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Biochemical diversity of glycosphingolipid biosynthesis as a driver of Coccolithovirus competitive ecology

机译:糖磷脂生物合成的生物化学多样性作为Coccolithovirus竞争生态的驾驶员

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摘要

Coccolithoviruses (EhVs) are large, double-stranded DNA-containing viruses that infect the single-celled, marine coccolithophore Emiliania huxleyi. Given the cosmopolitan nature and global importance of E. huxleyi as a bloom-forming, calcifying, photoautotroph, E. huxleyi-EhV interactions play a key role in oceanic carbon biogeochemistry. Virally-encoded glycosphingolipids (vGSLs) are virulence factors that are produced by the activity of virus-encoded serine palmitoyltransferase (SPT). Here, we characterize the dynamics, diversity and catalytic production of vGSLs in an array of EhV strains in relation to their SPT sequence composition and explore the hypothesis that they are a determinant of infectivity and host demise. vGSL production and diversity was positively correlated with increased virulence, virus replication rate and lytic infection dynamics in laboratory experiments, but they do not explain the success of less-virulent EhVs in natural EhV communities. The majority of EhV-derived SPT amplicon sequences associated with infected cells in the North Atlantic derived from slower infecting, less virulent EhVs. Our lab-, field- and mathematical model-based data and simulations support ecological scenarios whereby slow-infecting, less-virulent EhVs successfully compete in North Atlantic populations of E. huxleyi, through either the preferential removal of fast-infecting, virulent EhVs during active infection or by having access to a broader host range.
机译:Coccolithoviruses(EHVs)是含有单细胞的大型双链DNA病毒的含有单细胞的海洋Coccolishophore Emiliania Huxleyi。鉴于大都会大自然和全球性的大肠杆菌的自然和全球重要性作为绽放形成,钙化,光摄影术,E. Huxleyi-EHV相互作用在海洋碳生物地球化学中发挥着关键作用。病毒编码的糖磷脂(VGSL)是通过病毒编码的丝氨酸氨基棕榈酰转移酶(SPT)的活性产生的毒力因子。在这里,我们在与其SPT序列组合物中的一系列EHV菌株中的动力学,多样性和催化作用产生VGSL,并探讨它们是感染性和主持人的决定因素的假设。 VGSL生产和多样性与实验室实验中增加的毒力,病毒复制率和裂解感染动态呈正相关,但它们并未解释天然EHV社区中较低的毒性EHV的成功。大多数与北大西洋中受感染细胞相关的大多数EHV衍生的SPT扩增子序列来自较慢的感染,较低的毒性EHV。我们的实验室,现场和数学模型的数据和模拟支持生态情景,通过优先除去快速感染,毒性EHV在北大西洋群体中成功地竞争了生态情景。主动感染或通过访问更广泛的主机范围。

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  • 来源
    《Environmental microbiology》 |2019年第6期|共16页
  • 作者单位

    Rutgers State Univ Dept Marine &

    Coastal Sci New Brunswick NJ 08901 USA;

    Univ Tennessee Knoxville Dept Microbiol Knoxville TN 37996 USA;

    Rutgers State Univ Dept Marine &

    Coastal Sci New Brunswick NJ 08901 USA;

    Woods Hole Oceanog Inst Dept Marine Chem &

    Geochem Woods Hole MA 02543 USA;

    Rutgers State Univ Dept Biochem &

    Microbiol New Brunswick NJ 08901 USA;

    Rutgers State Univ Dept Marine &

    Coastal Sci New Brunswick NJ 08901 USA;

    Josephine Bay Paul Ctr Marine Biol Lab Woods Hole MA 02543 USA;

    Rutgers State Univ Dept Marine &

    Coastal Sci New Brunswick NJ 08901 USA;

    Rutgers State Univ Dept Marine &

    Coastal Sci New Brunswick NJ 08901 USA;

    Rutgers State Univ Dept Marine &

    Coastal Sci New Brunswick NJ 08901 USA;

    Rutgers State Univ Dept Marine &

    Coastal Sci New Brunswick NJ 08901 USA;

    Curtin Univ Sch Earth &

    Planetary Sci WA Organ &

    Isotope Geochem Ctr Bentley WA 6102 Australia;

    Curtin Univ Sch Earth &

    Planetary Sci WA Organ &

    Isotope Geochem Ctr Bentley WA 6102 Australia;

    MIT Dept Earth Atmospher &

    Planetary Sci Cambridge MA 02139 USA;

    Rutgers State Univ Dept Biochem &

    Microbiol New Brunswick NJ 08901 USA;

    Woods Hole Oceanog Inst Dept Marine Chem &

    Geochem Woods Hole MA 02543 USA;

    Rutgers State Univ Dept Marine &

    Coastal Sci New Brunswick NJ 08901 USA;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 微生物学;
  • 关键词

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