首页> 外文期刊>Annals of Botany >Gibberellin is required for the formation of tension wood and stem gravitropism in Acacia mangium seedlings
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Gibberellin is required for the formation of tension wood and stem gravitropism in Acacia mangium seedlings

机译:马占相思幼苗中形成张力木材和茎向重力需要赤霉素

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Angiosperm trees generally form tension wood on the upper sides of leaning stems. The formation of tension wood is an important response to gravitational stimulus. Gibberellin appears to be involved in the differentiation of secondary xylem, but it remains unclear whether gibberellin plays a key role in the formation of tension wood and plant gravitropism. Therefore, a study was designed to investigate the effects of gibberellin and of inhibitors of the synthesis of gibberellin, namely paclobutrazole and uniconazole-P, on the formation of tension wood and negative stem gravitropism in Acacia mangium seedlings. Gibberellic acid (GA(3)), paclobutrazole and uniconazole-P were applied to seedlings via the soil in which they were growing. Distilled water was applied similarly as a control. Three days after such treatment, seedlings were tilted at an angle of 45 degrees from the vertical, and samples of stems were collected for analysis 2 weeks, 2 months and 6 months after tilting. The effects of treatments on the stem recovery degree (R degrees) were analysed as an index of the negative gravitropism of seedlings, together the width of the region of tension wood in the upper part of inclined stems. It was found that GA(3) stimulated the negative gravitropism of tilted seedling stems of A. mangium, while paclobutrazole and uniconazole-P inhibited recovery to vertical growth. Moreover, GA(3) stimulated the formation of tension wood in tilted A. mangium seedlings, while paclobutrazole and uniconazole-P strongly suppressed the formation of tension wood, as assessed 2 weeks after tilting. The results suggest that gibberellin plays an important role at the initial stages of formation of tension wood and in stem gravitropism in A. mangium seedlings in response to a gravitational stimulus.
机译:被子植物树通常在倾斜茎的上侧形成张力木材。张力木的形成是对重力刺激的重要反应。赤霉素似乎与次生木质部的分化有关,但尚不清楚赤霉素是否在张力木材和植物重力的形成中起关键作用。因此,设计了一项研究来研究赤霉素和赤霉素合成抑制剂多效唑和烯效唑-P对马占相思幼苗中张力木的形成和负向重力的影响。赤霉素(GA(3)),多效唑和烯效唑-P通过它们生长的土壤施用于幼苗。蒸馏水同样用作对照。处理后三天,将幼苗从垂直方向倾斜45度,并在倾斜后2周,2个月和6个月收集茎的样品进行分析。分析了处理对茎恢复程度(R度)的影响,作为幼苗负重力的指标,以及倾斜茎上部的拉伸木材区域的宽度。发现GA(3)刺激了倾斜的芒草茎杆的负重力,而多效唑和烯效唑-P抑制了垂直生长的恢复。此外,GA(3)刺激了倾斜的A. mangium幼苗中张力木的形成,而倾斜后2周评估了多效唑和烯效唑-P强烈抑制了张力木的形成。结果表明,赤霉素在引力刺激下,在张力木材形成的初始阶段和芒草幼苗的重力趋向中起着重要作用。

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