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单宁成分会影响树叶的氧化活性。

Tannin composition affects the oxidative activities of tree leaves.

作者信息

Barbehenn Raymond V, Jones Christopher P, Karonen Maarit, Salminen Juha-Pekka

机构信息

Department of Molecular, Cellular and Developmental Biology, University of Michigan, Ann Arbor, MI 48109-1048, USA.

出版信息

J Chem Ecol. 2006 Oct;32(10):2235-51. doi: 10.1007/s10886-006-9142-8.

Abstract

We examined whether tannin composition plays an important role in explaining the oxidative activities of tree leaves of Acer saccharum (sugar maple) and Quercus rubra (red oak). Sugar maple leaves contained substantial amounts of ellagitannins, condensed tannins, and galloyl glucoses, whereas red oak leaves contained almost exclusively condensed tannins. Oxidative activities of the crude phenolics from both species, and the phenolic fractions from sugar maple, were measured with electron paramagnetic resonance (EPR) spectrometry and UV-visible spectrophotometry. The two assays produced similar results: (1) sugar maple phenolics produced larger semiquinone radical concentrations,and higher semiquinone decay rates and browning rates than did red oak phenolics; (2) ellagitannin levels were positively associated with the three measures of oxidative activity; and (3) condensed tannin and galloyl glucose levels were negatively associated with these measures. The negative relationship between condensed tannin levels and oxidative activity resulted from the antioxidant effects of condensed tannins on hydrolyzable tannins; several purified condensed tannins significantly decreased the concentrations of semiquinone radicals and browning rates of pedunculagin (an ellagitannin) and pentagalloyl glucose. As expected, whole-leaf extracts from sugar maple produced elevated levels of semiquinone radicals, but none were observed in red oak extracts when the two species were compared with an EPR time-course assay. We conclude that the oxidative activities of tree leaves may be affected by tannin composition, and that the prooxidant activity of ellagitannins may be decreased by co-occurring condensed tannins.

摘要

我们研究了单宁成分在解释糖枫(Acer saccharum)和红栎(Quercus rubra)树叶的氧化活性方面是否发挥重要作用。糖枫叶含有大量的鞣花单宁、缩合单宁和没食子酰葡萄糖,而红栎叶几乎只含有缩合单宁。使用电子顺磁共振(EPR)光谱法和紫外可见分光光度法测量了这两个物种的粗酚类物质以及糖枫酚类组分的氧化活性。这两种测定方法产生了相似的结果:(1)糖枫酚类物质产生的半醌自由基浓度更高,半醌衰减率和褐变率也高于红栎酚类物质;(2)鞣花单宁水平与氧化活性的三个指标呈正相关;(3)缩合单宁和没食子酰葡萄糖水平与这些指标呈负相关。缩合单宁水平与氧化活性之间的负相关关系是由于缩合单宁对可水解单宁的抗氧化作用;几种纯化的缩合单宁显著降低了pedunculagin(一种鞣花单宁)和五倍没食子酰葡萄糖的半醌自由基浓度和褐变率。正如预期的那样,当通过EPR时间进程测定法比较这两个物种时,糖枫的全叶提取物产生了较高水平的半醌自由基,但在红栎提取物中未观察到。我们得出结论,树叶的氧化活性可能受单宁成分影响,并且同时存在的缩合单宁可能会降低鞣花单宁的促氧化活性。

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