<div><p>Massive water loss is a serious challenge for terrestrial animals, which usually has fatal consequences. However, some organisms have developed means to survive this stress by entering an ametabolic state called anhydrobiosis. The molecular and cellular mechanisms underlying this phenomenon are poorly understood. We recently showed that <i>Caenorhabditis elegans</i> dauer larva, an arrested stage specialized for survival in adverse conditions, is resistant to severe desiccation. However, this requires a preconditioning step at a mild desiccative environment to prepare the organism for harsher desiccation conditions. A systems approach was used to identify factors that are activated during this preconditioning. Using microarray analy...
Anhydrobiotic organisms have the remarkable ability to lose extensive amounts of body water and surv...
SummaryWater is essential for life on Earth. In its absence, however, some organisms can interrupt t...
This review compares the molecular strategies employed by anhydrobiotic invertebrates to survive ext...
Massive water loss is a serious challenge for terrestrial animals, which usually has fatal consequen...
Massive water loss is a serious challenge for terrestrial animals, which usually has fatal consequen...
Massive water loss is a serious challenge for terrestrial animals, which usually has fatal consequen...
The hypometabolic, stress-resistant dauer larva of Caenorhabditis elegans serves as an excellent mod...
Many organisms are able to survive the loss of up to 95% of their cellular fluid by entering a stat...
Many organisms are able to survive the loss of up to 95% of their cellular fluid by entering a stat...
Many organisms are able to survive the loss of up to 95% of their cellular fluid by entering a stat...
All organisms encounter abiotic stress but only certain organisms are able to cope with extreme cond...
<div><p><b><i>elegans</i></b>. </p> <p>The hypometabolic dauer larva senses a decrease in ambient hu...
SummayNew work now shows that the dauer larvae of Caenorhabditis elegans can survive anhydrobiotical...
Copyright: © 2020 Yamada et al. This is an open access article distributed under the terms of the Cr...
Upon starvation or overcrowding, the nematode Caenorhabditis elegans enters diapause by forming a da...
Anhydrobiotic organisms have the remarkable ability to lose extensive amounts of body water and surv...
SummaryWater is essential for life on Earth. In its absence, however, some organisms can interrupt t...
This review compares the molecular strategies employed by anhydrobiotic invertebrates to survive ext...
Massive water loss is a serious challenge for terrestrial animals, which usually has fatal consequen...
Massive water loss is a serious challenge for terrestrial animals, which usually has fatal consequen...
Massive water loss is a serious challenge for terrestrial animals, which usually has fatal consequen...
The hypometabolic, stress-resistant dauer larva of Caenorhabditis elegans serves as an excellent mod...
Many organisms are able to survive the loss of up to 95% of their cellular fluid by entering a stat...
Many organisms are able to survive the loss of up to 95% of their cellular fluid by entering a stat...
Many organisms are able to survive the loss of up to 95% of their cellular fluid by entering a stat...
All organisms encounter abiotic stress but only certain organisms are able to cope with extreme cond...
<div><p><b><i>elegans</i></b>. </p> <p>The hypometabolic dauer larva senses a decrease in ambient hu...
SummayNew work now shows that the dauer larvae of Caenorhabditis elegans can survive anhydrobiotical...
Copyright: © 2020 Yamada et al. This is an open access article distributed under the terms of the Cr...
Upon starvation or overcrowding, the nematode Caenorhabditis elegans enters diapause by forming a da...
Anhydrobiotic organisms have the remarkable ability to lose extensive amounts of body water and surv...
SummaryWater is essential for life on Earth. In its absence, however, some organisms can interrupt t...
This review compares the molecular strategies employed by anhydrobiotic invertebrates to survive ext...