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Combinatorial Approaches to Accurate Identification of Orthologous Genes

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Release : 2011
Genre : Bioinformatics
Kind : eBook
Book Rating : 571/5 ( reviews)

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Book Synopsis Combinatorial Approaches to Accurate Identification of Orthologous Genes by : Guanqun Shi

Download or read book Combinatorial Approaches to Accurate Identification of Orthologous Genes written by Guanqun Shi. This book was released on 2011. Available in PDF, EPUB and Kindle. Book excerpt: The accurate identification of orthologous genes across different species is a critical and challenging problem in comparative genomics and has a wide spectrum of biological applications including gene function inference, evolutionary studies and systems biology. During the past several years, many methods have been proposed for ortholog assignment based on sequence similarity, phylogenetic approaches, synteny information, and genome rearrangement. Although these methods share many commonly assigned orthologs, each method tends to produce an ortholog assignment significantly different from the others.

A Combinatorial Approach to Genome-wide Ortholog Assignment Via Genome Rearrangement

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Release : 2007
Genre : Gene mapping
Kind : eBook
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Book Synopsis A Combinatorial Approach to Genome-wide Ortholog Assignment Via Genome Rearrangement by : Zheng Fu

Download or read book A Combinatorial Approach to Genome-wide Ortholog Assignment Via Genome Rearrangement written by Zheng Fu. This book was released on 2007. Available in PDF, EPUB and Kindle. Book excerpt:

Computational Systems Bioinformatics (Volume 6) - Proceedings Of The Conference Csb 2007

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Release : 2007-09-12
Genre : Science
Kind : eBook
Book Rating : 097/5 ( reviews)

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Book Synopsis Computational Systems Bioinformatics (Volume 6) - Proceedings Of The Conference Csb 2007 by : Peter Markstein

Download or read book Computational Systems Bioinformatics (Volume 6) - Proceedings Of The Conference Csb 2007 written by Peter Markstein. This book was released on 2007-09-12. Available in PDF, EPUB and Kindle. Book excerpt: This volume contains about 40 papers covering many of the latest developments in the fast-growing field of bioinformatics. The contributions span a wide range of topics, including computational genomics and genetics, protein function and computational proteomics, the transcriptome, structural bioinformatics, microarray data analysis, motif identification, biological pathways and systems, and biomedical applications. Abstracts from the keynote addresses and invited talks are also included.The papers not only cover theoretical aspects of bioinformatics but also delve into the application of new methods, with input from computation, engineering and biology disciplines. This multidisciplinary approach to bioinformatics gives these proceedings a unique viewpoint of the field./a

Computational Systems Bioinformatics

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Release : 2007
Genre : Computers
Kind : eBook
Book Rating : 731/5 ( reviews)

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Book Synopsis Computational Systems Bioinformatics by : Peter Markstein

Download or read book Computational Systems Bioinformatics written by Peter Markstein. This book was released on 2007. Available in PDF, EPUB and Kindle. Book excerpt: This volume contains about 40 papers covering many of the latest developments in the fast-growing field of bioinformatics. The contributions span a wide range of topics, including computational genomics and genetics, protein function and computational proteomics, the transcriptome, structural bioinformatics, microarray data analysis, motif identification, biological pathways and systems, and biomedical applications. Abstracts from the keynote addresses and invited talks are also included. The papers not only cover theoretical aspects of bioinformatics but also delve into the application of new methods, with input from computation, engineering and biology disciplines. This multidisciplinary approach to bioinformatics gives these proceedings a unique viewpoint of the field. Sample Chapter(s). Chapter 1: Whole-Genome Analysis of Dorsal Gradient Thresholds in the Drosophila Embryo (102 KB). Contents: Learning Predictive Models of Gene Regulation (C Leslie); Algorithms for Selecting Breakpoint Locations to Optimize Diversity in Protein Engineering by Site-Directed Protein Recombination (W Zheng et al.); Cancer Molecular Pattern Discovery by Subspace Consensus Kernel Classification (X Han); Transcriptional Profiling of Definitive Endoderm Derived from Human Embryonic Stem Cells (H Liu et al.); A Markov Model Based Analysis of Stochastic Biochemical Systems (P Ghosh et al.); Clustering of Main Orthologs for Multiple Genomes (Z Fu & T Jiang); Extraction, Quantification and Visualization of Protein Pockets (X Zhang & C Bajaj); Consensus Contact Prediction by Linear Programming (X Gao et al.); An Active Visual Search Interface for Medline (W Xuan et al.); Exact and Heuristic Algorithms for Weighted Cluster Editing (S Rahmann et al.); Reconcilation with Non-binary Species Trees (B Vernot et al.); and other papers. Readership: Research and application community in bioinformatics, systems biology, medicine, pharmacology and biotechnology. Graduate researchers in bioinformatics and computational biology.

Computational Ortholog Prediction

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Release : 2013
Genre : Bioinformatics
Kind : eBook
Book Rating : /5 ( reviews)

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Book Synopsis Computational Ortholog Prediction by : Matthew Daratha Whiteside

Download or read book Computational Ortholog Prediction written by Matthew Daratha Whiteside. This book was released on 2013. Available in PDF, EPUB and Kindle. Book excerpt: Orthologs are genes that diverged from an ancestral gene when the species diverged. High-throughput computational methods for ortholog prediction are a key component of many computational biology analyses. A fundamental premise in these analyses is that orthologs (when predicted correctly) are functionally equivalent and can be used to transfer gene annotations across species. Currently, many existing ortholog prediction methods generate a sizeable number of incorrect ortholog predictions, especially in cases of complex gene evolution. My thesis examines the functional equivalence hypothesis further and presents one solution that increases the precision of ortholog prediction. To examine the use of orthologs in computational analysis, I conducted and evaluated three projects that employ ortholog prediction in distinct ways. In these projects, orthologs were used to (1) identify conserved, unique genes in metazoan species, (2) validate predicted gene regulatory modules in Pseudomonas aeruginosa, and (3) construct a transcriptional regulatory network in Aspergillus fumigatus. I identified factors affecting ortholog prediction in these specific use cases, demonstrating how successive gene duplications, incomplete genomes and rapid evolution of gene regulation can impact the results for such analyses. To improve ortholog prediction, I evaluated and augmented an existing method called Ortholuge. Ortholuge is a computational method that increases the precision of ortholog prediction in a high-throughput setting. I evaluated the performance of Ortholuge, showing that its approach of classifying orthologs based on their relative phylogenetic divergence does identify orthologs that are more functionally equivalent. I compared Ortholuge to contemporary methods QuartetS and OMA, and showed that Ortholuge consistently identifies functionally-equivalent orthologs across a range of taxonomic distances. I also further developed Ortholuge's functionality by reducing run-time, increasing accuracy and improving usability through a number of modifications. Lastly, to make Ortholuge results available to the research community, I developed a database of Ortholuge ortholog predictions for bacteria and archaea species. This online database provides high-level visualization of orthologs and the ability to easily run complex queries to retrieve genes that are shared or unique between specified taxa. Overall, this work contributes an enhanced method for precise high-throughput ortholog identification and increases our understanding of the functional equivalences between orthologs.

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