Phylogenomics of a new fungal phylum reveals multiple waves of reductive evolution across Holomycota

生物 系统发育树 系统基因组学 单系 克莱德 进化生物学 乳糜菌纲 系统发育学 姐妹团 鞭毛 多细胞生物 子囊菌纲 基因 遗传学
作者
Luis Javier Galindo,Purificación López‐García,Guifré Torruella,Sergey A. Karpov,David Moreira
出处
期刊:Nature Communications [Nature Portfolio]
卷期号:12 (1): 4973-4973 被引量:96
标识
DOI:10.1038/s41467-021-25308-w
摘要

Compared to multicellular fungi and unicellular yeasts, unicellular fungi with free-living flagellated stages (zoospores) remain poorly known and their phylogenetic position is often unresolved. Recently, rRNA gene phylogenetic analyses of two atypical parasitic fungi with amoeboid zoospores and long kinetosomes, the sanchytrids Amoeboradix gromovi and Sanchytrium tribonematis, showed that they formed a monophyletic group without close affinity with known fungal clades. Here, we sequence single-cell genomes for both species to assess their phylogenetic position and evolution. Phylogenomic analyses using different protein datasets and a comprehensive taxon sampling result in an almost fully-resolved fungal tree, with Chytridiomycota as sister to all other fungi, and sanchytrids forming a well-supported, fast-evolving clade sister to Blastocladiomycota. Comparative genomic analyses across fungi and their allies (Holomycota) reveal an atypically reduced metabolic repertoire for sanchytrids. We infer three main independent flagellum losses from the distribution of over 60 flagellum-specific proteins across Holomycota. Based on sanchytrids' phylogenetic position and unique traits, we propose the designation of a novel phylum, Sanchytriomycota. In addition, our results indicate that most of the hyphal morphogenesis gene repertoire of multicellular fungi had already evolved in early holomycotan lineages.

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