首页> 外文期刊>Journal of Plant Studies >Development of a New Method for Bioassay of Allelopathy Using Protoplasts of a Leguminous Plant Mucuna pruriens With a High Content of the Allelochemical L-DOPA
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Development of a New Method for Bioassay of Allelopathy Using Protoplasts of a Leguminous Plant Mucuna pruriens With a High Content of the Allelochemical L-DOPA

机译:豆科植物Mucuna pruriens原生质体中化感化学L-DOPA含量高的化感病生物测定新方法的开发

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To study allelopathy at the cellular level, we established a new bioassay method using protoplasts from etiolated leaves of a leguminous plant, Mucuna pruriens , which contains a large amount of L-3,4-dihydroxyphenylalanine (L-DOPA) and protoplasts prepared from cotyledons, leaves or roots of Lactuca sativa (lettuce) grown in an axenic condition. The bioassay was performed using 96 multi-well culture plates and required only a small volume of medium, 50 ?L, per well. For the mixed culture of Mucuna and recipient lettuce protoplast, the optimum condition was Murashige and Skoog’s basal medium, containing 1 ?M of 2,4-dichlorophenoxyacetic acid, 5 ?M of benzyladenine and 0.4 M mannitol solution. The inhibitory effect of M. pruriens protoplasts was found to vary with the density of the recipient L. sativa protoplasts. The M. pruriens protoplasts had no effect on the division of protoplasts from suspension cells of Oryza sativa . These results were in agreement with those obtained by the conventional plant box method. Our study offered a novel in vitro assay method, which will be widely applicable to study allelopathy of various plants on lettuce and also for quantitative studies between plant species under different culture conditions in order to simulate the possible future environmental risk.
机译:为了在细胞水平研究化感作用,我们建立了一种新的生物测定方法,使用豆科植物Mucuna pruriens的黄化叶中的原生质体原生质体,其中含有大量的L-3,4-二羟基苯丙氨酸(L-DOPA)和由子叶制备的原生质体,在无花果状态下生长的莴苣(莴苣)的叶子或根。使用96孔培养板进行生物测定,每孔仅需少量培养基(50 µL)。对于Mucuna和生菜原生质体的混合培养,最佳条件是Murashige和Skoog的基础培养基,其中包含1 µM的2,4-二氯苯氧基乙酸,5 µM的苄腺嘌呤和0.4 M的甘露醇溶液。已发现,瘙痒病原生质体的抑制作用随受体L. sativa原生质体的密度而变化。毛M原生质体对水稻悬浮细胞的原生质体分裂没有影响。这些结果与通过常规植物盒法获得的结果一致。我们的研究提供了一种新颖的体外测定方法,该方法将广泛应用于研究莴苣上各种植物的化感作用,还可以用于不同培养条件下植物物种之间的定量研究,以模拟可能的未来环境风险。

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