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Megaphylogeny resolves global patterns of mushroom evolution

伞菌纲 生物 蘑菇 适应性辐射 克莱德 系统发育学 谱系(遗传) 生态学 生态位 分解者 进化生物学 植物 生态系统 擔子菌門 栖息地 基因 生物化学
作者
Torda Varga,Krisztina Krizsán,Csenge Földi,Bálint Dima,Marisol Sánchez‐García,Santiago Sánchez‐Ramírez,Gergely J. Szöllősi,János Gergö Szarkándi,Viktor Papp,László Albert,William Andreopoulos,Claudio Angelini,Vladimír Antonín,Kerrie Barry,Neale L. Bougher,Peter Buchanan,Bart Buyck,Viktória Bense,Pam Catcheside,Mansi Chovatia,Jerry Cooper,Wolfgang Dämon,Dennis E. Desjardin,Péter Finy,József Geml,Sajeet Haridas,Karen W. Hughes,Alfredo Justo,Dariusz Karasiński,Ivona Kautmanová,Brigitta Kiss,Sándor Kocsubé́,Heikki Kotiranta,Kurt LaButti,Bernardo E. Lechner,Kare Liimatainen,Anna Lipzen,Zoltán Lukács,Sirma Mihaltcheva,Louis N. Morgado,Tuula Niskanen,Machiel E. Noordeloos,Robin A. Ohm,Beatriz Ortiz-Santana,Clark L. Ovrebo,Nikolett Rácz,Robert Riley,Anton Savchenko,A. G. Shiryaev,Karl Soop,Viacheslav Spirin,Csilla Szebenyi,Michal Tomšovský,Rodham E. Tulloss,Jessie K. Uehling,Igor V. Grigoriev,Csaba Vágvölgyi,Tamás Papp,Francis Martin,Otto Miettinen,David S. Hibbett,László G. Nagy
出处
期刊:Nature Ecology and Evolution [Springer Nature]
卷期号:3 (4): 668-678 被引量:250
标识
DOI:10.1038/s41559-019-0834-1
摘要

Abstract Mushroom-forming fungi (Agaricomycetes) have the greatest morphological diversity and complexity of any group of fungi. They have radiated into most niches and fulfil diverse roles in the ecosystem, including wood decomposers, pathogens or mycorrhizal mutualists. Despite the importance of mushroom-forming fungi, large-scale patterns of their evolutionary history are poorly known, in part due to the lack of a comprehensive and dated molecular phylogeny. Here, using multigene and genome-based data, we assemble a 5,284-species phylogenetic tree and infer ages and broad patterns of speciation/extinction and morphological innovation in mushroom-forming fungi. Agaricomycetes started a rapid class-wide radiation in the Jurassic, coinciding with the spread of (sub)tropical coniferous forests and a warming climate. A possible mass extinction, several clade-specific adaptive radiations and morphological diversification of fruiting bodies followed during the Cretaceous and the Paleogene, convergently giving rise to the classic toadstool morphology, with a cap, stalk and gills (pileate-stipitate morphology). This morphology is associated with increased rates of lineage diversification, suggesting it represents a key innovation in the evolution of mushroom-forming fungi. The increase in mushroom diversity started during the Mesozoic-Cenozoic radiation event, an era of humid climate when terrestrial communities dominated by gymnosperms and reptiles were also expanding.

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