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Role for urea in nitrification by polar marine Archaea

机译:尿素在极地海洋古细菌硝化作用中的作用

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摘要

Despite the high abundance of Archaea in the global ocean, their metabolism and biogeochemical roles remain largely unresolved. We investigated the population dynamics and metabolic activity of Thaumarchaeota in polar environments, where these microorganisms are particularly abundant and exhibit seasonal growth. Thaumarchaeota were more abundant in deep Arctic and Antarctic waters and grew throughout the winter at surface and deeper Arctic halocline waters. However, in situ single-cell activity measurements revealed a low activity of this group in the uptake of both leucine and bicarbonate (<5% Thaumarchaeota cells active), which is inconsistent with known heterotrophic and autotrophic thaumarchaeal lifestyles. These results suggested the existence of alternative sources of carbon and energy. Our analysis of an environmental metagenome from the Arctic winter revealed that Thaumarchaeota had pathways for ammonia oxidation and, unexpectedly, an abundance of genes involved in urea transport and degradation. Quantitative PCR analysis confirmed that most polar Thaumarchaeota had the potential to oxidize ammonia, and a large fraction of them had urease genes, enabling the use of urea to fuel nitrification. Thaumarchaeota from Arctic deep waters had a higher abundance of urease genes than those near the surface suggesting genetic differences between closely related ar-chaeal populations. In situ measurements of urea uptake and concentration in Arctic waters showed that small-sized prokar-yotes incorporated the carbon from urea, and the availability of urea was often higher than that of ammonium. Therefore, the degradation of urea may be a relevant pathway for Thaumarchaeota and other microorganisms exposed to the low-energy conditions of dark polar waters.
机译:尽管古生菌在全球海洋中数量众多,但它们的代谢和生物地球化学作用仍未得到解决。我们研究了极地环境中Thaumarchaeota的种群动态和代谢活性,在这些环境中这些微生物特别丰富并表现出季节性生长。 Thaumarchaeota在北极和南极深水区更为丰富,并在整个冬季在北极表层和深海水中生长。然而,原位单细胞活性测量显示该组在亮氨酸和碳酸氢盐(<5%伞形藻细胞活性)摄取中的活性较低,这与已知的异养和自养拟南芥生活方式不一致。这些结果表明存在替代的碳和能源来源。我们对北极冬季的一个环境基因组的分析表明,塔乌姆菌纲具有氨氧化的途径,而且出乎意料的是,有大量涉及尿素运输和降解的基因。定量PCR分析证实,大多数极性Thaumarchaeota都具有氧化氨的潜力,其中很大一部分具有脲酶基因,从而可以利用尿素来硝化。北极深水区的丘氏菌具有比地表附近更高的脲酶基因丰度,表明紧密相关的ar-chaeal种群之间的遗传差异。北极水中原位尿素吸收和浓度的原位测量结果表明,小型原核生物结合了尿素中的碳,尿素的利用率通常高于铵盐。因此,尿素的降解可能是Thaumarchaeota和其他暴露于低极性暗水低能量条件的微生物的相关途径。

著录项

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  • 作者单位

    Department of Ecology and Genetics, Limnology, Uppsala University, 75236 Uppsala, Sweden,Centro Oceanografico de Gij6n, Instituto Espanol de Oceanografia, 33212 Gij6n, Spain;

    European Molecular Biology Laboratory, 69117 Heidelberg, Germany;

    European Molecular Biology Laboratory, 69117 Heidelberg, Germany;

    Department of Ecology and Evolutionary Biology, University of Michigan, Ann Arbor, Ml 48109;

    Department of Natural Sciences, Linnaeus University, 39182 Kalmar, Sweden;

    School of Marine Programs, University of Georgia, Athens, GA 30602;

    Departement de Biologie, Universite Laval, Quebec, QC, Canada G1V 0A6;

    Departement de Biologie, Universite Laval, Quebec, QC, Canada G1V 0A6;

    Departement de Biologie, Universite Laval, Quebec, QC, Canada G1V 0A6;

    Department of Ecology and Genetics, Limnology, Uppsala University, 75236 Uppsala, Sweden;

    Departament de Biologia Marina i Oceanografia, Institut de Ciencies del Mar, Consejo Superior de Investigaciones Cientificas, 08003 Barcelona, Spain;

    Marine Biological Section, University of Copenhagen, 3000 Helsingør, Denmark;

    European Molecular Biology Laboratory, 69117 Heidelberg, Germany;

    Departament de Biologia Marina i Oceanografia, Institut de Ciencies del Mar, Consejo Superior de Investigaciones Cientificas, 08003 Barcelona, Spain;

    Department of Ecology and Genetics, Limnology, Uppsala University, 75236 Uppsala, Sweden;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    amoa; ureC; beaufort sea; ross sea; amundsen sea;

    机译:亚摩亚ureC;博福特海罗斯海阿蒙森海;
  • 入库时间 2022-08-18 00:40:29

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