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Gibberellins in Relation to Flowering and Stem Elongation in the Long Day Plant Silene armeria

机译:赤霉素与长日龄植物Silene armeria开花和茎伸长的关系

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摘要

Two long days induced some flowering and 4 or more long days caused 100% flowering in Silene armeria. On long days microscopically detectable flower primordia were first seen after 6 days, which is at least 1 day before the start of stem elongation. Both gibberellin A3 and A7 caused flowering on short days, but the results were variable and flowering was never 100%. Three different gibberellins were detected in Silene extracts. The pattern of gibberellins extracted from plants on short and long days was qualitatively the same, but on long days gibberellin content was up to 100% higher than on short days. Only small amounts of diffusible gibberellins were obtained from Silene shoot tips (including very young leaves) on short days. However, on long days the diffusible gibberellins increased by as much as 10-fold after 4 to 6 long days but then declined somewhat after 10 long days. The gibberellins extracted from the shoot tips at the completion of the diffusion period also increased under long days, although the increase was not as large as for the diffusible gibberellins. An A5-like gibberellin present in extracts was not detected in diffusates.Treatment with AMO 1618 (2-isopropyl-4-dimethylamino-5-methylphenyl-1-piperidine-carboxylate methyl chloride) completely inhibited stem elongation on long days but had no effect on flowering. In addition, treatment with AMO 1618 caused at least an 80% decrease in the level of extractable gibberellin, while the diffusible gibberellin was reduced below the limits of detection in the d5 corn bioassay. When endogenous gibberellin levels were suppressed by pretreatment with AMO 1618 on short days, gibberellin A3 caused more stem elongation in plants moved to long days than in plants left on short days. Thus the sensitivity of Silene plants to gibberellin with respect to stem growth is affected by photoperiod. It is concluded that in Silene endogenous gibberellins are a controlling factor for stem elongation but apparently are not required for flower formation.
机译:漫长的两天导致一些开花,而四天或更长时间导致在Silene armeria中开花100%。在漫长的日子里,在茎伸长开始至少1天之前的6天后,首次在显微镜下可检测到花原基。赤霉素A3和A7均在短时间内引起开花,但结果不一,开花从未达到100%。在硅提取物中检测到三种不同的赤霉素。从质量上讲,短日和长日中从植物中提取的赤霉素的模式是相同的,但长日中赤霉素的含量比短日高100%。在短短的几天内,仅从Silene茎尖(包括非常年轻的叶子)中获得了少量的可扩散赤霉素。但是,在漫长的日子里,可扩散的赤霉素在4至6个漫长的日子后增加了10倍之多,但在10个漫长的日子后又有所下降。在扩散期结束时,从枝梢中提取的赤霉素在较长的日子里也有所增加,尽管增加幅度不如可扩散的赤霉素。在扩散物中未检测到提取物中存在的A5样赤霉素。用AMO 1618(2-异丙基-4-二甲基氨基-5-甲基苯基-1-哌啶-羧酸甲酯)处理可长时间抑制茎伸长,但没有效果在开花。此外,用AMO 1618处理可提取赤霉素水平至少降低了80%,而可扩散赤霉素被降低至d5玉米生物测定法中的检测限以下。当短时间内用AMO 1618预处理抑制了内源赤霉素水平时,赤霉素A3导致移到长日植株的茎伸长比短日植株多。因此,相对于茎生长,硅烷植物对赤霉素的敏感性受光周期的影响。结论是,在Silene中,内源赤霉素是茎伸长的控制因子,但显然不需要花形成。

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