![]() SnapGene Viewer is revolutionary software that allows molecular biologists to create, browse, and share richly annotated DNA sequence files up to 1 Gbp in length. ![]() Would you like to move beyond hand-drawn plasmid maps? SnapGene Viewer includes the same rich visualization, annotation, and sharing capabilities as the fully enabled SnapGene software. Because SnapGene doesn’t lock you into a particular file format or data storage location, you maintain full control of your data.Free! Because there should be no barriers to seeing your data. ![]() In addition, SnapGene and SnapGene Viewer open many common file formats. We provide a free SnapGene Viewer so that anyone can view the full contents of a SnapGene file. And your data should always remain within your own control. You own your data! Scientists should be able to read and share files without restriction. We also offer special pricing to accommodate labs with different financial resources. The download page shows the license 'Group Name' and 'Registration code' information and provides links for the most recent version of SnapGene suitable for your license. For this reason, SnapGene academic licenses are steeply discounted for multi-license packs. A library of annotated files for common plasmids Contact Support Submit a request to our support team Announcements SnapGene 7. When molecular biology software is so expensive that a lab can afford only one or two licenses, the benefits are limited. Software for everyday tasks should be priced so that a lab can provide a copy to each researcher. This approach has enabled us to design a software interface that acts as an extension of the user’s mind. We are students and practitioners of “human-computer interaction”. Use SnapGene to verify that proteins are in-frame. Before cloning your own reagent, you might be able to save time by finding it in one of the many well-characterized collections. Software should be easy to use, and should help you achieve your goals as quickly and painlessly as possible. Gateway is a high throughput method for cloning, vis a vis, it is FAST. Together, our company can better: connect science, data, and decision-making and ultimately drive meaningful transformation for our customers. Combining an open data informatics framework with best in breed applications like SnapGene, we offer the first true end-to-end solutions for biology, chemistry, formulations, data management, flow cytometry, and more. In 2022, SnapGene became part of Dotmatics, the world’s largest and most powerful scientific R&D software platform. Each enhancement has generated new ideas, and SnapGene is still in active development, evolving as the field is changing. Working with labs around the world, we created software to meet the everyday needs of molecular biologists. The company won Phase I and II SBIR grants from the NIH to develop SnapGene. To achieve this goal, he brought together a group of scientists, software engineers, usability experts, and product developers. If molecular biology software were easier to use than pen and paper, researchers would naturally plan their cloning procedures with computers, and electronic records could be automatically produced. SnapGene helps streamline your cloning: 1. SnapGene’s tools prevent you from making errors and wasting time at the bench. With SnapGene, you can plan your cloning strategy, visualize the process, and document your work. qualitative analysis of PCR data (B) and restriction (C) by horizontal. SnapGene offers a wide range of user-friendly tools that support and facilitate simple and complex cloning projects. He also perceived the solution: good software. AAV-Syn-BDNF-EGFP-kid2 plasmid map constructed in SnapGene Viewer 3.1.2 and. In the 21st century, many molecular biologists still didn’t know the full properties of the DNA molecules they were using. Researchers made avoidable mistakes when planning their cloning procedures, and records of cloning procedures were incomplete. As the PI of an academic lab, Ben Glick was frustrated by the huge amount of effort being wasted during cloning. ![]()
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