王海斌, 何海斌, 曾聪明, 林银英, 林文雄. 含氧萜类化合物对稗草的化感抑制作用[J]. 中国生态农业学报(中英文), 2009, 17(2): 307-311. DOI: 10.3724/SP.J.1011.2009.00307
引用本文: 王海斌, 何海斌, 曾聪明, 林银英, 林文雄. 含氧萜类化合物对稗草的化感抑制作用[J]. 中国生态农业学报(中英文), 2009, 17(2): 307-311. DOI: 10.3724/SP.J.1011.2009.00307
WANG Hai-Bin, HE Hai-Bin, ZENG Cong-Ming, LIN Yin-Ying, LIN Wen-Xiong. Allelopathic effect of oxygenic terpenoid on Echinochloa crus-galli L.[J]. Chinese Journal of Eco-Agriculture, 2009, 17(2): 307-311. DOI: 10.3724/SP.J.1011.2009.00307
Citation: WANG Hai-Bin, HE Hai-Bin, ZENG Cong-Ming, LIN Yin-Ying, LIN Wen-Xiong. Allelopathic effect of oxygenic terpenoid on Echinochloa crus-galli L.[J]. Chinese Journal of Eco-Agriculture, 2009, 17(2): 307-311. DOI: 10.3724/SP.J.1011.2009.00307

含氧萜类化合物对稗草的化感抑制作用

Allelopathic effect of oxygenic terpenoid on Echinochloa crus-galli L.

  • 摘要: 以5种含氧萜类物质(-)香芹醇、(+)香芹酮、(-)薄荷酮、(-)香芹基乙酸酯和(+)雪松醇为化感物质替代物, 以稗草为受体, 运用正交旋转回归组合实验, 分析物质间的互作效应。各单因子的主效应分析结果表明: (-)香芹醇、(+)香芹酮、(-)薄荷酮和(-)香芹基乙酸酯的主效应曲线均为开口向下的抛物线, 而(+)雪松醇为开口向上的抛物线。各单因子的边际效应分析表明: 当浓度低于-2水平时各因子对稗草根长的抑制作用大小为(-)薄荷酮>(-)香芹醇>(+)香芹酮>(-)香芹基乙酸酯>(+)雪松醇, 当各因子浓度高于+2水平时, 则为(+)雪松醇>(+)香芹酮>(-)香芹基乙酸酯>(-)香芹醇>(-)薄荷酮。综合分析显示, 当各物质浓度水平分别为(-)香芹醇0.033 mmol·L-1、(+)香芹酮0.030 mmol·L-1、(-)薄荷酮0.080 mmol·L-1、(-)香芹基乙酸酯0.020 mmol·L-1和(+)雪松醇0.001 mmol·L-1时, 方程有最优解, 即在理论上其混合物对稗草根长的抑制率达到最大, 为93.69%。

     

    Abstract: In this paper, five oxygenic terpenoids — (-)Carveol (C10H160), (+)Carvone (C10H140), (-)Menthone (C10H180), (-)Carvyl acetate (C12H1802) and (+)Cedrol (C15H260) were used as test compounds and barnyardgrass(Enchinochloa crusgalli L.) receptor in rotational regression design experiment. The objective was to analyze allelopathic effect of oxygenic terpenoid on barnyardgrass. The results show that the main effects of (-)Carveol, (+)Carvone, (-)Menthone and (-)Carvyl acetate have an downward parabolic curve, while (+)Cedrol shows the opposite. Boundary effect of single factor indicates that, when single factor concentration falls below -2, the inhibition trend of the oxygenic terpenoids on barnyardgrass root length follows the order of: (-)Menthone >(-)Carveol>(+)Carvone>(-)Carvyl acetate>(+)Cedrol. When the single factor concentration is above +2, the order of inhibition trend of the oxygenic terpenoids is: (+)Cedrol>(+)Carvone>(-)Carvyl acetate>(-)Carveol>(-)Menthone. Furthermore, when the concentrations of (-)Carveol, (+)Carvone, (-)Menthone, (-)Carvyl acetate and (+)Cedrol are respectively 0.033 mmol·L-1, 0.030 mmol·L-1, 0.080 mmol·L-1, 0.020 mmol·L-1 and 0.001 mmol·L-1, inhibition rate could theoretically reach 93.69%.

     

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