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Photoprotection in sequestered plastids of sea slugs and respective algal sources

机译:海和各自藻源的隔离质体中的光保护

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摘要

Some sea slugs are capable of retaining functional sequestered chloroplasts (kleptoplasts) for variable periods of time. The mechanisms supporting the maintenance of these organelles in animal hosts are still largely unknown. Non-photochemical quenching (NPQ) and the occurrence of a xanthophyll cycle were investigated in the sea slugs Elysia viridis and E. chlorotica using chlorophyll fluorescence measurements and pigment analysis. The photoprotective capacity of kleptoplasts was compared to that observed in their respective algal source, Codium tomentosum and Vaucheria litorea. A functional xanthophyll cycle and a rapidly reversible NPQ component were found in V. litorea and E. chlorotica but not in C. tomentosum and E. viridis. To our knowledge, this is the first report of the absence of a functional xanthophyll cycle in a green macroalgae. The absence of a functional xanthophyll cycle in C. tomentosum could contribute to the premature loss of photosynthetic activity and relatively short-term retention of kleptoplasts in E. viridis. On the contrary, E. chlorotica displays one of the longest functional examples of kleptoplasty known so far. We speculate that different efficiencies of photoprotection and repair mechanisms of algal food sources play a role in the longevity of photosynthetic activity in kleptoplasts retained by sea slugs.
机译:一些海参能够将功能性隔离的叶绿体(变质体)保留不同的时间。在动物宿主中支持这些细胞器维持的机制仍然未知。使用叶绿素荧光测量和色素分析研究了海参Elysia viridis和E. chlorotica中的非光化学猝灭(NPQ)和叶黄素循环的发生。比较了其原生藻的光保护能力与在其各自的藻源,毛绒球菌和立陶宛立枯菌中观察到的光保护能力。一个功能性的叶黄素循环和一个快速可逆的NPQ组件被发现在立枯果和黄萎病菌中,而在棉铃虫和绿脓杆菌中却没有。据我们所知,这是绿色大型藻类中不存在功能性叶黄素循环的首次报道。绒毛衣原体中不存在功能性的叶黄素循环可能会导致光合酶过早丧失,并在短期内保留翠绿假单胞菌的促原生质体。相反,绿叶大肠杆菌显示了迄今为止已知的最长的角膜移植术功能实例之一。我们推测藻类食物来源的光保护和修复机制的不同效率在海参保留的原生质中光合作用的寿命中起着作用。

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