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Titlebook: Comparative Genomics; Using Fungi as Model Per Sunnerhagen,Jure Piskur Book 20061st edition Springer-Verlag Berlin Heidelberg 2006 Telomere

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The Phosphorylation of Rhodopsin to define differences in the signalling pathway architecture between species, such as absent components or components with altered domain structure. Furthermore, they provide a powerful complement to functional protein analysis, such as discovery of novel, and evaluation of characterised, functiona
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T. M. Vuong,F. Pages,P. Deterre,M. Chabrethe complete genome of three representative yeasts, ., ., and .. This comparison revealed subtle and relevant differences in gene content, which explain in a satisfactory way the known physiological specificities of these three species. This analysis outlines the need for high quality and complete g
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https://doi.org/10.1007/b95174Telomere; bioinformatics; comparative genomics; evolution; fungal genome; fungi; genes; genome; genomics; mol
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Yukihiko Kitamura,Eiichi Morii,Tomoko Jippo to harvest this information source to derive functional predictions and understanding of genome anatomy. Comparative genomics also tells us stories about the evolution of yeasts and filamentous fungi, and the genome rearrangements that marked their history. For example, several genes encoding prote
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Lixin Li,Xiao-Tong Zhang,Steven A. Krilishich are distributed between the ascomycetes and the basidiomycetes, but only a small fraction of these species have undergone extensive genetic analyses. In this chapter, we discuss application of molecular methods for identification of species and for their classification from phylogenetic analysi
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