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A Viral Immunity Chromosome in the Marine Picoeukaryote Ostreococcus tauri

机译:海洋PicookeukaryoteOstreococcus tauri中的病毒免疫染色体。

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摘要

Micro-algae of the genus Ostreococcus and related species of the order Mamiellales are globally distributed in the photic zone of world's oceans where they contribute to fixation of atmospheric carbon and production of oxygen, besides providing a primary source of nutrition in the food web. Their tiny size, simple cells, ease of culture, compact genomes and susceptibility to the most abundant large DNA viruses in the sea render them attractive as models for integrative marine biology. In culture, spontaneous resistance to viruses occurs frequently. Here, we show that virus-producing resistant cell lines arise in many independent cell lines during lytic infections, but over two years, more and more of these lines stop producing viruses. We observed sweeping over-expression of all genes in more than half of chromosome 19 in resistant lines, and karyotypic analyses showed physical rearrangements of this chromosome. Chromosome 19 has an unusual genetic structure whose equivalent is found in all of the sequenced genomes in this ecologically important group of green algae.
机译:骨球菌属和微囊藻属的相关物种的微藻全球分布在世界海洋的光合带,除了为食物网提供主要营养来源外,它们还有助于固定大气中的碳和产生氧气。它们的体积小,细胞简单,易于培养,基因组紧凑以及对海洋中最丰富的大型DNA病毒的敏感性,使其成为整合海洋生物学的模型而具有吸引力。在文化中,对病毒的自发抵抗经常发生。在这里,我们显示出在裂解感染期间,许多独立细胞系中均会产生病毒产生抗性的细胞系,但两年来,越来越多的这些细胞系停止产生病毒。我们在抗性品系中观察到了所有基因在19号染色体一半以上的过度表达,并且核型分析表明该染色体发生了物理重排。 19号染色体具有不寻常的遗传结构,在这个具有生态学意义的重要藻类群的所有测序基因组中都发现了这种结构。

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