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that enable structural determination of native chromatin-associated complexes, we aim to elucidate the structural foundations of key biological events on eukaryotic chromosomes. The Arimura Lab provides a
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that includes next generation sequencing - DNA and transcriptome, chromosomal microarrays, cell culture, qPCR, gene regulation assays, 3D chromatin structure. Prior experience in the area of developmental
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experience in the field of cancer pathogenesis (preferably hematological cancers). Furthermore, familiarity with (epi)genomic techniques (e.g., RNA/DNA-seq, ChIP, Cut&Run, chromosome conformation capture-seq
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assembling and analysing chromosome-level genomes Experience identifying genomic targets of selection Excellent molecular biology lab skills Excellent bioinformatic skills At least one peer-reviewed
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assembling and analysing chromosome-level genomes Experience identifying genomic targets of selection Excellent molecular biology lab skills Excellent bioinformatic skills At least one peer-reviewed
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assembling and analysing chromosome-level genomes Experience identifying genomic targets of selection Excellent molecular biology lab skills Excellent bioinformatic skills At least one peer-reviewed
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genebank. Your tasks: Next Generation Sequencing for chromosome scale assembly (PACBIO Hifi + Kinnex, Hi-C) comparative genomics analysis gene functional analysis work in a team with IPK`s central NGS
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invertebrates. Phylogenomics: Building phylogenetic tools to integrating chromosome structural and sequence information at tree-of-life scale. Depending on project fit and candidate expertise, research may
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, integrated with the genome sequence; study genomic variation at the chromosomal level of breeding lines, identify DNA markers for traits of economic interest, and design and implement a modern genomic
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genetics. Genomic analyses: next generation sequencing - DNA and transcriptome, chromosomal microarrays, cell culture, qPCR, gene regulation assays, 3D chromatin structure. Prior experience in the area of