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首页> 外文期刊>Physiologia plantarum >Effects of enhanced UV-B radiation on hydroxycinnamic acid derivatives extracted from different cell compartments in the aquatic liverwort Jungermannia exsertifolia subsp. cordifolia
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Effects of enhanced UV-B radiation on hydroxycinnamic acid derivatives extracted from different cell compartments in the aquatic liverwort Jungermannia exsertifolia subsp. cordifolia

机译:增强的UV-B辐射对从水形艾蒿中的不同细胞区室提取的羟基肉桂酸衍生物的影响。堇菜

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We examined the responses of ultraviolet-absorbing compounds (UVAC) to enhanced UV-B radiation in the aquatic liverwort Jungermannia exsertifolia subsp. cordifolia for 31 days under laboratory conditions. Samples were exposed to three radiation regimes: P (only photosynthetic radiation), PA (photosynthetic + UV-A radiation) and PAB (photosynthetic + UV-A + UV-B radiation). We measured both the bulk UV absorbance of the methanolic extracts and the levels of individual UVAC. In both cases, the methanol-soluble and the methanol-insoluble, alkali-extractable cell wall-bound fractions were analyzed. The bulk UV absorbance of the soluble fraction was higher than that of the cell wall-bound fraction. The bulk UV absorbances of both fractions increased under enhanced UV-B (PAB regime). Five different hydroxycinnamic acid (HCA) derivatives were found in the soluble fraction and two additional ones in the cell wall-bound fraction, among which only p-coumaroylmalic acid in the soluble fraction and p-coumaric acid in the cell wall-bound fraction increased under enhanced UV-B. The maximum quantum yield of PSII (F-v/F-m) decreased and DNA damage (amount of thymine dimers) strongly increased under enhanced UV-B, showing UV-B-induced damage. We conclude that methanol-soluble and cell wall-bound fractions of the liverwort studied have different UVAC, and each individual compound may respond in a different way to UV-B radiation. Thus, the analysis of individual UVAC in both the methanol-soluble and cell wall-bound fractions is advisable to better evaluate the protection mechanisms of liverworts against UV-B radiation. In particular, p-coumaric acid and p-coumaroylmalic acid seem to be especially UV-B responsive and merit further investigation.
机译:我们检查了水生地艾草白花菊亚种中紫外线吸收化合物(UVAC)对增强的UV-B辐射的响应。在实验室条件下的堇叶期为31天。样品暴露于三种辐射方式:P(仅光合辐射),PA(光合+ UV-A辐射)和PAB(光合+ UV-A + UV-B辐射)。我们测量了甲醇提取物的总紫外线吸收率和单个UVAC的水平。在这两种情况下,均分析了可溶于甲醇和不可溶于甲醇,可碱萃取的细胞壁结合馏分。可溶性部分的总紫外线吸收率高于细胞壁结合部分的总紫外线吸收率。在增强的UV-B(PAB方案)下,两个馏分的总UV吸光度均增加。在可溶性级分中发现了五种不同的羟基肉桂酸(HCA)衍生物,在细胞壁结合级分中发现了另外两种,其中仅可溶性级分中的对香豆酰苹果酸和细胞壁结合级分中的对香豆酸增加了。在增强的UV-B下。在增强的UV-B下,PSII的最大量子产率(F-v / F-m)降低,DNA损伤(胸腺嘧啶二聚体的量)大大增加,显示出UV-B诱导的损伤。我们得出的结论是,所研究的艾蒿的甲醇可溶部分和细胞壁结合部分具有不同的UVAC,每种化合物对UV-B辐射的反应方式可能不同。因此,建议对可溶于甲醇的部分和结合细胞壁的部分中的单个UVAC进行分析,以更好地评估艾蒿对UV-B辐射的保护机制。特别地,对香豆酸和对香豆酰苹果酸似乎特别对UV-B敏感并且值得进一步研究。

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