Javascript must be enabled to continue!
The evolution of genomic imprinting
View through CrossRef
ABSTRACT
We explore three possible pathways for the evolution of genomic imprinting. (1) Imprinting may be advantageous in itself when imprinted and unimprinted alleles of a locus confer different phenotypes. If a segment of DNA is imprinted in the gametes of one sex but not in those of the other, it might lead to effects correlated with sexual dimorphism. More fundamentally, in certain organisms, sex determination might have evolved because of imprinting. When imprinting leads to chromosome elimination or inactivation and occurs in some embryos but not in others, two classes of embryos, differing in the number of functional gene copies, would result. A model for sex determination based on inequality in the actual or effective copy-number of particular noncoding, regulatory sequences of DNA has been proposed (Chandra, Proc. natn. Acad. Sci. U.S.A. 82. 1165–1169 and 6947–6949, 1985). Maternal control of offspring sex is another possible consequence of imprinting; this would indicate a potential role for imprinting in sex ratio evolution. (2) Genes responsible for imprinting may have pleiotropic effects and they may have been selected for reasons other than their imprinting ability. Lack of evidence precludes further consideration of this possibility. (3) Imprinting could have co-evolved with other traits. For instance, gamete-specific imprinting could lead to a lowered fitness of androgenetic or gynogenetic diploids relative to the fitness of ‘normal’ diploids. This in turn would reinforce the evolution of anisogamy. The reversibility of imprinting raises the possibility of occassional incomplete or improper erasure. If the site of imprinting is the egg -as appears to be the case with the human X (Chandra and Brown, Nature 253. 165–168, 1975) -either improper imprinting or improper erasure could lead to unusual patterns of inheritance (as in the fragile-X syndrome) or fitness effects skipping generations.
Title: The evolution of genomic imprinting
Description:
ABSTRACT
We explore three possible pathways for the evolution of genomic imprinting.
(1) Imprinting may be advantageous in itself when imprinted and unimprinted alleles of a locus confer different phenotypes.
If a segment of DNA is imprinted in the gametes of one sex but not in those of the other, it might lead to effects correlated with sexual dimorphism.
More fundamentally, in certain organisms, sex determination might have evolved because of imprinting.
When imprinting leads to chromosome elimination or inactivation and occurs in some embryos but not in others, two classes of embryos, differing in the number of functional gene copies, would result.
A model for sex determination based on inequality in the actual or effective copy-number of particular noncoding, regulatory sequences of DNA has been proposed (Chandra, Proc.
natn.
Acad.
Sci.
U.
S.
A.
82.
1165–1169 and 6947–6949, 1985).
Maternal control of offspring sex is another possible consequence of imprinting; this would indicate a potential role for imprinting in sex ratio evolution.
(2) Genes responsible for imprinting may have pleiotropic effects and they may have been selected for reasons other than their imprinting ability.
Lack of evidence precludes further consideration of this possibility.
(3) Imprinting could have co-evolved with other traits.
For instance, gamete-specific imprinting could lead to a lowered fitness of androgenetic or gynogenetic diploids relative to the fitness of ‘normal’ diploids.
This in turn would reinforce the evolution of anisogamy.
The reversibility of imprinting raises the possibility of occassional incomplete or improper erasure.
If the site of imprinting is the egg -as appears to be the case with the human X (Chandra and Brown, Nature 253.
165–168, 1975) -either improper imprinting or improper erasure could lead to unusual patterns of inheritance (as in the fragile-X syndrome) or fitness effects skipping generations.
Related Results
The Significance of Genomic Imprinting for Brain Development and Behaviour
The Significance of Genomic Imprinting for Brain Development and Behaviour
Professor Barry Keverne FRS, FMedSci – Behavioural Neuroscience, King's College, Cambridge, described how genomic imprinting provides for co-adaptation of mother and fetus, for mat...
Dental pulp stem cells as a promising model to study imprinting diseases
Dental pulp stem cells as a promising model to study imprinting diseases
AbstractParental imprinting is an epigenetic process leading to monoallelic expression of certain genes depending on their parental origin. Imprinting diseases are characterized by...
Training ducklings in broods interferes with maternal imprinting
Training ducklings in broods interferes with maternal imprinting
AbstractUnder natural conditions, if maternal imprinting is to occur it must occur in a social situation which includes the presence of broodmates. In the laboratory it has been sh...
Characterisation of marsupial PHLDA2 reveals eutherian specific acquisition of imprinting
Characterisation of marsupial PHLDA2 reveals eutherian specific acquisition of imprinting
Abstract
Background
Genomic imprinting causes parent-of-origin specific gene expression by differential epigenetic modifications between two pare...
Characterization of imprinted genes in rice reveals post-fertilization regulation and conservation at some loci of imprinting in plant species
Characterization of imprinted genes in rice reveals post-fertilization regulation and conservation at some loci of imprinting in plant species
Abstract
Genomic imprinting is an epigenetic phenomenon by which certain genes display monoallelic expression in a parent-of-origin-dependent man...
DNA methylation as an epigenetic biomarker in imprinting
disorders
DNA methylation as an epigenetic biomarker in imprinting
disorders
Epigenetic modifications control gene expression and enable the same genotype to lead
to various phenotypes, thus exhibiting extensive variability in human cells function.
DNA meth...
Numerical Study on the Optimization of Roll-to-Roll Ultraviolet Imprint Lithography
Numerical Study on the Optimization of Roll-to-Roll Ultraviolet Imprint Lithography
Roll-to-roll ultraviolet (R2R-UV) imprinting is a low-cost and high-throughput method that includes the manufacturing of large-area functional films. However, the quality of the fi...
Reproductive technologies, female infertility, and the risk of imprinting-related disorders
Reproductive technologies, female infertility, and the risk of imprinting-related disorders
Abstract
Background
Epidemiological studies suggest that singletons born from assisted reproductive technologies (ART) have a high risk of adverse p...

