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11篇 您的检索式:作者名="Joseph Heitman"
    题名 作者 年代 出处 被引量
1Cyclophilin A Is Localized to the Nucleus and Controls Meioais in Saccharomyces cerevisiae显示文摘Miguel Are'valo-Rodri'guez Joseph Heitman 2005Eukaryotic Cell2005,4,1:1
2Calcineurin is required for Candida albicans to survive calcium stress in serum 显示文摘Jill R Blankenship Joseph Heitman 2005Infect Immun2005,73,9:1
3Cyclophilin B Escorts the Hepatitis C Virus RNA Polymerase: A Viral Achilles Heel?显示文摘Joseph Heitman Bryan R. Cullen 2005Molecular Cell2005,,2:1
4Light controls growth and development via a conserved pathway in the fungal kingdom显示文摘Alexander Idnurm Joseph Heitman 2005PLoS Biology2005,3,4:1
5Light controls growth and development via a conserved pathway in the fungal kingdom显示文摘Alexander Idnurm Joseph Heitman 2005PLoS Biol2005,3,4:1
6Molecular cloning and charac- terization of Aspergillus nidulans cyclophilin B显示文摘Joseph J D Heitman J Means A R 1999Fungal Genet Bi- ol1999,27,1:1
7Molecular cloning and characterization of Aspergillus nidulans cyclophilin B显示文摘Joseph JD Heitman J and Means AR 1999Fungal Genet Biol1999,27,1:1
8Antifungal attributes of immunosuppressive agents:new paradigms in management and elucidating the pathophysiologic basis of opportunistic mycoses in organ transplant recipients显示文摘Singh Nina Heitman Joseph 2004Transplantation2004,77,6:1
9Hsp90 Orchestrates Temperature-Dependent Candida albicans Morphogenesis via Ras1-PKA Signaling显示文摘Rebecca S. Shapiro Priya Uppuluri Aimee K. Zaas Cathy Collins Heather Senn John R. Perfect Joseph Heitman Leah E. Cowen 2009Current Biology2009,,:1
10The evolving species concepts used for yeasts:from phenotypes and genomes to speciation networks显示文摘Here we review how evolving species concepts have been applied to understand yeast diversity.Initially,a phenotypic species concept was utilized taking into consideration morphological aspects of colonies and cells,and growth profiles.Later the biological species concept was added,which applied data from mating experiments.Biophysical measurements of DNA similarity between isolates were an early measure that became more broadly applied with the advent of sequencing technology,leading to a sequence-based species concept using comparisons of parts of the ribosomal DNA.At present phylogenetic species concepts that employ sequence data of rDNA and other genes are universally applied in fungal taxonomy,including yeasts,because various studies revealed a relatively good correlation between the biological species concept and sequence divergence.The application of genome information is becoming increasingly common,and we strongly recommend the use of complete,rather than draft genomes to improve our understanding of species and their genome and genetic dynamics.Complete genomes allow in-depth comparisons on the evolvability of genomes and,consequently,of the species to which they belong.Hybridization seems a relatively common phenomenon and has been observed in all major fungal lineages that contain yeasts.Note that hybrids may greatly differ in their post-hybridization development.Future in-depth studies,initially using some model species or complexes may shift the traditional species concept as isolated clusters of genetically compatible isolates to a cohesive speciation network in which such clusters are interconnected by genetic processes,such as hybridization.Teun Boekhout M.Catherine Aime Dominik Begerow Toni Gabaldón Joseph Heitman Martin Kemler Kantarawee Khayhan Marc-AndréLachance Edward J.Louis Sheng Sun Duong Vu Andrey Yurkov 2021Fungal Diversity2021,,4:0
11Correction to:The evolving species concepts used for yeasts:from phenotypes and genomes to speciation networks显示文摘The name of the second author was incorrectly captured in the initial online publication,and due to an error at the proofs stage,several proof corrections had been left undone.The original online article has been corrected.Teun Boekhout M.Catherine Aime Dominik Begerow Toni Gabaldón Joseph Heitman Martin Kemler Kantarawee Khayhan Marc-AndréLachance Edward J.Louis Sheng Sun Duong Vu Andrey Yurkov 2021Fungal Diversity2021,,4:0
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