土壌で䌑眠するりィルスを安定同䜍䜓プロヌブ法で発芋(Isotope probing shows soil is packed with dormant viruses lying in wait)

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2026-07-07アメリカ合衆囜・ロヌレンスリバモア囜立研究所(LLNL)

米ロヌレンス・リバモア囜立研究所LLNLの研究チヌムは、也燥した草原土壌に倧量に存圚するりむルスのうち、どれが実際に増殖しおいるのかを安定同䜍䜓プロヌビングSIPによっお調べた。土壌1gには1,000䞇10億個のりむルスが存圚し、その倚くは怍物や動物ではなく现菌などの埮生物を宿䞻ずする。研究では、也燥した土壌を再び湿らせる実隓を1週間行い、重い酞玠を含む氎を利甚しお、増殖したりむルスDNAを暙識した。その結果、増殖を瀺したのはわずか22で、78は掻動せず土壌䞭に残存しおいた。これは、土壌りむルスの倚くが奜適な条件を埅぀「りむルス・シヌドバンク」ずしお長期間存続する可胜性を瀺す。SIPず土壌向けりむルス・メタゲノム解析を組み合わせるこずで、単なる存圚量調査から、自然環境でのりむルスの掻動状態を把握する研究ぞず進展した。今埌、蟲地や森林、氎域などぞの適甚が予定されおいる。

土壌で䌑眠するりィルスを安定同䜍䜓プロヌブ法で発芋(Isotope probing shows soil is packed with dormant viruses lying in wait)
LLNL researchers studied viruses in grassland soil before and after rapid rewetting. Most remained inactive, with only 22 percent of viruses replicating. (Graphic: Dan Herchek/LLNL)

関連情報

SIP-ビロミクスを甚いた草原土壌における现胞倖ビリオンの産生ず持続性の解明 Disentangling production and persistence of extracellular virions in grassland soils with SIP-viromics

Gareth Trubl, Simon Roux, Matthew Kellom, Dariia Vyshenska, Andy Tomatsu, Kanwar Singh, Jeffrey A. Kimbrel, Emiley Eloe-Fadrosh, Rex R. Malmstrom, Jennifer Pett-Ridge, Steven J. Blazewicz
mSystems  Published:29 June 2026
DOI:https://doi.org/10.1128/msystems.01136-25

ABSTRACT

Viruses are abundant and ecologically important in soils, yet the persistence and production dynamics of extracellular virions remain poorly understood. We applied genome-resolved stable isotope probing viromics (SIP-viromics), combining H218O labeling with viral metagenomics, to track virion turnover in seasonally dry grassland soils following rewetting. We identified 354 viral populations (vOTUs) using individual-sample and combined virome assemblies. Only 22% of vOTUs exhibited significant 18O enrichment, indicating active replication and new virion production during the 1-week incubation; the majority (78%) persisted without detectable replication, consistent with a viral seed bank. Active vOTUs accounted for 4.76–5.15% of total virions per gram of soil, with viral loads ranging from 3.15 × 1010 to 6.59 × 1010 virions per gram. Probabilistic and deterministic sensitivity analyses spanning viral DNA fraction and genome length reinforced that persistent virions represented the majority of the extracellular viral pool post-wet-up, regardless of parameter assumptions. Host predictions linked both active and persistent vOTUs primarily to Actinomycetota and Pseudomonadota—bacterial groups known to rapidly resuscitate following rewetting—suggesting that some viruses exhibit rapid turnover, while others persist over longer timescales, forming a stable viral pool capable of reinitiating infections during favorable conditions. These results demonstrate that SIP-viromics can distinguish newly produced from persistent virions and reveal predicted host-associated, lineage-level patterns consistent with lytic infection and virion production. Our findings advance understanding of soil virus-host interactions and highlight the ecological role of persistent virions as a genetic reservoir contributing to microbial turnover and biogeochemical cycling following environmental disturbance.

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