Author: Mélanie Legrand; Sophie Bachellier-Bassi; Keunsook K. Lee; Yogesh Chaudhari; Hélène Tournu; Laurence Arbogast; Hélène Boyer; Murielle Chauvel; Vitor Cabral; Corinne Maufrais; Audrey Nesseir; Irena Maslanka; Emmanuelle Permal; Tristan Rossignol; Louise A. Walker; Ute Zeidler; Sadri Znaidi; Floris Schoeters; Charlotte Majgier; Renaud A. Julien; Laurence Ma; Magali Tichit; Christiane Bouchier; Patrick Van Dijck; Carol A. Munro; Christophe d’Enfert
Title: Generating genomic platforms to study Candida albicans pathogenesis Document date: 2018_2_8
ID: 1vx62ofn_1
Snippet: Over the last decade, there has been an exponential growth in the quantity of available genome sequence data due to the very rapid progress in sequencing technology. In 2004, the genome sequence of the human fungal pathogen Candida albicans was released as Assembly 19 (1). With the challenge of working with a heterozygous diploid organism, new computational methods had to be developed and resulted in the release in 2013 of Assembly 22 , an assemb.....
Document: Over the last decade, there has been an exponential growth in the quantity of available genome sequence data due to the very rapid progress in sequencing technology. In 2004, the genome sequence of the human fungal pathogen Candida albicans was released as Assembly 19 (1). With the challenge of working with a heterozygous diploid organism, new computational methods had to be developed and resulted in the release in 2013 of Assembly 22 , an assembly of a completely phased diploid genome sequence for the standard C.
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