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Perform advanced analysis of NGS and multi-omics datasets, including WGS, targeted sequencing, RNA-seq, and long-read sequencing. Develop, maintain, and optimize automated bioinformatics pipelines
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sequencers, two MiSeq sequencers, and one iSeq 100 benchtop system. Long-read sequencing workflows are supported by two PacBio Revio systems. Genomic workflows are also supported by multiple liquid handling
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The Tracking the Immune Repertoire of Tumor Lymphocytes (TIRTL) Bluesky program in the Host-Microbe Interactions Department at St. Jude supports multiple institutional research and clinical programs
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multiple institutional research and clinical programs focused on immune repertoire profiling. Building on the foundational TIRTL‑seq (Pogorelyy and Kirk et al., Nature Methods 2025) method, we provide
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engineerable: 1) the ability to precisely synthesize entire genomes, and 2) understanding which DNA sequences will create biological systems that perform desired functions. Solving these challenges will unlock
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-impact publications, tackling methodology for synthetic patient alignment and iterative self-improvement for robust generalization, explainability, and uncertainty assessment. Where appropriate, outcomes
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a plant sciences building and dynamic spaces to spark interdisciplinary collaboration. The Pathogen Mission highlights EIT’s transformative approach, using Whole Genome Sequencing (WGS) and Oracle’s
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a plant sciences building and dynamic spaces to spark interdisciplinary collaboration. The Pathogen Mission highlights EIT’s transformative approach, using Whole Genome Sequencing (WGS) and Oracle’s
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. The University and the Comprehensive Cancer Center operate a number of state-of-the-art core facilities including microscopic facility, genome sequencing facility, animal facility, Biostatistics Laboratory, Human
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scalable synthesis of entire genomes with precision. Second, we must understand what to write - determining which DNA sequences will generate biological systems that perform the desired functions. Addressing