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Continental Drift and Speciation of the Cryptococcus neoformans and Cryptococcus gattii Species Complexes
Author(s) -
Arturo Casadevall,
Joudeh B. Freij,
Christopher Hann-Soden,
John W. Taylor
Publication year - 2017
Publication title -
msphere
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.749
H-Index - 39
ISSN - 2379-5042
DOI - 10.1128/msphere.00103-17
Subject(s) - cryptococcus neoformans , cryptococcus gattii , biology , molecular clock , cryptococcus , supercontinent , continental drift , genetic algorithm , species complex , evolutionary biology , phylogenetics , ecology , phylogenetic tree , paleontology , genetics , gene , tectonics , craton
Genomic analysis has placed the origins of two human-pathogenic fungi, the Cryptococcus gattii species complex and the Cryptococcus neoformans species complex, in South America and Africa, respectively. Molecular clock calculations suggest that the two species separated ~80 to 100 million years ago. This time closely approximates the breakup of the supercontinent Pangea, which gave rise to South America and Africa. On the basis of the geographic distribution of these two species complexes and the coincidence of the evolutionary divergence and Pangea breakup times, we propose that a spatial separation caused by continental drift resulted in the emergence of the C. gattii and C. neoformans species complexes from a Pangean ancestor. We note that, despite the spatial and temporal separation that occurred approximately 100 million years ago, these two species complexes are morphologically similar, share virulence factors, and cause very similar diseases. Continuation of these phenotypic characteristics despite ancient separation suggests the maintenance of similar selection pressures throughout geologic ages.

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