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The High-Throughput DNA Library Assembly Service offers accurate and efficient assembly and cloning of various predefined DNA fragments or parts into a vector of customer choice to generate a library of cloned constructs strategically assembled in a specific arrangement. These predefined DNA fragments or parts may be of promoters, enhancers/repressors, specific binding sites, localization signals, genes, terminators, and barcodes. Such libraries are powerful tools often utilized by scientists for a variety of combinatorial optimization applications, such as identification of an optimal genetic circuit design for the best possible output and optimization of a metabolic pathway to maximize the production a high-value chemical, biofuel, or pharmaceutical.
Built on our advanced, high-throughput platforms and world-renowned expertise in gene synthesis, GenScript offers comprehensive High-Throughput DNA Library Assembly services for various downstream screening needs to help accelerate your metabolic pathway and microbial strain engineering process.
One-stop
high-throughput solution
Seamlessly assembled
with advanced methods
Expert advising
on all project plans by our Ph.D.-level scientists
Faster and more economical
compared to your in-house operations
Arrayed format
with up to 1x108 constructs containing 4 variable slots for 15 kb inserts
Free storage
for all your synthesized projects with CloneArk™ Storage System
We offer arrayed libraries providing up to 10,000 individual, precisely assembled constructs. Each assembled construct contains up to 4 variable slots for inserts of up to 15 kb total length, cloned into your vector of choice, with up to 4 µg in yield.
Arrayed Library
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Library Description | Up to 10,000 individual, precisely assembled constructs based on the exact design |
Screening | Every single design in the library |
Deliverables | 1.5 ml tubes or 96-well plates |
Quality Control | Sequence verification of all delivered constructs |
Arrayed Library Assembly
Over the last several years, GenScript has partnered with researchers in both industry and academia to build sophisticated combinatorial DNA libraries. These highly-customized libraries were used to develop new drugs, enzymes, or to discover novel gene functions and networks. The following is one example of such successful partnerships:
Arrayed High-Throughput DNA Library Assembly
Optimizing Gene Circuits for Therapeutic Applications
Learn MoreAn Efficient and Accurate DNA Assembly Service for Rapid Metabolic Pathway Optimization
You can use our custom-built combinatorial DNA libraries in a variety of applications across many disciplines of life sciences, from plant biology to drug development. The following lists three major areas of combinatorial DNA library applications:
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