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A group of researchers concludes that a gene variant commonly linked to migraines may have spread because early humans needed it to thrive amid cold climates.
The World Health Organization estimates that a migraine is one of the common headache disorders suffered by one in every seven adults in the world. The organization noted that for some unknown reason, the condition appears less common in the Far East region consisting of East Asia, Russian Far East, and Southeast Asia.
The recent study, headed by Felix Key of the Max Planck Institute for Evolutionary Anthropology, noted that a migraine is highest in individuals of European descent. This is also the population that possesses the highest frequency of the TRPM8, the gene that helps humans adapt to a cold environment.
TRPM8 gene is also associated with a variant, which in return, is commonly attributed to migraines.
Early Human Population
The researchers noted that ancient population migrated from Africa to colder locations in Asia, Europe, and other parts of the world within the last 50,000 years.
"This colonization could have been accompanied by genetic adaptations that helped early humans respond to cold temperatures," explains Aida Andres, who supervised the study published in the journal PLOS Genetics.
Key and his team suspected that this particular adaptation to the freezing environment may have added to the factors that made migraines prevalent in a particular group of the population. To support this hypothesis, the team examined the TRPM8, a gene that allows people to detect and respond to cold temperatures.
Their analysis revealed that a genetic variant upstream from the TRPM8 developed progressively more common in people living in higher altitudes during the last 25,000 years. This detail remains observable at present with the gene variant commonly carried by people living in higher altitudes and with a colder environment.
Interestingly, only 5 percent of people with Nigerian descent possess the gene variant while 88 percent of those with Finnish lineage carry the trait.
"This study nicely shows how past evolutionary pressures can influence present-day phenotypes," Key highlights.
What Triggers Migraine
WHO says that a migraine is three times more common in women than in men, probably due to hormonal factors. While the condition mostly affects those aged between 35 and 45, it can also affect children.
According to the American Migraine Foundation, storms, excessive heat, and changes to barometric pressure are also common causes of a migraine.
The condition might also be triggered by stress with one recent study showing that 50 to 70 percent of people with migraines showed a correlation between daily stress and frequent attacks.
A migraine can also be triggered by irregular sleep, caffeine and alcohol consumption, as well as food containing histamine and MSG.
Chocolate, cheese, artificial sweeteners, and cured meats also commonly trigger migraines, as well as dehydration, medication overuse, perfumes, food with strong smells, and the stench of chemicals, and gasoline.
http://www.techtimes.com/articles/2...elp-ancient-humans-adapt-to-cold-climates.htm
The World Health Organization estimates that a migraine is one of the common headache disorders suffered by one in every seven adults in the world. The organization noted that for some unknown reason, the condition appears less common in the Far East region consisting of East Asia, Russian Far East, and Southeast Asia.
The recent study, headed by Felix Key of the Max Planck Institute for Evolutionary Anthropology, noted that a migraine is highest in individuals of European descent. This is also the population that possesses the highest frequency of the TRPM8, the gene that helps humans adapt to a cold environment.
TRPM8 gene is also associated with a variant, which in return, is commonly attributed to migraines.
Early Human Population
The researchers noted that ancient population migrated from Africa to colder locations in Asia, Europe, and other parts of the world within the last 50,000 years.
"This colonization could have been accompanied by genetic adaptations that helped early humans respond to cold temperatures," explains Aida Andres, who supervised the study published in the journal PLOS Genetics.
Key and his team suspected that this particular adaptation to the freezing environment may have added to the factors that made migraines prevalent in a particular group of the population. To support this hypothesis, the team examined the TRPM8, a gene that allows people to detect and respond to cold temperatures.
Their analysis revealed that a genetic variant upstream from the TRPM8 developed progressively more common in people living in higher altitudes during the last 25,000 years. This detail remains observable at present with the gene variant commonly carried by people living in higher altitudes and with a colder environment.
Interestingly, only 5 percent of people with Nigerian descent possess the gene variant while 88 percent of those with Finnish lineage carry the trait.
"This study nicely shows how past evolutionary pressures can influence present-day phenotypes," Key highlights.
What Triggers Migraine
WHO says that a migraine is three times more common in women than in men, probably due to hormonal factors. While the condition mostly affects those aged between 35 and 45, it can also affect children.
According to the American Migraine Foundation, storms, excessive heat, and changes to barometric pressure are also common causes of a migraine.
The condition might also be triggered by stress with one recent study showing that 50 to 70 percent of people with migraines showed a correlation between daily stress and frequent attacks.
A migraine can also be triggered by irregular sleep, caffeine and alcohol consumption, as well as food containing histamine and MSG.
Chocolate, cheese, artificial sweeteners, and cured meats also commonly trigger migraines, as well as dehydration, medication overuse, perfumes, food with strong smells, and the stench of chemicals, and gasoline.
http://www.techtimes.com/articles/2...elp-ancient-humans-adapt-to-cold-climates.htm
Human local adaptation of the TRPM8 cold receptor along a latitudinal cline
Ambient temperature is a critical environmental factor for all living organisms. It was likely an important selective force as modern humans recently colonized temperate and cold Eurasian environments. Nevertheless, as of yet we have limited evidence of local adaptation to ambient temperature in populations from those environments. To shed light on this question, we exploit the fact that humans are a cosmopolitan species that inhabit territories under a wide range of temperatures. Focusing on cold perception–which is central to thermoregulation and survival in cold environments–we show evidence of recent local adaptation on TRPM8. This gene encodes for a cation channel that is, to date, the only temperature receptor known to mediate an endogenous response to moderate cold. The upstream variant rs10166942 shows extreme population differentiation, with frequencies that range from 5% in Nigeria to 88% in Finland (placing this SNP in the 0.02% tail of the FST empirical distribution). When all populations are jointly analyzed, allele frequencies correlate with latitude and temperature beyond what can be explained by shared ancestry and population substructure. Using a Bayesian approach, we infer that the allele originated and evolved neutrally in Africa, while positive selection raised its frequency to different degrees in Eurasian populations, resulting in allele frequencies that follow a latitudinal cline. We infer strong positive selection, in agreement with ancient DNA showing high frequency of the allele in Europe 3,000 to 8,000 years ago. rs10166942 is important phenotypically because its ancestral allele is protective of migraine. This debilitating disorder varies in prevalence across human populations, with highest prevalence in individuals of European descent–precisely the population with the highest frequency of rs10166942 derived allele. We thus hypothesize that local adaptation on previously neutral standing variation may have contributed to the genetic differences that exist in the prevalence of migraine among human populations today.
http://journals.plos.org/plosgenetics/article?id=10.1371/journal.pgen.1007298