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首页> 外文期刊>Photochemical & photobiological sciences: the official journal of the European Photochemistry Association and the European Society for Photobiology >The contribution of mycosporine-like amino acids, chromophoric dissolved organic matter and particles to the UV protection of sea-ice organisms in the Baltic Sea
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The contribution of mycosporine-like amino acids, chromophoric dissolved organic matter and particles to the UV protection of sea-ice organisms in the Baltic Sea

机译:霉菌素样氨基酸,发色团溶解的有机物和颗粒对波罗的海海冰生物的紫外线防护作用

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摘要

The effects of ultraviolet radiation (UVR) on the synthesis of mycosporine-like amino acids (MAAs) in sea-ice communities and on the other UV-absorption properties of sea ice were studied in a three-week long in situ experiment in the Gulf of Finland, Baltic Sea in March 2011. The untreated snow-covered ice and two snow-free ice treatments, one exposed to wavelengths > 400 nm (PAR) and the other to full solar spectrum (PAR + UVR), were analysed for MAAs and absorption coefficients of dissolved (a(CDOM)) and particulate (a(p)) fractions, the latter being further divided into non-algal (a(nap)) and algal (a(ph)) components. Our results showed that the diatom and dinoflagellate dominated sea-ice algal community responded to UVR down to 25-30 cm depth by increasing their MAA : chlorophyll-a ratio and by extending the composition of MAA pool from shinorine and palythine to porphyra-334 and an unknown compound with absorption peaks at ca. 335 and 360 nm. MAAs were the dominant absorbing components in algae in the top 10 cm of ice, and their contribution to total absorption became even more pronounced under UVR exposure. In addition to MAAs, the high absorption by chromophoric dissolved organic matter (CDOM) and by deposited atmospheric particles provided UV-protection for sea-ice organisms in the exposed ice. Efficient UV-protection will especially be of importance under the predicted future climate conditions with more frequent snow-free conditions.
机译:在海湾地区进行了为期三周的原位实验,研究了紫外线(UVR)对海冰群落中霉菌素样氨基酸(MAAs)的合成以及对海冰其他紫外线吸收特性的影响。于2011年3月在波罗的海的芬兰进行了分析。分析了未经处理的积雪冰和两种无雪冰处理方法,其中一种暴露于波长大于400 nm(PAR),另一种暴露于全太阳光谱(PAR + UVR),溶解级分(a(CDOM))和颗粒级分(a(p))的吸收系数,后者又分为非藻类(a(nap))和藻类(a(ph))组分。我们的研究结果表明,以硅藻和鞭毛藻为主的海冰藻类群落通过增加其MAA:叶绿素-a的比例,并将MAA池的组成从紫光碱和蛋氨酸扩展到紫菜334和334,对UVR的反应降至25-30 cm深度。一种未知的化合物,其吸收峰约为。 335和360 nm。 MAA是顶部1​​0 cm冰中藻类的主要吸收成分,在紫外线辐射下,它们对总吸收的贡献变得更加明显。除MAA外,发色溶解有机物(CDOM)和沉积的大气颗粒的高吸收为裸露的冰中的海冰生物提供了紫外线防护。在预计的未来气候条件以及无雪条件更加频繁的情况下,有效的紫外线防护尤为重要。

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