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Metabolite specific effects of solar UV-A and UV-B on alder and birch leaf phenolics

机译:太阳UV-A和UV-B对al木和桦木叶酚的代谢物特异作用

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We measured the concentrations of ultraviolet (UV)-absorbing phenolics varying in response to exclusion of either solar UV-B or both solar UV-A and UV-B radiations in leaves of grey alder (Alnus incana) and white birch (Betula pubescens) trees under field conditions. In alder leaves 20 and in birch leaves 13 different phenolic metabolites were identified. The response to UV exclusion varied between and within groups of phenolics in both tree species. The changes in concentration for some metabolites suggest effects of only UV-A or UV-B, which band being effective depending on the metabolite. For some other metabolites, the results indicate that UV-A and UV-B affect concentrations in the same direction, while for a few compounds there was evidence suggesting opposite effects of UV-A and UV-B radiation. Finally, the concentration of some phenolics did not significantly respond to solar UV. We observed only minor effects on the summed concentration of all determined phenolic metabolites in alder and birch leaves, thus indicating that measuring only total phenolics concentration may not reveal the effects of radiation. Here, we show that the appropriate biological spectral weighting functions for plant-protective responses against solar UV radiation extend in most cases - but not always - into the UV-A region and more importantly that accumulation of different phenolic metabolites follows different action spectra. This demonstrates under field conditions that some of the implicit assumptions of earlier research simulating ozone depletion and studying the effects of UV radiation on plant secondary metabolites need to be reassessed.
机译:我们测量了由于灰al木(Alnus incana)和白桦(Betula pubescens)叶片中的太阳UV-B或太阳UV-A和UV-B辐射的排斥而变化的吸收紫外线(UV)的酚类浓度。野外条件下的树木。在al木叶20和白桦叶中鉴定出13种不同的酚类代谢产物。两种树种中酚类之间和之内对紫外线排斥的响应都不同。某些代谢物浓度的变化提示仅UV-A或UV-B的作用,该谱带取决于代谢物是有效的。对于其他一些代谢物,结果表明UV-A和UV-B在同一方向上影响浓度,而对于某些化合物,有证据表明UV-A和UV-B辐射的作用相反。最后,某些酚类化合物的浓度对太阳紫外线没有明显反应。我们仅观察到对al木和桦木叶片中所有已测定的酚类代谢物总浓度的微小影响,因此表明仅测量总酚类浓度可能无法揭示辐射的影响。在这里,我们表明,在大多数情况下-但并非总是如此-用于植物对太阳UV辐射的保护反应的适当生物光谱加权函数会延伸到UV-A区域,更重要的是,不同酚类代谢物的积累遵循不同的作用谱。这表明在野外条件下,需要重新评估早期研究中模拟臭氧消耗和研究UV辐射对植物次生代谢产物的影响的一些隐含假设。

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