Faculty of Biology/Chemistry, University of Bremen, Bremen, Germany.
MARUM, Center for Marine Environmental Sciences, University of Bremen, Bremen, Germany.
ISME J. 2021 Mar;15(3):848-861. doi: 10.1038/s41396-020-00818-5. Epub 2020 Nov 4.
Asgard is a recently discovered archaeal superphylum, closely linked to the emergence of eukaryotes. Among Asgard archaea, Lokiarchaeota are abundant in marine sediments, but their in situ activities are largely unknown except for Candidatus 'Prometheoarchaeum syntrophicum'. Here, we tracked the activity of Lokiarchaeota in incubations with Helgoland mud area sediments (North Sea) by stable isotope probing (SIP) with organic polymers, C-labelled inorganic carbon, fermentation intermediates and proteins. Within the active archaea, we detected members of the Lokiarchaeota class Loki-3, which appeared to mixotrophically participate in the degradation of lignin and humic acids while assimilating CO, or heterotrophically used lactate. In contrast, members of the Lokiarchaeota class Loki-2 utilized protein and inorganic carbon, and degraded bacterial biomass formed in incubations. Metagenomic analysis revealed pathways for lactate degradation, and involvement in aromatic compound degradation in Loki-3, while the less globally distributed Loki-2 instead rely on protein degradation. We conclude that Lokiarchaeotal subgroups vary in their metabolic capabilities despite overlaps in their genomic equipment, and suggest that these subgroups occupy different ecologic niches in marine sediments.
古菌超门 Asgard 是最近发现的,与真核生物的出现密切相关。在 Asgard 古菌中,洛基古菌在海洋沉积物中大量存在,但除了“Candidatus Prometheoarchaeum syntrophicum”之外,其原位活动在很大程度上仍是未知的。在这里,我们通过使用有机聚合物、C 标记的无机碳、发酵中间产物和蛋白质的稳定同位素探测(SIP),在与北海赫耳戈兰泥区沉积物的孵育中追踪洛基古菌的活性。在活跃的古菌中,我们检测到 Lokiarchaeota 类 Loki-3 的成员,它们似乎混合营养地参与木质素和腐殖酸的降解,同时同化 CO,或者异养地利用乳酸盐。相比之下,Lokiarchaeota 类 Loki-2 的成员利用蛋白质和无机碳,并降解孵育中形成的细菌生物量。宏基因组分析揭示了乳酸盐降解途径,并参与了 Loki-3 中芳香族化合物的降解,而分布范围较小的 Loki-2 则依赖于蛋白质降解。我们得出结论,尽管洛基古菌亚群的基因组装备存在重叠,但它们的代谢能力存在差异,并表明这些亚群在海洋沉积物中占据不同的生态位。