Amoeba predation of Cryptococcus: A quantitative and population genomic evaluation of the accidental pathogen hypothesis
Thomas J. C. Sauters(Duke University), Paul M. Magwene(Duke University), Debra Murray(Duke University), Joseph Heitman(Duke University), Robin C. May(University of Birmingham), Sheng Sun(Duke University), Cullen Roth(Los Alamos National Laboratory), Anna Floyd Averette(Duke Medical Center), Chinaemerem U. Onyishi(National Institute of Allergy and Infectious Diseases)
Cited by 15
Related Papers
The Paleozoic Origin of Enzymatic Lignin Decomposition Reconstructed from 31 Fungal Genomes
|Science|2012|1.8k
The Case for Adopting the “Species Complex” Nomenclature for the Etiologic Agents of Cryptococcosis
|mSphere|2017|413
Analysis of the Genome and Transcriptome of Cryptococcus neoformans var. grubii Reveals Complex RNA Expression and Microevolution Leading to Virulence Attenuation
|PLoS Genetics|2014|410
Sex in fungi: molecular determination and evolutionary implications.
|Unknown|2007|287