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首页> 外文期刊>Annals of Botany >Anatomical features associated with water transport in imperforate tracheary elements of vessel-bearing angiosperms
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Anatomical features associated with water transport in imperforate tracheary elements of vessel-bearing angiosperms

机译:带有血管的被子植物的无孔气管元件中与水运输相关的解剖特征

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Background and Aims Imperforate tracheary elements (ITEs) in wood of vessel-bearing angiosperms may or may not transport water. Despite the significance of hydraulic transport for defining ITE types, the combination of cell structure with water transport visualization in planta has received little attention. This study provides a quantitative analysis of structural features associated with the conductive vs. non-conductive nature of ITEs.Methods Visualization of water transport was studied in 15 angiosperm species by dye injection and cryo-scanning electron microscopy. Structural features of ITEs were examined using light and electron microscopy.Key Results ITEs connected to each other by pit pairs with complete pit membranes contributed to water transport, while cells showing pit membranes with perforations up to 2 mm were hydraulically not functional. A close relationship was found between pit diameter and pit density, with both characters significantly higher in conductive than in non-conductive cells. In species with both conductive and non-conductive ITEs, a larger diameter was characteristic of the conductive cells. Water transport showed no apparent relationship with the length of ITEs and vessel grouping.Conclusions The structure and density of pits between ITEs represent the main anatomical characters determining water transport. The pit membrane structure of ITEs provides a reliable, but practically challenging, criterion to determine their conductive status. It is suggested that the term tracheids should strictly be used for conductive ITEs, while fibre-tracheids and libriform fibres are non-conductive.
机译:背景和目的带有血管的被子植物的木材中无孔气管元素(ITE)可能会或可能不会输水。尽管水力运输对确定ITE类型具有重要意义,但植物结构中的细胞结构与水运输可视化相结合的研究很少受到关注。这项研究对与ITEs的导电性与非导电性有关的结构特征进行了定量分析。方法通过染料注入和低温扫描电子显微镜研究了15种被子植物中水的传输可视化。使用光镜和电子显微镜检查了ITEs的结构特征。关键结果ITEs通过具有完整的凹坑膜的凹坑对相互连接,有助于水的传输,而显示具有最大2 mm孔眼的凹坑膜的细胞在水力上不起作用。发现凹坑直径与凹坑密度之间存在密切关系,导电性比非导电性电池的两个特性都高得多。在具有导电和非导电ITE的物种中,较大直径是导电单元的特征。输水量与ITEs的长度和血管的分组没有明显的关系。结论ITEs之间的凹坑的结构和密度代表了决定输水的主要解剖特征。 ITE的凹坑膜结构提供了确定其导电状态的可靠但实际具有挑战性的标准。建议将术语“气管”严格用于导电ITE,而纤维-气管和无形纤维则不导电。

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