Professor George Coupland FRS

The life cycles of most plants are synchronised to the passing seasons by responding to changes in day length. George Coupland initiated the use of molecular genetic methods to study these photoperiodic responses in Arabidopsis thaliana. His major contributions are in defining the molecular mechanisms that enable plants to measure day length and in explaining how these processes are related to the initiation of floral development. His work has provided a coherent model for how diurnal rhythms in the transcription of regulatory genes combined with posttranscriptional regulation of protein stability by light induce flowering only under long summer days.

Subject groups

  • Patterns in Populations

    Plant sciences / botany

  • Cell Biology

    Developmental biology

Professor George Coupland FRS
Elected 2007
Committees Participated Role
Sectional Committee 8: Multicellular organisms October 2024 - September 2027 Member
Nominations Committee January 2022 - October 2024 Member
Sectional Committee 9: Patterns in populations November 2018 - October 2021 Member
Sectional Committee 9: Patterns in populations December 2007 - November 2010 Member