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G-OnRamp:生成基因组浏览器,以促进本科生驱动的协作基因组注释。

G-OnRamp: Generating genome browsers to facilitate undergraduate-driven collaborative genome annotation.

机构信息

Department of Biomedical Engineering, Oregon Health & Science University, Portland, Oregon, United States of America.

Department of Biology, Washington University in St. Louis, St. Louis, Missouri, United States of America.

出版信息

PLoS Comput Biol. 2020 Jun 4;16(6):e1007863. doi: 10.1371/journal.pcbi.1007863. eCollection 2020 Jun.

Abstract

Scientists are sequencing new genomes at an increasing rate with the goal of associating genome contents with phenotypic traits. After a new genome is sequenced and assembled, structural gene annotation is often the first step in analysis. Despite advances in computational gene prediction algorithms, most eukaryotic genomes still benefit from manual gene annotation. This requires access to good genome browsers to enable annotators to visualize and evaluate multiple lines of evidence (e.g., sequence similarity, RNA sequencing [RNA-Seq] results, gene predictions, repeats) and necessitates many volunteers to participate in the work. To address the technical barriers to creating genome browsers, the Genomics Education Partnership (GEP; https://gep.wustl.edu/) has partnered with the Galaxy Project (https://galaxyproject.org) to develop G-OnRamp (http://g-onramp.org), a web-based platform for creating UCSC Genome Browser Assembly Hubs and JBrowse genome browsers. G-OnRamp also converts a JBrowse instance into an Apollo instance for collaborative genome annotations in research and educational settings. The genome browsers produced can be transferred to the CyVerse Data Store for long-term access. G-OnRamp enables researchers to easily visualize their experimental results, educators to create Course-based Undergraduate Research Experiences (CUREs) centered on genome annotation, and students to participate in genomics research. In the process, students learn about genes/genomes and about how to utilize large datasets. Development of G-OnRamp was guided by extensive user feedback. Sixty-five researchers/educators from >40 institutions participated through in-person workshops, which produced >20 genome browsers now available for research and education. Genome browsers generated for four parasitoid wasp species have been used in a CURE engaging students at 15 colleges and universities. Our assessment results in the classroom demonstrate that the genome browsers produced by G-OnRamp are effective tools for engaging undergraduates in research and in enabling their contributions to the scientific literature in genomics. Expansion of such genomics research/education partnerships will be beneficial to researchers, faculty, and students alike.

摘要

科学家们正在以越来越快的速度对新的基因组进行测序,目的是将基因组内容与表型特征联系起来。新基因组测序和组装后,结构基因注释通常是分析的第一步。尽管计算基因预测算法取得了进步,但大多数真核生物基因组仍然受益于手动基因注释。这需要访问良好的基因组浏览器,使注释者能够可视化和评估多条线索(例如序列相似性、RNA 测序 [RNA-Seq] 结果、基因预测、重复),并需要许多志愿者参与这项工作。为了解决创建基因组浏览器的技术障碍,基因组教育合作伙伴关系 (GEP; https://gep.wustl.edu/) 与 Galaxy 项目 (https://galaxyproject.org) 合作开发了 G-OnRamp(http://g-onramp.org),这是一个基于网络的平台,用于创建 UCSC 基因组浏览器组装集线器和 JBrowse 基因组浏览器。G-OnRamp 还将 JBrowse 实例转换为 Apollo 实例,以便在研究和教育环境中进行协作基因组注释。生成的基因组浏览器可以转移到 CyVerse Data Store 中进行长期访问。G-OnRamp 使研究人员能够轻松可视化他们的实验结果,教育工作者能够创建以基因组注释为中心的基于课程的本科研究体验 (CURE),学生能够参与基因组学研究。在这个过程中,学生了解基因/基因组以及如何利用大型数据集。G-OnRamp 的开发得到了广泛的用户反馈的指导。来自 40 多个机构的 65 名研究人员/教育工作者通过面对面研讨会参与其中,这些研讨会产生了 20 多个现在可用于研究和教育的基因组浏览器。针对四种寄生蜂物种生成的基因组浏览器已用于一项 CURE 中,吸引了 15 所学院和大学的学生参与。我们在课堂上的评估结果表明,G-OnRamp 生成的基因组浏览器是让本科生参与研究并使他们能够在基因组学的科学文献中做出贡献的有效工具。扩大此类基因组学研究/教育合作伙伴关系将使研究人员、教师和学生都受益。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/00df/7272004/69b3b2137eac/pcbi.1007863.g001.jpg

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