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as a result of human activity. Remediation solutions need to be found, but above all, they need to be adapted to the in situ realities. We are interested in bio- and phyto-remediation processes
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generated by the MAEWA project will be used to develop technical solutions, monitoring tools and guidelines for the implementation of effective bioremediation processes. The person recruited will be
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impacts of climate change on biodiversity, and how adapting to new climatic conditions can affect these processes. The project takes advantage of long-term experiment in semi-natural mesocosms in which
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wildlife management and finalized scientific questions; - Proficiency in bioinformatics required to process raw high-throughput sequencing data (possibly ddRadSeq) - Knowledge of landscape genetics and
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/University of Strasbourg) and the "Soils and Environment" laboratory (INRAE/University of Lorraine) are collaborating to propose a phytoremediation strategy—an ecological process using metal hyperaccumulating
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skills and knowledge in bioinformatics and molecular biology. The successful candidate will develop and lead a research project to study the metabolic connectivity between the host and the microalgae in
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parallel experimental work providing test data for comprehensive model verification. - Enhance the model's accuracy by implementing improvements in key areas such as residual stress calculations, stochastic
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approaches (bioinformatics /comparative biology/ genetics/ epigenetics/ genomics/ biochemistry/ imaging/ modelling) empowered by scientists with diverse profiles and expertise (geneticists, genomicists
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students finishing their thesis by the end of 2025 are encouraged to apply. The successful candidate should have a PhD in microbial or molecular ecology including bioinformatics. Excellent written and verbal
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within the computational bioimaging and bioinformatics team at IBENS, under the supervision of Auguste Genovesio. The postdoctoral researcher will have access to a workstation as well as computing servers