True S-cones are concentrated in the ventral mouse retina and wired for color detection in the upper visual field

Author:

Nadal-Nicolás Francisco M1ORCID,Kunze Vincent P1ORCID,Ball John M1,Peng Brian T1,Krishnan Akshay1,Zhou Gaohui1,Dong Lijin2,Li Wei1ORCID

Affiliation:

1. Retinal Neurophysiology Section, National Eye Institute, National Institutes of Health, Bethesda, United States

2. Genetic Engineering Facility, National Eye Institute, National Institutes of Health, Bethesda, United States

Abstract

Color, an important visual cue for survival, is encoded by comparing signals from photoreceptors with different spectral sensitivities. The mouse retina expresses a short wavelength-sensitive and a middle/long wavelength-sensitive opsin (S- and M-opsin), forming opposing, overlapping gradients along the dorsal-ventral axis. Here, we analyzed the distribution of all cone types across the entire retina for two commonly used mouse strains. We found, unexpectedly, that ‘true S-cones’ (S-opsin only) are highly concentrated (up to 30% of cones) in ventral retina. Moreover, S-cone bipolar cells (SCBCs) are also skewed towards ventral retina, with wiring patterns matching the distribution of true S-cones. In addition, true S-cones in the ventral retina form clusters, which may augment synaptic input to SCBCs. Such a unique true S-cone and SCBC connecting pattern forms a basis for mouse color vision, likely reflecting evolutionary adaptation to enhance color coding for the upper visual field suitable for mice’s habitat and behavior.

Funder

National Eye Institute

Publisher

eLife Sciences Publications, Ltd

Subject

General Immunology and Microbiology,General Biochemistry, Genetics and Molecular Biology,General Medicine,General Neuroscience

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