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    Understanding Gene Prediction Programs
    Introduces students to the key biological concepts underlying computational gene prediction. Outcomes include ability to analyze and evaluate output of gene prediction programs, and reflect on...
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    Pre-lesson: Introduction to BLAST
    Genome Solver began as a way to teach undergraduate faculty some basic skills in bioinformatics; no coding or scripting is required. This pre-lesson introduces the BLAST tool.
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    Understanding Eukaryotic Genes modules: Glossary of terms
    This glossary defines the key terms that are used in the Understanding Eukaryotic Genes modules.
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    Module 6: Alternative Splicing
    This module explores how multiple different mRNAs and polypeptides can be encoded by the same gene. After completing this module students will be able to explain how alternative splicing of a gene...
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    Module 5: The Need for an Open Reading Frame
    In this module, students will learn to identify the open reading frames for a given gene, and define the phases of the splice donor and acceptor sites.
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    Module 4: Removal of Introns from pre-mRNA by Splicing
    In this module, students will learn to identify splice donor and acceptor sites that are best supported by RNA-Seq data, and use the canonical splice donor and splice acceptor sequences to identify...
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    Module 3: Transcription, Part II: What Happens to the Initial Transcript Made by RNA pol II?
    This module teaches about the three key steps that are involved in converting the pre-mRNA into a mature mRNA: 1) The addition of a 5’ cap, 2) The addition of a 3’ poly(A) tail, 3) The removal of...
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    Module 2: Transcription Part I: From DNA Sequence to Transcription Unit
    This module illustrates how a primary transcript (pre-mRNA) is synthesized using a DNA molecule as the template. Students will learn about the importance of the 5' and 3' regions of the gene for...
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    Module 1: Introduction to the Genome Browser: What is a Gene?
    This lesson introduces the University of California Santa Cruz genome browser to students, walking them through some of the key features so that it can be used for analysis of gene structure.
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    GEA Introductory lesson on RNA-Seq
    This RNA-Seq lesson uses the CyVerse VICE Platform and Jupyter notebooks to examine the expression of the leptin gene in samples from a mouse experimental design evaluating diet (high-fat vs....
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    GEA Introductory lesson on BLAST
    The "Introduction to BLAST using Human Leptin" exercise aims to introduce students to the use of the Basic Local Alignment Search Tool (BLAST) to identify related sequences and compare similarity...
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    Genome Solver: Building faculty skills in bioinformatics
    Genome Solver (GS) began in 2011 as an NSF-funded project for faculty training in basic web-based bioinformatics skills.
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    Genomics Education Alliance: A Collection of Posters for the 2020 BIOME Institute.
    This is a collection of posters from members of the Genomics Education Alliance (GEA) that will be presented at the 2020 BIOME Institute.
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    Integration of Bioinformatics into Life Science Curricula: Community Development, Dissemination, and Assessment of a NIBLSE Learning Resource
    Big data and computational tools have transformed the way we address biological questions. To prepare undergraduates for tomorrow’s challenges, life science curricula should integrate the...
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    Using genome browsers constructed by G-OnRamp to provide students with a Course-based Undergraduate Research Experience in genome annotation
    G-OnRamp (http://g-onramp.org) provides an easy-to-use web platform for educators to create genome browsers to engage undergraduate students in research projects, both collaborative annotation of...
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    The Genomics Education Partnership: Introducing Undergraduates to Research by Engaging Them in Genome Annotation
    Since 2006, the Genomics Education Partnership (GEP; http://gep.wustl.edu) has helped faculty bring genomics research experiences into the undergraduate curriculum.
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    The Network for Integrating Bioinformatics into Life Sciences Education (NIBLSE): Barriers to Integration
    The Network for Integrating Bioinformatics into Life Sciences Education (NIBLSE) seeks to promote the use of bioinformatics and data science as a way to teach biology.
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    Incubators: Building community networks and developing open educational resources to integrate bioinformatics into life sciences education
    To efficiently and effectively integrate bioinformatics instruction into undergraduate life science curricula, educators would benefit from open access, high-quality learning resources (LRs) for...
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    The Genomics Education Partnership: Exploring best practices in implementation of a genomics CURE
    Since 2006, the Genomics Education Partnership (GEP) has incorporated authentic genomics research experiences into the undergraduate curriculum.
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    Ciliate Genomics Consortium: a professional learning community sharing modular curricula to support undergraduate research in the classroom
    The Ciliate Genomics Consortium (CGC) employs an integrative teaching and research model that combines both inquiry-driven class laboratory activities and collaborative consortium pedagogies to...
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