Haberlea rhodopensis belongs to the group of homoiochlorophyllous desiccation-tolerant plants which preserve their chlorophyll content during dehydration. It is a typical shade adapted plant and it is proved to be very sensitive to light intensity higher than the natural during drought stress. To reveal the reasons of their light sensitivity, we compared the damages and protective mechanisms of shade plants during desiccation either simulating their natural light conditions (30 lmol photons m-2 s-1, LL) or at a moderately higher light intensity (100 lmol photons m-2 s-1, ML). In the desiccated stage, no damage could be discovered in terms of thylakoid membrane quantity or integrity either at LL or ML. Nevertheless, the altered ...
The possible role of photorespiration as a general stress protection mechanism, and in C(4) plant me...
Subaerial green algae are exposed to extreme hydration stress, yet cells need to remain fully hydrat...
Mechanisms of avoidance and protection against light damage were studied in the resurrection plants ...
Drought induced stress is one of the most important among the environmental challenges. Haberlea rho...
There are two main mechanisms of desiccation-tolerance in angiosperms. Both of these (poikilochlorop...
Haberlea rhodopensis belongs to the small group of resurrection plants having the unique ability to...
Haberlea rhodopensis is a resurrection plant with remarkable tolerance to desiccation. Haberlea expo...
The effects of light stress during drying on excised twigs of the homoiochlorophyllous resurrection ...
Haberlea rhodopensis is a unique desiccation-tolerant angiosperm that also survives winter frost. A...
The effect of light stress during drying, experienced by the homoiochlorophyllous resurrection plant...
Abstract The desiccation-tolerant plant Haberlea rhodopensis can withstand months of darkness witho...
Because of their unique tolerance to desiccation, the so-called resurrection plants can be considere...
The poikilochorophyllous, desiccation-tolerant (PDT) angiosperm, Pleurostima purpurea, normally occu...
Haberlea rhodopensis is a unique desiccation-tolerant angiosperm that also survives winter frost. As...
Chlorophyll fluorescence was used to study the effect of hardening treatments on aspects of desiccat...
The possible role of photorespiration as a general stress protection mechanism, and in C(4) plant me...
Subaerial green algae are exposed to extreme hydration stress, yet cells need to remain fully hydrat...
Mechanisms of avoidance and protection against light damage were studied in the resurrection plants ...
Drought induced stress is one of the most important among the environmental challenges. Haberlea rho...
There are two main mechanisms of desiccation-tolerance in angiosperms. Both of these (poikilochlorop...
Haberlea rhodopensis belongs to the small group of resurrection plants having the unique ability to...
Haberlea rhodopensis is a resurrection plant with remarkable tolerance to desiccation. Haberlea expo...
The effects of light stress during drying on excised twigs of the homoiochlorophyllous resurrection ...
Haberlea rhodopensis is a unique desiccation-tolerant angiosperm that also survives winter frost. A...
The effect of light stress during drying, experienced by the homoiochlorophyllous resurrection plant...
Abstract The desiccation-tolerant plant Haberlea rhodopensis can withstand months of darkness witho...
Because of their unique tolerance to desiccation, the so-called resurrection plants can be considere...
The poikilochorophyllous, desiccation-tolerant (PDT) angiosperm, Pleurostima purpurea, normally occu...
Haberlea rhodopensis is a unique desiccation-tolerant angiosperm that also survives winter frost. As...
Chlorophyll fluorescence was used to study the effect of hardening treatments on aspects of desiccat...
The possible role of photorespiration as a general stress protection mechanism, and in C(4) plant me...
Subaerial green algae are exposed to extreme hydration stress, yet cells need to remain fully hydrat...
Mechanisms of avoidance and protection against light damage were studied in the resurrection plants ...