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zadetkov: 41
1.
  • Ecogenomics and potential b... Ecogenomics and potential biogeochemical impacts of globally abundant ocean viruses
    Roux, Simon; Brum, Jennifer R; Dutilh, Bas E ... Nature, 09/2016, Letnik: 537, Številka: 7622
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    Ocean microbes drive biogeochemical cycling on a global scale. However, this cycling is constrained by viruses that affect community composition, metabolic activity, and evolutionary trajectories. ...
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2.
  • Phage-specific metabolic re... Phage-specific metabolic reprogramming of virocells
    Howard-Varona, Cristina; Lindback, Morgan M; Bastien, G Eric ... The ISME Journal, 04/2020, Letnik: 14, Številka: 4
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    Ocean viruses are abundant and infect 20-40% of surface microbes. Infected cells, termed virocells, are thus a predominant microbial state. Yet, virocells and their ecosystem impacts are ...
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3.
  • Soil Viruses Are Underexplo... Soil Viruses Are Underexplored Players in Ecosystem Carbon Processing
    Trubl, Gareth; Jang, Ho Bin; Roux, Simon ... MSystems, 09/2018, Letnik: 3, Številka: 5
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    Rapidly thawing permafrost harbors ∼30 to 50% of global soil carbon, and the fate of this carbon remains unknown. Microorganisms will play a central role in its fate, and their viruses could modulate ...
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4.
  • Towards quantitative viromi... Towards quantitative viromics for both double-stranded and single-stranded DNA viruses
    Roux, Simon; Solonenko, Natalie E; Dang, Vinh T ... PeerJ, 12/2016, Letnik: 4
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    Viruses strongly influence microbial population dynamics and ecosystem functions. However, our ability to quantitatively evaluate those viral impacts is limited to the few cultivated viruses and ...
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5.
  • Glacier ice archives nearly... Glacier ice archives nearly 15,000-year-old microbes and phages
    Zhong, Zhi-Ping; Tian, Funing; Roux, Simon ... Microbiome, 07/2021, Letnik: 9, Številka: 1
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    Abstract Background Glacier ice archives information, including microbiology, that helps reveal paleoclimate histories and predict future climate change. Though glacier-ice microbes are studied using ...
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6.
  • Twelve previously unknown p... Twelve previously unknown phage genera are ubiquitous in global oceans
    Holmfeldt, Karin; Solonenko, Natalie; Shah, Manesh ... Proceedings of the National Academy of Sciences - PNAS, 07/2013, Letnik: 110, Številka: 31
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    Viruses are fundamental to ecosystems ranging from oceans to humans, yet our ability to study them is bottlenecked by the lack of ecologically relevant isolates, resulting in “unknowns” dominating ...
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7.
  • Regulation of infection eff... Regulation of infection efficiency in a globally abundant marine Bacteriodetes virus
    Howard-Varona, Cristina; Roux, Simon; Dore, Hugo ... The ISME Journal, 01/2017, Letnik: 11, Številka: 1
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    Bacteria impact humans, industry and nature, but do so under viral constraints. Problematically, knowledge of viral infection efficiencies and outcomes derives from few model systems that ...
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8.
  • Long-read viral metagenomic... Long-read viral metagenomics captures abundant and microdiverse viral populations and their niche-defining genomic islands
    Warwick-Dugdale, Joanna; Solonenko, Natalie; Moore, Karen ... PeerJ, 04/2019, Letnik: 7
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    Marine viruses impact global biogeochemical cycles via their influence on host community structure and function, yet our understanding of viral ecology is constrained by limitations in host culturing ...
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9.
  • Multiple mechanisms drive p... Multiple mechanisms drive phage infection efficiency in nearly identical hosts
    Howard-Varona, Cristina; Hargreaves, Katherine R; Solonenko, Natalie E ... The ISME Journal, 06/2018, Letnik: 12, Številka: 6
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    Phage-host interactions are critical to ecology, evolution, and biotechnology. Central to those is infection efficiency, which remains poorly understood, particularly in nature. Here we apply ...
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10.
  • Single-cell and population ... Single-cell and population level viral infection dynamics revealed by phageFISH, a method to visualize intracellular and free viruses
    Allers, Elke; Moraru, Cristina; Duhaime, Melissa B. ... Environmental microbiology, August 2013, Letnik: 15, Številka: 8
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    Summary Microbes drive the biogeochemical cycles that fuel planet Earth, and their viruses (phages) alter microbial population structure, genome repertoire, and metabolic capacity. However, our ...
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zadetkov: 41

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