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Wind blows young migrant birds to all corners of Africa

Date:
May 24, 2017
Source:
Universiteit van Amsterdam (UVA)
Summary:
Migrant birds that breed in the same area in Europe spread out across all of Africa during the northern winter. A new satellite-tracking study shows that the destination of individual birds is largely determined by the wind conditions they encounter during their first migration.
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Migrant birds that breed in the same area in Europe spread out across all of Africa during the northern winter. A new satellite-tracking study shows that the destination of individual birds is largely determined by the wind conditions they encounter during their first migration. The results were made available open access in the peer-reviewed journal Proceedings of the Royal Society B.

Until now little was known about how birds learn to migrate. Many young migrant birds die on their way to Africa, due to starvation, exhaustion or predation, or because they fall victim to hunters or collide with power lines and other human-made structures along the way. Wouter Vansteelant, lead author of the study, explains: ´As researchers we take a risk by tracking young birds with expensive tracking devices. Until now most people studied adult birds because they have a higher chance of survival. For this study, however, we decided to place satellite-tracking devices on 31 young honey buzzards that hatched from the egg in southwestern Finland.´

Of the 31 honey buzzards, 27 were able to start their first migration to Sub-Saharan Africa. Vansteelant: ´Twenty-four of these birds survived their first migration, ending up as far west as Mali and as far east as the Congo. The most western bird was located more than 3300km from the most eastern bird.´ The research team found that the location where the birds had ended up further west or east depended on the wind conditions they encountered along the way. ´We also saw that some individuals deviated from their average course to cross barriers. A quarter of the honey buzzards, for example, avoided the Baltic Sea by flying over land through Scandinavia, and therefore ended up further west than other birds, and further west than expected from the wind conditions they encountered alone´.

That young honey buzzards allow themselves to be drifted by the winds shows that their wintering destination is not predetermined genetically and that chance weather events decide where each individual will return to winter for the rest of its life. Vansteelant: ´We suspect this strategy is very common among migrant birds and probably developed at a time when plenty of suitable wintering habitats were available across the whole breadth of tropical Africa.´ It remains to be seen if that strategy will remain viable under ongoing habitat destruction due to intensification of agriculture, deforestation and climate change. ´If we want to conserve European breeding populations of migrant landbirds, we should focus on measures that will ensure preservation of suitable landscapes for these birds across many developing Sub-Saharan countries rather than the creation of a couple of scattered reserves.´


Story Source:

Materials provided by Universiteit van Amsterdam (UVA). Note: Content may be edited for style and length.


Journal Reference:

  1. W. M. G. Vansteelant, J. Kekkonen, P. Byholm. Wind conditions and geography shape the first outbound migration of juvenile honey buzzards and their distribution across sub-Saharan Africa. Proceedings of the Royal Society B: Biological Sciences, 2017; 284 (1855): 20170387 DOI: 10.1098/rspb.2017.0387

Cite This Page:

Universiteit van Amsterdam (UVA). "Wind blows young migrant birds to all corners of Africa." ScienceDaily. ScienceDaily, 24 May 2017. <www.sciencedaily.com/releases/2017/05/170524084602.htm>.
Universiteit van Amsterdam (UVA). (2017, May 24). Wind blows young migrant birds to all corners of Africa. ScienceDaily. Retrieved May 2, 2024 from www.sciencedaily.com/releases/2017/05/170524084602.htm
Universiteit van Amsterdam (UVA). "Wind blows young migrant birds to all corners of Africa." ScienceDaily. www.sciencedaily.com/releases/2017/05/170524084602.htm (accessed May 2, 2024).

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