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Packaging of mycosporine-like amino acids in dinoflagellates

机译:在鞭毛藻中包装霉菌素样氨基酸

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Synthesis of mycosporine-like amino acids (MAAs) can significantly protect phyto-plankton cells against damaging ultraviolet (UV) radiation, depending on the concentration, type and cellular distribution of these UV sunscreens. We addressed the hypothesis that MAAs are concentrated around UV-sensitive organelles for improved efficiency, thereby increasing their 'package effect'. This was investigated for 2 species of MAA-producing dinoflagellates, with comparative analyses of a MAA-free diatom. Spectral absorbance of dinoflagellates suspended in their growth medium was relatively small throughout the MAA-absorbing region despite high concentrations of these compounds (determined by HPLC), suggesting that MAAs are highly packaged in intact cells. The measured in vivo absorbance of suspended and filtered phytoplankton cells revealed an extracellular release of water-soluble MAAs during freezing. The release of MAAs upon thawing enabled the calculation of an MAA packaging index based on the comparison between absorption characteristics before (MAAs inside cells in suspension) and after freezing (MAAs released from cells on thawed filters). Additionally, MAA packaging was evaluated from the reconstruction of absorption spectra from the individual MAA concentration. Consistent with our hypothesis, the results showed that UV absorption was up to 80 % lower in the intact cells relative to the MAAs dissolved in solution. These results imply a high degree of MAA packaging in these dinoflagellates, that may increase the protection efficiency for specific cellular targets.
机译:霉菌素样氨基酸(MAAs)的合成可显着保护浮游植物细胞免受有害的紫外线(UV)辐射,具体取决于这些紫外线防晒剂的浓度,类型和细胞分布。我们提出了MAA集中在对紫外线敏感的细胞器周围以提高效率,从而增加其“包装效应”的假说。对产生MAA的2种鞭毛藻进行了调查,并对不含MAA的硅藻进行了比较分析。尽管这些化合物的浓度很高(由HPLC测定),但悬浮在它们生长培养基中的鞭毛藻的光谱吸收在整个MAA吸收区域相对较小,这表明MAA被高度包装在完整细胞中。悬浮和过滤后的浮游植物细胞的体内吸光度显示,冷冻过程中水溶性MAA在细胞外释放。融化后MAA的释放使得能够基于冷冻前(悬浮液中的细胞内的MAA)和冷冻后(解冻的滤膜上的细胞释放的MAA)之间的吸收特性之间的比较来计算MAA包装指数。另外,通过从各个MAA浓度的吸收光谱的重建来评估MAA包装。与我们的假设一致,结果表明相对于溶解在溶液中的MAA,完整细胞的紫外线吸收降低了80%。这些结果暗示在这些鞭毛鞭毛虫中高度MAA包装,这可以提高对特定细胞靶标的保护效率。

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