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Field
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. Experience working with geospatial data and spatial analysis, or the ability to learn. Experience analysing whole genome libraries, including quality control, sequence alignment, and calculating population
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to profile tumour and immune cells in melanoma organoid co-cultures and live tissue slices. At Erasmus MC, the candidate will work to combine spatial FUNseq with single-cell genome and transcriptome sequencing
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University of North Carolina at Chapel Hill | Chapel Hill, North Carolina | United States | about 2 months ago
research experience in genomics, molecular epidemiology, infectious diseases, or a related discipline. * Demonstrated expertise in the analysis and interpretation of DNA and RNA sequencing data, including
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through the Merino Group and its international collaborators, including large-scale genome-wide association studies, single-cell RNA sequencing datasets, epigenomic maps, and deeply phenotyped human cohorts
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observations of successive phenological stages, collection of plant material, whole-genome DNA sequencing, genotyping using DArT-seq and RAD-seq, and molecular and bioinformatic analyses, including differential
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, and gene expression variation between apomictic plants, which exposes putative natural epialleles (PhD project at NIOO-KNAW), with genomic and epigenomic editing that identifies genes regulated by DNA
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to developing patient-derived bladder cancer organoid (PDO) models and integrating genomic and transcriptomic profiling to advance personalized medicine in bladder cancer. This lab will serve as a cornerstone for
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expression patterns, and examine epigenetic and structural signatures associated with genome dominance. Transposable element distribution and activity will also be analysed using long-read sequencing
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sequencing data generation and interpretation Bioinformatics and statistical analysis, to characterize genome evolution, mutation processes, and adaptation patterns The PhD candidate will progressively
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alterations impact human lymphocyte development. By combining CRISPR-based genome engineering, induced pluripotent stem cells (iPSCs), and advanced thymus and bone marrow organoid systems, we study both