化学合成独立栄養細菌が持つCO₂固定経路の有無をゲノムから高精度に予測するツール「AutoFixMark」を開発

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2026-02-12 国立遺伝学研究所

森研究室・ゲノム多様性研究室らは、化学合成独立栄養細菌のCO₂固定経路の有無をゲノム配列から高精度に予測するツール「AutoFixMark」を開発した(Scientific Data)。既知7種のCO₂固定経路(CBB回路など)について特異的マーカー遺伝子を定義し、347株の参照ゲノムと経路情報を整備。従来ツールでは困難だった多様な経路判定を改善し、培養困難な微生物を含むメタゲノムやシングルセル解析にも適用可能とした。炭素循環の理解深化やCO₂資源化微生物の探索など、脱炭素社会に向けた応用が期待される。

化学合成独立栄養細菌が持つCO₂固定経路の有無をゲノムから高精度に予測するツール「AutoFixMark」を開発
AutoFixMarkにおけるCO2固定経路のマーカー酵素の定義方法

<関連情報>

CO₂固定経路予測のための化学合成独立栄養菌ゲノムとマーカー遺伝子のキュレーションリソース A curated resource of chemolithoautotrophic genomes and marker genes for CO₂ fixation pathway prediction

Shuichi Kawashima,Yoko Okabeppu,Seiha Miyazawa,Natsuko Ichikawa,Hikaru Nagazumi,Yutaka Nishihara,Takeru Nakazato,Susumu Goto,Ken Kurokawa,Masaharu Ishii & Hiroshi Mori
Scientific Data  Published:11 February 2026
DOI:https://doi.org/10.1038/s41597-026-06655-z

Abstract

Autotrophic CO₂ fixation is a fundamental metabolic process that enables microorganisms to inhabit carbon-limited environments. Multiple pathways mediate this process, with variants distributed across diverse taxa and some genes shared among pathways, making their identification from genomic data challenging. Here, we present a curated resource comprising pathway-specific KEGG Orthology marker genes and a lightweight, rule-based tool AutoFixMark for predicting the presence of seven known CO₂ fixation pathways in microbial genomes. To support marker gene identification and benchmarking, we compiled two reference datasets: (i) 347 manually curated chemolithoautotrophic genomes from 16 phyla, and (ii) a set of 15 well-characterized chemolithoautotrophic genomes used for defining pathway-specific marker genes. Using these marker genes, we developed AutoFixMark and evaluated its performance against two existing tools, METABOLIC and gapseq. Benchmarking results show that AutoFixMark achieves high precision and recall, particularly for pathways that are underrepresented in current tools. All curated gene sets, prediction rules, the AutoFixMark program, and benchmark datasets are publicly available, providing valuable resources for assessing autotrophic carbon fixation potential in microbial genomes.

細胞遺伝子工学
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