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Origins of Life and Evolution of the Biosphere : the Journal of the International Society for the Study of the Origin of Life
|
February 26, 2004
Origin, persistence and biological activity of genetic material in prebiotic habitats
Marco Franchi, Enzo Gallori
Gene
|
February 18, 2005
A surface-mediated origin of the RNA world: biogenic activities of clay-adsorbed RNA molecules
Marco Franchi, Enzo Gallori
Origins of Life and Evolution of the Biosphere : the Journal of the International Society for the Study of the Origin of Life
|
December 1, 2006
Looking for the primordial genetic honeycomb
Enzo Gallori, Elisa Biondi, Sergio Branciamore
Biochimie
|
July 12, 2011
Ribozymes: Flexible molecular devices at work
Giulia Talini, Sergio Branciamore, Enzo Gallori
Origins of Life and Evolution of the Biosphere : the Journal of the International Society for the Study of the Origin of Life
|
September 12, 2003
Cations as mediators of the adsorption of nucleic acids on clay surfaces in prebiotic environments
Marco Franchi, James P Ferris, Enzo Gallori
Research in Microbiology
|
June 23, 2009
Natural and unnatural ribozymes: back to the primordial RNA world
Giulia Talini, Enzo Gallori, Marie-Christine Maurel
Frontiers in Bioscience : a Journal and Virtual Library
|
May 30, 2008
The basal phylogenetic position of Nanoarchaeum equitans (Nanoarchaeota)
Sergio Branciamore, Enzo Gallori, Massimo Di Giulio
Journal of Molecular Evolution
|
October 7, 2009
The origin of life: chemical evolution of a metabolic system in a mineral honeycomb?
Sergio Branciamore, Enzo Gallori, Eörs Szathmáry, et al.
BMC Evolutionary Biology
|
September 15, 2007
Montmorillonite protection of an UV-irradiated hairpin ribozyme: evolution of the RNA world in a mineral environment
Elisa Biondi, Sergio Branciamore, Marie-Christine Maurel, et al.
Bio Systems
|
June 8, 2006
The first lines of divergence in the Bacteria domain were the hyperthermophilic organisms, the Thermotogales and the Aquificales, and not the mesophilic Planctomycetales
Sacha Barion, Marco Franchi, Enzo Gallori, et al.
Page
of 2
Search research articles
Search
Showing results (1-10 of 19) with videos related to
Sort By:
Page
of 2
Origins of Life and Evolution of the Biosphere : the Journal of the International Society for the Study of the Origin of Life
|
February 26, 2004
Origin, persistence and biological activity of genetic material in prebiotic habitats
Marco Franchi, Enzo Gallori
Gene
|
February 18, 2005
A surface-mediated origin of the RNA world: biogenic activities of clay-adsorbed RNA molecules
Marco Franchi, Enzo Gallori
Origins of Life and Evolution of the Biosphere : the Journal of the International Society for the Study of the Origin of Life
|
December 1, 2006
Looking for the primordial genetic honeycomb
Enzo Gallori, Elisa Biondi, Sergio Branciamore
Biochimie
|
July 12, 2011
Ribozymes: Flexible molecular devices at work
Giulia Talini, Sergio Branciamore, Enzo Gallori
Origins of Life and Evolution of the Biosphere : the Journal of the International Society for the Study of the Origin of Life
|
September 12, 2003
Cations as mediators of the adsorption of nucleic acids on clay surfaces in prebiotic environments
Marco Franchi, James P Ferris, Enzo Gallori
Research in Microbiology
|
June 23, 2009
Natural and unnatural ribozymes: back to the primordial RNA world
Giulia Talini, Enzo Gallori, Marie-Christine Maurel
Frontiers in Bioscience : a Journal and Virtual Library
|
May 30, 2008
The basal phylogenetic position of Nanoarchaeum equitans (Nanoarchaeota)
Sergio Branciamore, Enzo Gallori, Massimo Di Giulio
Journal of Molecular Evolution
|
October 7, 2009
The origin of life: chemical evolution of a metabolic system in a mineral honeycomb?
Sergio Branciamore, Enzo Gallori, Eörs Szathmáry, et al.
BMC Evolutionary Biology
|
September 15, 2007
Montmorillonite protection of an UV-irradiated hairpin ribozyme: evolution of the RNA world in a mineral environment
Elisa Biondi, Sergio Branciamore, Marie-Christine Maurel, et al.
Bio Systems
|
June 8, 2006
The first lines of divergence in the Bacteria domain were the hyperthermophilic organisms, the Thermotogales and the Aquificales, and not the mesophilic Planctomycetales
Sacha Barion, Marco Franchi, Enzo Gallori, et al.
Page
of 2