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Joining forces to solve global challenges


EMBL and the Swedish Science for Life Laboratory sign agreement to build new collaborative links
EMBL and the Swedish Science for Life Laboratory (SciLifeLab) have signed a memorandum of understanding to face global challenges and find effective solutions to improve planetary and human health together. Image credit: Arina Rybina/EMBL
Data science and medical genomics, human and microbial ecosystems, infection biology and planetary biology – these topics are at the core of a memorandum of understanding that has recently been signed between EMBL and the Swedish Science for Life Laboratory (SciLifeLab).
“The remarkable alignment between the research interests and long term goals of EMBL and SciLifeLab indicates how valuable this formalised collaboration will be,” says EMBL Director General Edith Heard. “Some of the most pressing challenges we face today are global, and effective solutions to improve planetary and human health require scientists to work together ....

Uppsala Lan , Karolinska Institutet , Olli Kallioniemi , Plamena Markova , Edith Heard , Arina Rybina , Uppsala University , Laboratory For Molecular Infection Medicine Sweden , Stockholm University , Swedish Science For Life Laboratory , Head Of International Relations , Swedish Science For Life Laboratory Scilifelab , European Union , Royal Institute Of Technology , Swedish Science , Life Laboratory , General Edith , Horizon Europe , Molecular Infection Medicine Sweden , International Relations , Karolinska Institutet , Uppsala University , European Union , Molecular Biology , Human Health , எடித் கேள்விப்பட்டேன் ,

Scientists develop new method for ultra-high-throughput RNA sequencing in single cells

RNA sequencing is a powerful technology for studying cells and diseases. Scientists from the research group of Christoph Bock, principal investigator at the CeMM Research Center for Molecular Medicine of the Austrian Academy of Sciences and professor at the Medical University of Vienna, developed a new method for sequencing huge numbers of single cells in an efficient manner. The study has now been published in Nature Methods. ....

Martin Senekowitsch , Daniele Barreca , Paul Datlinger , Christoph Bock , Thomas Krausgruber , Thorina Boenke , Lise Meitner , Broad Institute , Austrian Science Fund , Ludwig Boltzmann Institute For Rare , Grant European Union Horizon , Max Planck Institute For Informatics , Harvard University , Research Program , University Of Vienna Meduni , University Of Vienna , Cemm Research Center , European Lab For , Molecular Medicine , Austrian Academy , Medical University , Nature Methods , Special Research Program , European Union , Max Planck Institute , Biomedical Sequencing Facility ,

The evolutionary fates of supergenes unmasked


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IMAGE: Supergenes govern colony social form in Solenopsis invicta (top left; SB/Sb alleles), heterostyly in Primula veris (top right; S/s alleles), and polymorphic female-limited mimicry in Papilio polytes (bottom right; H/h.
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Credit: Image courtesy of Tanja Slotte. Photo Credits: Alex Wild (Solenopsis), Tanja Slotte (Primula), and Krushnamegh Kunte (Papilio).
While the term supergene may bring to mind the genetic hocus-pocus of Peter Parker s transformation into Spiderman, supergenes are actually fairly common phenomena in the realm of biology. A supergene refers to a genomic region containing multiple genes or genetic elements that are tightly linked, allowing genetic variants across the region to be co-inherited. Supergenes may arise when there is a clear benefit to inheriting specific combinations of biological traits together. Perhaps the most well-known examples of supergenes are sex chromosomes, which allow traits that are benef ....

Peter Parker , Tanja Slotte , Stockholm University , European Research Council , Genome Biology , Associate Professor Tanja Slotte , Starting Grant , Cell Biology , Ecology Environment , Molecular Biology , பீட்டர் பார்க்கர் , ஸ்டாக்‌ஹோல்ம் பல்கலைக்கழகம் , ஐரோப்பிய ஆராய்ச்சி சபை , மரபணு உயிரியல் , தொடங்குகிறது மானியம் ,