Biodiversity Research Center, Academia Sinica, Taipei, 115, Taiwan.
Bioinformatics Program, Institute of Information Science, Taiwan International Graduate Program, Academia Sinica, Taipei, 115, Taiwan.
ISME J. 2020 May;14(5):1290-1303. doi: 10.1038/s41396-020-0610-x. Epub 2020 Feb 13.
Dominant coral-associated Endozoicomonas bacteria species are hypothesized to play a role in the coral sulfur cycle by metabolizing dimethylsulfoniopropionate (DMSP) into dimethylsulfide (DMS); however, no sequenced genome to date harbors genes for this process. In this study, we assembled high-quality (>95% complete) draft genomes of strains of the recently added species Endozoicomonas acroporae (Acr-14, Acr-1, and Acr-5) isolated from the coral Acropora sp. and performed a comparative genomic analysis on the genus Endozoicomonas. We identified DMSP CoA-transferase/lyase-a dddD gene homolog in all sequenced genomes of E. acroporae strains-and functionally characterized bacteria capable of metabolizing DMSP into DMS via the DddD cleavage pathway using RT-qPCR and gas chromatography (GC). Furthermore, we demonstrated that E. acroporae strains can use DMSP as a carbon source and have genes arranged in an operon-like manner to link DMSP metabolism to the central carbon cycle. This study confirms the role of Endozoicomonas in the coral sulfur cycle.
优势珊瑚共生内共生单胞菌物种被假设通过将二甲硫基丙酸盐 (DMSP) 代谢为二甲硫 (DMS) 在珊瑚硫循环中发挥作用;然而,迄今为止没有测序的基因组具有该过程的基因。在这项研究中,我们组装了高质量 (>95%完整) 的从珊瑚 Acropora sp. 中分离出的新添加物种内共生单胞菌 (Acr-14、Acr-1 和 Acr-5) 的菌株的草图基因组,并对属内共生单胞菌进行了比较基因组分析。我们在所有测序的 E. acroporae 菌株的基因组中都鉴定出了 DMSP CoA-转移酶/裂解酶-a dddD 基因同源物,并通过 RT-qPCR 和气相色谱 (GC) 使用能够通过 DddD 裂解途径将 DMSP 代谢为 DMS 的细菌进行了功能表征。此外,我们证明了 E. acroporae 菌株可以将 DMSP 用作碳源,并且具有以操纵子样方式排列的基因,将 DMSP 代谢与中心碳循环联系起来。这项研究证实了内共生单胞菌在珊瑚硫循环中的作用。