College of Agronomy, Northwest A&F University, Yangling, Shaanxi, 712100, P.R. China.
National Yangling Agricultural Biotechnology & Breeding Center/Yangling Branch of State Wheat Improvement Center/Wheat Breeding Engineering Research Center, Ministry of Education/Key Laboratory of Crop Heterosis of Shaanxi Province, Yangling, Shaanxi, 712100, P.R. China.
BMC Plant Biol. 2024 Aug 5;24(1):746. doi: 10.1186/s12870-024-05456-z.
The male sterile lines are an important foundation for heterosis utilization in wheat (Triticum aestivum L.). Thereinto, pollen development is one of the indispensable processes of wheat reproductive development, and its fertility plays an important role in wheat heterosis utilization, and are usually influencing by genes. However, these key genes and their regulatory networks during pollen abortion are poorly understood in wheat.
DEFECTIVE IN TAPETAL DEVELOPMENT AND FUNCTION 1 (TDF1) is a member of the R2R3-MYB family and has been shown to be essential for early tapetal layer development and pollen grain fertility in rice (Oryza sativa L.) and Arabidopsis thaliana. In order to clarify the function of TDF1 in wheat anthers development, we used OsTDF1 gene as a reference sequence and homologous cloned wheat TaTDF1 gene. TaTDF1 is localized in the nucleus. The average bolting time of Arabidopsis thaliana overexpressed strain (TaTDF1-OE) was 33 d, and its anther could be colored normally by Alexander staining solution, showing red. The dominant Mosaic suppression silence-line (TaTDF1-EAR) was blue-green in color, and the anthers were shrimpy and thin. The TaTDF1 interacting protein (TaMAP65) was confirmed using Yeast Two-Hybrid Assay (Y2H) and Bimolecular-Fluorescence Complementation (BiFC) experiments. The results showed that downregulated expression of TaTDF1 and TaMAP65 could cause anthers to be smaller and shrunken, leading to pollen abortion in TaTDF1 wheat plants induced by virus-induced gene-silencing technology. The expression pattern of TaTDF1 was influenced by TaMAP65.
Thus, systematically revealing the regulatory mechanism of wheat TaTDF1 during anther and pollen grain development may provide new information on the molecular mechanism of pollen abortion in wheat.
雄性不育系是小麦(Triticum aestivum L.)杂种优势利用的重要基础。其中,花粉发育是小麦生殖发育不可缺少的过程之一,其育性对小麦杂种优势利用起着重要作用,通常受基因影响。然而,这些关键基因及其在花粉败育过程中的调控网络在小麦中知之甚少。
花药发育缺陷和功能 1(TDF1)是 R2R3-MYB 家族的成员,已被证明在水稻(Oryza sativa L.)和拟南芥(Arabidopsis thaliana)中对早期花药层发育和花粉粒育性至关重要。为了阐明 TDF1 在小麦花药发育中的功能,我们使用 OsTDF1 基因作为参考序列,同源克隆了小麦 TaTDF1 基因。TaTDF1 定位于细胞核中。拟南芥过表达株系(TaTDF1-OE)的平均抽薹时间为 33d,其花药经亚历山大染色液染色后可正常显色,呈红色。显性镶嵌抑制沉默系(TaTDF1-EAR)呈蓝绿色,花药瘦小。利用酵母双杂交(Y2H)和双分子荧光互补(BiFC)实验证实了 TaTDF1 的互作蛋白(TaMAP65)。结果表明,下调 TaTDF1 和 TaMAP65 的表达可导致花药变小、皱缩,从而导致病毒诱导的基因沉默技术诱导的 TaTDF1 小麦植株花粉败育。TaTDF1 的表达模式受 TaMAP65 影响。
因此,系统揭示小麦 TaTDF1 在花药和花粉粒发育过程中的调控机制,可为小麦花粉败育的分子机制提供新信息。