Défense de thèse

Soutenance de thèse de Benoit Durieu


©️ Valentina Savaglia

Info

Dates
11 septembre 2026
Location
Hybride / Institut de Botanique, bât. B22, auditoire
Quartier Vallée - Chemin de la Vallée, 4
4000 Liège
See the map
Schedule
15h00

Le vendredi 11 septembre 2026, Benoit DURIEU présentera l'examen en vue de l’obtention du grade académique de Docteur en Sciences (Collège de doctorat en Biologie des organismes et écologie) sous la direction d'Annick WILMOTTE et de Denis BAURAIN.

Cette épreuve consistera en la défense publique d’une dissertation intitulée :

« From biogeography to genes: exploring the diversity and evolution of Antarctic cyanobacteria ».

Lien pour la réunion online

Le Jury sera composé de :

Jury :     Mme M. CARNOL (Présidente), Mmes et MM. D. BAURAIN (Co-promoteur), A. JUNGBLUT (Natural History Museum, London), D. LAUGHINHOUSE (University of Florida), N. MAGAIN (Secrétaire), E. PINSEEL (UGent), A. WILMOTTE (Promotrice).

Abstract

The long-term geographic and climatic isolation of Antarctica, combined with strong environmental heterogeneity and extreme conditions, has profoundly shaped the diversity and evolution of its biota. Cyanobacteria are key components of Antarctic microbial ecosystems, yet their biogeographic patterns, including their degree of endemism, remain incompletely understood. This thesis investigated Antarctic cyanobacterial diversity and genomic specificities using complementary ecological and genomic approaches. Analyses of 16S rRNA amplicons from lacustrine and terrestrial habitats showed that both geographic distance and environmental factors structure cyanobacterial communities, with their relative importance varying according to spatial scale and habitat type. Lacustrine communities differed between Antarctica and the sub-Antarctic islands, while terrestrial communities showed strong substrate-specific patterns. Both datasets also revealed substantial proportions of potentially endemic taxa. Comparative genomic analyses of Phormidesmis and Synechococcus-like picocyanobacteria further identified genomic features associated with polar and Antarctic environments, including Antarctic-specific gene clusters and patterns consistent with possible niche shifts and Antarctic ancestry. Together, these results provide a multiscale perspective on cyanobacterial endemism and contribute scientific evidence relevant to the conservation of Antarctic microbial ecosystems.

Lien Orbi

 

 

 

Share this event

cookieImage