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🌾 Gene-hacking rice to cut methane? Scientists just dropped the mic on sustainable agriculture! 38% emissions reduction = πŸ”₯ climate win. #GenomicInnovation #ClimateAction #SustainableAg 🌍 https://emmecola.github.io/genomics-daily

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🦠 Phage protein mystery solved! Empathi tool cracks the code, doubling our understanding of viral protein functions. Genomic detective work at its finest! πŸ•΅οΈβ€β™€οΈ #Bacteriophage #GenomicInnovation #ScienceBreakthrough https://emmecola.github.io/genomics-daily

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🧬 CRISPR breakthrough in cattle breeding! 50% gene editing efficiency unlocks new agricultural frontiers. Precision genomics FTW! πŸ„ #GenomicInnovation #CRISPRtech #AgBiotech https://emmecola.github.io/genomics-daily

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The Single Cell Omics Market is boomingβ€”expected to surge from USD 1.96B in 2024 to USD 6.34B by 2032, at a CAGR of 15.8%.

Innovators like Illumina, Danaher, BD, are leading the way.

πŸ‘‰ View report here.
www.credenceresearch.com/report/singl...

#SingleCellOmics #GenomicInnovation #BiotechResearch

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🧬 Machine learning cracks CRISPR code! 7 new Cas12a subtypes discovered, revealing hidden genetic diversity. Computational biology FTW! πŸ€– #CRISPR #MachineLearning #GenomicInnovation https://emmecola.github.io/genomics-daily

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🦠 Viral sleuthing gets a dairy twist! Researchers track H5N1 through milk samples, proving genomics can turn everyday products into disease surveillance powerhouses. πŸ₯›πŸ•΅οΈβ€β™€οΈ #OneHealth #GenomicInnovation #ViralTracking https://emmecola.github.io/genomics-daily

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🦠 varVAMP: The viral detective tool that's cracking the code on pathogen detection! Precision primers for qPCR that outsmart viral variability. 🧬 Science leveling up! #GenomicInnovation #ViralResearch https://emmecola.github.io/genomics-daily

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🐞 Lady beetles: Masters of molecular magic! Alternative splicing lets them switch prey without breaking a sweat. Genomic flexibility for the win! 🧬 #GenomicInnovation #InsectAdaptation https://emmecola.github.io/genomics-daily

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πŸ”¬ CRISPR-CasΞ¦ just dropped the mic on pathogen detection! 🦠 Detecting bacteria at 0.11 copies/ΞΌL? That's next-level diagnostics! πŸ’₯ Science is getting WILD. #GenomicInnovation #MedTech #CRISPR https://emmecola.github.io/genomics-daily

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🧬 Deep learning meets genetics! Filip & Nettelblad crack the code on population visualization, outperforming classic techniques with a game-changing contrastive learning approach. πŸš€ #GenomicInnovation #MachineLearning #PopulationGenetics https://emmecola.github.io/genomics-daily

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Light-activated RNA editing πŸ§¬πŸ”΅ breaks new ground in gene therapy! Li Huiying's optogenetic technique could revolutionize treating genetic disorders. Hemophilia B mice say thanks! 🐭 #GenomicInnovation #RNAEditing #BioTech https://emmecola.github.io/genomics-daily

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Creation of a eukaryotic multiplexed site-specific inversion system and its application for metabolic engineering | Nature Communications The site-specific recombination system is a versatile tool in genome engineering, enabling controlled DNA inversion or deletion at specific sites to generate genetic diversity. The multiplexed inversion system, which preferentially facilitates inversion at reverse-oriented sites rather than deletion at same-oriented sites, has not been found in eukaryotes. Here, we establish a multiplexed site-specific inversion system, Rci51-5/multi-sfxa101, in yeast. Firstly, we develop a high-throughput screening system based on the on/off transcriptional control of multiple markers by DNA inversion. After two rounds of progressively stringent directed evolution, a mutant Rci51-5 shows an ability of multisite inversion and a ~ 1000-fold increase in total inversion efficiency against the wild-type Rci derived from Salmonella typhimurium. Subsequently, we demonstrate that the Rci51-5/multi-sfxa101 system exhibits significantly lower deletion rate than the Cre/multi-loxP system. Using the synthetic met

Creating the first eukaryotic multiplexed site-specific inversion system in yeast! Rci51-5/multi-sfxa101 boosts metabolic engineering. #GenomicInnovation PMID:39994248, Nat Commun 2025, @NatureComms https://doi.org/10.1038/s41467-025-57206-w #Medsky #Pharmsky #RNA @geneticssociety @eshg πŸ§ͺ

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🧬 Machine learning meets genomics! Watershed-SV uncovers hidden rare disease variants by linking DNA changes to gene expression. Revolutionizing diagnostics one sequence at a time! πŸ”¬ #GenomicInnovation #RareDiseaseResearch #PrecisionMedicine https://emmecola.github.io/genomics-daily

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🧬 Bacterial cells talking like pros! Phage-mediated CRISPR signals create complex multicellular logic networks - game-changing synthetic biology breakthrough! πŸ”¬ #SyntheticBiology #GenomicInnovation #CRISPR https://emmecola.github.io/genomics-daily

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