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- W2344896883 endingPage "fov087" @default.
- W2344896883 startingPage "fov087" @default.
- W2344896883 abstract "The opportunistic human fungal pathogen Candida glabrata is second only to C. albicans as the cause of Candida infections and yet is more closely related to Saccharomyces cerevisiae. Recent advances in functional genomics technologies and computational approaches to decipher regulatory networks, and the comparison of these networks among these and other Ascomycete species, have revealed both unique and shared strategies in adaptation to a human commensal/opportunistic pathogen lifestyle and antifungal drug resistance in C. glabrata. Recently, several C. glabrata sister species in the Nakeseomyces clade representing both human associated (commensal) and environmental isolates have had their genomes sequenced and analyzed. This has paved the way for comparative functional genomics studies to characterize the regulatory networks in these species to identify informative patterns of conservation and divergence linked to phenotypic evolution in the Nakaseomyces lineage." @default.
- W2344896883 created "2016-06-24" @default.
- W2344896883 creator A5048267912 @default.
- W2344896883 creator A5082616445 @default.
- W2344896883 date "2015-10-07" @default.
- W2344896883 modified "2023-09-27" @default.
- W2344896883 title "Evolution of regulatory networks inCandida glabrata: learning to live with the human host" @default.
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