The harsh environment of Qinghai-Tibet Plateau (QTP) imposes strong selective stresses (e.g., hypoxia, high UV-radiation, and extreme temperature) to the native species, which have driven striking phenotypic and genetic adaptations. Although the mechanisms of high-altitude adaptation have been explored for many plateau species, how the phylogenetic background contributes to genetic adaption to high-altitude of Vulpes is largely unknown. In this study, we sequenced transcriptomic data across multiple tissues of two high-altitude Vulpes (Vulpes vulpes montana and Vulpes ferrilata) and their low-altitude relatives (Vulpes corsac and Vulpes lagopus) to search the genetic and gene expression changes caused by high-altitude environment. The resul...
Humans and their domestic animals have lived and thrived in high-altitude environments worldwide for...
High-elevation organisms experience shared environmental challenges that include low oxygen availabi...
Low oxygen and temperature pose key physiological challenges for endotherms living on the Qinghai–Ti...
Background: Organisms living at high altitudes must overcome three major environmental challenges: h...
Abstract Background: Species living at high altitude are subject to strong selective pressures due t...
Background: High-altitude adaptation provides an excellent system for studying how organisms cope wi...
Abstract Background Understanding how organisms adapt to high-elevation environments at a genome sca...
Understanding how organisms adapt to the environment is a compelling question in modern evolutionary...
High-altitude environments impose intense stresses on living organisms and drive striking phenotypic...
The extreme conditions (e.g., cold, low oxygen, and strong ultraviolet radiation) of the high mounta...
Abstract Background Genome-wide investigation of molecular mechanisms for high-altitude adaptation h...
Understanding how species adapt to extreme environments is an extension of the main goals of evoluti...
High elevation adaptation offers an excellent study system to understand the genetic basis of adapti...
Elucidating the molecular genetic basis of adaptive traits is a central goal of evolutionary genetic...
Humans and their domestic animals have lived and thrived in high-altitude environments worldwide for...
Humans and their domestic animals have lived and thrived in high-altitude environments worldwide for...
High-elevation organisms experience shared environmental challenges that include low oxygen availabi...
Low oxygen and temperature pose key physiological challenges for endotherms living on the Qinghai–Ti...
Background: Organisms living at high altitudes must overcome three major environmental challenges: h...
Abstract Background: Species living at high altitude are subject to strong selective pressures due t...
Background: High-altitude adaptation provides an excellent system for studying how organisms cope wi...
Abstract Background Understanding how organisms adapt to high-elevation environments at a genome sca...
Understanding how organisms adapt to the environment is a compelling question in modern evolutionary...
High-altitude environments impose intense stresses on living organisms and drive striking phenotypic...
The extreme conditions (e.g., cold, low oxygen, and strong ultraviolet radiation) of the high mounta...
Abstract Background Genome-wide investigation of molecular mechanisms for high-altitude adaptation h...
Understanding how species adapt to extreme environments is an extension of the main goals of evoluti...
High elevation adaptation offers an excellent study system to understand the genetic basis of adapti...
Elucidating the molecular genetic basis of adaptive traits is a central goal of evolutionary genetic...
Humans and their domestic animals have lived and thrived in high-altitude environments worldwide for...
Humans and their domestic animals have lived and thrived in high-altitude environments worldwide for...
High-elevation organisms experience shared environmental challenges that include low oxygen availabi...
Low oxygen and temperature pose key physiological challenges for endotherms living on the Qinghai–Ti...