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Titlebook: CRISPR-Cas Systems; RNA-mediated Adaptiv Rodolphe Barrangou,John van der Oost Book 2013 Springer-Verlag Berlin Heidelberg 2013 Acquired imm

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Klimakapriolen – El Niño und Monsunost–viral coevolutionary dynamics in the context of CRISPR loci. Finally, we highlight the future directions in which experimental analyses of host–viral coevolution can be fruitfully combined with theoretical approaches.
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Discovery and Seminal Developments in the CRISPR Field,d at characterizing the mechanistic details of this novel and complex genetic barrier. First, this led to the finding that the repeats, spacers, CRISPR-associated (Cas) proteins and partially conserved leader regions flanking one end of the CRISPR array, constitute the essential functional component
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Occurrence, Diversity of CRISPR-Cas Systems and Genotyping Implications,iability is a powerful marker of the species diversity and evolution. Through examples found among 1,434 published genomes of bacteria and archaea, different features of the CRISPR-Cas systems diversity will be highlighted.
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Regulation of CRISPR-Based Immune Responses, intrinsic cleavage activity on complementary nucleic acids (e.g., the RAMP module complex of .) or may to this end require recruitment of an additional component upon target binding (e.g., Cas3 recruitment by Cascade in .). The different steps toward the formation of the final effector complexes of
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crRNA Biogenesis,e that is further trimmed to generate the mature crRNAs. Type II systems have evolved a unique crRNA biogenesis pathway, in which a .-acting small RNA (encoded by the CRISPR-Cas locus) base pairs with each repeat sequence of the pre-crRNA to form a double-stranded RNA template that is cleaved by the
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