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Genomic ecology of Marine Group II, the most common marine planktonic Archaea across the surface ocean

机译:海洋组织的基因组生态学,跨越表面海洋中最常见的海洋浮游古藻

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Planktonic Archaea have been detected in all the world's oceans and are found from surface waters to the deep sea. The two most common Archaea phyla are Thaumarchaeota and Euryarchaeota. Euryarchaeota are generally more common in surface waters, but very little is known about their ecology and their potential metabolisms. In this study, we explore the genomic ecology of the Marine Group II (MGII), the main marine planktonic Euryarchaeota, and test if it is composed of different ecologically relevant units. We re‐analyzed Tara Oceans metagenomes from the photic layer and the deep ocean by annotating sequences against a custom MGII database and by mapping gene co‐occurrences. Our data provide a global view of the distribution of Euryarchaeota , and more specifically of MGII subgroups, and reveal their association to a number of gene‐coding sequences. In particular, we show that MGII proteorhodopsins were detected in both the surface and the deep chlorophyll maximum layer and that different clusters of these light harvesting proteins were present. Our approach helped describing the set of genes found together with specific MGII subgroups. We could thus define genomic environments that could theoretically describe ecologically meaningful units and the ecological niche that they occupy.
机译:在所有世界的海洋中被检测到浮游古藻,从地表水域发现到深海。两种最常见的古氏植物是Thaumarchaeota和euryarchaeota。 EuryArchaeota通常在表面水域中普遍普遍,但对其生态及其潜在的代谢知之甚少。在这项研究中,我们探讨了海洋族II(MGII)的基因组生态学,主要的海洋氏植物植物,以及在不同的生态相关单位组成的情况下。我们通过针对定制MGII数据库的注释序列和映射基因共同发生来重新分析来自光层和深海的塔拉海洋偏见。我们的数据提供了euryarchaeota分布的全球视图,更具体地是MgII亚组,并揭示它们与许多基因编码序列的关联。特别地,我们表明在表面和深叶绿素最大层中检测到MgII蛋白质孢子,并且存在这些光收割蛋白的不同簇。我们的方法有助于描述与特定的MGII子组一起发现的一组基因。因此,我们可以定义理论上可以描述生态有意义的单位和他们占据的生态利基的基因组环境。

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