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小反转重复转座元件介导的 RNA 指导的 DNA 甲基化调控水稻分蘖。

Regulation of Rice Tillering by RNA-Directed DNA Methylation at Miniature Inverted-Repeat Transposable Elements.

机构信息

Center for Plant Biology, School of Life Sciences, Tsinghua University, Beijing 100084, China; Tsinghua-Peking Center for Life Sciences, Beijing 100084, China.

Key Laboratory of Plant Genomics and National Center for Plant Gene Research, Institute of Genetics and Developmental Biology, Chinese Academy of Sciences, Beijing 100101, China.

出版信息

Mol Plant. 2020 Jun 1;13(6):851-863. doi: 10.1016/j.molp.2020.02.009. Epub 2020 Feb 19.

Abstract

Tillering is a major determinant of rice plant architecture and grain yield. Here, we report that depletion of rice OsNRPD1a and OsNRPD1b, two orthologs of the largest subunit of RNA polymerase IV, leads to a high-tillering phenotype, in addition to dwarfism and smaller panicles. OsNRPD1a and OsNRPD1b are required for the production of 24-nt small interfering RNAs that direct DNA methylation at transposable elements (TEs) including miniature inverted-repeat TEs (MITEs). Interestingly, many genes are regulated either positively or negatively by TE methylation. Among them, OsMIR156d and OsMIR156j, which promote rice tillering, are repressed by CHH methylation at two MITEs in the promoters. By contrast, D14, which suppresses rice tillering, is activated by CHH methylation at an MITE in its downstream. Our findings reveal regulation of rice tillering by RNA-directed DNA methylation at MITEs and provide potential targets for agronomic trait enhancement through epigenome editing.

摘要

分蘖是水稻植株结构和产量的主要决定因素。在这里,我们报告说,水稻 OsNRPD1a 和 OsNRPD1b 的缺失,这两个 RNA 聚合酶 IV 大亚基的同源物,除了矮化和小穗外,还导致了高分蘖表型。OsNRPD1a 和 OsNRPD1b 是产生 24 个核苷酸小干扰 RNA 的必需物质,这些 RNA 可指导转座元件(TEs)包括微型反向重复转座元件(MITEs)的 DNA 甲基化。有趣的是,许多基因受到 TE 甲基化的正向或负向调控。其中,促进水稻分蘖的 OsMIR156d 和 OsMIR156j 被启动子中两个 MITE 上的 CHH 甲基化所抑制。相比之下,D14 抑制水稻分蘖,但其下游的一个 MITE 上的 CHH 甲基化使其激活。我们的发现揭示了 RNA 指导的 MITE 上的 DNA 甲基化对水稻分蘖的调控,并为通过表观基因组编辑增强农艺性状提供了潜在的靶点。

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