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Program
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Mechanisms in Genome Stability & Gene Regulation”. As an IPP PhD student, you will join a community of exceptional scientists working on diverse topics ranging from how organisms age or how our DNA is repaired
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conditions Strong interest for host-pathogen interactions Experience in molecular biological techniques (DNA cloning, mutagenesis, RTqPCR etc). Good work ethics and organisation Teamwork Pro-active, initiative
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within the framework of EUPAHW European Partnership on Animal Health and Welfare Where to apply Website https://sede.unizar.es/?app=touz&opcion=mostrar&id=74223&origen=buscar Requirements Research
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-generation sequencing and tissue, plasma, and FFPE DNA and RNA extractions on biological samples. You will handle tissue specimens for cryo-storage and prepare tissue sections for Immunohistochemistry analysis
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lab orderliness (including delegation of tasks to other lab members). Technical support: Molecular biology methods (DNA/RNA extraction, PCR, cloning, cDNA synthesis). Screening and husbandry
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radioprotection. These include the formation of DNA strand breaks by ionising radiation, DNA repair, radiosensitisation by metal nanoparticles, cell survival and radioresistance. The MS-RADAM research programme
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tissues using advanced imaging techniques, including confocal microscopy Perform molecular biology and biochemical experiments, such as western blotting, electrophoresis, RNA/DNA/Protein isolations, and PCR
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/ . The Yachie lab (https://yachie-lab.org/ ) develops next-generation molecular technologies that integrate DNA event recording, genome engineering, organoid and stem-cell platforms, and high-throughput
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…). ------------------------------------------------------------------------------------------------------------------------------------------------------------------------ ----------------------------------------------------------------------------------------------------------------------------...
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sense and repair DNA damage. Loss of genome integrity due to DNA damage has long been established as a critical contributor to cancer and tumorigenesis. Our work therefore focuses on how cells maintain