The light-harvesting complexes (LHCs) of plants can regulate the level of excitation in the photosynthetic membrane under fluctuating light by switching between different functional states with distinct fluorescence properties. One of the most fascinating yet obscure aspects of this regulation is how the vast conformational landscape of LHCs is modulated in different environments. Indeed, while in isolated antennae the highly fluorescent light-harvesting conformation dominates, LHC aggregates display strong fluorescence quenching, representing therefore a model system for the process of energy dissipation developed by plants to avoid photodamage in high light. This marked difference between the isolated and oligomeric conditions has led to ...
The light-harvesting antenna of photosystem II (PSII) has the ability to switch rapidly between a st...
Light-harvesting pigment-protein complexes of photosystem II of plants have a dual function: they ef...
Understanding photosynthetic light harvesting requires knowledge of the molecular mechanisms that di...
The light-harvesting complexes (LHCs) of plants can regulate the level of excitation in the photosyn...
The light-harvesting complexes (LHCs) of plants can regulate the energy flux to the reaction centers...
Under excess illumination, the Photosystem II light-harvesting antenna of higher plants has the abil...
Plants harvest sunlight by converting light energy to electron flow through the primary events in ph...
In photosynthetic light harvesting, absorbed sunlight is converted to electron flow with near-unity ...
Plants dissipate excess excitation energy as heat by non‐photochemical quenching (NPQ). NPQ has been...
The conversion of solar radiation to chemical energy in plants and green algae takes place in the th...
Light-Harvesting Complex II (LHCII) is largely responsible for light absorption and excitation energ...
Abstract In the major peripheral plant light-harvesting complex LHCII, excitation energy is transfer...
In photosynthetic light harvesting, absorbed sunlight is converted to electron flow with near-unity ...
AbstractIn the major peripheral plant light-harvesting complex LHCII, excitation energy is transferr...
AbstractLight-harvesting pigment-protein complexes of photosystem II of plants have a dual function:...
The light-harvesting antenna of photosystem II (PSII) has the ability to switch rapidly between a st...
Light-harvesting pigment-protein complexes of photosystem II of plants have a dual function: they ef...
Understanding photosynthetic light harvesting requires knowledge of the molecular mechanisms that di...
The light-harvesting complexes (LHCs) of plants can regulate the level of excitation in the photosyn...
The light-harvesting complexes (LHCs) of plants can regulate the energy flux to the reaction centers...
Under excess illumination, the Photosystem II light-harvesting antenna of higher plants has the abil...
Plants harvest sunlight by converting light energy to electron flow through the primary events in ph...
In photosynthetic light harvesting, absorbed sunlight is converted to electron flow with near-unity ...
Plants dissipate excess excitation energy as heat by non‐photochemical quenching (NPQ). NPQ has been...
The conversion of solar radiation to chemical energy in plants and green algae takes place in the th...
Light-Harvesting Complex II (LHCII) is largely responsible for light absorption and excitation energ...
Abstract In the major peripheral plant light-harvesting complex LHCII, excitation energy is transfer...
In photosynthetic light harvesting, absorbed sunlight is converted to electron flow with near-unity ...
AbstractIn the major peripheral plant light-harvesting complex LHCII, excitation energy is transferr...
AbstractLight-harvesting pigment-protein complexes of photosystem II of plants have a dual function:...
The light-harvesting antenna of photosystem II (PSII) has the ability to switch rapidly between a st...
Light-harvesting pigment-protein complexes of photosystem II of plants have a dual function: they ef...
Understanding photosynthetic light harvesting requires knowledge of the molecular mechanisms that di...