State Key Laboratory of Agrobiotechnology, College of Biological Sciences, China Agricultural University, Beijing 100193, China.
Jiangxi Key Laboratory of Molecular Medicine, The Second Affiliated Hospital of Nanchang University, Nanchang 330006, China.
Genomics Proteomics Bioinformatics. 2018 Aug;16(4):283-293. doi: 10.1016/j.gpb.2018.08.002. Epub 2018 Sep 26.
High-throughput transcriptomics technologies have been widely used to study plant transcriptional reprogramming during the process of plant defense responses, and a large quantity of gene expression data have been accumulated in public repositories. However, utilization of these data is often hampered by the lack of standard metadata annotation. In this study, we curated 2444 public pathogenesis-related gene expression samples from the model plant Arabidopsis and three major crops (maize, rice, and wheat). We organized the data into a user-friendly database termed as PlaD. Currently, PlaD contains three key features. First, it provides large-scale curated data related to plant defense responses, including gene expression and gene functional annotation data. Second, it provides the visualization of condition-specific expression profiles. Third, it allows users to search co-regulated genes under the infections of various pathogens. Using PlaD, we conducted a large-scale transcriptome analysis to explore the global landscape of gene expression in the curated data. We found that only a small fraction of genes were differentially expressed under multiple conditions, which might be explained by their tendency of having more network connections and shorter network distances in gene networks. Collectively, we hope that PlaD can serve as an important and comprehensive knowledgebase to the community of plant sciences, providing insightful clues to better understand the molecular mechanisms underlying plant immune responses. PlaD is freely available at http://systbio.cau.edu.cn/plad/index.php or http://zzdlab.com/plad/index.php.
高通量转录组学技术已广泛应用于研究植物防御反应过程中的转录重编程,大量基因表达数据已积累在公共数据库中。然而,这些数据的利用往往受到缺乏标准元数据注释的限制。在本研究中,我们从模式植物拟南芥和三种主要作物(玉米、水稻和小麦)中整理了 2444 个公共与发病相关的基因表达样本。我们将数据组织成一个名为 PlaD 的用户友好型数据库。目前,PlaD 具有三个主要特点。首先,它提供了与植物防御反应相关的大规模已整理数据,包括基因表达和基因功能注释数据。其次,它提供了条件特异性表达谱的可视化。第三,它允许用户搜索各种病原体感染下的共同调节基因。使用 PlaD,我们进行了大规模的转录组分析,以探索已整理数据中基因表达的全局景观。我们发现,只有一小部分基因在多种条件下差异表达,这可能是由于它们在基因网络中具有更多的网络连接和更短的网络距离的趋势。总之,我们希望 PlaD 能够成为植物科学领域的一个重要和全面的知识库,为更好地理解植物免疫反应的分子机制提供有见地的线索。PlaD 可在以下网址免费获取:http://systbio.cau.edu.cn/plad/index.php 或 http://zzdlab.com/plad/index.php。