Genome analysis of three Pneumocystis species reveals adaptation mechanisms to life exclusively in mammalian hosts

三种肺孢子虫的基因组分析揭示了其仅在哺乳动物宿主中生存的适应机制

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作者:Liang Ma, Zehua Chen, Da Wei Huang, Geetha Kutty, Mayumi Ishihara, Honghui Wang, Amr Abouelleil, Lisa Bishop, Emma Davey, Rebecca Deng, Xilong Deng, Lin Fan, Giovanna Fantoni, Michael Fitzgerald, Emile Gogineni, Jonathan M Goldberg, Grace Handley, Xiaojun Hu, Charles Huber, Xiaoli Jiao, Kristine Jon

Abstract

Pneumocystis jirovecii is a major cause of life-threatening pneumonia in immunosuppressed patients including transplant recipients and those with HIV/AIDS, yet surprisingly little is known about the biology of this fungal pathogen. Here we report near complete genome assemblies for three Pneumocystis species that infect humans, rats and mice. Pneumocystis genomes are highly compact relative to other fungi, with substantial reductions of ribosomal RNA genes, transporters, transcription factors and many metabolic pathways, but contain expansions of surface proteins, especially a unique and complex surface glycoprotein superfamily, as well as proteases and RNA processing proteins. Unexpectedly, the key fungal cell wall components chitin and outer chain N-mannans are absent, based on genome content and experimental validation. Our findings suggest that Pneumocystis has developed unique mechanisms of adaptation to life exclusively in mammalian hosts, including dependence on the lungs for gas and nutrients and highly efficient strategies to escape both host innate and acquired immune defenses.

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