The Ashbya gossypii Genome as a Tool for Mapping the Ancient Saccharomyces cerevisiae Genome
暂无分享,去创建一个
P. Philippsen | S. Steiner | F. Dietrich | S. Brachat | R. Wing | A. Lerch | R. Pöhlmann | Sylvia Voegeli | K. Gates | T. Gaffney | C. Mohr | Philippe P Luedi | S. Choi | A. Flavier | Sangdun Choi | Thomas D. Gaffney | Rainer Pöhlmann | Sophie Brachat | Anita Lerch | Christine Mohr | Albert Flavier
[1] P. Philippsen,et al. AgTHR4, a new selection marker for transformation of the filamentous fungusAshbya gossypii, maps in a four-gene cluster that is conserved betweenA. gossypii andSaccharomyces cerevisiae , 1996, Molecular and General Genetics MGG.
[2] Peter Philippsen,et al. Maximal polar growth potential depends on the polarisome component AgSpa2 in the filamentous fungus Ashbya gossypii. , 2003, Molecular biology of the cell.
[3] E. Mauceli,et al. The genome sequence of the filamentous fungus Neurospora crassa , 2003, Nature.
[4] S. Oliver,et al. Engineering evolution to study speciation in yeasts , 2003, Nature.
[5] B. Barrell,et al. The genome sequence of Schizosaccharomyces pombe , 2002, Nature.
[6] P. Philippsen,et al. Cytoplasmic dynein is required to oppose the force that moves nuclei towards the hyphal tip in the filamentous ascomycete Ashbya gossypii. , 2001, Journal of cell science.
[7] P. Philippsen,et al. A PAK-like protein kinase is required for maturation of young hyphae and septation in the filamentous ascomycete Ashbya gossypii. , 2000, Journal of cell science.
[8] S. Oliver,et al. Chromosomal evolution in Saccharomyces , 2000, Nature.
[9] J. Revuelta,et al. Three biotechnical processes using Ashbya gossypii, Candida famata, or Bacillus subtilis compete with chemical riboflavin production , 2000, Applied Microbiology and Biotechnology.
[10] P. Philippsen,et al. PCR-based gene targeting in the filamentous fungus Ashbya gossypii. , 2000, Gene.
[11] P. Philippsen,et al. Compact organization of rRNA genes in the filamentous fungus Ashbya gossypii , 1999, Current Genetics.
[12] K. H. Wolfe,et al. Molecular evidence for an ancient duplication of the entire yeast genome , 1997, Nature.
[13] A. C. Jiménez,et al. The nucleotide sequence of Saccharomyces cerevisiae chromosome XIV and its evolutionary implications. , 1997, Nature.
[14] B. Barrell,et al. Life with 6000 Genes , 1996, Science.
[15] S. Bell,et al. The multidomain structure of Orc1 p reveals similarity to regulators of DNA replication and transcriptional silencing , 1995, Cell.
[16] P. Philippsen,et al. Replicative transformation of the filamentous fungus Ashbya gossypii with plasmids containing Saccharomyces cerevisiae ARS elements. , 1991, Gene.