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  2. Plant-specific histone deacetylases associate with ARGONAUTE4 to promote heterochromatin stabilization and plant heat tolerance

Plant-specific histone deacetylases associate with ARGONAUTE4 to promote heterochromatin stabilization and plant heat tolerance

  • New Phytol. 2023 Jan 11. doi: 10.1111/nph.18729.
Fangfang Yang 1 2 Yingnan Sun 1 2 Xiaoxuan Du 1 2 Zhaohui Chu 1 2 Xuehua Zhong 3 Xiangsong Chen 1 2
Affiliations

Affiliations

  • 1 State Key Laboratory of Hybrid Rice, College of Life Sciences, Wuhan University, Wuhan, Hubei, 430072, China.
  • 2 Hubei Hongshan Laboratory, Wuhan, Hubei, 430070, China.
  • 3 Department of Biology, Washington University, St. Louis, Missouri, 63130, USA.
Abstract

High temperature causes devasting effects on many aspects of plant cells and thus enhancing plant heat tolerance is critical for crop production. Emerging studies have revealed the important roles of chromatin modifications in heat stress responses. However, how chromatin is regulated during heat stress remains unclear. We show that heat stress results in heterochromatin disruption coupled with histone hyperacetylation and DNA hypomethylation. Two plant-specific histone deacetylases HD2B and HD2C could promote DNA methylation, and relieve the heat-induced heterochromatin decondensation. We noted that most DNA methylation regulated by HD2B and HD2C is lost upon heat stress. HD2B- and HD2C-regulated histone acetylation and DNA methylation are dispensable for heterochromatin maintenance under normal condition, but critical for heterochromatin stabilization under heat stress. We further showed that HD2B and HD2C promoted DNA methylation through associating with ARGONAUTE4 in nucleoli and Cajal bodies, and facilitating its nuclear accumulation. Thus, HD2B and HD2C act both canonically and noncanonically to stabilize heterochromatin under heat stress. This study not only reveals a novel plant-specific crosstalk between histone deacetylases and key factor of DNA methylation pathway, but also uncovers their new roles in chromatic regulation of plant heat tolerance.

Keywords

ARGONAUTE4; Arabidopsis thaliana; DNA methylation; Histone deacetylases; heat tolerance; heterochromatin.

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