Laboratory of Microbiology, Wageningen University & Research, Stippeneng 4, 6708WE, Wageningen, The Netherlands.
Hoekmine BV, Verenigingstraat 36, 3515GJ, Utrecht, The Netherlands.
ISME J. 2023 Nov;17(11):1808-1818. doi: 10.1038/s41396-023-01484-z. Epub 2023 Aug 16.
Members of the candidate phylum Dadabacteria, recently reassigned to the phylum Candidatus Desulfobacterota, are cosmopolitan in the marine environment found both free-living and associated with hosts that are mainly marine sponges. Yet, these microorganisms are poorly characterized, with no cultured representatives and an ambiguous phylogenetic position in the tree of life. Here, we performed genome-centric metagenomics to elucidate their phylogenomic placement and predict the metabolism of the sponge-associated members of this lineage. Rank-based phylogenomics revealed several new species and a novel family (Candidatus Spongomicrobiaceae) within a sponge-specific order, named here Candidatus Nemesobacterales. Metabolic reconstruction suggests that Ca. Nemesobacterales are aerobic heterotrophs, capable of synthesizing most amino acids, vitamins and cofactors and degrading complex carbohydrates. We also report functional divergence between sponge- and seawater-associated metagenome-assembled genomes. Niche-specific adaptations to the sponge holobiont were evident from significantly enriched genes involved in defense mechanisms against foreign DNA and environmental stressors, host-symbiont interactions and secondary metabolite production. Fluorescence in situ hybridization gave a first glimpse of the morphology and lifestyle of a member of Ca. Desulfobacterota. Candidatus Nemesobacterales spp. were found both inside sponge cells centred around sponge nuclei and in the mesohyl of the sponge Geodia barretti. This study sheds light on the enigmatic group Ca. Nemesobacterales and their functional characteristics that reflect a symbiotic lifestyle.
候选门 Dadabacteria 成员,最近被重新归类为候选门脱硫杆菌门,在海洋环境中分布广泛,既可以自由生活,也可以与主要是海洋海绵的宿主相关联。然而,这些微生物的特征描述很差,没有培养的代表,在生命之树中的系统发育位置也不明确。在这里,我们进行了基于基因组的宏基因组学研究,以阐明它们的系统发育位置,并预测该谱系中与海绵相关的成员的代谢。基于等级的系统发育基因组学揭示了几个新物种和一个新的家族(候选海绵杆菌科),属于海绵特异性目,命名为候选奈米细菌目。代谢重建表明,Ca. Nemesobacterales 是需氧异养生物,能够合成大多数氨基酸、维生素和辅因子,并降解复杂的碳水化合物。我们还报告了海绵和海水相关宏基因组组装基因组之间的功能分化。从参与防御外来 DNA 和环境胁迫、宿主共生相互作用和次生代谢产物产生的显著富集基因中,可以明显看出与海绵共生体的特定生态位适应。荧光原位杂交技术首次观察到候选脱硫杆菌门成员的形态和生活方式。Ca. Desulfobacterota 的候选种既存在于海绵细胞核周围的海绵细胞内,也存在于 Geodia barretti 海绵的中胶层内。本研究揭示了候选奈米细菌目的神秘群体及其反映共生生活方式的功能特征。