Ametrano Claudio G, Lumbsch H Thorsten, Di Stefano Isabel, Sangvichien Ek, Muggia Lucia, Grewe Felix
Grainger Bioinformatics Center and Negaunee Integrative Research Center, Science and Education Field Museum of Natural History Chicago Illinois USA.
Department of Biology Faculty of Science Ramkhamhaeng University Bangkok Thailand.
Ecol Evol. 2022 Jan 11;12(1):e8471. doi: 10.1002/ece3.8471. eCollection 2022 Jan.
The Red Queen dynamic is often brought into play for antagonistic relationships. However, the coevolutionary effects of mutualistic interactions, which predict slower evolution for interacting organisms (Red King), have been investigated to a lesser extent. Lichens are a stable, mutualistic relationship of fungi and cyanobacteria and/or algae, which originated several times independently during the evolution of fungi. Therefore, they represent a suitable system to investigate the coevolutionary effect of mutualism on the fungal genome. We measured substitution rates and selective pressure of about 2000 protein-coding genes (plus the rDNA region) in two different classes of Ascomycota, each consisting of closely related lineages of lichenized and non-lichenized fungi. Our results show that independent lichenized clades are characterized by significantly slower rates for both synonymous and non-synonymous substitutions. We hypothesize that this evolutionary pattern is connected to the lichen life cycle (longer generation time of lichenized fungi) rather than a result of different selection strengths, which is described as the main driver for the Red Kind dynamic. This first empirical evidence of slower evolution in lichens provides an important insight on how biotic cooperative interactions are able to shape the evolution of symbiotic organisms.
红皇后动态通常在对抗关系中发挥作用。然而,互利共生相互作用的协同进化效应,即预测相互作用的生物体进化较慢(红国王效应),在较小程度上得到了研究。地衣是真菌与蓝细菌和/或藻类之间稳定的互利共生关系,在真菌进化过程中多次独立起源。因此,它们代表了一个合适的系统来研究共生对真菌基因组的协同进化效应。我们测量了子囊菌两个不同类别的约2000个蛋白质编码基因(加上rDNA区域)的替代率和选择压力,每个类别都由地衣化和非地衣化真菌的密切相关谱系组成。我们的结果表明,独立的地衣化分支的同义替换和非同义替换率均显著较慢。我们假设这种进化模式与地衣生命周期(地衣化真菌的世代时间较长)有关,而不是不同选择强度的结果,不同选择强度被描述为红国王动态的主要驱动因素。地衣进化较慢的这一首个实证证据,为生物合作相互作用如何塑造共生生物体的进化提供了重要见解。