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Analysis of the genome and transcriptome of Cryptococcus neoformans var. grubii reveals complex RNA expression and microevolution leading to virulence attenuation.

dc.contributor.author Janbon, G
dc.contributor.author Ormerod, KL
dc.contributor.author Paulet, D
dc.contributor.author Byrnes, EJ
dc.contributor.author Yadav, V
dc.contributor.author Chatterjee, G
dc.contributor.author Mullapudi, N
dc.contributor.author Hon, C
dc.contributor.author Billmyre, RB
dc.contributor.author Brunel, F
dc.contributor.author Bahn, Y
dc.contributor.author Chen, W
dc.contributor.author Chen, Y
dc.contributor.author Chow, EWL
dc.contributor.author Coppée, J
dc.contributor.author Floyd-Averette, A
dc.contributor.author Gaillardin, C
dc.contributor.author Gerik, KJ
dc.contributor.author Goldberg, J
dc.contributor.author Gonzalez-Hilarion, S
dc.contributor.author Gujja, S
dc.contributor.author Hamlin, JL
dc.contributor.author Hsueh, Y
dc.contributor.author Ianiri, G
dc.contributor.author Jones, S
dc.contributor.author Kodira, CD
dc.contributor.author Kozubowski, L
dc.contributor.author Lam, W
dc.contributor.author Marra, M
dc.contributor.author Mesner, LD
dc.contributor.author Mieczkowski, PA
dc.contributor.author Moyrand, F
dc.contributor.author Nielsen, K
dc.contributor.author Proux, C
dc.contributor.author Rossignol, T
dc.contributor.author Schein, JE
dc.contributor.author Sun, S
dc.contributor.author Wollschlaeger, C
dc.contributor.author Wood, IA
dc.contributor.author Zeng, Q
dc.contributor.author Neuvéglise, C
dc.contributor.author Newlon, CS
dc.contributor.author Perfect, JR
dc.contributor.author Lodge, JK
dc.contributor.author Idnurm, A
dc.contributor.author Stajich, JE
dc.contributor.author Kronstad, JW
dc.contributor.author Sanyal, K
dc.contributor.author Heitman, J
dc.contributor.author Fraser, JA
dc.contributor.author Cuomo, CA
dc.contributor.author Dietrich, FS
dc.coverage.spatial United States
dc.date.accessioned 2014-04-21T17:21:55Z
dc.date.issued 2014-04
dc.identifier http://www.ncbi.nlm.nih.gov/pubmed/24743168
dc.identifier PGENETICS-D-13-02581
dc.identifier.uri https://hdl.handle.net/10161/8468
dc.description.abstract Cryptococcus neoformans is a pathogenic basidiomycetous yeast responsible for more than 600,000 deaths each year. It occurs as two serotypes (A and D) representing two varieties (i.e. grubii and neoformans, respectively). Here, we sequenced the genome and performed an RNA-Seq-based analysis of the C. neoformans var. grubii transcriptome structure. We determined the chromosomal locations, analyzed the sequence/structural features of the centromeres, and identified origins of replication. The genome was annotated based on automated and manual curation. More than 40,000 introns populating more than 99% of the expressed genes were identified. Although most of these introns are located in the coding DNA sequences (CDS), over 2,000 introns in the untranslated regions (UTRs) were also identified. Poly(A)-containing reads were employed to locate the polyadenylation sites of more than 80% of the genes. Examination of the sequences around these sites revealed a new poly(A)-site-associated motif (AUGHAH). In addition, 1,197 miscRNAs were identified. These miscRNAs can be spliced and/or polyadenylated, but do not appear to have obvious coding capacities. Finally, this genome sequence enabled a comparative analysis of strain H99 variants obtained after laboratory passage. The spectrum of mutations identified provides insights into the genetics underlying the micro-evolution of a laboratory strain, and identifies mutations involved in stress responses, mating efficiency, and virulence.
dc.language eng
dc.publisher Public Library of Science
dc.relation.ispartof PLoS Genet
dc.relation.isversionof 10.1371/journal.pgen.1004261
dc.subject Chromosomes, Fungal
dc.subject Cryptococcus neoformans
dc.subject DNA, Fungal
dc.subject Genome, Fungal
dc.subject Introns
dc.subject RNA, Fungal
dc.subject Transcriptome
dc.subject Virulence
dc.title Analysis of the genome and transcriptome of Cryptococcus neoformans var. grubii reveals complex RNA expression and microevolution leading to virulence attenuation.
dc.type Journal article
duke.contributor.id Yadav, V|0911411
duke.contributor.id Perfect, JR|0113110
duke.contributor.id Lodge, JK|1194915
duke.contributor.id Heitman, J|0113253
duke.contributor.id Dietrich, FS|0260704
pubs.author-url http://www.ncbi.nlm.nih.gov/pubmed/24743168
pubs.begin-page e1004261
pubs.issue 4
pubs.organisational-group Basic Science Departments
pubs.organisational-group Clinical Science Departments
pubs.organisational-group Duke
pubs.organisational-group Duke Cancer Institute
pubs.organisational-group Institutes and Centers
pubs.organisational-group Medicine
pubs.organisational-group Medicine, Infectious Diseases
pubs.organisational-group Molecular Genetics and Microbiology
pubs.organisational-group Pharmacology & Cancer Biology
pubs.organisational-group School of Medicine
pubs.publication-status Published online
pubs.volume 10
dc.identifier.eissn 1553-7404
duke.contributor.orcid Yadav, V|0000-0003-2650-9035
duke.contributor.orcid Perfect, JR|0000-0002-6606-9460|0000-0003-3465-5518
duke.contributor.orcid Lodge, JK|0000-0002-2526-1210
duke.contributor.orcid Heitman, J|0000-0001-6369-5995


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