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Host-linked soil viral ecology along a permafrost thaw gradient

机译:沿永久冻土解冻梯度的宿主联络土病毒生态学

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摘要

Climate change threatens to release abundant carbon that is sequestered at high latitudes, but the constraints on microbial metabolisms that mediate the release of methane and carbon dioxide are poorly understood(1-7). The role of viruses, which are known to affect microbial dynamics, metabolism and biogeochemistry in the oceans(8-10), remains largely unexplored in soil. Here, we aimed to investigate how viruses influence microbial ecology and carbon metabolism in peatland soils along a permafrost thaw gradient in Sweden. We recovered 1,907 viral populations (genomes and large genome fragments) from 197 bulk soil and size-fractionated metagenomes, 58% of which were detected in metatranscriptomes and presumed to be active. In silico predictions linked 35% of the viruses to microbial host populations, highlighting likely viral predators of key carbon-cycling microorganisms, including methanogens and methanotrophs. Lineage-specific virus/host ratios varied, suggesting that viral infection dynamics may differentially impact microbial responses to a changing climate. Virus-encoded glycoside hydrolases, including an endomannanase with confirmed functional activity, indicated that viruses influence complex carbon degradation and that viral abundances were significant predictors of methane dynamics. These findings suggest that viruses may impact ecosystem function in climate-critical, terrestrial habitats and identify multiple potential viral contributions to soil carbon cycling.
机译:气候变化威胁要释放在高纬度下隔离的丰富碳,但对介导甲烷和二氧化碳释放的微生物代谢的限制较差(1-7)。众所周知,病毒的作用是在海洋(8-10)中影响微生物动态,代谢和生物地球化学,在土壤中仍然在很大程度上是在土壤中未开发的。在这里,我们旨在调查病毒如何在瑞典的永久冻土解冻梯度沿泥炭域土壤中影响微生物生态和碳代谢。我们从197个散装土壤和大小分级的替代组织中恢复了1,907名病毒群(基因组和大型基因组片段),其中58%在MetaTranscriptomes中检测到并被假定为活性。在硅预测中,将35%的病毒与微生物宿主群相关联,突出了关键碳循环微生物的可能的病毒捕食者,包括甲烷酮和甲蛋白。特定于谱系的病毒/宿主比变化,表明病毒感染动态可能会差异地影响变化气候的微生物反应。病毒编码的糖苷水解酶,包括确诊功能活性的内蛋白酶酶,表明病毒影响复杂的碳劣化,并且病毒丰度是甲烷动力学的显着预测因子。这些研究结果表明,病毒可能会影响气候临界,陆地栖息地的生态系统功能,并确定对土壤碳循环的多种潜在的病毒贡献。

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  • 来源
    《Nature Microbiology 》 |2018年第8期| 共11页
  • 作者单位

    Ohio State Univ Dept Microbiol 484 W 12th Ave Columbus OH 43210 USA;

    Ohio State Univ Dept Microbiol 484 W 12th Ave Columbus OH 43210 USA;

    Ohio State Univ Dept Microbiol 484 W 12th Ave Columbus OH 43210 USA;

    Ohio State Univ Dept Microbiol 484 W 12th Ave Columbus OH 43210 USA;

    Univ Queensland Sch Chem &

    Mol Biosci Australian Ctr Ecogen Brisbane Qld Australia;

    Ohio State Univ Dept Microbiol 484 W 12th Ave Columbus OH 43210 USA;

    Univ Queensland Sch Chem &

    Mol Biosci Australian Ctr Ecogen Brisbane Qld Australia;

    Ohio State Univ Dept Microbiol 484 W 12th Ave Columbus OH 43210 USA;

    Norwegian Univ Life Sci Fac Chem Biotechnol &

    Food Sci As Norway;

    Univ Queensland Sch Chem &

    Mol Biosci Australian Ctr Ecogen Brisbane Qld Australia;

    Florida State Univ Dept Earth Ocean &

    Atmospher Sci Tallahassee FL 32306 USA;

    Florida State Univ Dept Earth Ocean &

    Atmospher Sci Tallahassee FL 32306 USA;

    Ohio State Univ Dept Microbiol 484 W 12th Ave Columbus OH 43210 USA;

    Univ New Hampshire Inst Study Earth Oceans &

    Space Earth Syst Res Ctr Durham NH 03824 USA;

    Univ New Hampshire Inst Study Earth Oceans &

    Space Earth Syst Res Ctr Durham NH 03824 USA;

    Norwegian Univ Life Sci Fac Chem Biotechnol &

    Food Sci As Norway;

    Ohio State Univ Dept Microbiol 484 W 12th Ave Columbus OH 43210 USA;

    Stockholm Univ Dept Geol Sci Stockholm Sweden;

    Florida State Univ Dept Earth Ocean &

    Atmospher Sci Tallahassee FL 32306 USA;

    Univ Arizona Dept Ecol &

    Evolutionary Biol Tucson AZ USA;

    Univ Queensland Sch Chem &

    Mol Biosci Australian Ctr Ecogen Brisbane Qld Australia;

    Ohio State Univ Dept Microbiol 484 W 12th Ave Columbus OH 43210 USA;

    Ohio State Univ Dept Microbiol 484 W 12th Ave Columbus OH 43210 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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