[Background] The animal signaling theory posits that conspicuous colorations exhibited by many animals have evolved as reliable signals of individual quality. Red carotenoid-based ornaments may depend on enzymatic transformations (oxidation) of dietary yellow carotenoids, which could occur in the inner mitochondrial membrane (IMM). Thus, carotenoid ketolation and cell respiration could share the same biochemical pathways. Accordingly, the level of trait expression (redness) would directly reveal the efficiency of individuals’ metabolism and, hence, the bearer quality in an unfalsifiable way. Different avian studies have described that the flying effort may induce oxidative stress. A redox metabolism modified during the flight could thus inf...
Ornaments can evolve to reveal individual quality when their production/maintenance costs make them ...
Carotenoid pigments are responsible for many of the red, yellow and orange plumage and integument tr...
Some of the most spectacular visual signals found in the animal kingdom are based on dietarily deriv...
Este congreso tuvo lugar en Estocolmo (Suecia) del 28 de julio al 2 de agosto.The animal signaling t...
Carotenoid-based ornaments are often considered reliable (honest) individual condition signals becau...
Carotenoid coloration is widely recognized as a signal of individual condition in various animals, b...
Carotenoid coloration is widely recognized as a signal of individual condition in various animals, b...
Colorful ornaments have been the focus of sexual selection studies since the work of Darwin. Yellow ...
The past decades have provided valuable information on how animals age in the wild. However, example...
In many vertebrates, the enzymatic oxidation of dietary yellow carotenoids generates red keto-carote...
1. Male House Finches (Carpodacus mexicanus) colour their sexually selected plumage with carotenoid ...
Carotenoid pigments cannot be synthesized by vertebrates but must be ingested through the diet. As t...
Oxidative stress could be a key selective force shaping the expression of colored traits produced by...
The evolution and production mechanisms of red carotenoid-based ornaments in animals are poorly unde...
Some of the most spectacular visual signals found in the animal kingdom are based on dietarily deriv...
Ornaments can evolve to reveal individual quality when their production/maintenance costs make them ...
Carotenoid pigments are responsible for many of the red, yellow and orange plumage and integument tr...
Some of the most spectacular visual signals found in the animal kingdom are based on dietarily deriv...
Este congreso tuvo lugar en Estocolmo (Suecia) del 28 de julio al 2 de agosto.The animal signaling t...
Carotenoid-based ornaments are often considered reliable (honest) individual condition signals becau...
Carotenoid coloration is widely recognized as a signal of individual condition in various animals, b...
Carotenoid coloration is widely recognized as a signal of individual condition in various animals, b...
Colorful ornaments have been the focus of sexual selection studies since the work of Darwin. Yellow ...
The past decades have provided valuable information on how animals age in the wild. However, example...
In many vertebrates, the enzymatic oxidation of dietary yellow carotenoids generates red keto-carote...
1. Male House Finches (Carpodacus mexicanus) colour their sexually selected plumage with carotenoid ...
Carotenoid pigments cannot be synthesized by vertebrates but must be ingested through the diet. As t...
Oxidative stress could be a key selective force shaping the expression of colored traits produced by...
The evolution and production mechanisms of red carotenoid-based ornaments in animals are poorly unde...
Some of the most spectacular visual signals found in the animal kingdom are based on dietarily deriv...
Ornaments can evolve to reveal individual quality when their production/maintenance costs make them ...
Carotenoid pigments are responsible for many of the red, yellow and orange plumage and integument tr...
Some of the most spectacular visual signals found in the animal kingdom are based on dietarily deriv...