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Effect of Photoperiod on Polyamine Metabolism in Apical Buds of G2 Peas in Relation to the Induction of Apical Senescence

机译:光周期对G2豌豆根尖多胺代谢的影响及其与诱导根尖衰老的关系

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摘要

Polyamine content and arginine decarboxylase activity of apical buds were measured to determine whether polyamines are required to prevent apical senescence in pea. Polyamines were assayed as dansyl derivatives which were separated by reverse phase high performance liquid chromatography and detected by fluorescence spectrophotometry. High polyamine concentrations were found in the vigorous apices of plants grown under a short day photoperiod during which senescence is delayed. As the apex senesced in long days, the amounts of polyamines per organ declined in parallel with decreases in the size of the apical bud. However, a decrease in polyamine concentration, due mainly to a change in spermidine, occurred at the time of marked reduction in bud size and growth rate, but not before the onset of the early symptoms of senescence. No correlation was found with arginine decarboxylase. The results suggest polyamines may be required to support bud growth, but the photoperiodic mechanism which governs apical senescence of G2 peas does not exert control through polyamine metabolism.
机译:测量顶芽的多胺含量和精氨酸脱羧酶活性,以确定是否需要多胺来防止豌豆的顶芽衰老。测定多胺为丹磺酰基衍生物,其通过反相高效液相色谱法分离并通过荧光分光光度法检测。在短日光周期下生长的植物的活跃顶点中发现了高多胺浓度,在此期间衰老被延迟。随着天顶逐渐衰老,每个器官中的多胺量减少,同时顶端芽的大小减少。然而,多胺浓度的下降主要是由于亚精胺的变化,是在芽大小和生长速度显着减小时发生的,而不是在衰老的早期症状发作之前发生的。没有发现与精氨酸脱羧酶相关。结果表明,可能需要多胺来支持芽的生长,但是控制G2豌豆根尖衰老的光周期机制不能通过多胺代谢发挥作用。

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