National Centre for Biological Sciences, Tata Institute of Fundamental Research, GKVK Campus, Bangalore, India.
Nat Commun. 2024 Sep 6;15(1):7807. doi: 10.1038/s41467-024-52239-z.
Genomic imprinting is observed in endosperm, a placenta-like seed tissue, where transposable elements (TEs) and repeat-derived small RNAs (sRNAs) mediate epigenetic changes in plants. In imprinting, uniparental gene expression arises due to parent-specific epigenetic marks on one allele but not on the other. The importance of sRNAs and their regulation in endosperm development or in imprinting is poorly understood in crops. Here we show that a previously uncharacterized CLASSY (CLSY)-family chromatin remodeler named OsCLSY3 is essential for rice endosperm development and imprinting, acting as an upstream player in the sRNA pathway. Comparative transcriptome and genetic analysis indicated its endosperm-preferred expression and its likely paternal imprinted nature. These important features are modulated by RNA-directed DNA methylation (RdDM) of tandemly arranged TEs in its promoter. Upon perturbation of OsCLSY3 in transgenic lines, we observe defects in endosperm development and a loss of around 70% of all sRNAs. Interestingly, well-conserved endosperm-specific sRNAs (siren) that are vital for reproductive fitness in angiosperms are also dependent on OsCLSY3. We observed that many imprinted genes and seed development-associated genes are under the control of OsCLSY3. These results support an essential role of OsCLSY3 in rice endosperm development and imprinting, and propose similar regulatory strategies involving CLSY3 homologs among other cereals.
基因组印迹在胚乳中观察到,胚乳是一种胎盘样的种子组织,其中转座元件(TEs)和重复衍生的小 RNA(sRNAs)在植物中介导表观遗传变化。在印迹中,由于一个等位基因上存在亲本特异性的表观遗传标记,但另一个等位基因上不存在,因此出现单亲基因表达。在作物中,sRNAs 及其在胚乳发育或印迹中的调控的重要性知之甚少。在这里,我们表明,一种以前未被表征的称为 OsCLSY3 的 CLASSY(CLSY)家族染色质重塑因子对于水稻胚乳发育和印迹是必不可少的,它作为 sRNA 途径的上游参与者发挥作用。比较转录组和遗传分析表明,它在胚乳中优先表达,可能具有父本印迹的性质。这些重要特征受其启动子中串联排列的 TE 的 RNA 指导的 DNA 甲基化(RdDM)调节。在转基因系中对 OsCLSY3 进行扰动后,我们观察到胚乳发育缺陷和大约 70%的所有 sRNAs 丢失。有趣的是,在被子植物中对于生殖适应性至关重要的保守胚乳特异性 sRNAs(siren)也依赖于 OsCLSY3。我们观察到许多印迹基因和种子发育相关基因受 OsCLSY3 的控制。这些结果支持 OsCLSY3 在水稻胚乳发育和印迹中的重要作用,并提出了其他谷物中涉及 CLSY3 同源物的类似调控策略。