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Titlebook: Epigenetics in Biological Communication; Guenther Witzany Book 2024 The Editor(s) (if applicable) and The Author(s), under exclusive licen

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https://doi.org/10.1007/978-3-8350-9611-0and transcription factors containing intrinsically disordered regions (which are subject to a multitude of posttranslational modifications) into phase separated domains for the feed forward control of developmental ontogeny.
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https://doi.org/10.1007/978-3-322-98619-1smission of the learned preference to recipients and to their offspring. Finally, we show that a few genes are differentially expressed in brains of larvae that feed on leaves with and without the odor, but the messenger RNA of these genes are not the epigenetic factors that are inherited by the offspring.
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Epigenetic Control of Cell Fate Decisions by Enhancer-Derived Long Noncoding RNAs,and transcription factors containing intrinsically disordered regions (which are subject to a multitude of posttranslational modifications) into phase separated domains for the feed forward control of developmental ontogeny.
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RNA-Mediated Inheritance of Mammalian Spermatozoa,ice which confirm the role of RNA in non-Mendelian transmission by inducing variations in the expression of a gene or a group of genes. These changes occur at the level of transcriptional expression and are accompanied by the expression of new phenotypes, then hereditary over several generations.
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Book 2024le cell and group behavior. These sign-mediated interactions we term biological communication. The regulatory system that works in development, morphology, cell fate and identity, physiology, genetic instructions, immunity, memory/learning, physical and mental disease depends on epigenetic marks. Th
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