海洋性の光合成細菌の窒素固定能力が炭素源の種類で変化~持続可能な物質生産への貢献を期待~

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2025-06-09 理化学研究所,京都大学

理化学研究所と京都大学の共同研究により、海洋性紅色非硫黄光合成細菌が行う窒素固定の効率が、使用する炭素源の種類によって大きく変化することが明らかになりました。有機炭素源(リンゴ酸)を用いた従属栄養条件では、無機炭素源(炭酸水素ナトリウム)よりも細胞の増殖速度が約2倍に上昇し、固定窒素のアミノ酸への取り込み効率も高まりました。これは、炭素供給の差がアミノ酸合成や窒素固定活性を制御することを示しており、紅色細菌を用いた生分解性プラスチックなどの持続可能な物質生産への応用が期待されます。成果は『Scientific Reports』に掲載。

海洋性の光合成細菌の窒素固定能力が炭素源の種類で変化~持続可能な物質生産への貢献を期待~
独立または従属栄養条件における、細胞増殖と窒素固定の関連性

<関連情報>

海洋性紅色光合成細菌Rhodovulum sulfidophilumにおける独立栄養および従属栄養条件下での窒素固定の評価 Evaluation of nitrogen fixation in the marine purple photosynthetic bacterium Rhodovulum sulfidophilum under autotrophic and heterotrophic conditions

Miki Suzuki,Tomokazu Shirai,Shamitha Rao Morey-Yagi,Akihiko Kondo & Keiji Numata
Scientific Reports  Published:26 May 2025
DOI:https://doi.org/10.1038/s41598-025-03605-4

Abstract

Purple nonsulfur photosynthetic bacteria have metabolic pathways for the fixation of both carbon and nitrogen and show great potential as sustainable hosts for the production of materials such as amino acids, carotenoids, and bioplastics. They are predominantly mixotrophs capable of utilizing both organic and inorganic carbon sources for growth. However, most past studies on purple photosynthetic bacteria have focused on nitrogen fixation pathways independent of the extent of carbon fixation. In this study, we analyzed the nitrogen fixation ability of Rhodovulum sulfidophilum, a purple nonsulfur photosynthetic bacterium commonly found in estuaries where organic carbon and sulfur compounds are relatively abundant, by monitoring the uptake and conversion of 15N-labeled N2 gas to amino acids under autotrophic or heterotrophic conditions. Greater growth and 15N uptake were observed in the heterotrophic carbon metabolic state. Regardless of the type of amino acid, the efficiency of 15N uptake was greater under heterotrophic conditions, with a difference of approximately 2.1–2.6-fold observed on the third day of culture. This also corresponded to the growth rates under the different conditions. Therefore, our current findings confirm the nitrogen fixation ability of R. sulfidophilum under both heterotrophic and autotrophic conditions, with the heterotrophic mode favoring greater nitrogen fixation and assimilation.

生物環境工学
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