Archaeal Biology Center, Institute for Advanced Study, Shenzhen University, Shenzhen, 518060, China.
Shenzhen Key Laboratory of Marine Microbiome Engineering, Institute for Advanced Study, Shenzhen University, Shenzhen, 518060, China.
Nat Commun. 2024 Jan 15;15(1):515. doi: 10.1038/s41467-024-44806-1.
The archaeal ancestor of eukaryotes apparently belonged to the phylum Asgardarchaeota, but the ecology and evolution of Asgard archaea are poorly understood. The optimal GDP-binding temperature of a translation elongation factor (EF-1A or EF-Tu) has been previously shown to correlate with the optimal growth temperature of diverse prokaryotes. Here, we reconstruct ancestral EF-1A sequences and experimentally measure the optimal GDP-binding temperature of EF-1A from ancient and extant Asgard archaea, to infer the evolution of optimal growth temperatures in Asgardarchaeota. Our results suggest that the Asgard ancestor of eukaryotes was a moderate thermophile, with an optimal growth temperature around 53 °C. The origin of eukaryotes appears to coincide with a transition from thermophilic to mesophilic lifestyle during the evolution of Asgard archaea.
真核生物的古菌祖先是显然属于 Asgardarchaeota 门,但 Asgard 古菌的生态和进化还知之甚少。之前已经表明,翻译延伸因子(EF-1A 或 EF-Tu)的最佳 GDP 结合温度与各种原核生物的最佳生长温度相关。在这里,我们重建了古老的 EF-1A 序列,并实验测量了来自古代和现存的 Asgard 古菌的 EF-1A 的最佳 GDP 结合温度,以推断 Asgardarchaeota 中最佳生长温度的进化。我们的结果表明,真核生物的 Asgard 祖先是一种中等嗜热菌,最佳生长温度约为 53°C。真核生物的起源似乎与 Asgard 古菌进化过程中从嗜热到中温生活方式的转变同时发生。