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首页> 外文期刊>Annals of Botany >Gibberellin mediates the development of gelatinous fibres in the tension wood of inclined Acacia mangium seedlings
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Gibberellin mediates the development of gelatinous fibres in the tension wood of inclined Acacia mangium seedlings

机译:赤霉素介导马占相思倾斜苗木中胶状纤维的发育

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Gibberellin stimulates negative gravitropism and the formation of tension wood in tilted Acacia mangium seedlings, while inhibitors of gibberellin synthesis strongly inhibit the return to vertical growth and suppress the formation of tension wood. To characterize the role of gibberellin in tension wood formation and gravitropism, this study investigated the role of gibberellin in the development of gelatinous fibres and in the changes in anatomical characteristics of woody elements in Acacia mangium seedlings exposed to a gravitational stimulus. Gibberellin, paclobutrazol and uniconazole-P were applied to the soil in which seedlings were growing, using distilled water as the control. Three days after the start of treatment, seedlings were inclined at 45 to the vertical and samples were harvested 2months later. The effects of the treatments on wood fibres, vessel elements and ray parenchyma cells were analysed in tension wood in the upper part of inclined stems and in the opposite wood on the lower side of inclined stems. Application of paclobutrazol or uniconazole-P inhibited the increase in the thickness of gelatinous layers and prevented the elongation of gelatinous fibres in the tension wood of inclined stems. By contrast, gibberellin stimulated the elongation of these fibres. Application of gibberellin and inhibitors of gibberellin biosynthesis had only minor effects on the anatomical characteristics of vessel and ray parenchyma cells. The results suggest that gibberellin is important for the development of gelatinous fibres in the tension wood of A. mangium seedlings and therefore in gravitropism.
机译:赤霉素刺激倾斜的相思树幼苗中的负重力运动和张力木材的形成,而赤霉素合成抑制剂强烈抑制返回垂直生长并抑制张力木材的形成。为了表征赤霉素在张力木材形成和重力运动中的作用,本研究调查了赤霉素在暴露于重力刺激下的马占相思幼苗中胶质纤维的发育以及木质元素的解剖特征变化中的作用。以蒸馏水为对照,将赤霉素,多效唑和烯效唑-P施用到幼苗生长的土壤中。处理开始三天后,将幼苗倾斜45度至垂直方向,并在2个月后收获样品。在倾斜茎上部的张力木材中和在倾斜茎下部的相反木材中,分析了这些处理对木材纤维,血管元素和射线实质细胞的影响。多效唑或烯效唑-P的使用抑制了胶质层厚度的增加,并防止了胶质纤维在倾斜茎杆的拉伸木材中的伸长。相比之下,赤霉素刺激了这些纤维的伸长。赤霉素和赤霉素生物合成抑制剂的应用对血管和射线实质细胞的解剖特征影响很小。结果表明,赤霉素对于A. mangium幼苗的拉伸木材中的胶状纤维的发育很重要,因此对重力也很重要。

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