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for optical mapping of brain and cardiac structures following exposure to mixtures of pthalate plasticizers and perfluorinated acids She identify the genetic signature consequent to the exposure
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and bacterial genetic approaches required for the project. - To perform the approaches related to protein biochemistry required in the frame of the project. - To perform the optical and electronic
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for the project, especially in conjunction with their well studied genetics and recently developed high-throughput single-cell phenotyping methods based on microfluidics. The output will be generalizable to a much
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experimental tools and protocols, including fluorescent reporters and genetic constructs, to monitor phenotypic variations in yeast in real time. The scientist will develop time-lapse microscopy, flow cytometry
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to join the AI for Genome Interpretation (AI4GI) group at the IGMM (CNRS, Montpellier) for 18 months. The project is a collaboration between IGMM and IMAG, at the interface of genetics, bioinformatics
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- 4 Additional Information Eligibility criteria We are looking for a curious and highly motivated person holding a PhD in microbiology with demonstrated expertise in bacterial culture and genetics and
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yeast), allowing them to monitor the fate of this lesion in vivo. The proposed postdoctoral research project will explore the genetic and molecular mechanisms of DNA damage tolerance pathways in E. coli
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order to integrate these candidate genes into genetic selection schemes for the black soldier fly. The Insect Biology Research Institute (IRBI) is dedicated to analyzing the interactions between insects
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genomic diversity and microevolutionary history (Work-Package 3). Integrate heterogeneous datasets (genomic, phenomic, environmental) produced by the project. Perform GWAS to identify genetic loci
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in Synthetic Biology, Microbiology, Bioengineering, Immuno-oncology, Molecular Biology, or related discipline. - Proven experience in genetic engineering of bacteria (experience with secretion systems