State Key Laboratory for Conservation and Utilization of Subtropical Agro-bioresources, College of Life Sciences, South China Agricultural University, Guangzhou, 510642, China.
Shaanxi University of Chinese Medicine, Xianyang, 712046, China.
Plant Sci. 2020 Aug;297:110540. doi: 10.1016/j.plantsci.2020.110540. Epub 2020 May 30.
Pectinase and cellulase participate in cell wall degradation during secretory cavity formation in Citrus fruits. However, it remains unknown how secretory cavity formation is regulated by pectinase and cellulase genes in a schizolysigenous model. Our Results showed that PCD was involved in the schizolysigenous formation of the secretory cavities, and pectinase was involved in the degradation of the middle lamella while pectinase combined with cellulase were responsible for the degradation of the primary cell wall. Furthermore, the expression levels of CisPG21 and CisCEL16 at the intercellular space-forming and lumen-expanding stages with the continuous degradation of the cell wall were significantly higher than those at the initial cell stage and mature stage. The in situ hybridization (ISH) results also showed that CisPG21 and CisCEL16 were mainly located in the degrading cells of secretory cavities, and signals were very strong at the intercellular space-forming and lumen-expanding stages. In conclusion, pectinase and cellulase are directly involved in the degradation of PCD cell walls during schizolysigenous formation in the secretary cavity of Citrus sinensis (L.) Osbeck fruit, while CisPG21 and CisCEL16 are important regulatory genes of pectinase and cellulose during cell wall degradation.
果胶酶和纤维素酶参与柑橘类果实分泌腔形成过程中的细胞壁降解。然而,果胶酶和纤维素酶基因如何调节分泌腔的形成在离析性分泌腔形成模式中仍不清楚。我们的研究结果表明,PCD 参与了离析性分泌腔的形成,果胶酶参与了中层的降解,而果胶酶与纤维素酶共同负责初生细胞壁的降解。此外,在细胞壁不断降解的细胞间空间形成和腔扩张阶段,CisPG21 和 CisCEL16 的表达水平明显高于初始细胞阶段和成熟阶段。原位杂交(ISH)结果还表明,CisPG21 和 CisCEL16 主要位于分泌腔降解细胞中,在细胞间空间形成和腔扩张阶段信号非常强烈。总之,果胶酶和纤维素酶直接参与了 PCD 细胞壁在柑橘果实离析性分泌腔形成过程中的降解,而 CisPG21 和 CisCEL16 是细胞壁降解过程中果胶酶和纤维素的重要调控基因。