Involvement of active oxygen species in the accumulation of early light-inducible protein (ELIP) in mature pea plants was investigated under light stress conditions. Here we provide evidence th at hydroxyl radicals and singlet oxygen interfere with ELIP expression at both, transcriptional and posttranslational levels. Addition of free radical scavengers can alleviate the detrimental action of the radicals almost completely at the level of transcription but only a partial protection was observed at the level of proteins. The data suggest that the damage of ELIP occurs during its insertion into thylakoid membranes close to the free radical sources
The extended superfamily of chlorophyll a/b binding proteins comprises the Light-Harvesting Complex ...
Chloroplasts from pea leaves (Pisum sativum L.) were isolated to study the influence of activated ox...
As sessile organisms, plants cannot escape an unfavorable environment. Instead, they must rely on se...
Plants absorb light for photosynthesis, but not all is used. Excess light energy may lead to photoin...
The early light-induced proteins (ELIPs) belong to the multigenic family of pigment-binding light-ha...
The early light-induced proteins (ELIPs) belong to the multigenic family of pigment-binding light-ha...
ELIPs (early light-induced proteins) are thylakoid proteins transiently induced during greening of e...
Background: Reactive oxygen species (ROS) are unavoidable by-products of oxygenic photosynthesis, ca...
Reactive oxygen species act as signaling molecules but can also directly provoke cellular damage by ...
During photosynthesis, the physical energy of sunlight is used for the production of biomass, consum...
Plants are often exposed to external conditions that adversely affect their growth, development or p...
Background: Reactive oxygen species (ROS) are unavoidable by-products of oxygenic photosynthesis, ca...
Plants are subject to specific redox processes, in which photosynthesis plays a prominent role. Chlo...
Intense and excessive light triggers the evolution of reactive oxygen species in chloroplasts, and t...
AbstractElectron spin resonance spectroscopy and liquid chromatography have been used to detect radi...
The extended superfamily of chlorophyll a/b binding proteins comprises the Light-Harvesting Complex ...
Chloroplasts from pea leaves (Pisum sativum L.) were isolated to study the influence of activated ox...
As sessile organisms, plants cannot escape an unfavorable environment. Instead, they must rely on se...
Plants absorb light for photosynthesis, but not all is used. Excess light energy may lead to photoin...
The early light-induced proteins (ELIPs) belong to the multigenic family of pigment-binding light-ha...
The early light-induced proteins (ELIPs) belong to the multigenic family of pigment-binding light-ha...
ELIPs (early light-induced proteins) are thylakoid proteins transiently induced during greening of e...
Background: Reactive oxygen species (ROS) are unavoidable by-products of oxygenic photosynthesis, ca...
Reactive oxygen species act as signaling molecules but can also directly provoke cellular damage by ...
During photosynthesis, the physical energy of sunlight is used for the production of biomass, consum...
Plants are often exposed to external conditions that adversely affect their growth, development or p...
Background: Reactive oxygen species (ROS) are unavoidable by-products of oxygenic photosynthesis, ca...
Plants are subject to specific redox processes, in which photosynthesis plays a prominent role. Chlo...
Intense and excessive light triggers the evolution of reactive oxygen species in chloroplasts, and t...
AbstractElectron spin resonance spectroscopy and liquid chromatography have been used to detect radi...
The extended superfamily of chlorophyll a/b binding proteins comprises the Light-Harvesting Complex ...
Chloroplasts from pea leaves (Pisum sativum L.) were isolated to study the influence of activated ox...
As sessile organisms, plants cannot escape an unfavorable environment. Instead, they must rely on se...