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1.
Cell Rep ; 17(9): 2460-2473, 2016 11 22.
Article in English | MEDLINE | ID: mdl-27880916

ABSTRACT

Gene regulatory networks (GRNs) guiding differentiation of cell types and cell assemblies in the nervous system are poorly understood because of inherent complexities and interdependence of signaling pathways. Here, we report transcriptome dynamics of differentiating rod photoreceptors in the mammalian retina. Given that the transcription factor NRL determines rod cell fate, we performed expression profiling of developing NRL-positive (rods) and NRL-negative (S-cone-like) mouse photoreceptors. We identified a large-scale, sharp transition in the transcriptome landscape between postnatal days 6 and 10 concordant with rod morphogenesis. Rod-specific temporal DNA methylation corroborated gene expression patterns. De novo assembly and alternative splicing analyses revealed previously unannotated rod-enriched transcripts and the role of NRL in transcript maturation. Furthermore, we defined the relationship of NRL with other transcriptional regulators and downstream cognate effectors. Our studies provide the framework for comprehensive system-level analysis of the GRN underlying the development of a single sensory neuron, the rod photoreceptor.


Subject(s)
Basic-Leucine Zipper Transcription Factors/metabolism , Eye Proteins/metabolism , Gene Expression Regulation, Developmental , Retinal Cone Photoreceptor Cells/metabolism , Transcriptome/genetics , Alternative Splicing/genetics , Animals , Animals, Newborn , Cell Differentiation/genetics , Computer Simulation , DNA Methylation/genetics , Gene Regulatory Networks , Mice , Mice, Inbred C57BL , Mice, Knockout , Molecular Sequence Annotation , Promoter Regions, Genetic/genetics , RNA, Messenger/genetics , RNA, Messenger/metabolism
2.
Dev Cell ; 37(6): 520-32, 2016 06 20.
Article in English | MEDLINE | ID: mdl-27326930

ABSTRACT

Vertebrate ancestors had only cone-like photoreceptors. The duplex retina evolved in jawless vertebrates with the advent of highly photosensitive rod-like photoreceptors. Despite cones being the arbiters of high-resolution color vision, rods emerged as the dominant photoreceptor in mammals during a nocturnal phase early in their evolution. We investigated the evolutionary and developmental origins of rods in two divergent vertebrate retinas. In mice, we discovered genetic and epigenetic vestiges of short-wavelength cones in developing rods, and cell-lineage tracing validated the genesis of rods from S cones. Curiously, rods did not derive from S cones in zebrafish. Our study illuminates several questions regarding the evolution of duplex retina and supports the hypothesis that, in mammals, the S-cone lineage was recruited via the Maf-family transcription factor NRL to augment rod photoreceptors. We propose that this developmental mechanism allowed the adaptive exploitation of scotopic niches during the nocturnal bottleneck early in mammalian evolution.


Subject(s)
Biological Evolution , Light , Mammals/metabolism , Night Vision/radiation effects , Retinal Cone Photoreceptor Cells/metabolism , Retinal Rod Photoreceptor Cells/metabolism , Animals , Basic-Leucine Zipper Transcription Factors/metabolism , Cell Lineage/genetics , Cell Lineage/radiation effects , Chickens , Chromatin/metabolism , Epigenesis, Genetic/radiation effects , Eye Proteins/metabolism , Gene Expression Regulation, Developmental/radiation effects , Mammals/genetics , Mice , Opsins/metabolism , Regulatory Sequences, Nucleic Acid/genetics , Retinal Cone Photoreceptor Cells/radiation effects , Retinal Rod Photoreceptor Cells/radiation effects , Ultraviolet Rays , Zebrafish/embryology , Zebrafish/metabolism
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