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models, multi-omics analyses (e.g., RNA-seq, ATAC-seq, scRNA-seq, scDNA-seq, WES/WGS, targeted NGS, DigiWest), a broad spectrum of molecular and cellular biology techniques, biochemistry and biophysics
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(SDPs). You will design climate change mitigation scenarios that respect both climate targets and sustainable development goals using the REMIND model, one of the world’s leading integrated energy-economy
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Max Planck Institute for Biology Tübingen, Tübingen | Bingen am Rhein, Rheinland Pfalz | Germany | 11 days ago
on methanogens and microbial ecology and we have recently developed innovative strategies for the targeted manipulation of non-model gut-associated organisms. Description The candidate will be expected to leverage
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will design climate change mitigation scenarios that respect both climate targets and sustainable development goals using the REMIND model, one of the world’s leading integrated energy-economy-climate
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proteins with regard to their role in the development of cancer, the emergence of therapy resistance, as predictive markers to guide therapy and as therapeutic targets. Your Responsibilities Independent
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-pathogenic fungi and identifies targets for the development of novel natural product-based antibiotics. The junior research group Metabolomics-guided Natural Product Discovery (https://www.leibniz-hki.de/de
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and their microenvironment, with a focus on immune cells, stromal components, and their metabolic communication. One central aim is to identify novel therapeu-tic targets for next-generation immune and
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-pathogenic fungi and identifies targets for the development of novel natural product-based antibiotics. The junior research group (Epi-)Genetic Regulation of Fungal Virulence (https://www.leibniz-hki.de/en/epi
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Saves user settings when retrieving integrated YouTube videos. Lifetime Browser session Google Name ANID Use Used for targeting purposes to profile the interests of website visitors in order to display
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-pathogenic fungi and identifies targets for the development of novel natural product-based antibiotics. The research group Microbiome Dynamics (https://www.leibniz-hki.de/de/microbiome-dynamics.html ) invites