Zhang Na-Na, Stull Gregory W, Zhang Xue-Jie, Fan Shou-Jin, Yi Ting-Shuang, Qu Xiao-Jian
College of Life Sciences, Shandong Normal University, Ji'nan 250358, China.
Dongying Institute, Shandong Normal University, Dongying 257092, China.
Plant Divers. 2025 May 22;47(4):544-560. doi: 10.1016/j.pld.2025.05.005. eCollection 2025 Jul.
The plastid genome (plastome) represents an indispensable molecular resource for studying plant phylogeny and evolution. Although plastome size is much smaller than that of nuclear genomes, accurately and efficiently annotating and utilizing plastome sequences remain challenging. Therefore, a streamlined phylogenomic pipeline spanning plastome annotation, phylogenetic reconstruction and comparative genomics would greatly facilitate research utilizing this important organellar genome. Here, we develop PlastidHub, a novel web application employing innovative tools to analyze plastome sequences. In comparison with existing tools, key novel functionalities in PlastidHub include: (1) standardization of quadripartite structure; (2) improvement of annotation flexibility and consistency; (3) quantitative assessment of annotation completeness; (4) diverse extraction modes for canonical and specialized sequences; (5) intelligent screening of molecular markers for biodiversity studies; (6) gene-level visual comparison of structural variations and annotation completeness. PlastidHub features cloud-based web applications that do not require users to install, update, or maintain tools; detailed help documents including user guides, test examples, a static pop-up prompt box, and dynamic pop-up warning prompts when entering unreasonable parameter values; batch processing capabilities for all tools; intermediate results for secondary use; and easy-to-operate task flows between file upload and download. A key feature of PlastidHub is its interrelated task-based user interface design. Give that PlastidHub is easy to use without specialized computational skills or resources, this new platform should be widely used among botanists and evolutionary biologists, improving and expediting research employing the plastome. PlastidHub is available at https://www.plastidhub.cn.
质体基因组( plastome )是研究植物系统发育和进化不可或缺的分子资源。尽管质体基因组的大小远小于核基因组,但准确、高效地注释和利用质体基因组序列仍然具有挑战性。因此,一个涵盖质体基因组注释、系统发育重建和比较基因组学的简化系统发育基因组学流程将极大地促进利用这一重要细胞器基因组的研究。在这里,我们开发了PlastidHub,这是一个采用创新工具分析质体基因组序列的新型网络应用程序。与现有工具相比,PlastidHub的关键新功能包括:(1)四分体结构的标准化;(2)注释灵活性和一致性的提高;(3)注释完整性的定量评估;(4)规范序列和特殊序列的多种提取模式;(5)用于生物多样性研究的分子标记的智能筛选;(6)基因水平上结构变异和注释完整性的可视化比较。PlastidHub具有基于云的网络应用程序,无需用户安装、更新或维护工具;详细的帮助文档,包括用户指南、测试示例、静态弹出提示框,以及在输入不合理参数值时的动态弹出警告提示;所有工具的批处理能力;可二次使用的中间结果;以及文件上传和下载之间易于操作的任务流程。PlastidHub的一个关键特性是其基于任务的相互关联的用户界面设计。鉴于PlastidHub易于使用,无需专门的计算技能或资源,这个新平台应该会在植物学家和进化生物学家中广泛使用,改善并加快利用质体基因组的研究。可通过https://www.plastidhub.cn访问PlastidHub 。