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Retinal oxygen supply shaped the functional evolution of the vertebrate eye.

eLife | 2019

The retina has a very high energy demand but lacks an internal blood supply in most vertebrates. Here we explore the hypothesis that oxygen diffusion limited the evolution of retinal morphology by reconstructing the evolution of retinal thickness and the various mechanisms for retinal oxygen supply, including capillarization and acid-induced haemoglobin oxygen unloading. We show that a common ancestor of bony fishes likely had a thin retina without additional retinal oxygen supply mechanisms and that three different types of retinal capillaries were gained and lost independently multiple times during the radiation of vertebrates, and that these were invariably associated with parallel changes in retinal thickness. Since retinal thickness confers multiple advantages to vision, we propose that insufficient retinal oxygen supply constrained the functional evolution of the eye in early vertebrates, and that recurrent origins of additional retinal oxygen supply mechanisms facilitated the phenotypic evolution of improved functional eye morphology.

Pubmed ID: 31820735 RIS Download

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Associated grants

  • Agency: Danida Fellowship Centre, International
    Id: DFC no. 12-014AU
  • Agency: Carlsbergfondet, International
    Id: CF16-0713
  • Agency: Carlsbergfondet, International
    Id: CF17-0195
  • Agency: Biotechnology and Biological Sciences Research Council, United Kingdom
    Id: BBSRC 26/S17991
  • Agency: National Science Foundation, International
    Id: Office of Polar Programs NSF/PLR OPP-1444167
  • Agency: National Science Foundation, International
    Id: Office of Polar Programs NSF/PLR OPP-1543383

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