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A global ocean atlas of eukaryotic genes

机译:全球海洋真核基因图谱

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While our knowledge about the roles of microbes and viruses in the ocean has increased tremendously due to recent advances in genomics and metagenomics, research on marine microbial eukaryotes and zooplankton has benefited much less from these new technologies because of their larger genomes, their enormous diversity, and largely unexplored physiologies. Here, we use a metatranscriptomics approach to capture expressed genes in open ocean Tara Oceans stations across four organismal size fractions. The individual sequence reads cluster into 116 million unigenes representing the largest reference collection of eukaryotic transcripts from any single biome. The catalog is used to unveil functions expressed by eukaryotic marine plankton, and to assess their functional biogeography. Almost half of the sequences have no similarity with known proteins, and a great number belong to new gene families with a restricted distribution in the ocean. Overall, the resource provides the foundations for exploring the roles of marine eukaryotes in ocean ecology and biogeochemistry.
机译:尽管由于基因组学和宏基因组学的最新进展,我们对海洋中微生物和病毒的作用的了解大大增加了,但是由于这些新技术的基因组更大,种类繁多,种类繁多,因此对海洋微生物真核生物和浮游动物的研究受益较少。和很大程度上未开发的生理学。在这里,我们使用元转录组学方法来捕获开放海洋塔拉海洋站中四个生物体大小部分的表达基因。单个序列将簇读取为1.16亿个单基因,代表来自任何单个生物群落的最大的真核转录本参考集合。该目录用于揭示真核海洋浮游生物表达的功能,并评估其功能生物地理。几乎一半的序列与已知蛋白质没有相似性,并且很大一部分属于海洋中分布受限的新基因家族。总体而言,该资源为探索海洋真核生物在海洋生态学和生物地球化学中的作用提供了基础。

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