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Titlebook: Biocommunication and Natural Genome Editing; Günther Witzany Book 2010 Springer Science+Business Media B.V. 2010 Telomere.biology.genetics

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發(fā)表于 2025-3-21 19:41:08 | 只看該作者 |倒序瀏覽 |閱讀模式
期刊全稱Biocommunication and Natural Genome Editing
影響因子2023Günther Witzany
視頻videohttp://file.papertrans.cn/187/186749/186749.mp4
發(fā)行地址First uniform description of all key levels of communication in the organismic kingdoms of plants, fungi, animals (bees and corals), bacteria and additionally the natural genome editing competences of
圖書封面Titlebook: Biocommunication and Natural Genome Editing;  Günther Witzany Book 2010 Springer Science+Business Media B.V. 2010 Telomere.biology.genetics
影響因子I wrote this book for biologists and those who are interested in both biological affairs in general and perspectives which integrate a large number of specialised biological disciplines. The theory of biocommunication presented herein investigates signal transd- tion processes among cells, tissues, organs and organisms in bacteria, animals (corals and bees), fungi and plants in the light of the current available empirical data. Because life is the central focus of the life sciences, this theory will also focus on typical features of life as opposed to inorganic matter. Because this eld of investigation is based on the methodological primacy of a pragmatic action theory, the book may also be of interest to researchers of lingu- tics, communication sciences and sociology (e.g. plant sociology, animal sociology) who would welcome an overview of these highly specialised biological disciplines. Current molecular biology as well as cell biology investigates its scienti c object by using key terms such as genetic code, code without commas, misre- ing of the genetic code, coding, open reading frame, genetic storage medium DNA, genetic information, genetic alphabet, genetic expression, mess
Pindex Book 2010
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Communicative Competences of Honey-Bees,ke other flying insects, bees are important pollinators for plants, which would not be able to produce fruits without them. Since Karl von Frisch’s work it has been evident that the highly complex social behaviour of bee swarms is organised and coordinated by sign-mediated interactions, i.e. communi
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Biocommunication of Corals,cation patterns. Such patterns are sign-mediated interactions that cannot be reduced to mere exchange of information, but rather require active coordination and organisation. Communication processes within and among corals takes place at varying levels and occurs (a) within cells, (b) among cells, (
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Biocommunication of Fungal Organisms, in the evolution of multicellular eukaryotes such as animals and plants. Coordination and organisation processes occur in all organismic kingdoms, and in fungi these are seen during the formation of fruiting bodies (intraorganismic), between species of the same kind (interorganismic) and between no
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Natural Genome Editing Competences of Viruses and Virus-Like Agents, a precise genome editing by omnipresent viral agents. These competences integrate the whole toolbox of natural genetic engineering, replication, transcription, translation, genomic imprinting, genomic creativity, and all types of enzymatic inventions and genetic repair patterns. Even the non-coding
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How Bacteria Escaped Selection Pressure of the Early RNA-World,itude for replicating themselves by copying. The crucial shift was the invention of coding capabilities, because this dramatically differs from pure copying in a function which assembles a molecular syntax, pragmatics (context) and semantics (content) in parallel. Because coded nucleotide sequences
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Real Life-World of Noncoding RNA-Species, we know that the higher-order regulation of protein-coding datasets depends on complex interconnected networks of a great variety of non-coding RNAs that are read and transcribed in the developmental and growth processes of every cell within multicellular organisms. The evolutionary origins of thes
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