Department of Plant Breeding and Genetics, Max Planck Institute for Plant Breeding Research, Cologne, Germany.
Open Analytics, Antwerp, Belgium.
J Integr Plant Biol. 2016 Dec;58(12):947-958. doi: 10.1111/jipb.12482. Epub 2016 Jul 20.
Before being dispersed in the environment, mature seeds need to be dehydrated. The survival of seeds after dispersal depends on their low hydration in combination with high desiccation tolerance. These characteristics are established during seed maturation. Some key seed maturation genes have been reported to be regulated by alternative splicing (AS). However, so far AS was described only for single genes and a comprehensive analysis of AS during seed maturation has been lacking. We investigated gene expression and AS during Arabidopsis thaliana seed development at a global level, before and after desiccation. Bioinformatics tools were developed to identify differentially spliced regions within genes. Our data suggest the importance and shows the peculiar features of AS during seed desiccation. We identified AS in 34% of genes that are expressed at both timepoints before and after desiccation. Most of these AS transcript variants had not been found before in other tissues. Among the AS genes some seed master regulators could be found. Interestingly, 6% of all expressed transcripts were not transcriptionally regulated during desiccation, but only modified by AS. We propose that AS should be more routinely taken into account in the analysis of transcriptomic data to prevent overlooking potentially important regulators.
成熟的种子在散布到环境中之前需要脱水。种子散布后的存活取决于其低水合作用与高耐旱性相结合。这些特性是在种子成熟过程中建立的。一些关键的种子成熟基因已被报道受可变剪接(AS)调控。然而,到目前为止,AS 仅被描述为单个基因,并且缺乏对种子成熟过程中 AS 的全面分析。我们在拟南芥种子发育的全局水平上,在脱水前后,研究了基因表达和 AS。开发了生物信息学工具来识别基因内差异剪接区域。我们的数据表明了 AS 在种子脱水过程中的重要性和特殊特征。我们在 34%的在脱水前后两个时间点都有表达的基因中鉴定到了 AS。这些 AS 转录变体中的大多数以前在其他组织中没有发现。在 AS 基因中,可以找到一些种子主要调控因子。有趣的是,6%的所有表达转录本在脱水过程中没有转录调控,而仅通过 AS 修饰。我们提出,在分析转录组数据时,应更常规地考虑 AS,以防止忽略潜在的重要调控因子。