His main research concerns Phylogenetics, Ecology, Gene, Biodiversity and Plankton. As part of the same scientific family, Stéphane Audic usually focuses on Phylogenetics, concentrating on Phylogenetic tree and intersecting with Evolutionary biology and Homologous Sequences. Ecology is closely attributed to Interactome in his research.
His biological study deals with issues like Computational biology, which deal with fields such as cDNA library, Serial analysis of gene expression, Selection, Differentially expressed genes and Gene expression. His Biodiversity course of study focuses on Range and Ribosomal RNA. The study incorporates disciplines such as Abundance, Biotic component, Food chain, Community structure and Primary producers in addition to Plankton.
Stéphane Audic focuses on Genetics, Gene, Genome, Ecology and Phylogenetics. Gene is closely attributed to Computational biology in his work. His research in Genome tackles topics such as Plasmid which are related to areas like Gene prediction.
His work in Ecology tackles topics such as Pyrosequencing which are related to areas like Evolutionary biology and Genetic diversity. His studies in Phylogenetics integrate themes in fields like Taxonomy, Protist and Phylogenetic tree. As a part of the same scientific study, he usually deals with the Biodiversity, concentrating on Range and frequently concerns with Taxonomic rank, Ribosomal RNA, Marine ecosystem and Archaea.
Stéphane Audic mainly focuses on Ecology, Plankton, Phylogenetics, Diatom and Ocean current. His study in the field of Abundance also crosses realms of Pfiesteria piscicida. His Plankton study combines topics in areas such as Biotic component, Range, Biodiversity and Indian ocean.
The various areas that Stéphane Audic examines in his Biodiversity study include Taxonomic rank, Ribosomal RNA, Photic zone and Ribosomal DNA. His work carried out in the field of Diatom brings together such families of science as Pyrosequencing and Dinoflagellate. His study looks at the relationship between Emiliania huxleyi and fields such as Picoplankton, as well as how they intersect with chemical problems.
Stéphane Audic spends much of his time researching Ecology, Plankton, Syndiniales, Ribosomal DNA and Phylogenetics. He incorporates Ecology and Carbon in his research. Carbon is connected with Ocean color, Ecosystem, Marine biology, Deep chlorophyll maximum and Total organic carbon in his research.
Syndiniales is intertwined with Taxonomic rank, Ribosomal RNA, Biodiversity and Range in his study. His Interactome research incorporates themes from Biotic component, Abiotic component, Food chain, Community structure and Primary producers. Much of his study explores Abiotic component relationship to Abundance.
This overview was generated by a machine learning system which analysed the scientist’s body of work. If you have any feedback, you can contact us here.
Phylogeny.fr: robust phylogenetic analysis for the non-specialist
Alexis Dereeper;Valentin Guignon;Guillaume Blanc;Stéphane Audic.
Nucleic Acids Research (2008)
The Significance of Digital Gene Expression Profiles
Stéphane Audic;Jean-Michel Claverie.
Genome Research (1997)
Eukaryotic plankton diversity in the sunlit ocean
Colomban de Vargas;Colomban de Vargas;Stéphane Audic;Stéphane Audic;Nicolas Henry;Nicolas Henry;Johan Decelle;Johan Decelle.
Science (2015)
The 1.2-Megabase Genome Sequence of Mimivirus
Didier Raoult;Stéphane Audic;Catherine Robert;Chantal Abergel.
Science (2004)
The Protist Ribosomal Reference database (PR2): a catalog of unicellular eukaryote Small Sub-Unit rRNA sequences with curated taxonomy
Laure Guillou;Dipankar Bachar;Stéphane Audic;David Bass.
Nucleic Acids Research (2012)
Comparative Genomics of Multidrug Resistance in Acinetobacter baumannii
Pierre-Edouard Fournier;David Vallenet;Valérie Barbe;Stéphane Audic.
PLOS Genetics (2006)
A Giant Virus in Amoebae
Bernard La Scola;Stéphane Audic;Catherine Robert;Liang Jungang.
Science (2003)
BLAST-EXPLORER helps you building datasets for phylogenetic analysis
Alexis Dereeper;Alexis Dereeper;Stephane Audic;Jean-Michel Claverie;Guillaume Blanc.
BMC Evolutionary Biology (2010)
Determinants of community structure in the global plankton interactome
Gipsi Lima-Mendez;Karoline Faust;Nicolas Henry;Johan Decelle.
Science (2015)
Plankton networks driving carbon export in the oligotrophic ocean.
Lionel Guidi;Samuel Chaffron;Lucie Bittner;Damien Eveillard.
Nature (2016)
If you think any of the details on this page are incorrect, let us know.
We appreciate your kind effort to assist us to improve this page, it would be helpful providing us with as much detail as possible in the text box below:
Aix-Marseille University
Kyoto University
Université Paris Cité
University of Paris-Saclay
Université Paris Cité
Aix-Marseille University
Aix-Marseille University
Université Paris Cité
École Normale Supérieure
Université Paris Cité
Harvard University
University of Bologna
Northeast Forestry University
University of Glasgow
Johns Hopkins University
Erasmus University Rotterdam
The University of Texas Southwestern Medical Center
University of Pennsylvania
University of Virginia
Geophysical Fluid Dynamics Laboratory
University of Stirling
University of Chicago
Nanyang Technological University
Stanford University
Harvard University
University of Southern California