The role of parasitism and communities structure in resistance to invasion : a modeling approach

Invasions by exotic species are a major threat for biodiversity, understanding the processes which control communities vulnerability is essential for biodiversity preservation. Studies of the communities' susceptibility to invasions usually focus on the relationship between species richness and...

Πλήρης περιγραφή

Αποθηκεύτηκε σε:
Λεπτομέρειες βιβλιογραφικής εγγραφής
Κύριος συγγραφέας: Ramsayer, Johan
Συλλογικό Έργο: Πανεπιστήμιο Αιγαίου Ελληνογαλλικό Πρόγραμμα Μεταπτυχιακών Σπουδών Διατήρηση της Βιοποικιλότητας Σχολή Περιβάλλοντος, Universite des sciences et techniques du Languedoc
Άλλοι συγγραφείς: Poulin, Robert (Εισηγητής διατριβής)
Μορφή: Thesis Βιβλίο
Γλώσσα:English
Δημοσίευση: 2009.
Θέματα:
Διαθέσιμο Online:http://hdl.handle.net/11610/11679
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245 1 4 |a The role of parasitism and communities structure in resistance to invasion :   |b a modeling approach /   |c Johan Ramsayer ; thesis supervisor: Robert Poulin.  
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506 1 |a Ηλεκτρονική διάθεση μόνο λέξεων κλειδιών - περιλήψεων.  
520 8 |a Invasions by exotic species are a major threat for biodiversity, understanding the processes which control communities vulnerability is essential for biodiversity preservation. Studies of the communities' susceptibility to invasions usually focus on the relationship between species richness and invasibility. However, the other component of communities' complexity, the connectance, as well as parasites whose complex life-cycles affect communities' structure, might also play a role. To explore these questions, we simulate invasions of stable communities, varying by their species richness, connectance, and the number of species used as hosts by a single parasite species : Food-webs are generated using a cascade-like model; the corresponding Lotka-Volterra systems are solved to get the communities equilibrium states; then invasion events are triggered. The success of invasions and their consequences : native species extinctions and change in community total biomass, are analyzed. Our results confirm that resistance to invasions increases with species richness, and show that complexity provides stability against invasion consequences. But conversely, communities harboring a parasite with a complex life-cycle tend to be more susceptible to invasions, and to post-invasion change in total biomass. 
650 0 0 |a Biological invasions. 
650 0 0 |a Food chains (Ecology) 
650 0 0 |a Resilience (Ecology) 
650 0 0 |a Biotic communities. 
650 0 0 |a Parasitism. 
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