Yoon Jinmi, Baek Gibeom, Pasriga Richa, Tun Win, Min Cheol Woo, Kim Sun-Tae, Cho Lae-Hyeon, An Gynheung
Department of Plant Bioscience, College of Natural Resources and Life Science, Pusan National University, Miryang, Republic of Korea.
Life and Industry Convergence Research Institute, Pusan National University, Miryang, Republic of Korea.
Plant Cell Environ. 2023 Apr;46(4):1327-1339. doi: 10.1111/pce.14438. Epub 2022 Sep 30.
Floral transition starts in the leaves when florigens respond to various environmental and developmental factors. Among several regulatory genes that are preferentially expressed in the inflorescence meristem during the floral transition, this study examines the homeobox genes OsZHD1 and OsZHD2 for their roles in regulating this transition. Although single mutations in these genes did not result in visible phenotype changes, double mutations in these genes delayed flowering. Florigen expression was not altered in the double mutants, indicating that the delay was due to a defect in florigen signaling. Morphological analysis of shoot apical meristem at the early developmental stage indicated that inflorescence meristem development was significantly delayed in the double mutants. Overexpression of ZHD2 causes early flowering because of downstream signals after the generation of florigens. Expression levels of the auxin biosynthesis genes were reduced in the mutants and the addition of indole-3-acetic acid recovered the defect in the mutants, suggesting that these homeobox genes play a role in auxin biosynthesis. A rice florigen, RICE FLOWERING LOCUS T 1, binds to the promoter regions of homeobox genes. These results indicate that florigens stimulate the expression of homeobox genes, enhancing inflorescence development in the shoot apex.
当成花素响应各种环境和发育因素时,花转变在叶片中开始。在花转变过程中在花序分生组织中优先表达的几个调控基因中,本研究检测了同源异型盒基因OsZHD1和OsZHD2在调节这种转变中的作用。尽管这些基因中的单个突变并未导致可见的表型变化,但这些基因中的双突变延迟了开花。双突变体中的成花素表达没有改变,表明延迟是由于成花素信号传导缺陷所致。早期发育阶段茎尖分生组织的形态学分析表明,双突变体中花序分生组织的发育明显延迟。ZHD2的过表达由于成花素产生后的下游信号而导致早花。突变体中生长素生物合成基因的表达水平降低,添加吲哚 - 3 - 乙酸可恢复突变体中的缺陷,表明这些同源异型盒基因在生长素生物合成中起作用。一种水稻成花素,水稻开花位点T 1,与同源异型盒基因的启动子区域结合。这些结果表明,成花素刺激同源异型盒基因的表达,增强茎尖的花序发育。