Department of Plant and Environmental Sciences, Weizmann Institute of Science, Rehovot, 7610001, Israel.
FAFU-UCR Joint Center, Fujian Provincial Key Laboratory of Haixia Applied Plant Systems Biology, Fujian Agriculture and Forestry University, Fuzhou, 350002, China.
Plant J. 2020 May;102(3):431-447. doi: 10.1111/tpj.14711. Epub 2020 Feb 24.
Root endodermis, the innermost cortical layer surrounding the root vasculature, serves as the foremost barrier to water, solutes, and nutrients taken up from soil. Endodermis barrier functionality is achieved via its hydrophobic coating of lignified Casparian strips and the suberin lamellae; nonetheless the regulatory mechanisms underlying endodermis suberization are still elusive. Here, we discovered that the Arabidopsis SUBERMAN (SUB) transcription factor controls the establishment of the root suberin lamellae. Transient expression of SUB in Nicotiana benthamiana leaves resulted in the induction of heterologous suberin genes, the accumulation of suberin-type monomers, and consequent deposition of suberin-like lamellae. We demonstrate that SUB exerts its regulatory roles by transactivating promoters of suberin genes. In Arabidopsis, SUB is expressed in patchy and continuous suberization root endodermal cells, and thus roots with higher or lower expression of SUB display altered suberin polymer deposition patterns and modified composition. While these changes did not interfere with Casparian strip formation they had a substantial effect on root uptake capacity, resulting in varied root and leaf ionomic phenotypes. Gene expression profiling revealed that SUB function impacts transcriptional networks associated with suberin, phenylpropanoids, lignin, and cuticular lipid biosynthesis, as well as root transport activities, hormone signalling, and cell wall modification. Our findings highlight SUB as a regulator of root endodermis suberization during normal development, and its characterization is thus a key step towards dissecting the molecular mechanisms partaking in root endodermal barrier functionalities.
根内皮层是围绕根维管束的最内层皮层组织,是从土壤中吸收水分、溶质和养分的第一道屏障。内皮层的屏障功能是通过木质素 Casparian 条纹和角质层片的疏水性涂层来实现的;然而,内皮层角质化的调节机制仍然难以捉摸。在这里,我们发现拟南芥 SUBERMAN(SUB)转录因子控制根角质层片的建立。SUB 在烟草原生质体中的瞬时表达导致了异源角质层基因的诱导、角质层型单体的积累以及随后角质层样片层的沉积。我们证明 SUB 通过反式激活角质层基因的启动子发挥其调节作用。在拟南芥中,SUB 在斑驳和连续角质化的根内皮层细胞中表达,因此表达水平较高或较低的 SUB 的根显示出改变的角质层聚合物沉积模式和修饰的组成。虽然这些变化不干扰 Casparian 条纹的形成,但它们对根的摄取能力有很大影响,导致根和叶离子组学表型的差异。基因表达谱分析显示,SUB 功能影响与角质层、苯丙烷、木质素和角质层脂质生物合成以及根转运活性、激素信号转导和细胞壁修饰相关的转录网络。我们的发现强调了 SUB 作为正常发育过程中根内皮层角质化的调节剂,其特征是解析参与根内皮层屏障功能的分子机制的关键步骤。