Synthetic Biology
Genomic Analysis

Genomic Analysis

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Genomic Analysis

CD Biosynsis provides specialized genomic analysis for the test phase of synthetic biology to help researchers around the world facilitate their cutting-edge research. Equipped with an advanced technology platform and powerful synthetic biology tools, we have the ability to help bring diverse synthetic biology applications and creative ideas to fruition.

Introduction to Genomic Analysis

Genomic analysis offers the possibility of identifying, measuring, and comparing genomic features such as DNA sequences, gene expression, regulatory and functional elements, and structural variation at the genomic scale. High-throughput sequencing, microarray, and bioinformatics are typical methods for genomic analysis. The development of synthetic biology has been greatly accelerated by breakthroughs in high-throughput technologies, such as next-generation sequencing and mass spectroscopy.

Since the major goal of synthetic biology is to model and construct biological components, functions, organisms, and biological systems that do not exist in nature, or to redesign existing biological systems with complex biological features or enable them to perform new functions to satisfy human needs, this field has progressively relied on and integrated with genomics, which has led to the emergence of a nascent field—synthetic genomics.

Figure 1. Synthetic genomics and synthetic biology applications in biomedicine and health. (Konig H, et al., 2013)Figure 1. Synthetic genomics and synthetic biology applications in biomedicine and health. (Konig H, et al., 2013)

Featured Services

CD Biosynsis offers a complete set of tools for genomics and synthetic biology to help our customers overcome the challenges in synthetic biology. Browse our featured services below or use our online inquiry form to get more information.

Sequencing and Analysis

Sequencing technologies allow for the reading and quantification of nucleic acids such as DNA and RNA, which has revolutionized our understanding of life. The emergence of synthetic biology has endowed these technologies with new applications. CD BioSicences has a state-of-the-art sequencing platform from Sanger sequencing to next-generation sequencing to provide comprehensive sequencing and analysis solutions for genomic analysis in synthetic biology.

Functional Genomics and Functional Metagenomics

Functional genomics is a powerful tool for understanding the relationship between genotypes and possible phenotypes of organisms. Functional metagenomics, a powerful experimental approach to study gene function, has supplied an innovative breakthrough in high-throughput sequencing. CD Biosynsis provides the latest tools for functional genomics and functional metagenomics to facilitate the development of synthetic biology.

Synthetic Genomics

Synthetic genomics, an emerging field of synthetic biology, allows for the simultaneous engineering of numerous changes to the genetic material of organisms. Artificial gene synthesis enables the creation of novel DNA or even entire lifeforms. CD Biosynsis has an experienced scientific team specialized in synthetic genomics to help our customers accelerate synthetic biology research for a broad range of applications.

CD Biosynsis offers a variety of cutting-edge techniques to customize services for individual customer specifications. Our experienced scientific team of biologists, bioinformatics, and chemists is dedicated to helpinging our customers solve any problems encountered in their synthetic biology projects.

If you are interested in our services or have any specific needs, please feel free to contact us for more details.

References

  1. Konig H, et al. Synthetic genomics and synthetic biology applications between hopes and concerns. Current genomics, 2013, 14(1): 11-24.
  2. Gilliot P A & Gorochowski T E. Sequencing enabling design and learning in synthetic biology. Current Opinion in Chemical Biology, 2020, 58: 54-62.
Please note that all services are for research use only. Not intended for any clinical use.

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