Showing posts with label biome shift. Show all posts
Showing posts with label biome shift. Show all posts

Tuesday, December 02, 2014

How Arid Biomes React to Climate Change

Approximately 40 percent of the earth's surface is covered by drylands in which average annual precipitation is lower than evaporation. The changes projected to unfold in these areas in the course of climate change are alarming. Greater variations in annual and seasonal precipitation will lead to more frequent droughts and, presumably, longer drought periods. This means that drylands are among those areas most severely affected by climate change.

Research has thus far not adequately addressed the question of how strongly annual plant growth in pasture landscapes - hence the available food for livestock - is affected by droughts. Also, how predictable is the correlation? Yet this knowledge about vegetation stability would be essential for more accurate predictions of the effects of climate change in these areas. Over the past years, Dr. Jan Ruppert, an ecologist from the University of Cologne, has compiled hundreds of long-term studies on annual plant growth in drylands. Together with Dr. Anja Linstädter, the head of his working group at the University of Cologne, he has now completed his analysis of these data. The researchers are looking for an answer to the question of how droughts of varying intensity affect plant production - during and after the event. They are particularly interested in whether or not certain characteristics of the vegetation or the grazing regime affect the outcome. In this context, the scientists differentiate between two aspects of stability: on the one hand, the vegetation's durability to droughts of varying intensity (resistance), and on the other hand its ability to regenerate after a drought (recovery).

"We were surprised to see that the type of ecosystem (biome) is a rather poor indicator of vegetation stability in the face of drought. It does not make a large difference whether a drought occurs in a savanna, grassland or shrubland. The decisive factor is the dominant herbaceous life history - that is, whether we are dealing with annual or perennial plants", Ruppert explains. Drylands that are dominated by annual plants are more severely affected during droughts, but recover more quickly afterwards. Areas in which perennial plants dominate exhibit the opposite trend. The effect of the grazing regime on vegetation stability in the face of drought is also highly dependent on whether one is dealing with annual or perennial plants. Enduring communities of plants will react to grazing with a lower drought resistance. Grazing does not, however, have a significant effect on resistance in areas where annual plants dominate. "Our results indicate that the vegetation of drylands is not capable of optimizing its resistance and recovery potential at the same time," Linstädter concludes.

Tuesday, August 05, 2014

Europe's Ecology Especially Vulernable to Climate Change


New research has identified areas of the Earth that are high priorities for conservation in the face of climate change.

Europe is particularly vulnerable, as it has the lowest fraction of its land area, only four per cent, of any continent in 'refugia' – areas of biological diversity that support many species where natural environmental conditions remain relatively constant during times of great environmental change. The refugia that do exist in Europe are mostly in Scandinavia and Scotland.

The biggest refugia are in the Amazon, the Congo basin, the boreal forests of Russia, the Artic and the Australian outback.

The study identifies such climate change refugia based on the amount of natural habitat present and the risk that regions shift to a different type of natural vegetation due to climate change – a phenomenon known as 'biome shift'.


PS.  I have some questions about this study since they claim the Arctic has several refugia...