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Mitochondrial Genome Assemblies of Elysia timida and Elysia cornigera and the Response of Mitochondrion-Associated Metabolism during Starvation

机译:饥饿和饥饿下线粒体的线粒体基因组装配和线粒体相关代谢的响应

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摘要

Some sacoglossan sea slugs sequester functional plastids (kleptoplasts) from their food, which continue to fix CO2 in a light dependent manner inside the animals. In plants and algae, plastid and mitochondrial metabolism are linked in ways that reach beyond the provision of energy-rich carbon compounds through photosynthesis, but how slug mitochondria respond to starvation or alterations in plastid biochemistry has not been explored. We assembled the mitochondrial genomes of the plastid-sequestering sea slugs Elysia timida and Elysia cornigera from RNA-Seq data that was complemented with standard sequencing of mitochondrial DNA through primer walking. Our data confirm the sister species relationship of the two Sacoglossa and from the analysis of changes in mitochondrial-associated metabolism during starvation we speculate that kleptoplasts might aid in the rerouting or recycling of reducing power independent of, yet maybe improved by, photosynthesis.
机译:一些猴海从食物中隔离功能性质体(kleptoplasts),它们以光依赖的方式继续在动物体内固定二氧化碳。在植物和藻类中,质体和线粒体代谢之间的联系超出了通过光合作用提供能量丰富的碳化合物的范围,但是,尚未探索块状线粒体如何响应质体生物化学中的饥饿或变化。我们从RNA-Seq数据组装了质体隔离海sea Elysia timida和Elysia cornigera的线粒体基因组,并通过引物步移对线粒体DNA进行了标准测序。我们的数据证实了两种Sacoglossa的姊妹物种关系,并且通过分析饥饿期间线粒体相关代谢的变化,我们推测kleptoplasts可能独立于光合作用,但可能通过光合作用帮助降低能量的重排或回收。

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