Laboratori del Suro, Biology Department, Universitat de Girona, Campus Montilivi, E-17071, Girona, Catalonia, Spain.
Department of Plant Sciences, University of Cambridge, Downing Street, Cambridge, CB2 3EA, UK.
BMC Plant Biol. 2021 Sep 7;21(1):409. doi: 10.1186/s12870-021-03141-z.
The periderm is a protective barrier crucial for land plant survival, but little is known about genetic factors involved in its development and regulation. Using a transcriptomic approach in the cork oak (Q. suber) periderm, we previously identified an RS2-INTERACTING KH PROTEIN (RIK) homologue of unknown function containing a K homology (KH)-domain RNA-binding protein, as a regulatory candidate gene in the periderm.
To gain insight into the function of RIK in the periderm, potato (S. tuberosum) tuber periderm was used as a model: the full-length coding sequence of RIK, hereafter referred to as StRIK, was isolated, the transcript profile analyzed and gene silencing in potato performed to analyze the silencing effects on periderm anatomy and transcriptome. The StRIK transcript accumulated in all vegetative tissues studied, including periderm and other suberized tissues such as root and also in wounded tissues. Downregulation of StRIK in potato by RNA interference (StRIK-RNAi) did not show any obvious effects on tuber periderm anatomy but, unlike Wild type, transgenic plants flowered. Global transcript profiling of the StRIK-RNAi periderm did show altered expression of genes associated with RNA metabolism, stress and signaling, mirroring the biological processes found enriched within the in silico co-expression network of the Arabidopsis orthologue.
The ubiquitous expression of StRIK transcript, the flower associated phenotype and the differential expression of StRIK-RNAi periderm point out to a general regulatory role of StRIK in diverse plant developmental processes. The transcriptome analysis suggests that StRIK might play roles in RNA maturation and stress response in the periderm.
周皮是陆地植物生存的重要保护屏障,但对其发育和调节涉及的遗传因素知之甚少。我们之前在栓皮栎(Q. suber)周皮中使用转录组学方法,鉴定了一个具有未知功能的 RS2-INTERACTING KH PROTEIN(RIK)同源物,该同源物是周皮中一个调节候选基因,其包含一个 K 同源(KH)结构域 RNA 结合蛋白。
为了深入了解 RIK 在周皮中的功能,我们使用马铃薯(S. tuberosum)块茎周皮作为模型:分离了 RIK 的全长编码序列,以下称为 StRIK,分析了其转录谱,并在马铃薯中进行基因沉默,以分析对周皮解剖结构和转录组的沉默效应。StRIK 转录本在所有研究的营养组织中积累,包括周皮和其他栓皮组织,如根,也在受伤组织中积累。通过 RNA 干扰(StRIK-RNAi)下调马铃薯中的 StRIK 没有显示出对块茎周皮解剖结构的任何明显影响,但与野生型不同的是,转基因植物开花了。StRIK-RNAi 周皮的全转录组分析显示,与 RNA 代谢、应激和信号相关的基因表达发生改变,这与拟南芥同源物的计算机共表达网络中富集的生物学过程相吻合。
StRIK 转录本的普遍表达、与花相关的表型以及 StRIK-RNAi 周皮的差异表达表明,StRIK 在各种植物发育过程中发挥着普遍的调节作用。转录组分析表明,StRIK 可能在周皮的 RNA 成熟和应激反应中发挥作用。