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Titlebook: Biocommunication of Fungi; Günther Witzany Book 2012 Springer Science+Business Media Dordrecht 2012 Fungus biocommunication.Interorganismi

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the local level and between widely separated mycelium parts. This allows fungi to coordinate appropriate response behaviors in a differentiated manner to their current developmental sta978-94-007-9747-5978-94-007-4264-2
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Book 2012his is crucial in coordinating growth and development, shape and dynamics. Such communication mustfunction both on the local level and between widely separated mycelium parts. This allows fungi to coordinate appropriate response behaviors in a differentiated manner to their current developmental sta
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https://doi.org/10.1007/978-3-642-87073-6rpretation processes can also fail. In such cases the overall consequences could be disease-causing, or even lethal. Interestingly, certain rules of fungal communication are very similar to those of animals, while others more closely resemble those of plants.
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https://doi.org/10.1007/978-3-642-87072-9sm and defense responses for the advantage of fungal and other pathogens. The focus of this chapter is to describe recent advances in our understanding of oxylipin-mediated signal communication between fungi and plants, highlighting pathogenic systems.
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Introduction: Keylevels of Biocommunication in Fungi,riety of social interactions mediated by signals according to syntactic (combinatorial), pragmatic (context dependent) and semantic (content-specific) rules. On one side, development and growth of fungal organisms depends upon successful communication processes within, and between, cells of fungal o
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G Protein Signaling Components in Filamentous Fungal Genomesnate from extracellular ligands or from internal sources. These signals are conveyed from G protein coupled receptors (GPCRs) or nonreceptor guanine nucleotide exchange factors (GEFs) to a heterotrimeric G protein composed of α, β and γ subunits. GPCRs and nonreceptor GEFs activate the Gα subunit, c
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Glycogen Metabolism Regulation in , of glycogen synthesis and degradation share similarities among different microorganisms. However, the regulation of the metabolism as a whole shows differences, likely due to the environmental conditions to which they individually respond. This chapter aims to present some molecular mechanisms that
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Epigenetic Regulation of Secondary Metabolite Biosynthetic Genes in Fungi participating in chemical sensing systems and communicating with other organisms in their surroundings. In order for natural products to operate effectively, the host organisms must maintain control over their expression. Epigenetic processes have emerged as important contributors to the regulation
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