AbstractThe microalga Dunaliella viridis has the ability to adapt to a variety of environmental stresses including osmotic and thermal shocks, UV irradiation and nitrogen starvation. Lacking a rigid cell wall, Dunaliella provides an excellent model to study stress signaling in eukaryotic unicellular organisms. When exposed to hyperosmotic stress, UV irradiation or high temperature, a 57-kDa protein is recognized by antibodies specific to mammalian p38, to its yeast homologue Hog1, and to the phospho-p38 MAP kinase motif. This 57-kDa protein appears to be both up-regulated and phosphorylated. Three other proteins (50, 45, 43 kDa) were transiently phosphorylated under stress conditions as detected with an antibody specific to the mammalian ph...
Plants have evolved with complex signaling circuits that operate under multiple conditions and gover...
Plant growth is severely affected by hyper-osmotic salt conditions. Although a number of salt-induce...
Eukaryotic microalgae are highly suitable biological indicators of environmental changes because th...
AbstractThe microalga Dunaliella viridis has the ability to adapt to a variety of environmental stre...
The green unicellular microalga Dunaliella viridis has the ability to cope with a wide variety of en...
The eukaryotic green microalga Dunaliella viridis has shown an outstanding capacity to face a broad ...
Mitogen-activated protein kinases (MAPKs) are a group of cytoplasmic phosphoproteins that constitute...
AbstractFive Ca2+-independent protein kinases were rapidly activated by hypoosmotic stress, moderate...
AbstractTwo protein kinases displaying mitogen-activated protein kinase (MAPK) properties are activa...
Abstract Microalgae have great potential for the production of biofuels due to the ability of the or...
Palmella stage is critical for some unicellular algae to survive in extreme environments. The haloto...
AbstractThe Arabidopsis thaliana ARAKIN (ATMEKK1) gene shows strong homology to members of the (MAP)...
AbstractPlants are continuously exposed to all kinds of water stress such as drought and salinity. I...
AbstractThe Arabidopsis mitogen-activated protein kinase (MAPK) kinase 2 (MKK2) and the downstream M...
Life in high salinity environments poses challenges to cells in a variety of ways: maintenance of io...
Plants have evolved with complex signaling circuits that operate under multiple conditions and gover...
Plant growth is severely affected by hyper-osmotic salt conditions. Although a number of salt-induce...
Eukaryotic microalgae are highly suitable biological indicators of environmental changes because th...
AbstractThe microalga Dunaliella viridis has the ability to adapt to a variety of environmental stre...
The green unicellular microalga Dunaliella viridis has the ability to cope with a wide variety of en...
The eukaryotic green microalga Dunaliella viridis has shown an outstanding capacity to face a broad ...
Mitogen-activated protein kinases (MAPKs) are a group of cytoplasmic phosphoproteins that constitute...
AbstractFive Ca2+-independent protein kinases were rapidly activated by hypoosmotic stress, moderate...
AbstractTwo protein kinases displaying mitogen-activated protein kinase (MAPK) properties are activa...
Abstract Microalgae have great potential for the production of biofuels due to the ability of the or...
Palmella stage is critical for some unicellular algae to survive in extreme environments. The haloto...
AbstractThe Arabidopsis thaliana ARAKIN (ATMEKK1) gene shows strong homology to members of the (MAP)...
AbstractPlants are continuously exposed to all kinds of water stress such as drought and salinity. I...
AbstractThe Arabidopsis mitogen-activated protein kinase (MAPK) kinase 2 (MKK2) and the downstream M...
Life in high salinity environments poses challenges to cells in a variety of ways: maintenance of io...
Plants have evolved with complex signaling circuits that operate under multiple conditions and gover...
Plant growth is severely affected by hyper-osmotic salt conditions. Although a number of salt-induce...
Eukaryotic microalgae are highly suitable biological indicators of environmental changes because th...