Eva-Mari Aro
Academician of Science
Molecular Plant Biology evaaro@utu.fi +358 29 450 4200 +358 50 430 4639 Tykistökatu 6 Turku : 6207 |
Photosynthesis, regulation of photosynthetic light reactions, photoprotection, evolution of photoprotection mechanisms, chloroplast signaling, cyanobacterial cell factories.
Our basic research focuses on
regulation of photosynthesis, which is intimately linked with plant
stress responses and signalling cascades to regulate nuclear gene
expression. Particular emphasis is also put on evolutionary aspects of
regulation of thylakoid light harvesting and energy conversion systems. A
diverse set of photoautotrophic oxygen evolving organisms, from
cyanobacteria, green algae Chlamydomonas reinhardtii and diatoms to a
moss Physcomitrella patens and ferns as well as to the model higher
plants Arabidopsis thaliana and spruce, are used in our research. We aim
at understanding (i) the mechanisms and dynamic regulation of the rapid
photophysical and photochemical processes of the light energy capture
and the photosynthetic electron transfer, (ii) how the structure and
organisation of the thylakoid protein complexes dynamically respond to
environmental changes, and (iii) how the signals originating from the
photosynthetic apparatus relay information to the nuclear genome for
regulation of gene expression and subsequent acclimation of the
photosynthetic organism to changing environmental conditions. Likewise
(iv) the evolution of thylakoid regulatory mechanisms, with special
emphasis on the replacement of the cyanobacterial flavodiiron proteins
with other regulatory mechanisms in higher plants, is investigated to
understand how it was possible for photosynthetic organisms to move from
oceans to the land.
Our applied research focuses on replacement
of fossil raw materials and aims at production of carbon-neutral
biosolarfuels and chemicals using cyanobacteria as a production chassis.
In the synthetic biology program, we aim at production of fuels and
chemicals with high photon conversion efficiency, significantly higher
compared to natural pathways. The main goal is economically viable
conversion of solar energy to a fuel using inexhaustible raw materials:
sunlight, water and CO2. Applied research is intimately integrated with
our basic research and comprises the designing, engineering and
optimisation of light harvesting, electron transfer and metabolic
pathways.
- The small Ca2+-binding protein CSE links Ca2+ signalling with nitrogen metabolism and filament integrity in Anabaena sp. PCC 7120 (2020)
- BMC Microbiology
- A Genome‐Wide Association Study of Non‐Photochemical Quenching in response to local seasonal climates in Arabidopsis thaliana (2019)
- Plant Direct
- A novel Ca 2+ -binding protein influences photosynthetic electron transport in Anabaena sp. PCC 7120 (2019)
- BBA - Bioenergetics
- Arabidopsis RCD1 coordinates chloroplast and mitochondrial functions through interaction with ANAC transcription factors (2019)
- eLife
- Consequences of photosystem‐I damage and repair on photosynthesis and carbon use in Arabidopsis thaliana (2019)
- Plant Journal
- Enhanced stable production of ethylene in photosynthetic cyanobacterium Synechococcus elongatus PCC 7942 (2019)
- World Journal of Microbiology and Biotechnology
- Flavodiiron proteins 1–to-4 function in versatile combinations in O2 photoreduction in cyanobacteria (2019)
- eLife
- Global proteome response of Synechocystis 6803 to extreme copper environments applied to control the activity of the inducible petJ promoter (2019)
- Journal of Applied Microbiology
- GUN1 influences the accumulation of NEP-dependent transcripts and chloroplast protein import in Arabidopsis cotyledons upon perturbation of chloroplast protein homeostasis (2019)
- Plant Journal
- Photoinhibition of Photosystem I Provides Oxidative Protection During Imbalanced Photosynthetic Electron Transport in Arabidopsis thaliana (2019)
- Frontiers in Plant Science
- Redirecting photosynthetic electron flux in the cyanobacterium Synechocystis sp. PCC 6803 by the deletion of flavodiiron protein Flv3 (2019)
- Microbial Cell Factories
- Role of cyclic and pseudo-cyclic electron transport in response to dynamic light changes in Physcomitrella patens (2019)
- Plant, Cell and Environment
- The Role of Phosphorylation Dynamics of CURVATURE THYLAKOID 1B in Plant Thylakoid Membranes (2019)
- Plant Physiology
- The unique photosynthetic apparatus of Pinaceae: analysis of photosynthetic complexes in Picea abies (2019)
- Journal of Experimental Botany
- Thylakoid Localized Type 2 NAD(P)H Dehydrogenase NdbA Optimizes Light-Activated Heterotrophic Growth of Synechocystis sp. PCC 6803 (2019)
- Plant and Cell Physiology
- Thylakoid Protein Phosphorylation Dynamics in a Moss Mutant Lacking SERINE/THREONINE PROTEIN KINASE STN8 (2019)
- Plant Physiology
- A LHCB9-dependent photosystem I megacomplex induced under low light in Physcomitrella patens (2018)
- Nature Plants
- Analysis of thylakoid membrane protein complexes by blue native gel electrophoresis (2018)
- Journal of Visualized Experiments
- A new approach for sustained and efficient H2 photoproduction by Chlamydomonas reinhardtii (2018)
- Energy and Environmental Science
- Chapter 11: Oxygenic Photosynthesis — Light Reactions within the Frame of Thylakoid Architecture and Evolution (2018) Photosynthesis and Bioenergetics Sari Järvi, Marjaana Rantala, Eva-Mari Aro