Extreme environments test the limits of life; yet, some organisms thrive in harsh conditions. Extremophile lineages inspire questions about how organisms can tolerate physiochemical stressors and whether the repeated colonization of extreme environments is facilitated by predictable and repeatable evolutionary innovations. We identified the mechanistic basis underlying convergent evolution of tolerance to hydrogen sulfide (H2S)-a toxicant that impairs mitochondrial function-across evolutionarily independent lineages of a fish (Poecilia mexicana, Poeciliidae) from H2S-rich springs. Using comparative biochemical and physiological analyses, we found that mitochondrial function is maintained in the presence of H2S in sulfide spring P. mexicana ...
Doctor of PhilosophyDepartment of BiologyMichael ToblerExtremophiles are organisms with the ability ...
Extreme habitats challenge animals with highly adverse conditions, like extreme temperatures or toxi...
Environmental factors can promote phenotypic variation through alterations in the epigenome and faci...
Extreme environments test the limits of life; yet, some organisms thrive in harsh conditions. Extrem...
Hydrogen sulfide (H2S) is a potent toxicant interfering with oxidative phosphorylation in mitochondr...
Hydrogen sulfide (H2S) is a natural toxicant in some aquatic environments that has diverse molecular...
Extreme environments allow for the investigation of life’s capacity and limitations to cope with far...
The molecular basis of convergent phenotypes is often unknown. However, convergence at a genomic lev...
The molecular basis of convergent phenotypes is often unknown. However, convergence at a genomic lev...
Hydrogen sulfide (H2S) is well known as a toxic gas produced by the decomposition of organic matter ...
Replicated ecological gradients are prime systems to study processes of molecular evolution underlyi...
The colonization of novel environments often involves changes in gene expression, protein coding seq...
Doctor of PhilosophyDivision of BiologyMichael ToblerThe physiological mechanisms underlying adaptat...
Variation in gene expression can provide insights into organismal responses to environmental stress ...
We investigated replicated ecological speciation in the livebearing fishes Poecilia mexicana and P. ...
Doctor of PhilosophyDepartment of BiologyMichael ToblerExtremophiles are organisms with the ability ...
Extreme habitats challenge animals with highly adverse conditions, like extreme temperatures or toxi...
Environmental factors can promote phenotypic variation through alterations in the epigenome and faci...
Extreme environments test the limits of life; yet, some organisms thrive in harsh conditions. Extrem...
Hydrogen sulfide (H2S) is a potent toxicant interfering with oxidative phosphorylation in mitochondr...
Hydrogen sulfide (H2S) is a natural toxicant in some aquatic environments that has diverse molecular...
Extreme environments allow for the investigation of life’s capacity and limitations to cope with far...
The molecular basis of convergent phenotypes is often unknown. However, convergence at a genomic lev...
The molecular basis of convergent phenotypes is often unknown. However, convergence at a genomic lev...
Hydrogen sulfide (H2S) is well known as a toxic gas produced by the decomposition of organic matter ...
Replicated ecological gradients are prime systems to study processes of molecular evolution underlyi...
The colonization of novel environments often involves changes in gene expression, protein coding seq...
Doctor of PhilosophyDivision of BiologyMichael ToblerThe physiological mechanisms underlying adaptat...
Variation in gene expression can provide insights into organismal responses to environmental stress ...
We investigated replicated ecological speciation in the livebearing fishes Poecilia mexicana and P. ...
Doctor of PhilosophyDepartment of BiologyMichael ToblerExtremophiles are organisms with the ability ...
Extreme habitats challenge animals with highly adverse conditions, like extreme temperatures or toxi...
Environmental factors can promote phenotypic variation through alterations in the epigenome and faci...