Chlorophyll a fluorescence measured in vivo is frequently used to study the role of different processes influencing the distribution of excitation energy in PSII complexes. Such studies are important for understanding the regulation of photosynthetic electron transport. However, at the present time, there is no unified methodology to analyse the energy partitioning in PSII. In this article, we critically assess several approaches recently developed in this area of research and propose new simple equations, which can be used for de-convolution of non-photochemical energy quenching in PSII complexes
Photosystems I (PSI) and II (PSII) are two major pigment–protein complexes of photosynthetic organis...
ABSTRACT: Although fluorescence is widely used to study photosynthetic systems, the mechanisms that ...
Photosynthesis in plants is adapted to the continuous change in environmental conditions by the oper...
Based on the examination and quantitative comparison of the approaches used to assess the energy par...
A method of partitioning the energy in a mixed population of active and photoinactivated Photosystem...
Photosystem II (PSII) initiates photosynthesis in plants through the absorption of light and subsequ...
A photosystem II-enriched membrane (PSII-em) consists of the PSII core complex (PSII-cc) which is su...
Photosystem II (PSII) is responsible for the water oxidation in photosynthesis and it consists of ma...
International audienceWe performed picosecond fluorescence measurements on well-defined Photosystem ...
We performed picosecond fluorescence measurements on well-defined Photosystem II (PSII) supercomplex...
Photosystem II (PSII) is responsible for the water oxidation in photosynthesis and it consists of ma...
Water oxidation in photosynthesis takes place in photosystem II (PSII). This photosystem is built ar...
Energy-dependent quenching (qE) in photosystem II (PSII) is a pH-dependent response that enables pla...
Photosystem II is the first protein complex in the Light-dependent reactions. It is located in the t...
ABSTRACT Wemodel the dynamics of energy transfer and primary charge separation in isolated photosyst...
Photosystems I (PSI) and II (PSII) are two major pigment–protein complexes of photosynthetic organis...
ABSTRACT: Although fluorescence is widely used to study photosynthetic systems, the mechanisms that ...
Photosynthesis in plants is adapted to the continuous change in environmental conditions by the oper...
Based on the examination and quantitative comparison of the approaches used to assess the energy par...
A method of partitioning the energy in a mixed population of active and photoinactivated Photosystem...
Photosystem II (PSII) initiates photosynthesis in plants through the absorption of light and subsequ...
A photosystem II-enriched membrane (PSII-em) consists of the PSII core complex (PSII-cc) which is su...
Photosystem II (PSII) is responsible for the water oxidation in photosynthesis and it consists of ma...
International audienceWe performed picosecond fluorescence measurements on well-defined Photosystem ...
We performed picosecond fluorescence measurements on well-defined Photosystem II (PSII) supercomplex...
Photosystem II (PSII) is responsible for the water oxidation in photosynthesis and it consists of ma...
Water oxidation in photosynthesis takes place in photosystem II (PSII). This photosystem is built ar...
Energy-dependent quenching (qE) in photosystem II (PSII) is a pH-dependent response that enables pla...
Photosystem II is the first protein complex in the Light-dependent reactions. It is located in the t...
ABSTRACT Wemodel the dynamics of energy transfer and primary charge separation in isolated photosyst...
Photosystems I (PSI) and II (PSII) are two major pigment–protein complexes of photosynthetic organis...
ABSTRACT: Although fluorescence is widely used to study photosynthetic systems, the mechanisms that ...
Photosynthesis in plants is adapted to the continuous change in environmental conditions by the oper...