Saliogase™ transposase was created by Saliogen. It works by harnessing the power of natural enzymes, called transposases, to move DNA segments around the genome safely for evolutionary purposes. The Saliogase™ enzyme is based on a mammalian transposase that has evolved over thousands of years to adapt to the mammalian environment.
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Today is #DNADay24🧬, when we celebrate the discovery of the structure of DNA and the completion of the Human Genome Project. Knowing more about how DNA organizes human development and function can help us live longer and healthier lives. And at #Refeyn, we try to do our bit! #MassPhotometry is not only for proteins. It also empowers researchers working with nucleic acids. Here is the first published demonstration ➡ https://lnkd.in/dUE22krA Or read our app note to learn how mass photometry can measure the size of DNA ➡ https://lnkd.in/deJQdKaN
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Metagenomics is a powerful tool that allows us to delve deep into microbial communities, unlocking a world of genetic diversity and functional insights. From the depths of the ocean to the human gut, metagenomics provides a comprehensive view of microbial ecosystems, revolutionizing our understanding of the microbial world. Explore how different metagenomics methods can unveil the complex interactions within microbial ecosystems. 🧬 #Metagenomics #MicrobialCommunities #Bioinformatics
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The Xploregen Fungal DNA extraction kits are designed for the simple and rapid isolation of DNA from tough-to-lyse fungi, including A. fumigatus, C. albicans, N. crassa, S. cerevisiae, S. pombe. The procedure is easy and can be completed in minutes: fungal samples are rapidly and efficiently lysed with our state-of-the-art, ultra-high-density Xploregen Beads. Xploregen Spin column technology is then used to isolate the DNA that is ideal for downstream molecular-based applications including PCR, array, etc. #XploregenDiscoveries #FungalDNAExtraction
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Recent findings from the Jack Szostak lab for the National Academy of Sciences reveal how ancient RNA enzymes transitioned from simple phosphorimidazole substrates to more complex triphosphate substrates. This evolution highlights the adaptability and flexibility of early life forms, providing insights into the origins of biological complexity. #originsoflife https://lnkd.in/gYT8t_e9
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Vocal production learning is a convergently evolved trait in vertebrates. Similar genetic elements underlie vocal learning in mammals Vocal learning-associated convergent evolution in mammalian proteins and regulatory elements https://lnkd.in/gchi3JNe
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Microviable researchers demonstrates that GutAlive maintains the viability of bacterial cells for up to 5 days, at room temperature, preserving the integrity of the DNA as well without the addition of undesired reagents that directly interact with the sample. https://bit.ly/48xV5xK Original article: "GutAlive® enables DNA-based #microbiome analysis without disrupting the original composition and diversity". FRONTIERS https://bit.ly/gutalive Ignacio Montero Ordóñez, Desiree Barrientos Soto, Claudio Hidalgo Cantabrana and Noelia Martinez Alvarez #microbiota #microbiome #metagenomic #microbiomeanalysis #gutalive #dnasequencing
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We are proud to share the new article published by Gene&GreenTK in the Journal of Natural Products (American Chemical Society). This review highlights the role of bacterial communication (quorum sensing) in the synthesis of bioactive molecules involved in virulence. Our VesuBACT technology disrupts quorum sensing to inhibit bacterial infections! #onehealth #enzyme #bioeconomy #antibioresistance
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Explore the future of #fluorescence_screening in microbial research with #Molecular_Devices advanced solutions designed to tackle the challenges of #bacterial_colony_selection. By enhancing the accuracy and efficiency of high-expression colonies identification it is now posible to overcome the traditional bottlenecks!
Expanded fluorescence screening using QPix 400 series
moleculardevices.com
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Introducing Genome Library: Easily assemble, annotate & analyze microbial genomes. Search & compare isolate sequences in real-time. Learn more about our complete platform for microbial genome management: https://buff.ly/3OwU5l4
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"Using CRISPR technology, researchers at Tel Aviv University in Israel have successfully grown tomatoes that consume less water without compromising yield, quality, or taste. By targeting a gene called ROP9, they partially closed the stomata, reducing water loss without affecting photosynthesis or sugar production." To learn more, read Maahik Trivedi's article "Advancement in Tomatoes: A CRISPR Application" here: https://lnkd.in/gaiFhQyK
Advancement in Tomatoes: A CRISPR Application
neutralcitizenjournalism.org
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