You Wei, Chen Xiangjian, Zeng Lingtian, Ma Zhiyuan, Liu Zhixiong
College of Horticulture and Gardening, Yangtze University, Jingzhou 434025, China.
Plants (Basel). 2022 Apr 12;11(8):1047. doi: 10.3390/plants11081047.
Arabidopsis PISTILLATA (PI) encodes B-class MADS-box transcription factor (TF), and works together with APETALA3 (AP3) to specify petal and stamen identity. However, a small-scale gene duplication event of PI ortholog was observed in common buckwheat and resulted in FaesPI_1 and FaesPI_2. FaesPI_1 and FaesPI_2 were expressed only in the stamen of dimorphic flower (thrum and pin) of Fagopyrum esculentum. Moreover, intense beta-glucuronidase (GUS) staining was found in the entire stamen (filament and anther) in pFaesPI_1::GUS transgenic Arabidopsis, while GUS was expressed only in the filament of pFaesPI_2::GUS transgenic Arabidopsis. In addition, phenotype complementation analysis suggested that pFaesPI_1::FaesPI_1/pFaesPI_2::FaesPI_2 transgenic pi-1 Arabidopsis showed similar a flower structure with stamen-like organs or filament-like organs in the third whorl. This suggested that FaesPI_2 only specified filament development, but FaesPI_1 specified stamen development. Meanwhile, FaesPI_1 and FaesPI_2 were shown to function redundantly in regulating filament development, and both genes work together to require a proper stamen identity. The data also provide a clue to understanding the roles of PI-like genes involved in floral organ development during the early evolution of core eudicots and also suggested that FaesPI_1 and FaesPI_2 hold the potential application in bioengineering to develop a common buckwheat male sterile line.
拟南芥PISTILLATA(PI)编码B类MADS盒转录因子(TF),并与APETALA3(AP3)共同作用来确定花瓣和雄蕊的特征。然而,在普通荞麦中观察到PI直系同源基因发生了小规模的基因复制事件,产生了FaesPI_1和FaesPI_2。FaesPI_1和FaesPI_2仅在苦荞麦二型花(粗短型和细长型)的雄蕊中表达。此外,在pFaesPI_1::GUS转基因拟南芥的整个雄蕊(花丝和花药)中发现了强烈的β-葡萄糖醛酸酶(GUS)染色,而GUS仅在pFaesPI_2::GUS转基因拟南芥的花丝中表达。此外,表型互补分析表明,pFaesPI_1::FaesPI_1/pFaesPI_2::FaesPI_2转基因pi-1拟南芥在第三轮中表现出类似的花结构,有雄蕊状器官或花丝状器官。这表明FaesPI_2仅决定花丝发育,而FaesPI_1决定雄蕊发育。同时,FaesPI_1和FaesPI_2在调节花丝发育中表现出冗余功能,并且这两个基因共同作用以维持适当的雄蕊特征。这些数据也为理解核心真双子叶植物早期进化过程中参与花器官发育的PI样基因的作用提供了线索,并且还表明FaesPI_1和FaesPI_2在生物工程中具有开发普通荞麦雄性不育系的潜在应用价值。