腸内細菌の破裂から必須ビタミンB12が得られることを新研究が示す(Essential vitamin B12 mined from exploded gut bacteria, according to new research)

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2026-08-06 バージニア工科大学(Virginia Tech)

ビタミンB12は、赤血球やDNAの形成、神経・脳機能の維持に不可欠だが、人間や動植物は自ら合成できず、一部の細菌・古細菌に依存している。バージニア工科大学の研究チームは、腸内細菌群の間でB12がどのように供給されるのかを調べ、細菌に感染するウイルス「バクテリオファージ」が重要な役割を担うことを明らかにした。ファージがB12産生菌に感染して細胞を溶解すると、細胞内に蓄積されていたB12が周囲へ放出され、B12を必要とする別の細菌が利用できるようになる。B12産生菌と消費菌を共培養した実験では、ファージが存在すると消費菌が増殖したが、B12を遺伝的に欠損させた産生菌ではこの効果が消失した。さらに複雑なヒト腸内細菌系でも同じ現象を確認した。研究は、ファージによる細菌の溶解が単なる細胞死ではなく、B12などの栄養素を微生物群集へ再配分し、腸内微生物の多様性や機能を支える重要な生態学的プロセスであることを示している。

<関連情報>

バクテリオファージによる細胞溶解は、代謝的に有用な栄養素を細胞外に放出し、細菌群集を広範囲に調節する Bacteriophage-mediated cell lysis externalizes a metabolically valuable nutrient to broadly modulate bacterial communities

David da Silva Barreira,Hannah M Poole,Rogério A Bataglioli,Bryan B Hsu
The ISME Journal  Published:23 June 2026
DOI:https://doi.org/10.1093/ismejo/wrag160

A multi-panel figure with a schematic of phage-mediated B12 release, bar graphs of absorbances of bacterial cultures in M9 medium supplemented with or without B12 or methionine, and bacterial concentrations and B12 concentrations in the cell pellet or supernatant when grown with active or heat-inactivated phage.

Abstract

Cobamides, including vitamin B12, are essential cofactors exchanged between organisms across diverse ecosystems including oceans, soils, and the mammalian gut. Although most organisms depend on cobamides, only a minority of prokaryotes perform their metabolically costly biosynthesis. This has led to vitamin B12 uptake from the environment as a common acquisition strategy, but does not explain why B12 producers would allow B12 to become extracellularly available. Our work reconciles this inconsistency, showing that bacteriophages (phages) can facilitate the release of intracellular B12 at physiologically relevant concentrations. Phages are viruses that infect and often lyse their targeted bacteria, which may externalize intracellular material along with progeny phages. In this work, we aimed to determine whether phage-mediated lysis promotes the externalization of vitamin B12, thereby supporting the growth of B12-dependent bacteria. To test this, we first used genetically well-defined B12-Producer and B12-User bacteria, and found that phage-mediated lysis of the producers releases sufficient B12 to support the growth of the users in co-culture. Next, we showed that phage-mediated lysis of the B12-producer can similarly support the growth of various commensal gut bacteria that are also B12-dependent, in co-culture. B12 released by phage-mediated cell lysis induced significant compositional changes among the non-targeted bacteria including an increased diversity that was muted by supplementing B12 in the medium. Collectively, these findings suggest that phage-mediated bacterial lysis is a significant contributor to nutrient externalization in microbial communities, leading to broad compositional changes beyond their host range.

生物化学工学
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