Exposure to high temperatures affects the photosynthetic processes in marine benthic microalgae by limiting the transport of electrons, thus reducing the ability of the cell to use light. This causes damage to the Photosystem II (PSII) and may lead to photoinhibition. However, the PSII of benthic microalgal communities from Brown Bay, eastern Antarctica, were relatively unaffected by significant changes in temperature. Benthic microalgae exposed to temperatures up to 8C and an irradiance of 450 lmol photons m-2 s-1 did not experience any photosynthetic damage or irreversible photoinhibition. The effective quantum yield (DF/Fm0) at 8C (0.433 ± 0.042) was higher by comparison to cell incubated at -0.1C (0.373 ± 0.015) with simila...
Global warming and ozone depletion, and the resulting increase of ultraviolet radiation (UVR), have ...
Global warming and ozone depletion, and the resulting increase of ultraviolet radiation (UVR), have ...
The natural environment of Antarctic seaweeds is characterized by changing seasonal light condition...
Exposure to high temperatures affects the photosynthetic processes in marine benthic microalgae by ...
Microalgae growing within brine channels (85 psu salinity) of the surface ice layers of Antarctic pa...
In coastal waters, Antarctic rhodophytes are exposed to harsh environmental conditions throughout th...
The environment of Antarctica represents one of the most challenging and harshest ecosystems, charac...
While global climate change in polar regions is expected to cause significant warming, the annual c...
The most dramatic effects of Antarctic climate change are predicted around the Antarctic Peninsula. ...
Temperature and irradiance are the most important factors affecting marine benthic microalgal photos...
Sea ice algal communities play a very significant role in primary production in the Southern Ocean, ...
The environment of Antarctica represents one of the most challenging and harshest ecosystems, charac...
Organisms populating benthic shallow water systems of both polar regions are adapted to a particular...
The biological process of the carbon cycle in the Antarctic Ocean is controlled by the photosyntheti...
The aim of the study was to investigate the capacity of microalgae from the extremely low light habi...
Global warming and ozone depletion, and the resulting increase of ultraviolet radiation (UVR), have ...
Global warming and ozone depletion, and the resulting increase of ultraviolet radiation (UVR), have ...
The natural environment of Antarctic seaweeds is characterized by changing seasonal light condition...
Exposure to high temperatures affects the photosynthetic processes in marine benthic microalgae by ...
Microalgae growing within brine channels (85 psu salinity) of the surface ice layers of Antarctic pa...
In coastal waters, Antarctic rhodophytes are exposed to harsh environmental conditions throughout th...
The environment of Antarctica represents one of the most challenging and harshest ecosystems, charac...
While global climate change in polar regions is expected to cause significant warming, the annual c...
The most dramatic effects of Antarctic climate change are predicted around the Antarctic Peninsula. ...
Temperature and irradiance are the most important factors affecting marine benthic microalgal photos...
Sea ice algal communities play a very significant role in primary production in the Southern Ocean, ...
The environment of Antarctica represents one of the most challenging and harshest ecosystems, charac...
Organisms populating benthic shallow water systems of both polar regions are adapted to a particular...
The biological process of the carbon cycle in the Antarctic Ocean is controlled by the photosyntheti...
The aim of the study was to investigate the capacity of microalgae from the extremely low light habi...
Global warming and ozone depletion, and the resulting increase of ultraviolet radiation (UVR), have ...
Global warming and ozone depletion, and the resulting increase of ultraviolet radiation (UVR), have ...
The natural environment of Antarctic seaweeds is characterized by changing seasonal light condition...