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Titlebook: Biocommunication of Archaea; Guenther Witzany Book 2017 Springer International Publishing AG 2017 Archaea communication.Archaea ecology.Ar

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Klaus Horn,Christel Beier,Michael Wolfbiofilm formation of archaea is far less studied and understood. Recent evidence has shown that upon biofilm formation, archaeal cells are able to secrete extracellular polymeric substances (EPS), whose composition changes according to available energy sources, environmental fluctuations and biofilm
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https://doi.org/10.1007/978-3-642-28201-0 emerged in the course of evolution, the most abundant ones being two-component signal transduction system typical of bacteria and serine/threonine/tyrosine protein kinases-centered systems typical for eukaryotes. Archaea possess both types of systems but they are not as common and diversified as th
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W. H. Adolph,H. Glatzel,H. Zellwegerrtant components of the defense system to fight against other microorganism, and play essential roles in improving tolerance against extreme environmental stress. The study of the secondary metabolites in archaea is still limited. In this chapter, we will discuss the diversity of secondary metabolit
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Hans Zellweger,William H. Adolphity of the domain archaea is far more complicated than previously thought, and which archaeal lineage served as the ancestor of the eukaryal lineage is currently under heated debate. Many archaeal viruses have been isolated in the past couple of decades, and have shown us their extensive morphologic
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https://doi.org/10.1007/978-3-662-36544-1utations that affect the heredity of cellular life. Upon DNA damage, archaea employ DNA damage response regulation to mediate DNA damage tolerance as for bacteria and eukaryotes, but the process involves archaea-specific DNA damage-inducible transcriptional factors. Several DNA repair pathways are k
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