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首页> 外文期刊>Journal of Applied Phycology >Temporal variation in pigment and mycosporine-like amino acid composition of the red macroalga Palmaria palmata from Brittany (France): hypothesis on the MAA biosynthesis pathway under high irradiance
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Temporal variation in pigment and mycosporine-like amino acid composition of the red macroalga Palmaria palmata from Brittany (France): hypothesis on the MAA biosynthesis pathway under high irradiance

机译:来自布列塔尼(法国)的红色MACROALGA Palmaria Palmata的颜料和肌孢子状氨基酸组成的时间变异:高辐照下的Maa生物合成途径假设

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Changes in pigment (chlorophyll-a, carotenoids and phycobiliproteins) and mycosporine-like amino acid (MAA) composition were studied in the red edible macroalga Palmaria palmata, harvested between February 2018 and February 2019 at 2 sites from Brittany (France). The results occuring in natural conditions revealed a high seasonal variability that can be related to a combination of environmental parameters, including light, nutrients, temperature, salinity and pH, which may have synergistic or antagonistic effects. A decrease in pigments was observed in summer, matching with the increase in irradiance at the same period. On the contrary, the increase in light from February to May has caused an increase in the total MAA content, confirming the UV-photoprotective role attributed to these compounds. Analysis of the results coupled with the biosynthesis pathway suggests that some MAAs are favoured in the occurrence of high irradiance. In this sense, asterina-330 was synthetized only between March and July and not the rest of the year, supporting its importance in photoprotection. In addition, analysis revealed that nutrient availibility could have a significant influence on MAAs since their synthesis seemed to be limited in summer, despite significant exposure to light. However, this decrease could be due to another potential role of MAAs as a nitrogen source for macroalgae. Thus, the diversity of these compounds and the different synthesis pathways could be explained by different roles including photo-protection and nitrogen source, making MAA multi-purpose protective agents which could play a key role in the adaptation of this species to its changing environment.
机译:在红色可食用的MACROALGA Palmaria Palmata中研究了颜料(叶绿素-A,类胡萝卜素和植物和植物素)和肌孢子样氨基酸(MAA)组合物的植物组合物,于2018年2月至2019年2月在Brittany(法国)的2个地点收获。在天然条件下发生的结果揭示了一种高季节性变异性,其与环境参数的组合有关,包括光,营养,温度,盐度和pH,这可能具有协同或拮抗作用。在夏季观察到颜料的减少,与同一时期的辐照度增加相匹配。相反,2月份的光线增加可能导致了MAA含量的增加,证实了归因于这些化合物的UV-光保护作用。分析结果与生物合成途径偶联的结果表明,一些MAAS在高辐照度发生时受到青睐。从这个意义上讲,Asterina-330只在3月和7月之间合成,而不是今年剩下的时间,支持其在光保护方面的重要性。此外,分析表明,营养可用性可能对MAA产生重大影响,因为它们的合成似乎在夏季受到限制,尽管光线显着暴露。然而,这种降低可能是由于MAAS作为MARORALGAE的氮源的另一个潜在作用。因此,这些化合物和不同的合成途径的多样性可以通过不同的典型来解释,包括光保护和氮源,使MAA多功能保护剂可以在这种物种对其变化环境的适应中发挥关键作用。

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