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乳香树渗出物的季节性变化。

Seasonal variation of exudate ofCistus ladanifer.

机构信息

Departamento de Ecologia Facultad de Ciencias, Universidad de Extremadura, 06080, Badajoz, Spain.

出版信息

J Chem Ecol. 1993 Nov;19(11):2577-91. doi: 10.1007/BF00980692.

Abstract

The production of labdanum exudate byCistus ladanifer L. is highly seasonal, reaching a maximum concentration during summer and a minimum concentration in winter. Because this exudate strongly absorbs in the wavelength range of 260-400 nm (the near-UV-visible range), it may be important biologically as an UV-visible filter. Separation of exudate components has been achieved by reverse-phase high-performance liquid chromatography (HPLC).The retention times of HPLC chromatograms and the spectral characteristics (absorption and fluorescence) of the exudate identify flavonoids as the most relevant chromophores regarding the potency of the exudate as a UV-visible filter. HPLC studies show that kaempferol-3-(O)methyl, kaempferol-3,7-di(O)methyl, and apigenin-4'-(O)methyl are the most enriched flavonoids in the exudate.Other flavonoids [apigenin, apigenin-7-(O)methyl, apigenin-7,4'-di(O)methyl, kaempferol-3,4'-di(O)methyl and kaempferol-3,7,4'-tri(O)methyl] are present in the exudate as minor components, e.g., each contributes by less than 10% to total flavonoids.The ratio of kaempferols to apigenins of the exudate also shows seasonal variation (maximum value in summer and minimum in spring). However, due to the similar absorption spectra of both groups of flavonoids, this has a minor influence on the exudate's ability to filter near-UV-visible radiation.

摘要

乳香树(Cistus ladanifer L.)产生的树胶渗出物具有很强的季节性,在夏季达到最高浓度,在冬季达到最低浓度。由于这种渗出物在 260-400nm 波长范围内(近紫外可见范围)强烈吸收,因此它可能在生物学上作为紫外线可见过滤器很重要。通过反相高效液相色谱(HPLC)实现了渗出物成分的分离。HPLC 色谱图的保留时间和渗出物的光谱特征(吸收和荧光)表明,类黄酮是与渗出物作为紫外线可见过滤器的效力相关的最相关发色团。HPLC 研究表明,山柰酚-3-(O)甲基、山柰酚-3,7-二(O)甲基和芹菜素-4'-(O)甲基是渗出物中最丰富的类黄酮。其他类黄酮[芹菜素、芹菜素-7-(O)甲基、芹菜素-7,4'-二(O)甲基、山柰酚-3,4'-二(O)甲基和山柰酚-3,7,4'-三(O)甲基]以少量成分存在于渗出物中,例如,每种成分对总类黄酮的贡献都不到 10%。渗出物中山柰酚与芹菜素的比例也表现出季节性变化(夏季最高,春季最低)。然而,由于这两类类黄酮的吸收光谱相似,这对渗出物过滤近紫外可见辐射的能力影响较小。

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