Correction: Genome-Wide Reprogramming of Transcript Architecture by Temperature Specifies the Developmental States of the Human Pathogen Histoplasma
Authors:
Sarah A. Gilmore; Mark Voorhies; Dana Gebhart; Anita Sil
Published in the journal:
Correction: Genome-Wide Reprogramming of Transcript Architecture by Temperature Specifies the Developmental States of the Human Pathogen Histoplasma. PLoS Genet 17(4): e1009509. doi:10.1371/journal.pgen.1009509
Category:
Correction
doi:
https://doi.org/10.1371/journal.pgen.1009509
The strain G184AR is incorrectly reported as G186AR throughout the paper. The authors have provided corrected versions of Table 1, Figs 1 and 2, and Supporting Information files S1, S3–S6, S9, and S10 Figs that use the correct strain name G184AR.
Supporting information
S1 Fig [red]
assembled transcripts are longer in length than the predicted transcript models.
S3 Fig [eps]
Novel transcripts exhibit a bias towards small CDS regions.
S4 Fig [red]
Novel transcripts are expressed at low levels.
S5 Fig [a]
exhibits evolutionarily conserved yeast and hyphal transcript expression patterns.
S6 Fig [eps]
Yeast cells express many transcripts encoding small, putative secreted proteins.
S9 Fig [a]
A subset of transcripts exhibit differential sizes of transcript leader regions in yeast and hyphae.
S10 Fig [a]
Transcript leader regions are more commonly extended in yeast cells.
Zdroje
1. Gilmore SA, Voorhies M, Gebhart D, Sil A (2015) Genome-Wide Reprogramming of Transcript Architecture by Temperature Specifies the Developmental States of the Human Pathogen Histoplasma. PLoS Genet 11(7): e1005395. doi: 10.1371/journal.pgen.1005395 26177267
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