Université Paris-Saclay, INRAE, AgroParisTech, Institut Jean-Pierre Bourgin (IJPB), Versailles, France.
School of Biosciences and Technology, Vellore Institute of Technology, Vellore, Tamil Nadu, India.
Nat Commun. 2024 May 30;15(1):4612. doi: 10.1038/s41467-024-48950-6.
In plants, small-interfering RNAs (siRNAs) mediate epigenetic silencing via the RNA-directed DNA methylation (RdDM) pathway, which is particularly prominent during reproduction and seed development. However, there is limited understanding of the origins and dynamics of reproductive siRNAs acting in different cellular and developmental contexts. Here, we used the RNaseIII-like protein RTL1 to suppress siRNA biogenesis in Arabidopsis pollen, and found distinct siRNA subsets produced during pollen development. We demonstrate that RTL1 expression in the late microspore and vegetative cell strongly impairs epigenetic silencing, and resembles RdDM mutants in their ability to bypass interploidy hybridization barriers in the seed. However, germline-specific RTL1 expression did not impact transgenerational inheritance of triploid seed lethality. These results reveal the existence of multiple siRNA subsets accumulated in mature pollen, and suggest that mobile siRNAs involved in the triploid block are produced in germline precursor cells after meiosis, or in the vegetative cell during pollen mitosis.
在植物中,小干扰 RNA(siRNA)通过 RNA 指导的 DNA 甲基化(RdDM)途径介导表观遗传沉默,该途径在繁殖和种子发育过程中尤为突出。然而,对于在不同细胞和发育背景下起作用的生殖 siRNA 的起源和动态,我们的了解有限。在这里,我们使用 RNaseIII 样蛋白 RTL1 抑制拟南芥花粉中的 siRNA 生物发生,并发现花粉发育过程中产生了不同的 siRNA 亚群。我们证明,晚期小孢子和营养细胞中 RTL1 的表达强烈损害了表观遗传沉默,并且在绕过种子中倍性杂交障碍的能力上与 RdDM 突变体相似。然而,生殖细胞特异性 RTL1 的表达并不影响三倍体种子致死性的跨代遗传。这些结果揭示了成熟花粉中积累的多个 siRNA 亚群的存在,并表明参与三倍体阻断的可移动 siRNA 是在减数分裂后的生殖细胞前体细胞中产生的,或者是在花粉有丝分裂期间在营养细胞中产生的。