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由绒毡层退化延迟(TDR)调控的花药发育F-box(ADF)蛋白控制水稻花药发育。

An anther development F-box (ADF) protein regulated by tapetum degeneration retardation (TDR) controls rice anther development.

作者信息

Li Li, Li Yixing, Song Shufeng, Deng Huafeng, Li Na, Fu Xiqin, Chen Guanghui, Yuan Longping

机构信息

State Key Laboratory of Hybrid Rice, Hunan Hybrid Rice Research Centre, Changsha, 410125, China,

出版信息

Planta. 2015 Jan;241(1):157-66. doi: 10.1007/s00425-014-2160-9. Epub 2014 Sep 19.

Abstract

In this study, we reported that a F-box protein, OsADF, as one of the direct targets of TDR , plays a critical role in rice tapetum cell development and pollen formation. The tapetum, the innermost sporophytic tissue of anther, plays an important supportive role in male reproduction in flowering plants. After meiosis, tapetal cells undergo programmed cell death (PCD) and provide nutrients for pollen development. Previously we showed that tapetum degeneration retardation (TDR), a basic helix-loop-helix transcription factor, can trigger tapetal PCD and control pollen wall development during anther development. However, the comprehensive regulatory network of TDR remains to be investigated. In this study, we cloned and characterized a panicle-specific expression F-box protein, anther development F-box (OsADF). By qRT-PCR and RNA in situ hybridization, we further confirmed that OsADF expressed specially in tapetal cells from stage 9 to stage 12 during anther development. In consistent with this specific expression pattern, the RNAi transgenic lines of OsADF exhibited abnormal tapetal degeneration and aborted microspores development, which eventually grew pollens with reduced fertility. Furthermore, we demonstrated that the TDR, a key regulator in controlling rice anther development, could regulate directly the expression of OsADF by binding to E-box motifs of its promoter. Therefore, this work highlighted the possible regulatory role of TDR, which regulates tapetal cell development and pollen formation via triggering the possible ADF-mediated proteolysis pathway.

摘要

在本研究中,我们报道了一种F-box蛋白OsADF作为TDR的直接靶标之一,在水稻绒毡层细胞发育和花粉形成中起关键作用。绒毡层是花药最内层的孢子体组织,在开花植物的雄性生殖中起重要的支持作用。减数分裂后,绒毡层细胞经历程序性细胞死亡(PCD)并为花粉发育提供营养。此前我们表明,碱性螺旋-环-螺旋转录因子绒毡层退化延迟(TDR)可触发绒毡层PCD并在花药发育过程中控制花粉壁发育。然而,TDR的全面调控网络仍有待研究。在本研究中,我们克隆并鉴定了一种穗特异性表达的F-box蛋白,花药发育F-box(OsADF)。通过qRT-PCR和RNA原位杂交,我们进一步证实OsADF在花药发育的第9阶段至第12阶段在绒毡层细胞中特异性表达。与这种特异性表达模式一致,OsADF的RNA干扰转基因系表现出异常的绒毡层退化和小孢子发育异常,最终产生育性降低的花粉。此外,我们证明了控制水稻花药发育的关键调节因子TDR可以通过结合其启动子的E-box基序直接调节OsADF的表达。因此,这项工作突出了TDR可能的调控作用,即通过触发可能的ADF介导的蛋白水解途径来调节绒毡层细胞发育和花粉形成。

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