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Any process that modulates the frequency, rate or extent of photoreceptor cell differentiation. An example of this process is found in Drosophila melanogaster. Any process that stops, prevents or reduces the frequency, rate or extent of photoreceptor cell differentiation. An example of this process is found in Drosophila melanogaster. The specialization of organization of a photoreceptor, a cell that responds to incident electromagnetic radiation, particularly visible light. An example of this process is found in Drosophila melanogaster. Any process that stops, prevents or reduces the frequency or rate of cell fate commitment. Cell fate commitment is the commitment of cells to specific cell fates and their capacity to differentiate into particular kinds of cells. Positional information is established through protein signals that emanate from a localized source within a cell (the initial one-cell zygote) or within a developmental field. Any process that modulates the process whereby a cell becomes committed to a retinal cone cell fate. Retinal cone cell fate commitment is the process whereby the developmental fate of a cell becomes restricted such that it will develop into a retinal cone cell. Any process that stops, prevents or reduces the frequency, rate or extent of an organismal process, the processes pertinent to the function of an organism above the cellular level; includes the integrated processes of tissues and organs. Any process that modulates the frequency, rate or extent of cell fate commitment. Cell fate commitment is the commitment of cells to specific cell fates and their capacity to differentiate into particular kinds of cells. Positional information is established through protein signals that emanate from a localized source within a cell (the initial one-cell zygote) or within a developmental field. The process whereby the developmental fate of a cell becomes restricted such that it will develop into a photoreceptor cell in a camera-type eye. Any process that increases the process whereby a cell becomes committed to a retinal cone cell fate. Retinal cone cell fate commitment is the process whereby the developmental fate of a cell becomes restricted such that it will develop into a retinal cone cell. The commitment of cells to specific cell fates and their capacity to differentiate into particular kinds of cells. Positional information is established through protein signals that emanate from a localized source within a cell (the initial one-cell zygote) or within a developmental field. The process whereby a relatively unspecialized cell acquires the specialized features of a retinal cone cell. Any process that stops, prevents or reduces the frequency, rate or extent of neuron differentiation. Any process that modulates the rate, frequency, or extent of neural retina development, the progression of the neural retina over time from its initial formation to the mature structure. The neural retina is the part of the retina that contains neurons and photoreceptor cells. Any process that modulates the frequency, rate or extent of anatomical structure morphogenesis. Any process that stops, prevents or reduces the frequency, rate or extent of cell differentiation. The process whereby the developmental fate of a cell becomes restricted such that it will develop into a retinal cone cell. A retinal cone cell is one of the two photoreceptor subtypes in a camera-type eye.

View Gene Ontology (GO) Term

GO TERM SUMMARY

Name: negative regulation of retinal cone cell fate commitment
Acc: GO:0060226
Aspect: Biological Process
Desc: Any process that increases the process whereby a cell becomes committed to a retinal cone cell fate. Retinal cone cell fate commitment is the process whereby the developmental fate of a cell becomes restricted such that it will develop into a retinal cone cell.
Proteins in PDR annotated with:
   This term: 0
   Term or descendants: 0


[geneontology.org]
INTERACTIVE GO GRAPH

GO:0060226 - negative regulation of retinal cone cell fate commitment (interactive image map)

YRC Informatics Platform - Version 3.0
Created and Maintained by: Michael Riffle