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Kleptoprotein bioluminescence: Parapriacanthus fish obtain luciferase from ostracod prey

机译:Kleptoprotin生物发光:Parapriacanthus鱼从Ostracod猎物获得荧光素酶

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Through their diet, animals can obtain substances essential for imparting special characteristics, such as toxins in monarch butterflies and luminescent substances in jellyfishes. These substances are typically small molecules because they are less likely to be digested and may be hard for the consumer to biosynthesize. Here, we report that Parapriacanthus ransonneti , a bioluminescent fish, obtains not only its luciferin but also its luciferase enzyme from bioluminescent ostracod prey. The enzyme purified from the fish’s light organs was identical to the luciferase of Cypridina noctiluca , a bioluminescent ostracod that they feed upon. Experiments where fish were fed with a related ostracod, Vargula hilgendorfii , demonstrated the specific uptake of the luciferase to the fish’s light organs. This “kleptoprotein” system allows an organism to use novel functional proteins that are not encoded in its genome and provides an evolutionary alternative to DNA-based molecular evolution.
机译:通过他们的饮食,动物可以获得赋予特殊特征所必需的物质,例如墨西哥蝴蝶和水母的发光物质中的毒素。这些物质通常是小分子,因为它们不太可能被消化,并且可能对消费者难以进行生物合成。在这里,我们报告称Parapriacanthus Ransonneti是一种生物发光的鱼,不仅获得其荧光素,而且来自来自生物发光蛇杀灭猎物的荧光素酶。从鱼的光器官纯化的酶与Cypridina Noctiluca的荧光素酶相同,其饲料的生物发光蛇溶胶。用相关的蛇乳酸的鱼类喂食鱼类的实验证明了荧光素酶对鱼的光器官的特异性摄取。该“克林特蛋白”系统允许生物体利用未在其基因组中编码的新型功能蛋白质,并提供基于DNA的分子演化的进化替代。

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