AZORES

Community phylogenetics and conservation on an oceanic archipelago: the flora of the Azores as a case study

 Coordinatore IMPERIAL COLLEGE OF SCIENCE, TECHNOLOGY AND MEDICINE 

 Organization address address: SOUTH KENSINGTON CAMPUS EXHIBITION ROAD
city: LONDON
postcode: SW7 2AZ

contact info
Titolo: Ms.
Nome: Brooke
Cognome: Alasya
Email: send email
Telefono: +44 20 7594 1181
Fax: +44 20 7594 1219

 Nazionalità Coordinatore United Kingdom [UK]
 Totale costo 168˙823 €
 EC contributo 168˙823 €
 Programma FP7-PEOPLE
Specific programme "People" implementing the Seventh Framework Programme of the European Community for research, technological development and demonstration activities (2007 to 2013)
 Code Call FP7-PEOPLE-2007-2-1-IEF
 Funding Scheme MC-IEF
 Anno di inizio 2008
 Periodo (anno-mese-giorno) 2008-05-01   -   2010-04-30

 Partecipanti

# participant  country  role  EC contrib. [€] 
1    IMPERIAL COLLEGE OF SCIENCE, TECHNOLOGY AND MEDICINE

 Organization address address: SOUTH KENSINGTON CAMPUS EXHIBITION ROAD
city: LONDON
postcode: SW7 2AZ

contact info
Titolo: Ms.
Nome: Brooke
Cognome: Alasya
Email: send email
Telefono: +44 20 7594 1181
Fax: +44 20 7594 1219

UK (LONDON) coordinator 0.00

Mappa


 Word cloud

Esplora la "nuvola delle parole (Word Cloud) per avere un'idea di massima del progetto.

predict    invasive    evolutionary    angiosperm    relationships    genetic    oceanic    conservation    species    flora    diversity    ecosystems    size    invasiveness    predicted    traits    atlantic    closely    km    threat    archipelago    related    darwin    ecological    plant    native    phylogenetic    azores    relatives    helping    phylogenetics    pd    plants    islands    invasions    become    world   

 Obiettivo del progetto (Objective)

'The Azores are a group of nine volcanic islands in the Northern Atlantic Ocean with a distance of c. 1,500 km to the European and c. 1,900 km to the American coast. Building on the results of earlier chorological analyses of the flora of this archipelago, we propose to build a phylogenetic tree for the flora of the islands based on molecular data, including all native and introduced angiosperm species, and analyse the phylogenetic diversity (PD) of the present ecological assemblages. PD is the evolutionary heritage of the islands' flora and provides crucial information for conservation planning. Specifically, we will test two hypotheses: 1) PD is decoupled from species diversity in oceanic island systems. 2) Invasives in the Azores are not closely related to indigenous species and tend to fill empty niches. Our study would be the first species-level phylogeny for the complete angiosperm flora of an archipelago. Since we combine traditional species list approaches with state-of-the-art phylogenetic, genetic, and statistic approaches, our results could serve as a model system for informed and systematic conservation on islands throughout the world.'

Introduzione (Teaser)

Invasive species are a serious threat to ecosystems around the world, particularly on remote islands such as the Azores. Until recently it has not been possible to predict which introduced species may become invasive and which genetic traits are responsible.

Descrizione progetto (Article)

European researchers have investigated invasive plants and their evolution, compiling large genetic and ecological datasets with results from 10 years of field studies in the Azores archipelago - located in the North Atlantic about half-way between Europe and the Americas.

The EU-backed project 'Community phylogenetics and conservation on an oceanic archipelago: the flora of the Azores as a case study' (Azores) has also reconstructed the evolutionary relationships, known as phylogenetics, for all of the islands' 796 plant species.

Observations reveal that introduced plant species are most likely to become invasive when they are not closely related to other species in the area. The findings also support Charles Darwin's 'naturalisation hypothesis', published in 1859. Darwin proposed that exotic plants with relatives that were native to the new environment would not be as successful as those without native relatives. He believed that this was because newly introduced plants with native relatives were susceptible to the herbivores and diseases that attacked their native relatives.

Project partners found that evolutionary relatedness was a reliable predictor for the invasiveness of a species. Some ecological traits such as the species size and the size of its seeds also enabled invasiveness to be predicted for the Azores, but this was not the case in other ecosystems. Therefore researchers have suggested that plant invasions can best be forecast through measuring the closeness of evolutionary relationships.

Thanks to the work of the Azores consortium plant invasions can now be predicted, helping to solve this problem around the world. With the help of state-of-the-art DNA sequencing technologies scientists can now determine the species-level phylogenetics for a growing number of ecosystems across the world, helping to predict groups of plants that are potential invaders.

Research conducted by the Azores will help identify which plants pose the greatest threat of invasive activity to vulnerable ecosystems, thereby helping to preserve biodiversity.

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