特定の菌類が水を凍らせる能力を持つことを発見(Fantastic fungi found with ability to freeze water)

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2026-03-11 バージニア工科大学(Virginia Tech)

米バージニア工科大学(Virginia Tech)の研究チームは、水を凍らせる能力を持つ新しい「氷核形成タンパク質」を産生する菌類を発見した。これまで氷核形成は主に細菌で知られていたが、本研究では菌類にも同様の機能を持つタンパク質が存在することを明らかにした。遺伝子解析の結果、このタンパク質は細菌由来の祖先を持つ可能性が示され、微生物間で遺伝子が移動した可能性が指摘されている。氷核形成微生物は雲中での氷結や降水形成に関与する可能性があり、今回の発見は水循環や気候システムにおける微生物の役割の理解を深める重要な知見となる。

特定の菌類が水を凍らせる能力を持つことを発見(Fantastic fungi found with ability to freeze water)
These are both liquid and frozen water droplets. They are at the same temperature, but the frozen droplets contain an ice nucleator. Photo courtesy of Boris Vinatzer.

<関連情報>

細菌起源の、これまで認識されていなかった真菌の氷核タンパク質 A previously unrecognized class of fungal ice-nucleating proteins with bacterial ancestry

Rosemary J. Eufemio, Mariah Rojas, Kaden Shaw, Ingrid de Almeida Ribeiro, […] , and Konrad Meister
Science Advances  Published:11 Mar 2026

Abstract

Ice-nucleating proteins (INpros) catalyze ice formation at high subzero temperatures, with major biological and environmental implications. While bacterial INpros have been structurally characterized, their counterparts in other organisms have remained largely unknown. Here, we identify membrane-independent proteins in fungi of the Mortierellaceae family that promote ice formation with high efficiency. These proteins are predicted to adopt β-solenoid folds and multimerize to form extended ice-binding surfaces, exhibiting mechanistic parallels with bacterial INpros. Structural modeling, phylogenetic analysis, and heterologous gene expression leading to ice nucleation in Escherichia coli and Saccharomyces cerevisiae show that the fungal INpros are encoded by orthologs of the bacterial InaZ gene, which was likely acquired by a fungal ancestor through horizontal gene transfer. The discovery of cell-free fungal INpros provides tools for innovative freezing applications and reveals biophysical constraints on ice nucleation across life.

生物環境工学
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