Ramonda serbica Panc. is a resurrection plant that can survive long desiccation periods (extreme loss of cellular water). The accumulation of late embryogenesis abundant proteins (LEAPs) is a crucial step in desiccation tolerance mechanism. Based on in vitro studies, LEAPs can be involved in antioxidative defense, ion sequestration, structural stabilization of both membranes and enzymes during freezing or drying, while by forming intracellular proteinaceous condensates they increase structural integrity and intracellular viscosity of cells during desiccation. Here we investigated the antioxidative potential of LEAPs identified by de novo transcriptomics of R. serbica, based on their primary and secondary confirmation. In our previous work ...
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 long periods of desiccation and full...
Resurrection plant Ramonda serbica Panc. survives desiccation for a long period and fully recovers ...
Ramonda serbica Panc. is a resurrection plant that can survive long desiccation periods (extreme lo...
Introduction: Resurrection plants (such as Ramonda serbica) can survive a long desiccation period an...
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 m...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
Endemic plant species, Ramonda serbica is a resurrection plant that can tolerate extreme dehydratio...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
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 dehydrationde...
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 long periods of desiccation and full...
Resurrection plant Ramonda serbica Panc. survives desiccation for a long period and fully recovers ...
Ramonda serbica Panc. is a resurrection plant that can survive long desiccation periods (extreme lo...
Introduction: Resurrection plants (such as Ramonda serbica) can survive a long desiccation period an...
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 m...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
Endemic plant species, Ramonda serbica is a resurrection plant that can tolerate extreme dehydratio...
Ramonda serbica Panc. is an ancient resurrection plant able to survive a long desiccation period and...
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 dehydrationde...
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 long periods of desiccation and full...
Resurrection plant Ramonda serbica Panc. survives desiccation for a long period and fully recovers ...