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Ethylene and rooting of mung bean cuttings. The role of auxin induced ethylene synthesis and phase-dependent effects

机译:乙烯和绿豆cutting插生根。植物生长素的作用诱导乙烯合成和相依赖性效应

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We have re-examined the role of ethylene during rooting of mung bean cuttings. Cuttings were treated for 5 days with a low or a high concentration of NAA (naphthaleneacetic acid). During this 5 days period, we also applied STS (silverthiosulfate, an inhibitor of ethylene action) or ACC (1-aminocyclo-propane-l-carboxylic acid, a direct precursor of ethylene). At high NAA concentration, STS promoted and ACC inhibited rooting, respectively. At low NAA concentration, the effects were opposite, STS being inhibitory and ACC promotive. AVG (aminoethoxyvinylglycine, an inhibitor of ethylene synthesis) gave similar results as STS. Together, these data suggest supraoptimal and suboptimal ethylene levels in the tissue at high and low NAA concentration, respectively. We also examined whether the effect of ethylene varied during the successive phases of the rooting process. Thus, we gave 24 h pulses with either STS or ACC during the rooting treatment. During the first two days (0-48 h), ACC-pulses were promotive and STS-pulses inhibitory. Later on (48-168 h), the ACC-pulses were inhibitory and the STS-pulses promotive. Whether this effect was observed or not was dependent on the NAA concentration. These data indicate that ethylene promotes or inhibits rooting depending on the stage in the rooting process. When ACC was added only during the initial period, rooting was increased at all NAA concentrations in a NAA dose-response curve and the optimal NAA concentration remained the same. This suggests that ethylene renders more cells responsive to NAA.
机译:我们已经重新研究了乙烯在绿豆插条生根过程中的作用。用低或高浓度的NAA(萘乙酸)处理插条5天。在这5天期间,我们还使用了STS(银硫代硫酸盐,一种乙烯作用的抑制剂)或ACC(1-氨基环丙烷-1-羧酸,一种乙烯的直接前体)。在高NAA浓度下,STS促进生根,而ACC抑制生根。在低NAA浓度下,效果相反,STS具有抑制作用,并促进ACC。 AVG(氨基乙氧基乙烯基甘氨酸,乙烯合成的抑制剂)得到的结果与STS类似。总之,这些数据表明在高和低NAA浓度下,组织中乙烯的超最佳和亚最佳水平。我们还检查了生根过程的后续阶段乙烯的影响是否发生变化。因此,在生根处理期间,我们用STS或ACC给予24 h脉冲。在头两天(0-48小时)内,ACC脉冲具有激励作用,而STS脉冲则具有抑制作用。稍后(48-168小时),ACC脉冲被抑制,STS脉冲被促进。是否观察到这种效果取决于NAA浓度。这些数据表明乙烯根据生根过程的阶段促进或抑制生根。当仅在初始阶段添加ACC时,在所有NAA浓度下,NAA剂量反应曲线中的生根都增加,并且最佳NAA浓度保持不变。这表明乙烯使更多的细胞对NAA有反应。

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