4.7 Article

Polycomb proteins control floral determinacy by H3K27me3-mediated repression of pluripotency genes in Arabidopsis thaliana

期刊

JOURNAL OF EXPERIMENTAL BOTANY
卷 73, 期 8, 页码 2385-2402

出版社

OXFORD UNIV PRESS
DOI: 10.1093/jxb/erac013

关键词

Epigenetic gene regulation; floral organ specification; floral stem cell determinacy; flower development; MADS box genes; PcG proteins

资金

  1. National Natural Science Foundation of China [31640054, 31771602]
  2. Fundamental Research Funds for the Central Universities [2572020DY06]
  3. Northeast Forestry University Starting Grant for Distinguished Young Scholars

向作者/读者索取更多资源

The study reveals that depletion of H3K27me3 levels in Arabidopsis leads to abnormal flower morphogenesis with enlarged and indeterminate floral meristems, which is partially attributed to misexpression of the FM identity gene AGL24.
Polycomb group (PcG) protein-mediated histone methylation (H3K27me3) controls the correct spatiotemporal expression of numerous developmental regulators in Arabidopsis. Epigenetic silencing of the stem cell factor gene WUSCHEL (WUS) in floral meristems (FMs) depends on H3K27me3 deposition by PcG proteins. However, the role of H3K27me3 in silencing of other meristematic regulator and pluripotency genes during FM determinacy has not yet been studied. To this end, we report the genome-wide dynamics of H3K27me3 levels during FM arrest and the consequences of strongly depleted PcG activity on early flower morphogenesis including enlarged and indeterminate FMs. Strong depletion of H3K27me3 levels results in misexpression of the FM identity gene AGL24, which partially causes floral reversion leading to ap1-like flowers and indeterminate FMs ectopically expressing WUS and SHOOT MERISTEMLESS (STM). Loss of STM can rescue supernumerary floral organs and FM indeterminacy in H3K27me3-deficient flowers, indicating that the hyperactivity of the FMs is at least partially a result of ectopic STM expression. Nonetheless, WUS remained essential for the FM activity. Our results demonstrate that PcG proteins promote FM determinacy at multiple levels of the floral gene regulatory network, silencing initially floral regulators such as AGL24 that promotes FM indeterminacy and, subsequently, meristematic pluripotency genes such as WUS and STM during FM arrest.

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