首页> 美国卫生研究院文献>Annals of Botany >The Anatomy and Chemistry of the Colour Bands of Grasstree Stems (Xanthorrhoea preissii) used for Plant Age and Fire History Determination
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The Anatomy and Chemistry of the Colour Bands of Grasstree Stems (Xanthorrhoea preissii) used for Plant Age and Fire History Determination

机译:草树茎(Xanthorrhoea preissii)色带用于植物年龄和火灾历史测定的解剖学和化学

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摘要

A new method of ageing and determining the fire history of grasstrees, based on colour bands running along the stem, has been developed. As part of our evaluation of the technique, we examined the structural and chemical basis of the colour differences. Exposed ends of the leaf bases are cream, brown and black, with the inner cortex, especially in the black leaf bases, being darker than the outer cortex. There was no structural difference between the three leaf base types. Tannin concentration increased from cream to brown to black leaf bases, and from the inner to outer cortex, and remained quite stable over many years. Both water‐soluble and insoluble pigments contribute to the darkness of the black leaf bases. A hydrophobic naphthoquinone was present in the conducting tissues of the vascular bundles, and related naphthalene‐derivatives were present in the surrounding tissues. We conclude that the colour differences between the leaf bases have a chemical basis that can be linked to environmental changes: tannin cells to phenological effects, and naphthalene‐derivatives in the vascular core to the passage of fire.
机译:已经开发了一种新的老化方法,并根据沿茎干延伸的色带确定草木的着火历史。作为对该技术评估的一部分,我们检查了色差的结构和化学基础。叶基的裸露末端为乳白色,棕色和黑色,内部皮层,特别是黑色叶基中的皮层,比外部皮层暗。三种叶基类型之间没有结构差异。单宁浓度从乳脂状到褐色到黑色的叶基,从内到外皮层都增加,并且多年来保持相当稳定。水溶性和不溶性颜料都会导致黑叶基部变暗。血管束的传导组织中存在疏水性萘醌,周围组织中存在相关的萘衍生物。我们得出的结论是,叶基之间的颜色差异具有可与环境变化相关的化学基础:单宁细胞具有物候效应,而维管核心中的萘衍生物则有助于燃烧。

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