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不知道是否适用于人类。国庆假期愉快!
Each row contains an example of each of the five eye colors and each column contains two representatives of the same species. Colors and species are as follows: (A) brown (Acinonyx jubatus), (B) green (Leopardus jacobita), (C) yellow (Panthera pardus), (D) gray (Leopardus geoffroyi), (E) blue (Felis bieti), (F) yellow (Acinonyx jubatus), (G) brown (Leopardus jacobita), (H) blue (Panthera pardus), (I) green (Leopardus geoffroyi), (J) gray (Felis bieti). Photographs from (A) Piet Bakker, Pexels, (B) Luis D Romero, Shutterstock, (C) Tambako The Jaguar, Flickr, (D) www.dinoanimals.com, (E) Song Dazhao, CFCA, (F) Ronda Gregorio, Smithsonian National Zoo, (G) Nayer Youakim, (H) Tambako The Jaguar, Flickr, (I) Tambako The Jaguar, Flickr, (J) Abujoy, Wikimedia Commons.
Evolutionary insights into Felidae iris color through ancestral state reconstructionTabin, Julius A. et al.
iScience, Volume 27, Issue 10, 110903
https://www.cell.com/iscience/fulltext/S2589-0042(24)02128-X
SummaryFew studies have explored eye (iris) color evolution beyond humans and domesticated animals. Felids exhibit significant eye color diversity, unlike their brown-eyed relatives, making them an ideal model to study the evolution of eye color in natural populations. Through machine learning analysis of public photographs, five felid eye colors were identified: brown, green, yellow, gray, and blue. The presence or absence of these colors was reconstructed on a phylogeny, as well as their specific quantitative shades. The ancestral felid population likely had brown-eyed and gray-eyed individuals, the latter color being pivotal for the diversification of eye color seen in modern felids. Additionally, yellow eyes are highly associated with and may be necessary for, the evolution of round pupils in felids. These findings enhance the understanding of eye color evolution, and the methods presented in this work are widely applicable and will facilitate future research into the phylogenetic
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