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    The Genomics Education Partnership: Democratizing Genomics Research Experiences Nationwide
    This poster provides a general overview of the Genomics Education Partnership (GEP), and information on our Diversity, Equity, and Inclusion efforts are outlined in the accompanying video.

    Keywords: course-based undergraduate research experienceBioinformatics and Genomicsgenomics teaching and CUREsdiversity equity and inclusion

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    Overview of the Genomics Education Partnership
    Poster exhibited at the National Association of Biology Teachers (NABT) 2022 conference providing an overview of the Genomics Education Partnership including its benefits to faculty, students, and...

    Keywords: course-based undergraduate research experienceGenomics Education PartnershipNABT 2022

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    Democratizing Student Access to Help: the nationwide, virtual peer mentoring network of the Genomics Education Partnership
    Our data suggests that online delivery of the novel Virtual TA program allowed the GEP CURE to remain effective through the transition from onsite to online: the GEP CURE is resilient. This...

    Keywords: Genomics Education PartnershipNABT2023

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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.

    Keywords: undergraduate researchGenome annotationGEPgenomics education

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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.

    Keywords: genomicsCUREscourse-based research experiences (CUREs)genomics education

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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...

    Keywords: data visualizationmolecular biologybioinformaticsGenome BrowsergenomicsTranscription InitiationTranscription Start SiteTranscription Termination Signal

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    Biobyte 4 - The role of data science principles and practices in undergraduate biology
    This short activity was an effort to launch a community conversation around the interface of data science principles and practices and undergraduate biology education. A variety of resources,...

    Keywords: biostatisticsstatistical analysisavian malariaSummer Workshop 2018

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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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    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.

    Keywords: undergraduate researchgenomicsNIBLSEGEPgenomics educationGenomics Education AllianceGenomics Education PartnershipGEA

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    An undergraduate bioinformatics curriculum that teaches eukaryotic gene structure
    Gene structure, transcription, translation, and alternative splicing are challenging concepts for many undergraduates studying biology. These topics are typically covered in a traditional lecture...

    Keywords: bioinformaticsGenome BrowsergenomicsRNAseqsplicingComputer ModelGene Structure

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    A Hands-on Introduction to Hidden Markov Models
    In this Lesson, we describe a classroom activity that demonstrates how a Hidden Markov Model (HMM) is applied to predict a eukaryotic gene, focusing on predicting one exon-intron boundary. This HMM...

    Keywords: transcriptionexonintronsplicing

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    A CURE-based approach to teaching genomics using mitochondrial genomes
    There is an abundance (currently over 1016 DNA bases) of publicly available genetic sequence data and a dearth of trained genomicists to process and interpret it, necessitating more trained...

    Keywords: proteinsMitochondrial GenomesNuclear GenomesrRNAtRNA

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