Intergenerational and transgenerational epigenetic inheritance in animals

Animals transmit not only DNA but also other molecules, such as RNA, proteins and metabolites, to their progeny via gametes. It is currently unclear to what extent these molecules convey information between generations and whether this information changes according to their physiological state and e...

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Vydáno v:Nature cell biology Ročník 21; číslo 2; s. 143 - 151
Hlavní autoři: Perez, Marcos Francisco, Lehner, Ben
Médium: Journal Article
Jazyk:angličtina
Vydáno: London Nature Publishing Group UK 01.02.2019
Nature Publishing Group
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ISSN:1465-7392, 1476-4679, 1476-4679
On-line přístup:Získat plný text
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Abstract Animals transmit not only DNA but also other molecules, such as RNA, proteins and metabolites, to their progeny via gametes. It is currently unclear to what extent these molecules convey information between generations and whether this information changes according to their physiological state and environment. Here, we review recent work on the molecular mechanisms by which ‘epigenetic’ information is transmitted between generations over different timescales, and the importance of this information for development and physiology. Perez and Lehner summarize recent discoveries regarding epigenetic inheritance across generations and review the molecular mechanisms underlying non-DNA sequence-based transmissions.
AbstractList Animals transmit not only DNA but also other molecules, such as RNA, proteins and metabolites, to their progeny via gametes. It is currently unclear to what extent these molecules convey information between generations and whether this information changes according to their physiological state and environment. Here, we review recent work on the molecular mechanisms by which 'epigenetic' information is transmitted between generations over different timescales, and the importance of this information for development and physiology. Perez and Lehner summarize recent discoveries regarding epigenetic inheritance across generations and review the molecular mechanisms underlying non-DNA sequence-based transmissions.
Animals transmit not only DNA but also other molecules, such as RNA, proteins and metabolites, to their progeny via gametes. It is currently unclear to what extent these molecules convey information between generations and whether this information changes according to their physiological state and environment. Here, we review recent work on the molecular mechanisms by which 'epigenetic' information is transmitted between generations over different timescales, and the importance of this information for development and physiology.
Animals transmit not only DNA but also other molecules, such as RNA, proteins and metabolites, to their progeny via gametes. It is currently unclear to what extent these molecules convey information between generations and whether this information changes according to their physiological state and environment. Here, we review recent work on the molecular mechanisms by which ‘epigenetic’ information is transmitted between generations over different timescales, and the importance of this information for development and physiology. Perez and Lehner summarize recent discoveries regarding epigenetic inheritance across generations and review the molecular mechanisms underlying non-DNA sequence-based transmissions.
Animals transmit not only DNA but also other molecules, such as RNA, proteins and metabolites, to their progeny via gametes. It is currently unclear to what extent these molecules convey information between generations and whether this information changes according to their physiological state and environment. Here, we review recent work on the molecular mechanisms by which 'epigenetic' information is transmitted between generations over different timescales, and the importance of this information for development and physiology.Animals transmit not only DNA but also other molecules, such as RNA, proteins and metabolites, to their progeny via gametes. It is currently unclear to what extent these molecules convey information between generations and whether this information changes according to their physiological state and environment. Here, we review recent work on the molecular mechanisms by which 'epigenetic' information is transmitted between generations over different timescales, and the importance of this information for development and physiology.
Audience Academic
Author Lehner, Ben
Perez, Marcos Francisco
Author_xml – sequence: 1
  givenname: Marcos Francisco
  surname: Perez
  fullname: Perez, Marcos Francisco
  organization: Systems Biology Program, Centre for Genomic Regulation (CRG), The Barcelona Institute of Science and Technology
– sequence: 2
  givenname: Ben
  surname: Lehner
  fullname: Lehner, Ben
  email: ben.lehner@crg.eu
  organization: Systems Biology Program, Centre for Genomic Regulation (CRG), The Barcelona Institute of Science and Technology, Universitat Pompeu Fabra (UPF), Institució Catalana de Recerca i Estudis Avançats (ICREA)
BackLink https://www.ncbi.nlm.nih.gov/pubmed/30602724$$D View this record in MEDLINE/PubMed
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Snippet Animals transmit not only DNA but also other molecules, such as RNA, proteins and metabolites, to their progeny via gametes. It is currently unclear to what...
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SubjectTerms 631/136/2442
631/337/384
Animals
Base sequence
Biomedical and Life Sciences
Cancer Research
Cell Biology
Deoxyribonucleic acid
Developmental Biology
Disease transmission
DNA
DNA Methylation
DNA replication
DNA sequencing
Environment
Epigenesis, Genetic
Epigenetic inheritance
Epigenetics
Gametes
Genetic research
Genomics - methods
Germ Cells - cytology
Germ Cells - metabolism
Heredity
Inheritance Patterns - genetics
Life Sciences
Metabolites
Models, Genetic
Molecular genetics
Molecular modelling
Physiology
Progeny
Proteins
Review Article
Ribonucleic acid
RNA
Selection, Genetic
Sperm
Stem Cells
Title Intergenerational and transgenerational epigenetic inheritance in animals
URI https://link.springer.com/article/10.1038/s41556-018-0242-9
https://www.ncbi.nlm.nih.gov/pubmed/30602724
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Volume 21
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