Javascript must be enabled to continue!
Developmentally programmed epigenome regulates cellular plasticity at the parental-to-zygote transition
View through CrossRef
Abstract
During metazoan development, the dramatic potency change from germline to embryos raises an important question regarding how the new life cycle is reset. Here, we report a tightly regulated epigenome landscape change from the parental germline to embryos in
C. elegans
. The epigenome is enriched with histone H3 in early-stage germ cells but switches to a histone variant H3.3-enriched epigenome in the mature egg. This H3.3-dominant epigenome persists in early-stage embryos until gastrulation, when the epigenome becomes H3 abundant again. We further demonstrate that this developmentally programmed H3 → H3.3 → H3 epigenome landscape change is regulated through differential expression of distinct histone gene clusters and is required for both germline integrity and early embryonic cellular plasticity. Together, this study reveals that a bimodal expression of H3
versus
H3.3 is important for epigenetic reprogramming during gametogenesis and embryonic plasticity.
One Sentence Summary
Developmentally programmed epigenome resets cellular plasticity at the parental-to-zygote transition in
C. elegans
.
Title: Developmentally programmed epigenome regulates cellular plasticity at the parental-to-zygote transition
Description:
Abstract
During metazoan development, the dramatic potency change from germline to embryos raises an important question regarding how the new life cycle is reset.
Here, we report a tightly regulated epigenome landscape change from the parental germline to embryos in
C.
elegans
.
The epigenome is enriched with histone H3 in early-stage germ cells but switches to a histone variant H3.
3-enriched epigenome in the mature egg.
This H3.
3-dominant epigenome persists in early-stage embryos until gastrulation, when the epigenome becomes H3 abundant again.
We further demonstrate that this developmentally programmed H3 → H3.
3 → H3 epigenome landscape change is regulated through differential expression of distinct histone gene clusters and is required for both germline integrity and early embryonic cellular plasticity.
Together, this study reveals that a bimodal expression of H3
versus
H3.
3 is important for epigenetic reprogramming during gametogenesis and embryonic plasticity.
One Sentence Summary
Developmentally programmed epigenome resets cellular plasticity at the parental-to-zygote transition in
C.
elegans
.
Related Results
GAMBARAN PARENTAL STRESS PADA IBU DI KABUPATEN KARAWANG
GAMBARAN PARENTAL STRESS PADA IBU DI KABUPATEN KARAWANG
Dewasa ini, kekerasan pada anak semakin marak dan salah satu pelakunya orang terdekat, salah satunya adalah orang tua. Bentuk kekerasan dapat berupa kekerasan fisik, verbal, bahkan...
A viral guide RNA delivery system for CRISPR-based transcriptional activation and heritable targeted DNA demethylation in
Arabidopsis thaliana
A viral guide RNA delivery system for CRISPR-based transcriptional activation and heritable targeted DNA demethylation in
Arabidopsis thaliana
Abstract
Plant RNA viruses are used as delivery vectors for their high level of accumulation and efficient spread during virus multiplication and...
Single-cell RNA-seq Reveals Early Transcriptional Programs of the Maternal to Zygote Transition in Mice and Rats
Single-cell RNA-seq Reveals Early Transcriptional Programs of the Maternal to Zygote Transition in Mice and Rats
Abstract
The maternal to zygote transition in mammals has been an area of intensive research over the past few decades, with an ever-changing landscape of understan...
Reproductive plasticity in both sexes interacts to determine mating behaviour and fecundity
Reproductive plasticity in both sexes interacts to determine mating behaviour and fecundity
AbstractOrganisms alter their phenotype in response to variation in their environment by expressing phenotypic plasticity. Both sexes exhibit such plasticity in response to contras...
fects of early drought-induced phenotypic plasticity on late plant seedling interactions
fects of early drought-induced phenotypic plasticity on late plant seedling interactions
Abstract
In nature, plants are often exposed to a variety of environments. The study of plant phenotypic plasticity cannot ignore a variety of environmental factors. At pre...
Short-term depression and long-term plasticity together tune sensitive range of synaptic plasticity
Short-term depression and long-term plasticity together tune sensitive range of synaptic plasticity
Abstract
Synaptic efficacy is subjected to activity-dependent changes on short- and long time scales. While short-term changes decay over minutes, long-term modific...
Can the epigenome contribute to risk stratification for cancer onset?
Can the epigenome contribute to risk stratification for cancer onset?
Abstract
The increasing burden of cancer requires identifying and protecting individuals at highest risk. The epigenome provides an indispensable complement to genet...
Fertility Transition Across Major Sub-Saharan African Cities: The Role of Proximate Determinants
Fertility Transition Across Major Sub-Saharan African Cities: The Role of Proximate Determinants
Abstract
Background
Sub-Saharan Africa’s fertility transition has lagged behind other regions despite rapid urbanization, resulting in persistently high fertility rates. S...

