Georgia Institute of Technology, School of Biological Sciences, Atlanta, GA, 30332, USA.
French Associates Institute for Agriculture and Biotechnology of Drylands, Ben-Gurion University of the Negev, Beer Sheva, Israel.
Nat Commun. 2024 Apr 29;15(1):3607. doi: 10.1038/s41467-024-47646-1.
Heterotrophic activity, primarily driven by sulfate-reducing prokaryotes, has traditionally been linked to nitrogen fixation in the root zone of coastal marine plants, leaving the role of chemolithoautotrophy in this process unexplored. Here, we show that sulfur oxidation coupled to nitrogen fixation is a previously overlooked process providing nitrogen to coastal marine macrophytes. In this study, we recovered 239 metagenome-assembled genomes from a salt marsh dominated by the foundation plant Spartina alterniflora, including diazotrophic sulfate-reducing and sulfur-oxidizing bacteria. Abundant sulfur-oxidizing bacteria encode and highly express genes for carbon fixation (RuBisCO), nitrogen fixation (nifHDK) and sulfur oxidation (oxidative-dsrAB), especially in roots stressed by sulfidic and reduced sediment conditions. Stressed roots exhibited the highest rates of nitrogen fixation and expression level of sulfur oxidation and sulfate reduction genes. Close relatives of marine symbionts from the Candidatus Thiodiazotropha genus contributed ~30% and ~20% of all sulfur-oxidizing dsrA and nitrogen-fixing nifK transcripts in stressed roots, respectively. Based on these findings, we propose that the symbiosis between S. alterniflora and sulfur-oxidizing bacteria is key to ecosystem functioning of coastal salt marshes.
异养活性,主要由硫酸盐还原原核生物驱动,传统上与沿海海洋植物根部的氮固定有关,而这一过程中化能自养的作用仍未得到探索。在这里,我们表明,与氮固定偶联的硫氧化是一个以前被忽视的过程,为沿海海洋大型植物提供氮。在这项研究中,我们从以基础植物互花米草(Spartina alterniflora)为主的盐沼中恢复了 239 个宏基因组组装基因组,其中包括固氮硫酸盐还原菌和硫氧化菌。丰富的硫氧化菌编码并高度表达用于碳固定(RuBisCO)、氮固定(nifHDK)和硫氧化(氧化-dsrAB)的基因,特别是在受到硫化物和还原沉积物条件胁迫的根部。受胁迫的根部表现出最高的氮固定速率和硫氧化和硫酸盐还原基因的表达水平。海洋共生体近缘种的候选硫代氮固定菌(Candidatus Thiodiazotropha)分别贡献了受胁迫根部中约 30%和 20%的所有硫氧化 dsrA 和氮固定 nifK 转录本。基于这些发现,我们提出,互花米草和硫氧化菌之间的共生关系是沿海盐沼生态系统功能的关键。