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multiple spatial and temporal scales. By adopting a multi-scale perspective, the project aims to significantly improve our ability to observe and quantify flood-related hazards. The main study area will be
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bioinformatics. The main responsibilities include: High-throughput sequencing: Applying long-read sequencing technologies (Oxford Nanopore) to quantify DVG populations in cells and virions without PCR bias (Direct
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have access to the high-performance cluster of the CC LBBE/PRABI. Most of the genomic data used within the PhD project are already sequenced and readily available to the student. Newly sequenced genomic
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). • Design the testbed architecture, including a 532 nm laser source and a Martian backscatter simulator. 2. Laboratory implementation • Assemble and align the full optical bench. • Develop or integrate a low
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programme. Transposable elements (TEs) are defined as mobile genomic DNA sequences and are ubiquitous in all living organisms studied to date. These elements can constitute varying proportions
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activity (2, 3). This finding was unexpected because PCPE1 and PCPE2 are very similar in terms of sequences and structures. Objectives The main objectives of the PhD project will be (i) to elucidate
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., multiple degenerate mechanical modes (i.e., same frequency) used as nodes of the network [3]. To display quantum properties, a mechanical mode must be cooled down close to its ground state (i.e., down to a
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the T4SS, test it through functional assays, and validate it using structural approaches. Main tasks Perform genetic constructions (cloning, mutagenesis, sequencing validation) and functional bacterial
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aims to provide an integrated assessment of urban vegetation from multiple perspectives, including its social functions and usage requirements, the ecosystem health of green spaces linked to plant
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. Good command of biostatistics (database management, use of R software) as well as an excellent level of English are essential. As eDNA data are amplified and sequenced independently, the involvement