Geographical and vertical distribution patterns of macroalgae are constrained by abiotic factors such as light, including UVR and temperature. Hence, future global environmental changes could have a significant impact on geographic and vertical distribution patterns, as well as primary productivity. Polar waters are particularly vulnerable to warming but also to ocean acidification due to the increased solubility of CO2 in cold waters. Many studies have been conducted on the growth and photosynthetic performance of macroalgae under manifold stresses, yet the involved molecular processes of acclimation and adaption are still poorly understood. To compare molecular acclimation mechanisms in polar macroalgae, gene expression under abiotic str...
Thalassiosira hyalina and Nitzschia frigida are important members of Arctic pelagic and sympagic (se...
Ocean acidification and warming are affecting polar regions with particular intensity. Rocky shores ...
The unicellular green alga Chlamydomonas sp. ICE-L thrives in polar sea ice, where it tolerates extr...
Geographical and vertical distribution patterns of macroalgae are constrained by abiotic factors suc...
Biological soil crusts (BSCs) are complex communities of autotrophic, heterotrophic, and saprotrophi...
Rapid fluctuation of environmental conditions can impose severe stress upon living organisms. Surviv...
Davison 9418033 The genetic adaptations that enable certain plant species to survive and grow in pol...
Marine macroalgae are important marine costal primary producers and of high importance for ecosystem...
Polar Regions are unique and highly prolific ecosystems characterized by extreme environmental gradi...
Polar Regions are unique and highly prolific ecosystems characterized by extreme environmental gradi...
The current outlook on mitigation of global warming does not appear promising, with figures in the r...
Sea ice algal communities play a very significant role in primary production in the Southern Ocean, ...
Sea ice algal communities play a very significant role in primary production in the Southern Ocean, ...
Marine macroalgae are key organisms in polar coastal ecosystems. Brown macroalgae dominate rocky sh...
Ocean acidification and warming are affecting with special intensity polar regions. The coastal area...
Thalassiosira hyalina and Nitzschia frigida are important members of Arctic pelagic and sympagic (se...
Ocean acidification and warming are affecting polar regions with particular intensity. Rocky shores ...
The unicellular green alga Chlamydomonas sp. ICE-L thrives in polar sea ice, where it tolerates extr...
Geographical and vertical distribution patterns of macroalgae are constrained by abiotic factors suc...
Biological soil crusts (BSCs) are complex communities of autotrophic, heterotrophic, and saprotrophi...
Rapid fluctuation of environmental conditions can impose severe stress upon living organisms. Surviv...
Davison 9418033 The genetic adaptations that enable certain plant species to survive and grow in pol...
Marine macroalgae are important marine costal primary producers and of high importance for ecosystem...
Polar Regions are unique and highly prolific ecosystems characterized by extreme environmental gradi...
Polar Regions are unique and highly prolific ecosystems characterized by extreme environmental gradi...
The current outlook on mitigation of global warming does not appear promising, with figures in the r...
Sea ice algal communities play a very significant role in primary production in the Southern Ocean, ...
Sea ice algal communities play a very significant role in primary production in the Southern Ocean, ...
Marine macroalgae are key organisms in polar coastal ecosystems. Brown macroalgae dominate rocky sh...
Ocean acidification and warming are affecting with special intensity polar regions. The coastal area...
Thalassiosira hyalina and Nitzschia frigida are important members of Arctic pelagic and sympagic (se...
Ocean acidification and warming are affecting polar regions with particular intensity. Rocky shores ...
The unicellular green alga Chlamydomonas sp. ICE-L thrives in polar sea ice, where it tolerates extr...