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Titlebook: Computational Genomic Signatures; Ozkan Ufuk Nalbantoglu,Khalid Sayood Book 2011 Springer Nature Switzerland AG 2011

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發(fā)表于 2025-3-21 19:53:48 | 只看該作者 |倒序?yàn)g覽 |閱讀模式
書目名稱Computational Genomic Signatures
編輯Ozkan Ufuk Nalbantoglu,Khalid Sayood
視頻videohttp://file.papertrans.cn/233/232322/232322.mp4
叢書名稱Synthesis Lectures on Biomedical Engineering
圖書封面Titlebook: Computational Genomic Signatures;  Ozkan Ufuk Nalbantoglu,Khalid Sayood Book 2011 Springer Nature Switzerland AG 2011
描述Recent advances in development of sequencing technology has resulted in a deluge of genomic data. In order to make sense of this data, there is an urgent need for algorithms for data processing and quantitative reasoning. An emerging in silico approach, called computational genomic signatures, addresses this need by representing global species-specific features of genomes using simple mathematical models. This text introduces the general concept of computational genomic signatures, and it reviews some of the DNA sequence models which can be used as computational genomic signatures. The text takes the position that a practical computational genomic signature consists of both a model and a measure for computing the distance or similarity between models. Therefore, a discussion of sequence similarity/distance measurement in the context of computational genomic signatures is presented. The remainder of the text covers various applications of computational genomic signatures in the areas ofmetagenomics, phylogenetics and the detection of horizontal gene transfer. Table of Contents: Genome Signatures, Definition and Background / Other Computational Characterizations as Genome Signatures
出版日期Book 2011
版次1
doihttps://doi.org/10.1007/978-3-031-01650-9
isbn_softcover978-3-031-00522-0
isbn_ebook978-3-031-01650-9Series ISSN 1930-0328 Series E-ISSN 1930-0336
issn_series 1930-0328
copyrightSpringer Nature Switzerland AG 2011
The information of publication is updating

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Other Computational Characterizations as Genome Signatures,igonucleotide frequencies constitute genome signatures. Following the genome analysis literature from different disciplines, two different branches of research came up with the concept of genome signatures. Being able to capture genome-specific structures without any need of entire chromosomes, but
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Applications: Horizontal DNA Transfer Detection,xonomical membership of genome fragments. These applications exploit the species specificity and pervasiveness of genomic signatures. As reported on several occasions, these properties are not ideally observed in real genomes. Many genome signatures define mathematical characterizations of genomes b
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978-3-031-00522-0Springer Nature Switzerland AG 2011
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https://doi.org/10.1007/978-1-84996-030-4ical sequences such as DNA, ribonucleic acid (RNA) and proteins has been invaluable for understanding the driving forces, trends and implications of the evolution of species. Development of statistical tools for analyzing biological sequences has been useful for capturing the effect of evolution on
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