School of BioSciences, University of Melbourne, Parkville 3010, Australia.
Biological, Earth and Environmental Sciences, The University of New South Wales, Kensington, NSW 2052, Australia.
Gigascience. 2022 Dec 28;12. doi: 10.1093/gigascience/giac127. Epub 2023 Jan 23.
At present, our knowledge on the compartmentalization of coral holobiont microbiomes is highly skewed toward the millimeter-thin coral tissue, leaving the diverse coral skeleton microbiome underexplored. Here, we present a genome-centric view of the skeleton of the reef-building corals Porites lutea and Isopora palifera, through a compendium of ∼400 high-quality bacterial and archaeal metagenome-assembled genomes (MAGs), spanning 34 phyla and 57 classes. Skeletal microbiomes harbored a diverse array of stress response genes, including dimethylsulfoniopropionate synthesis (dsyB) and metabolism (DMSP lyase). Furthermore, skeletal MAGs encoded an average of 22 ± 15 genes in P. lutea and 28 ± 23 in I. palifera with eukaryotic-like motifs thought to be involved in maintaining host association. We provide comprehensive insights into the putative functional role of the skeletal microbiome on key metabolic processes such as nitrogen fixation, dissimilatory and assimilatory nitrate, and sulfate reduction. Our study provides critical genomic resources for a better understanding of the coral skeletal microbiome and its role in holobiont functioning.
目前,我们对珊瑚共生体微生物组的区室化的了解高度偏向于毫米厚的珊瑚组织,而多样化的珊瑚骨骼微生物组则未得到充分探索。在这里,我们通过大约 400 个高质量的细菌和古菌宏基因组组装基因组(MAG)的汇编,呈现了造礁珊瑚 Porites lutea 和 Isopora palifera 的骨骼的基因组中心视角,这些 MAG 涵盖了 34 个门和 57 个纲。骨骼微生物组中存在着各种各样的应激反应基因,包括二甲基巯基丙酸合成(dsyB)和代谢(DMSP 裂解酶)。此外,骨骼 MAG 在 P. lutea 中平均编码了 22 ± 15 个基因,在 I. palifera 中平均编码了 28 ± 23 个基因,这些基因具有被认为与维持宿主关联有关的真核样基序。我们提供了对骨骼微生物组在关键代谢过程(如固氮、异化和同化硝酸盐以及硫酸盐还原)中潜在功能作用的全面见解。我们的研究为更好地理解珊瑚骨骼微生物组及其在共生体功能中的作用提供了重要的基因组资源。