Literature DB >> 24872382

Epigenetics: Beyond Chromatin Modifications and Complex Genetic Regulation.

Steven R Eichten1, Robert J Schmitz2, Nathan M Springer2.   

Abstract

Chromatin modifications and epigenetics may play important roles in many plant processes, including developmental regulation, responses to environmental stimuli, and local adaptation. Chromatin modifications describe biochemical changes to chromatin state, such as alterations in the specific type or placement of histones, modifications of DNA or histones, or changes in the specific proteins or RNAs that associate with a genomic region. The term epigenetic is often used to describe a variety of unexpected patterns of gene regulation or inheritance. Here, we specifically define epigenetics to include the key aspects of heritability (stable transmission of gene expression states through mitotic or meiotic cell divisions) and independence from DNA sequence changes. We argue against generically equating chromatin and epigenetics; although many examples of epigenetics involve chromatin changes, those chromatin changes are not always heritable or may be influenced by genetic changes. Careful use of the terms chromatin modifications and epigenetics can help separate the biochemical mechanisms of regulation from the inheritance patterns of altered chromatin states. Here, we also highlight examples in which chromatin modifications and epigenetics affect important plant processes.
© 2014 American Society of Plant Biologists. All Rights Reserved.

Year:  2014        PMID: 24872382      PMCID: PMC4081347          DOI: 10.1104/pp.113.234211

Source DB:  PubMed          Journal:  Plant Physiol        ISSN: 0032-0889            Impact factor:   8.340


  205 in total

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5.  Atypical RNA polymerase subunits required for RNA-directed DNA methylation.

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Journal:  Nat Genet       Date:  2005-05-29       Impact factor: 38.330

Review 6.  Genome instability and epigenetic modification--heritable responses to environmental stress?

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9.  DNA methylation dynamics during sexual reproduction in Arabidopsis thaliana.

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10.  Epigenomic consequences of immortalized plant cell suspension culture.

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  53 in total

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6.  Rapid Recovery Gene Downregulation during Excess-Light Stress and Recovery in Arabidopsis.

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Review 7.  Plant epigenetic mechanisms: role in abiotic stress and their generational heritability.

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8.  Transgenerational effects alter plant defence and resistance in nature.

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9.  Genetic perturbation of the maize methylome.

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