Post Graduate Department of Biotechnology, St. Xavier's College (Autonomous), 30, Mother Teresa Sarani, Kolkata, West Bengal, 700016, India.
Plant Cell Rep. 2021 Sep;40(9):1751-1772. doi: 10.1007/s00299-021-02737-x. Epub 2021 Jun 26.
Early induction of OsFEX was insufficient for fluoride adaptation in IR-64. Overexpression of OsFEX in yeast and Nicotiana benthamiana enhanced fluoride tolerance. The present study delineates the regulation of fluoride exporter (FEX) in the fluoride-sensitive rice cultivar, IR-64 and its efficacy in generating high fluoride tolerance in transgenic Nicotiana benthamiana. Gene and protein expression profiling revealed that OsFEX exhibited early induction during fluoride stress in the vegetative and reproductive tissues of IR-64, although the expression was suppressed upon prolonged stress treatment. Analysis of OsFEX promoter in transgenic N. benthamiana, using β-glucuronidase reporter assay confirmed its early inducible nature, since the reporter expression and activity peaked at 12 h of NaF stress, after which it was lowered. OsFEX expression was up regulated in the presence of gibberellic acid (GA) and melatonin, while it was suppressed by abscisic acid (ABA). Complementation of ΔFEX1ΔFEX2 yeast mutants with OsFEX enabled high fluoride tolerance, thus validating the functional efficiency of the transgene. Bioassay of transgenic N. benthamiana lines, expressing OsFEX either under its own promoter or under CaMV35S promoter, established that constitutive overexpression, rather than early induction of OsFEX was essential and crucial for generating fluoride tolerance in the transgenics. Overall, the suppression of OsFEX in the later growth phases of stressed IR-64 due to enhanced ABA conservation and lowered synthesis of GA, as supported by the application of the respective phytohormone biosynthetic inhibitors, such as sodium tungstate and paclobutrazol, accounted for the fluoride-hyperaccumulative nature of the rice cultivar.
OsFEX 的早期诱导不足以使 IR-64 适应氟化物。在酵母和烟草原生质体中过表达 OsFEX 可增强氟化物耐受性。本研究描述了氟化物敏感水稻品种 IR-64 中氟化物外排泵(FEX)的调节及其在产生转基因烟草原生质体高氟化物耐受性中的功效。基因和蛋白表达谱分析表明,OsFEX 在 IR-64 的营养和生殖组织中受到氟化物胁迫时表现出早期诱导,尽管在延长的胁迫处理中表达受到抑制。使用β-葡萄糖醛酸酶报告基因分析在转基因烟草原生质体中分析 OsFEX 启动子,证实了其早期诱导的性质,因为在 NaF 胁迫 12 小时后,报告基因表达和活性达到峰值,之后降低。在赤霉素(GA)和褪黑素存在的情况下,OsFEX 的表达上调,而在脱落酸(ABA)存在的情况下,其表达受到抑制。用 OsFEX 补充ΔFEX1ΔFEX2 酵母突变体使它们能够耐受高氟化物,从而验证了转基因的功能效率。在表达 OsFEX 的转基因烟草原生质体系的生物测定中,无论是在其自身启动子还是在 CaMV35S 启动子下表达,都证实了组成型过表达而不是 OsFEX 的早期诱导对于在转基因植物中产生氟化物耐受性至关重要。总体而言,由于增强的 ABA 保留和 GA 合成降低,在受到胁迫的 IR-64 的后期生长阶段中 OsFEX 受到抑制,这得到了分别施用植物激素生物合成抑制剂(如钨酸钠和多效唑)的支持,这解释了水稻品种的氟超积累性质。