The blind subterranean mole rat Spalax shows a remarkable tolerance to hypoxia, cancer-resistance and longevity. Unravelling the genomic basis of these adaptations will be important for biomedical applications. RNA-Seq gene expression data were obtained from normoxic and hypoxic Spalax and rat liver tissue. Hypoxic Spalax broadly downregulates genes from major liver function pathways. This energy-saving response is likely a crucial adaptation to low oxygen levels. In contrast, the hypoxia-sensitive rat shows massive upregulation of energy metabolism genes. Candidate genes with plausible connections to the mole rat’s phenotype, such as important key genes related to hypoxia-tolerance, DNA damage repair, tumourigenesis and ageing, are substan...
International audienceABSTRACT Changes in gene regulation have long been thought to underlie most ph...
Mole-rats are champions of self-preservation, with increased longevity compared with other rodents ...
Subterranean mammals spend their lives in dark, unventilated environments that are rich in carbon di...
The blind subterranean mole rat Spalax shows a remarkable tolerance to hypoxia, cancer-resistance an...
Abstract Background The development of complex responses to hypoxia has played a key role in the evo...
The blind mole rat (BMR), Spalax galili, is an excellent model for studying mammalian adaptation to ...
The blind subterranean mole rat (Spalax ehrenbergi superspecies) is a model animal for survival unde...
The blind subterranean mole rat (Spalax ehrenbergi superspecies) is a model animal for survival unde...
Abstract Background Spalax, the blind mole rat, developed an extraordinary cancer resistance during ...
Blind mole rats of the genus Spalax are the only mammalian species to date for which spontaneous can...
The blind mole rat (BMR), Spalax galili, is an excellent model for studying mammalian adaptation to ...
The naked mole rat (NMR; Heterocephalus glaber) is a small rodent species found in regions of Kenya,...
The naked mole-rat (Heterocephalus glaber) is a long-lived, cancer resistant rodent and there is a g...
Oxidative metabolism is fine-tuned machinery that combines two tightly coupled fluxes of glucose and...
The bioenergetics of the vast majority of terrestrial mammals evolved to consuming glucose (Glc) for...
International audienceABSTRACT Changes in gene regulation have long been thought to underlie most ph...
Mole-rats are champions of self-preservation, with increased longevity compared with other rodents ...
Subterranean mammals spend their lives in dark, unventilated environments that are rich in carbon di...
The blind subterranean mole rat Spalax shows a remarkable tolerance to hypoxia, cancer-resistance an...
Abstract Background The development of complex responses to hypoxia has played a key role in the evo...
The blind mole rat (BMR), Spalax galili, is an excellent model for studying mammalian adaptation to ...
The blind subterranean mole rat (Spalax ehrenbergi superspecies) is a model animal for survival unde...
The blind subterranean mole rat (Spalax ehrenbergi superspecies) is a model animal for survival unde...
Abstract Background Spalax, the blind mole rat, developed an extraordinary cancer resistance during ...
Blind mole rats of the genus Spalax are the only mammalian species to date for which spontaneous can...
The blind mole rat (BMR), Spalax galili, is an excellent model for studying mammalian adaptation to ...
The naked mole rat (NMR; Heterocephalus glaber) is a small rodent species found in regions of Kenya,...
The naked mole-rat (Heterocephalus glaber) is a long-lived, cancer resistant rodent and there is a g...
Oxidative metabolism is fine-tuned machinery that combines two tightly coupled fluxes of glucose and...
The bioenergetics of the vast majority of terrestrial mammals evolved to consuming glucose (Glc) for...
International audienceABSTRACT Changes in gene regulation have long been thought to underlie most ph...
Mole-rats are champions of self-preservation, with increased longevity compared with other rodents ...
Subterranean mammals spend their lives in dark, unventilated environments that are rich in carbon di...