Department of Mathematics and Computer Science, University of Marburg, 35032 Marburg, Germany.
Department of Organic-Analytical Chemistry, TUM Campus Straubing, 94315 Straubing, Germany.
Bioinformatics. 2021 Apr 1;36(22-23):5514-5515. doi: 10.1093/bioinformatics/btaa1003.
The generation of high-quality assemblies, even for large eukaryotic genomes, has become a routine task for many biologists thanks to recent advances in sequencing technologies. However, the annotation of these assemblies-a crucial step toward unlocking the biology of the organism of interest-has remained a complex challenge that often requires advanced bioinformatics expertise.
Here, we present MOSGA (Modular Open-Source Genome Annotator), a genome annotation framework for eukaryotic genomes with a user-friendly web-interface that generates and integrates annotations from various tools. The aggregated results can be analyzed with a fully integrated genome browser and are provided in a format ready for submission to NCBI. MOSGA is built on a portable, customizable and easily extendible Snakemake backend, and thus, can be tailored to a wide range of users and projects.
We provide MOSGA as a web service at https://mosga.mathematik.uni-marburg.de and as a docker container at registry.gitlab.com/mosga/mosga: latest. Source code can be found at https://gitlab.com/mosga/mosga.
Supplementary data are available at Bioinformatics online.
由于测序技术的最新进展,即使是对于大型真核生物基因组,生成高质量的组装也已成为许多生物学家的常规任务。然而,这些组装的注释 - 即揭示感兴趣生物体生物学的关键步骤 - 仍然是一个复杂的挑战,通常需要先进的生物信息学专业知识。
在这里,我们提出了 MOSGA(模块化开源基因组注释器),这是一个用于真核生物基因组的基因组注释框架,具有用户友好的 Web 界面,可生成和集成来自各种工具的注释。聚合结果可以使用完全集成的基因组浏览器进行分析,并以可直接提交给 NCBI 的格式提供。MOSGA 建立在可移植、可定制和易于扩展的 Snakemake 后端之上,因此可以针对广泛的用户和项目进行定制。
我们在 https://mosga.mathematik.uni-marburg.de 提供 MOSGA 作为 Web 服务,并在 registry.gitlab.com/mosga/mosga:latest 提供作为 Docker 容器。源代码可在 https://gitlab.com/mosga/mosga 找到。
补充数据可在 Bioinformatics 在线获得。