- Evolutionary Biology
- Genetics
- Zoology
- +۹ مورد دیگر
Alfried Vogler is a Professor of Molecular Systematics with a joint appointment at Imperial College London's Department of Life Sciences (Silwood Park) and the Natural History Museum, London. His research focuses on the evolutionary and genetic mechanisms underlying insect biodiversity, particularly in beetles (Coleoptera), using advanced genomic techniques like metagenomics and environmental DNA (eDNA). He has held academic positions since 1995, becoming a Full Professor in 2006. Vogler is affiliated with the Georgina Mace Centre for the Living Planet, the Grantham Institute, and the Microbiome Network, contributing to interdisciplinary projects in ecology and conservation. Education: PhD in Bacterial Genetics (1988), University of Osnabrück, Germany MSc in Taxonomy and Biodiversity Biology degree (1984), University of Regensburg, Germany Research Interests: Vogler combines phylogenetics, population genomics, and bioinformatics to study species diversity across hierarchical levels (populations to insect orders). He explores community dynamics in complex environments, including tropical rainforests and soil ecosystems, using cutting-edge methods like metabarcoding and qPCR. His work emphasizes understanding trait evolution, dispersal constraints, and ecological interactions in biodiversity hotspots. Recent projects investigate the role of mitochondrial metagenomics in reconstructing evolutionary histories and predicting climate change impacts on communities. Academic Leadership: Since 1996, Vogler has directed the MSc in Taxonomy and Biodiversity and the MRes in Biosystematics programs, overseeing academic content and student research supervision. He also contributes to the Biodiversity, Evolution and Conservation MRes (UCL/NHM) and has been a module organizer for courses like Tree-of-Life and molecular systematics. Labs & Collaborations: Vogler leads the Molecular Systematics research group at the Natural History Museum, collaborating with Imperial College's Silwood Park campus. His work integrates with the SITE-100 project, aiming to build a global genomic framework for biodiversity synthesis. He also participates in DNAqua-Net, advancing genetic tools for aquatic ecosystem assessment.










