An extreme loss of cellular water or desiccation (5-10% of relative water content) leads to protein denaturation, aggregation and degradation, and affects the fluidity of membrane lipids resulting in loss of membrane integrity [1]. The essential constituents of vegetative desiccation tolerance in so-called resurrection plants are late embryogenesis abundant proteins (LEAPs). This heterogeneous group of anhydrobiosis-related intrinsically disordered proteins forms mostly random conformation when fully hydrated, turning into compact α-helices during desiccation [2]. Based on in vitro studies, LEAPs can be involved in water binding, ion sequestration, stabilization of both membrane and enzymes during freezing or drying, while by forming intrac...
The resurrection plant Ramonda serbica Panc. survives long desiccation periods and fully recovers m...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
Resurrection plant Ramonda serbica Panc. survives desiccation for a long period and fully recovers m...
An extreme loss of cellular water or desiccation (5-10% of relative water content) leads to protein ...
An extreme loss of cellular water or desiccation (5-10% of relative water content) leads to protein ...
Ramonda serbica Panc. is a resurrection plant that can survive a long period of severe dehydration-d...
Endemic plant species, Ramonda serbica is a resurrection plant that can tolerate extreme dehydratio...
Ramonda serbica Panc. is an ancient resurrection plant, that survives a long desiccation period and...
Desiccation or extreme water loss leads to protein denaturation, aggregation, and degradation and im...
Resurrection plant Ramonda serbica Panc. survives desiccation for a long period and fully recovers ...
Introduction: Resurrection plants (such as Ramonda serbica) can survive a long desiccation period an...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
The resurrection plant Ramonda serbica Panc. survives long desiccation periods and fully recovers m...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
Resurrection plant Ramonda serbica Panc. survives desiccation for a long period and fully recovers m...
An extreme loss of cellular water or desiccation (5-10% of relative water content) leads to protein ...
An extreme loss of cellular water or desiccation (5-10% of relative water content) leads to protein ...
Ramonda serbica Panc. is a resurrection plant that can survive a long period of severe dehydration-d...
Endemic plant species, Ramonda serbica is a resurrection plant that can tolerate extreme dehydratio...
Ramonda serbica Panc. is an ancient resurrection plant, that survives a long desiccation period and...
Desiccation or extreme water loss leads to protein denaturation, aggregation, and degradation and im...
Resurrection plant Ramonda serbica Panc. survives desiccation for a long period and fully recovers ...
Introduction: Resurrection plants (such as Ramonda serbica) can survive a long desiccation period an...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
The resurrection plant Ramonda serbica Panc. survives long desiccation periods and fully recovers m...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
Resurrection plant Ramonda serbica Panc. survives desiccation for a long period and fully recovers m...