International audienceABSTRACT Tardigrades, microscopic animals found in virtually all ecosystems, are renowned for their remarkable ability to withstand extreme conditions. Recent studies have identified novel tardigrade specific protein families that aid in resistance to desiccation and ionizing radiation (IR). Notably, a tardigrade specific DNA binding protein called Dsup (for DNA damage suppressor) has been found to protect from X-ray damage in human cells and from hydroxyl radicals in vitro . However, Dsup has only been found in two species within the Hypsibioidea superfamily. To better understand mechanisms underlying radio-resistance in the Tardigrada phylum, we first characterized DNA damage and repair in response to IR in the model...
Tardigrades have unique stress-adaptations that allow them to survive extremes of cold, heat, radiat...
Tardigrades have unique stress-adaptations that allow them to survive extremes of cold, heat, radiat...
Functional protein clusters and regulatory motifs do not only mediate the unique adaptation of tardi...
Tardigrades are known for being resistant to extreme conditions, including tolerance to ionising and...
Tardigrades represent a phylum of very small aquatic animals in which many species have evolved adap...
Genomic DNA stores all genetic information and is indispensable for maintenance of normal cellular a...
Tardigrades are small aquatic animals that are known for their ability to tolerate extreme dessicati...
Tardigrades are microscopic invertebrates that are uniquely radio tolerant among animals, and while ...
Tardigrades, also known as water bears, are small aquatic animals. Some tardigrade species tolerate ...
<div><p>Tardigrades inhabiting terrestrial environments exhibit extraordinary resistance to ionizing...
Tardigrades inhabiting terrestrial environments exhibit extraordinary resistance to ionizing radiati...
Tardigrades, also known as water bears, are animals that can survive extreme conditions. The tardigr...
Tardigrades inhabiting terrestrial environments exhibit extraordinary resistance to ionizing radiati...
Tardigrades inhabiting terrestrial environments exhibit extraordinary resistance to ionizing radiati...
The Ramazzottius varieornatus tardigrade is an extremotolerant terrestrial invertebrate with a lengt...
Tardigrades have unique stress-adaptations that allow them to survive extremes of cold, heat, radiat...
Tardigrades have unique stress-adaptations that allow them to survive extremes of cold, heat, radiat...
Functional protein clusters and regulatory motifs do not only mediate the unique adaptation of tardi...
Tardigrades are known for being resistant to extreme conditions, including tolerance to ionising and...
Tardigrades represent a phylum of very small aquatic animals in which many species have evolved adap...
Genomic DNA stores all genetic information and is indispensable for maintenance of normal cellular a...
Tardigrades are small aquatic animals that are known for their ability to tolerate extreme dessicati...
Tardigrades are microscopic invertebrates that are uniquely radio tolerant among animals, and while ...
Tardigrades, also known as water bears, are small aquatic animals. Some tardigrade species tolerate ...
<div><p>Tardigrades inhabiting terrestrial environments exhibit extraordinary resistance to ionizing...
Tardigrades inhabiting terrestrial environments exhibit extraordinary resistance to ionizing radiati...
Tardigrades, also known as water bears, are animals that can survive extreme conditions. The tardigr...
Tardigrades inhabiting terrestrial environments exhibit extraordinary resistance to ionizing radiati...
Tardigrades inhabiting terrestrial environments exhibit extraordinary resistance to ionizing radiati...
The Ramazzottius varieornatus tardigrade is an extremotolerant terrestrial invertebrate with a lengt...
Tardigrades have unique stress-adaptations that allow them to survive extremes of cold, heat, radiat...
Tardigrades have unique stress-adaptations that allow them to survive extremes of cold, heat, radiat...
Functional protein clusters and regulatory motifs do not only mediate the unique adaptation of tardi...