Abstract
The nucleotide composition of genomes undergoes dramatic variations among all three kingdoms of life. GC content, an important characteristic for a genome, is related to many important functions, and therefore GC content and its distribution are routinely reported for sequenced genomes. Traditionally, GC content distribution is assessed by computing GC contents in windows that slide along the genome. Disadvantages of this routinely used window-based method include low resolution and low sensitivity. Additionally, different window sizes result in different GC content distribution patterns within the same genome. We proposed a windowless method, the GC profile, for displaying GC content variations across the genome. Compared to the window-based method, the GC profile has the following advantages: 1) higher sensitivity, because of variation-amplifying procedures; 2) higher resolution, because boundaries between domains can be determined at one single base pair; 3) uniqueness, because the GC profile is unique for a given genome and 4) the capacity to show both global and regional GC content distributions. These characteristics are useful in identifying horizontallytransferred genomic islands and homogenous GC-content domains. Here, we review the applications of the GC profile in identifying genomic islands and genome segmentation points, and in serving as a platform to integrate with other algorithms for genome analysis. A web server generating GC profiles and implementing relevant genome segmentation algorithms is available at: www.zcurve.net.
Keywords: GC profile, Genomic island, Genome segmentation.
Current Genomics
Title:Identification of Horizontally-transferred Genomic Islands and Genome Segmentation Points by Using the GC Profile Method
Volume: 15 Issue: 2
Author(s): Ren Zhang, Hong-Yu Ou, Feng Gao and Hao Luo
Affiliation:
Keywords: GC profile, Genomic island, Genome segmentation.
Abstract: The nucleotide composition of genomes undergoes dramatic variations among all three kingdoms of life. GC content, an important characteristic for a genome, is related to many important functions, and therefore GC content and its distribution are routinely reported for sequenced genomes. Traditionally, GC content distribution is assessed by computing GC contents in windows that slide along the genome. Disadvantages of this routinely used window-based method include low resolution and low sensitivity. Additionally, different window sizes result in different GC content distribution patterns within the same genome. We proposed a windowless method, the GC profile, for displaying GC content variations across the genome. Compared to the window-based method, the GC profile has the following advantages: 1) higher sensitivity, because of variation-amplifying procedures; 2) higher resolution, because boundaries between domains can be determined at one single base pair; 3) uniqueness, because the GC profile is unique for a given genome and 4) the capacity to show both global and regional GC content distributions. These characteristics are useful in identifying horizontallytransferred genomic islands and homogenous GC-content domains. Here, we review the applications of the GC profile in identifying genomic islands and genome segmentation points, and in serving as a platform to integrate with other algorithms for genome analysis. A web server generating GC profiles and implementing relevant genome segmentation algorithms is available at: www.zcurve.net.
Export Options
About this article
Cite this article as:
Zhang Ren, Ou Hong-Yu, Gao Feng and Luo Hao, Identification of Horizontally-transferred Genomic Islands and Genome Segmentation Points by Using the GC Profile Method, Current Genomics 2014; 15 (2) . https://dx.doi.org/10.2174/1389202915999140328163125
DOI https://dx.doi.org/10.2174/1389202915999140328163125 |
Print ISSN 1389-2029 |
Publisher Name Bentham Science Publisher |
Online ISSN 1875-5488 |
Call for Papers in Thematic Issues
Current Genomics in Cardiovascular Research
Cardiovascular diseases are the main cause of death in the world, in recent years we have had important advances in the interaction between cardiovascular disease and genomics. In this Research Topic, we intend for researchers to present their results with a focus on basic, translational and clinical investigations associated with ...read more
Deep learning in Single Cell Analysis
The field of biology is undergoing a revolution in our ability to study individual cells at the molecular level, and to integrate data from multiple sources and modalities. This has been made possible by advances in technologies for single-cell sequencing, multi-omics profiling, spatial transcriptomics, and high-throughput imaging, as well as ...read more
New insights on Pediatric Tumors and Associated Cancer Predisposition Syndromes
Because of the broad spectrum of children cancer susceptibility, the diagnosis of cancer risk syndromes in children is rarely used in direct cancer treatment. The field of pediatric cancer genetics and genomics will only continue to expand as a result of increasing use of genetic testing tools. It's possible that ...read more
Related Journals
- Author Guidelines
- Graphical Abstracts
- Fabricating and Stating False Information
- Research Misconduct
- Post Publication Discussions and Corrections
- Publishing Ethics and Rectitude
- Increase Visibility of Your Article
- Archiving Policies
- Peer Review Workflow
- Order Your Article Before Print
- Promote Your Article
- Manuscript Transfer Facility
- Editorial Policies
- Allegations from Whistleblowers
- Announcements
Related Articles
-
Convection Enhanced Delivery of Macromolecules for Brain Tumors
Current Drug Discovery Technologies The Changing Face of HIV/AIDS in Treated Patients
Current HIV Research Potential Drugs Targeting Microglia: Current Knowledge and Future Prospects
CNS & Neurological Disorders - Drug Targets Lipids and Their Derivatives: By-Products Used as Essential Building Blocks for Modern Drug Delivery Systems
Current Drug Targets Recent Developments in the Synthesis and Biological Activity of Muramylpeptides
Current Medicinal Chemistry How to Manage the Infectious Risk under Anti-TNF in Inflammatory Bowel Disease
Current Drug Targets Hypertension in Pregnancy: Pathophysiology & Management Strategies
Current Pharmaceutical Design Editorial [ NeuroAIDS: A Neuroscience Problem with Global Impact ]
Current HIV Research Liposomal Drug Delivery System for Cancer Therapy: Advancement and Patents
Recent Patents on Drug Delivery & Formulation State of the Art of Nanobiotechnology Applications in Neglected Diseases
Current Nanoscience A Possible New Diagnostic Biomarker in Early Diagnosis of Alzheimers Disease
Current Alzheimer Research Transferrin Coupled Liposomes for Enhanced Brain Delivery of Doxorubicin
Vascular Disease Prevention (Discontinued) Regulation of ABC Transporter Function Via Phosphorylation by Protein Kinases
Current Pharmaceutical Biotechnology The Correlations between Postmortem Brain Pathologies and Cognitive Dysfunction in Aging and Alzheimer's Disease
Current Alzheimer Research Pulmonary Disease in Beta-Thalassemia
Current Respiratory Medicine Reviews Current Approaches in Antiviral Drug Discovery Against the Flaviviridae Family
Current Pharmaceutical Design T2/FLAIR Hyperintensity in Mesial Temporal Lobe: Challenging Differential Diagnosis
Current Medical Imaging Currently Used Biologic Agents in the Management of Behcet’s Syndrome
Current Medicinal Chemistry Effects of Medicinal Plants on Human Hosts and Zoonotic Helminthic Infections: A Systematic Review
The Natural Products Journal The Effect of Pyrroloquinoline Quinone on Apoptosis and Autophagy in Traumatic Brain Injury
CNS & Neurological Disorders - Drug Targets