State Key Laboratory of Farm Animal Biotech Breeding, College of Biological Sciences, China Agricultural University, Beijing, 100193, China.
State Key Laboratory of Molecular Developmental Biology, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing, 100101, China.
BMC Plant Biol. 2023 Apr 27;23(1):225. doi: 10.1186/s12870-023-04234-7.
Alternative splicing (AS) is a co-transcriptional regulatory mechanism of plants in response to environmental stress. However, the role of AS in biotic and abiotic stress responses remains largely unknown. To speed up our understanding of plant AS patterns under different stress responses, development of informative and comprehensive plant AS databases is highly demanded.
In this study, we first collected 3,255 RNA-seq data under biotic and abiotic stresses from two important model plants (Arabidopsis and rice). Then, we conducted AS event detection and gene expression analysis, and established a user-friendly plant AS database termed PlaASDB. By using representative samples from this highly integrated database resource, we compared AS patterns between Arabidopsis and rice under abiotic and biotic stresses, and further investigated the corresponding difference between AS and gene expression. Specifically, we found that differentially spliced genes (DSGs) and differentially expressed genes (DEG) share very limited overlapping under all kinds of stresses, suggesting that gene expression regulation and AS seemed to play independent roles in response to stresses. Compared with gene expression, Arabidopsis and rice were more inclined to have conserved AS patterns under stress conditions.
PlaASDB is a comprehensive plant-specific AS database that mainly integrates the AS and gene expression data of Arabidopsis and rice in stress response. Through large-scale comparative analyses, the global landscape of AS events in Arabidopsis and rice was observed. We believe that PlaASDB could help researchers understand the regulatory mechanisms of AS in plants under stresses more conveniently. PlaASDB is freely accessible at http://zzdlab.com/PlaASDB/ASDB/index.html .
可变剪接(AS)是植物应对环境胁迫的一种共转录调控机制。然而,AS 在生物和非生物胁迫响应中的作用在很大程度上尚不清楚。为了加速我们对不同胁迫响应下植物 AS 模式的理解,开发信息丰富且全面的植物 AS 数据库是非常有必要的。
在这项研究中,我们首先从两个重要的模式植物(拟南芥和水稻)中收集了 3255 条生物和非生物胁迫下的 RNA-seq 数据。然后,我们进行了 AS 事件检测和基因表达分析,并建立了一个用户友好的植物 AS 数据库,称为 PlaASDB。通过使用这个高度集成的数据库资源中的代表性样本,我们比较了拟南芥和水稻在生物和非生物胁迫下的 AS 模式,并进一步研究了 AS 与基因表达之间的相应差异。具体来说,我们发现差异剪接基因(DSGs)和差异表达基因(DEG)在各种胁迫下的重叠非常有限,这表明基因表达调控和 AS 似乎在应对胁迫时发挥独立的作用。与基因表达相比,拟南芥和水稻在胁迫条件下更倾向于具有保守的 AS 模式。
PlaASDB 是一个全面的植物特异性 AS 数据库,主要整合了拟南芥和水稻在胁迫响应中的 AS 和基因表达数据。通过大规模的比较分析,观察到了拟南芥和水稻中 AS 事件的全局景观。我们相信,PlaASDB 可以帮助研究人员更方便地理解植物在胁迫下 AS 的调控机制。PlaASDB 可在 http://zzdlab.com/PlaASDB/ASDB/index.html 免费获取。