an autotoxicant. The potential for a single plant needle-leached compound to influence both inter- and intra-specific interactions emphasized the complex effects that plant secondary metabolites might have on plant population and community structure.
机译:生物测定法指导的云杉云杉针叶水提取物的乙醚部分的分馏导致酚类化合物3,4-二羟基苯乙酮(DHAP)的分离。在实验室条件下评估了DHAP的化感作用,包括schrenkiana,水稻(Oryza sativa L.),小麦(Triticum aestivum L.),萝卜(Raphanus sativus L.),生菜(Latuca sativa L.),黄瓜(Cucumis) Sativus L.)和绿豆(Phaseolus radiatus L.)。 DHAP在2.5 mM和0.5 mM的浓度下能显着抑制schrenkiana的种子发芽和幼苗生长(p <0.05)。土壤分析表明,schrenkiana森林土壤中的DHAP浓度异常高(平均值= 0.51±0.03 mg / g干燥土壤),足以抑制schrenkiana自然界的吸收。 DHAP还表现出很强的化感潜力。在1 mM和0.5 mM的浓度下,它显着抑制小麦和莴苣种子的发芽(p <0.05)。在高浓度下,该活性化合物还完全抑制了六个测试物种的根生长。我们的结果表明,DHAP既具有同化作用又具有自毒作用。单一植物针浸化合物可能会影响种间和种内相互作用,这突出了植物次生代谢产物可能对植物种群和群落结构产生的复杂影响。

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