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首页> 外文期刊>In Vitro Cellular and Development Biology. Plant: Journal of the Tissue Culture Association >Evaluation of canavanine as an allelochemical in etiolated seedlings of Vicia villosa Roth: protoplast co-culture method with digital image analysis
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Evaluation of canavanine as an allelochemical in etiolated seedlings of Vicia villosa Roth: protoplast co-culture method with digital image analysis

机译:甘鲸评价瓦西亚百叶草罗斯枸杞子类化肥:原生质体综合培养方法与数字图像分析

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Strong allelopathic activities of etiolated seedlings of a leguminous plant, Vicia villosa Roth (hairy vetch), were confirmed by a protoplast co-culture method. The combination of 1% Cellulase RS and 1% Driselase 20 in 0.4M mannitol solution was used for protoplast isolation. The inhibitory effects of V. villosa protoplasts on the growth of recipient Lactuca sativa L. (lettuce) protoplasts were determined using 96-well culture plates with 50 mu L of liquid medium consisting of Murashige and Skoog's basal medium containing 1 mu M 2,4-dichlorophenoxyacetic acid, 0.1 mu M 6-benzyladenine, 3% (w/v) sucrose, and 0.4M mannitol in each well. The allelopathic activity of V. villosa epicotyl protoplasts (2x10(2) to 10(5) mL(-1)), on cell division of lettuce protoplasts (6x10(3) to 5x10(4) mL(-1)), was stronger than that of roots and was stronger than on cell wall formation. Digital image analysis of co-cultured protoplasts (DIA-PP method) showed the effect of V. villosa protoplasts on the accumulation of a yellow color in lettuce protoplasts. Weaker inhibition was seen than at the cell wall formation and cell division stages. Effects of putative allelochemical, canavanine at 10 mu M strongly inhibited division of lettuce protoplasts, whereas putative allelochemical, cyanamide was stimulatory at 10 mu M, but inhibitory at 1mM. A high level of canavanine was found in epicotyl protoplasts using gas chromatography-mass spectrometry. Canavanine was suggested to be the allelochemical in V. villosa epicotyl protoplasts of etiolated seedlings, although its effect differed with the growth stages of lettuce protoplasts.
机译:通过原生质体共培养方法证实了肉豆植物的光学幼苗的强烈的异化活性,vicia villosa roth(毛茸茸的vetch)。在0.4M甘露醇溶液中的1%纤维素酶RS和1%脱塞酶20的组合用于原生质体分离。使用96孔培养板的50μl液体培养基测定V.Villosa原生质体对受体Lactuca Sativa L.(莴苣)原生质体的生长的抑制作用。由含有1μm2,4的Murashige和Skoog的基础培养基组成 - 氯苯氧基乙酸,0.1μm6-苄基腺嘌呤,3%(w / v)蔗糖,每个孔中甘露醇0.4m甘露醇。 V.Villosa外壳原生质体(2×10(2)至10(5)毫升(-1))的化源化活性在莴苣原生质体(6×10(3)至5×10(4)mL(-1))中的细胞分裂上比根状况强,比细胞壁形成强。共培养原生质体(DIA-PP方法)的数字图像分析显示V.Villosa原生质体对莴苣原生质体中黄色积聚的影响。观察到细胞壁形成和细胞分裂阶段较弱的抑制。推定的异种化学,Canavanine在10 mu m强烈抑制莴苣原生质体的效果,而推定的同等化学,氰酰胺在10μm刺激,但抑制在1mm处。使用气相色谱 - 质谱法在外壳原生质体中发现了高水平的Canavanine。 Canavanine被建议是V.Villosa幼苗的V.Villosa外壳原生质体中的等级化学。尽管其作用与莴苣原生质体的生长阶段不同。

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