© Copyright © 2020 Perera-Castro, Waterman, Turnbull, Ashcroft, McKinley, Watling, Bramley-Alves, Casanova-Katny, Zuniga, Flexas and Robinson. The terrestrial flora of Antarctica’s frozen continent is restricted to sparse ice-free areas and dominated by lichens and bryophytes. These plants frequently battle sub-zero temperatures, extreme winds and reduced water availability; all influencing their ability to survive and grow. Antarctic mosses, however, can have canopy temperatures well above air temperature. At midday, canopy temperatures can exceed 15°C, depending on moss turf water content. In this study, the optimum temperature of photosynthesis was determined for six Antarctic moss species: Bryum pseudotriquetrum, Ceratodon purpureus, Ch...
Although positive effects on growth and reproduction of Antarctic vascular plants have been reported...
Global warming is strongly affecting the maritime Antarctica climate and the consequent melting of p...
Photosynthetic activity pattern of Bryum sp. was monitored for 28days using a chlorophyll a fluoresc...
© Copyright © 2020 Perera-Castro, Waterman, Turnbull, Ashcroft, McKinley, Watling, Bramley-Alves, Ca...
The terrestrial flora of Antarctica’s frozen continent is restricted to sparse ice-free areas and do...
Antarctic regions involve a great variety of habitats characterized by environmental stressors and l...
Predicting the effects of climate change on Antarctic terrestrial vegetation requires a better knowl...
The net photosynthetic rate (NP), chlorophyll fluorescence, carotenoid content and chlorophyll conte...
The effects of UV-B exclusion and enhancement of solar radiation on photosynthesis of the two phaner...
There is considerable scientific interest as to how terrestrial biodiversity in Antarctica might res...
Climate change is expected to affect the high latitudes first and most severely, rendering Antarctic...
The extreme conditions of the Antarctic continent represent a significant barrier to life. Vegetati...
Climate change can affect the performance of the only two vascular plant species found in Antarctica...
Antarctica has experienced major changes in temperature, wind speed and stratospheric ozone levels o...
A literature review on Antarctic mosses was undertaken to identify the types of mosses found in Anta...
Although positive effects on growth and reproduction of Antarctic vascular plants have been reported...
Global warming is strongly affecting the maritime Antarctica climate and the consequent melting of p...
Photosynthetic activity pattern of Bryum sp. was monitored for 28days using a chlorophyll a fluoresc...
© Copyright © 2020 Perera-Castro, Waterman, Turnbull, Ashcroft, McKinley, Watling, Bramley-Alves, Ca...
The terrestrial flora of Antarctica’s frozen continent is restricted to sparse ice-free areas and do...
Antarctic regions involve a great variety of habitats characterized by environmental stressors and l...
Predicting the effects of climate change on Antarctic terrestrial vegetation requires a better knowl...
The net photosynthetic rate (NP), chlorophyll fluorescence, carotenoid content and chlorophyll conte...
The effects of UV-B exclusion and enhancement of solar radiation on photosynthesis of the two phaner...
There is considerable scientific interest as to how terrestrial biodiversity in Antarctica might res...
Climate change is expected to affect the high latitudes first and most severely, rendering Antarctic...
The extreme conditions of the Antarctic continent represent a significant barrier to life. Vegetati...
Climate change can affect the performance of the only two vascular plant species found in Antarctica...
Antarctica has experienced major changes in temperature, wind speed and stratospheric ozone levels o...
A literature review on Antarctic mosses was undertaken to identify the types of mosses found in Anta...
Although positive effects on growth and reproduction of Antarctic vascular plants have been reported...
Global warming is strongly affecting the maritime Antarctica climate and the consequent melting of p...
Photosynthetic activity pattern of Bryum sp. was monitored for 28days using a chlorophyll a fluoresc...