Marjaana Suorsa
PhD, docent
msuorsa@utu.fi +358 29 450 2269 +358 50 358 5023 Vesilinnantie 5 Turku ORCID identifier: https://orcid.org/0000-0002-3821-0607 |
plant biology; molecular biology, photosynthesis; proteomics
I have studied photosyntesis, more specifically the dynamics of the proteins and protein complexes in thylakoid membrane. My PhD thesis focused on the assembly of the Photosytem II protein complex in higher plants. After the PhD degree, I have studied regulation of electron transfer routes and cyclic electron transfer as well as several auxiliary proteins and chaperones, such as the DNAJ proteins, which are involved in regulation of photosynthesis. I have also expertise on the acclimation of the photosynthetic machinery to the fluctuating light conditions. Methodologically, I have specialized in analyzing the dynamics of the thylakoid membrane protein complexes by using native gel electrophoresis.
Teaching experience
I have worked as a university teacher for 2009-2010, and again in 2014-2015. My teaching experience includes teaching in plant anatomy, plant biochemistry, biochemistry of photosynthesis, proteomics, plant cell and tissue culture methods, plants and environment, basics of biochemistry, basics of cell biology and scientific writing. Additionally, I have supervised several MSc thesis and three PhD thesis.
- Flavodiiron proteins act as safety valve for electrons in Physcomitrella patensPhotosystem II Repair and Plant Immunity: Lessons Learned from Arabidopsis Mutant Lacking the THYLAKOID LUMEN PROTEIN 18.3 (2016)
- Proceedings of the National Academy of Sciences of the United States of AmericaFrontiers in Plant Science
(A1 Refereed original research article in a scientific journal) - (2016)
- New Phytologist
(A1 Refereed original research article in a scientific journal) - PGR5-PGRL1-Dependent Cyclic Electron Transport Modulates Linear Electron Transport Rate in Arabidopsis thaliana (2016)
- Molecular Plant
(A1 Refereed original research article in a scientific journal) - Photodamage of iron-sulphur clusters in photosystem I induces non-photochemical energy dissipation (2016)
- Nature Plants
(A1 Refereed original research article in a scientific journal) - Photosynthesis Control: An underrated short-term regulatory mechanism essential for plant viability (2016)
- Plant Signaling and Behavior
(A2 Refereed review article in a scientific journal ) - (2016)
(A1 Refereed original research article in a scientific journal) - Serine and threonine residues of plant STN7 kinase are differentially phosphorylated upon changing light conditions and specifically influence the activity and stability of the kinase (2016)
- Plant Journal
(A1 Refereed original research article in a scientific journal) - The Low Molecular Weight Protein PsaI Stabilizes the Light-Harvesting Complex II Docking Site of Photosystem I-1 (2016)
- Plant Physiology
(A1 Refereed original research article in a scientific journal) - Thylakoid-Bound FtsH Proteins Facilitate Proper Biosynthesis of Photosystem I (2016)
- Plant Physiology
Dario Leister, and Eva-Mari Aro
(A1 Refereed original research article in a scientific journal) - Cyclic electron flow provides acclimatory plasticity for the photosynthetic machinery under various environmental conditions and developmental stages. (2015)
- Frontiers in Plant Science
(A2 Refereed review article in a scientific journal )



