H2020Individual fellowship2016–2018

IDEA · Island Diversity from an Eco-evolutionary Approach

Horizon 2020 — Marie Skłodowska-Curie Actions

Duration
2016-03-15 → 2018-03-14
EU contribution
€212,195
Participants
1
Scheme
MSCA-IF-EF-ST

Lines connect the coordinator with its partners.

Results in brief

Island Diversity from an Eco-evolutionary Approach

"Since the early days of natural history, oceanic islands have been a birthing ground for new theories and ideas. Islands are isolated, which means they have fewer species, but it also means they have many more locally evolved species that live nowhere else. Thus, islands are thought of as ""natural laboratories"" - testing grounds for new theory and ideas. Still, there is so much we don't know about how the plants and animals on islands come together on islands and coexist. But a lot of research currently focuses on islands, and we now be on the verge of a breakthrough in terms of understanding island life. This breakthrough may happen because we are getting a better understanding of island geology, topography and the relationship among species. In particular, a new model, the ""General Dynamic Model"" links the life of island species together with the geological life cycle of the islands themselves. The project aimed to investigate this model, both theoretically and by studying a group of birds called the Corvides. This group consists of ~800 bird species all over the world, with many well-known members, such as the crows, ravens and shrikes, and also very charismatic birds such as the birds-of-paradise and the vangas in Madagascar. The project not only has great value in terms of basic science - islands contain a disproportionate portion of the world's rarest species, and more than 90% of all extinctions of birds and mammals have occurred on islands. It is critical that understand the factors controlling island diversity if we are to protect the remaining diversity. The objectives of the study were: 1. To link the island geological history to diversity patterns 2. To assess the role of topographic and vegetation complexity on corvid diversity patterns. 3. To supplement the large-scale gradient with drone-based reconstructions of bird diversity along a mountain in Udzungwa, East Africa. 4. Map relationships between plants and corvid birds 5. Assess how traits evolve on islands "

Data: CORDIS, © European Union

Project objective

The science of island biogeography is currently undergoing a huge resurgence of interest, due mainly to the advent of novel sources of data, most notably on geological dynamics, climate-driven sea-level changes, remotely sensed climate, vegetation structure and topography, and, centrally, the phylogenetic relationships among species. This has paved the way for an understanding of how island geographical dynamics shape dynamics of species diversity and the evolution of clades, but has also opened up a whole range of unanswered questions: How has the emergence of islands affected evolution in clades? How does vegetation structure and topographic complexity shape patterns of diversity? What are the roles of cross-taxon interactions in governing these processes? And how do these patterns scale from the island to the community level?In this proposal, I aim to address these unanswered questions by studying a uniquely well-defined group, the radiation of corvid birds in the Indo-Pacific. From the beginning of the project I will have access to an existing database on the spatial distribution, phylogenetic relationships, habitat associations and morphological traits for these birds. I will combine this with building databases on the topographic complexity, vegetation, and ages of the Indo-Pacific islands, and supplement these data with generating primary field data from bird sampling and drone flights. The analytical approach will be based on mixed effect model analysis, null models and simulations.The results from this research will have a broad international interest, and will help the international research community to rise to the challenge of understanding patterns of species diversity – an understand that is crucial for protecting biodiversity in a changing world.

Original text from CORDIS.

Participants

  • KOBENHAVNS UNIVERSITET · KOBENHAVNCoordinatorDenmark

Links

Data: CORDIS, © European Union