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多种未培养的不等鞭毛类单细胞基因组学揭示了海洋中被低估的功能多样性。

Single-cell genomics of multiple uncultured stramenopiles reveals underestimated functional diversity across oceans.

作者信息

Seeleuthner Yoann, Mondy Samuel, Lombard Vincent, Carradec Quentin, Pelletier Eric, Wessner Marc, Leconte Jade, Mangot Jean-François, Poulain Julie, Labadie Karine, Logares Ramiro, Sunagawa Shinichi, de Berardinis Véronique, Salanoubat Marcel, Dimier Céline, Kandels-Lewis Stefanie, Picheral Marc, Searson Sarah, Pesant Stephane, Poulton Nicole, Stepanauskas Ramunas, Bork Peer, Bowler Chris, Hingamp Pascal, Sullivan Matthew B, Iudicone Daniele, Massana Ramon, Aury Jean-Marc, Henrissat Bernard, Karsenti Eric, Jaillon Olivier, Sieracki Mike, de Vargas Colomban, Wincker Patrick

机构信息

CEA - Institut de biologie François Jacob, GENOSCOPE, 2 rue Gaston Crémieux, 91057, Evry, France.

CNRS, UMR 8030, CP5706, Evry, France.

出版信息

Nat Commun. 2018 Jan 22;9(1):310. doi: 10.1038/s41467-017-02235-3.

Abstract

Single-celled eukaryotes (protists) are critical players in global biogeochemical cycling of nutrients and energy in the oceans. While their roles as primary producers and grazers are well appreciated, other aspects of their life histories remain obscure due to challenges in culturing and sequencing their natural diversity. Here, we exploit single-cell genomics and metagenomics data from the circumglobal Tara Oceans expedition to analyze the genome content and apparent oceanic distribution of seven prevalent lineages of uncultured heterotrophic stramenopiles. Based on the available data, each sequenced genome or genotype appears to have a specific oceanic distribution, principally correlated with water temperature and depth. The genome content provides hypotheses for specialization in terms of cell motility, food spectra, and trophic stages, including the potential impact on their lifestyles of horizontal gene transfer from prokaryotes. Our results support the idea that prominent heterotrophic marine protists perform diverse functions in ocean ecology.

摘要

单细胞真核生物(原生生物)是海洋中营养物质和能量全球生物地球化学循环的关键参与者。虽然它们作为初级生产者和食草动物的作用已得到充分认识,但由于培养和对其天然多样性进行测序存在挑战,它们生活史的其他方面仍不清楚。在这里,我们利用环全球塔拉海洋探险的单细胞基因组学和宏基因组学数据,分析了七个未培养的异养不等鞭毛类普遍谱系的基因组内容和明显的海洋分布。根据现有数据,每个测序的基因组或基因型似乎都有特定的海洋分布,主要与水温及深度相关。基因组内容为细胞运动性、食物谱和营养阶段的专业化提供了假设,包括原核生物水平基因转移对其生活方式的潜在影响。我们的结果支持这样一种观点,即突出的异养海洋原生生物在海洋生态中发挥着多样的功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/657a/5778133/60138e16579b/41467_2017_2235_Fig1_HTML.jpg

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