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◆ Nature communications2026-08-22

HOMEODOMAIN-LIKE shapes chromatin architecture and rewires leaf epidermal patterns.

Ansar Ali, Chi Kuan, Tsai-Chen Chen, Fu-Yu Hung, Pei-Yu Lin, Ding Hua Lee, Guan-Jun Lin, Hui-Chun Lee, Shao-Li Yang, Yun-Ru Feng, Chung-Ju Rachel Wang, Pao-Yang Chen, Keqiang Wu, Chin-Min Kimmy Ho

原始摘要(英文原文)· Original abstract
During development, cells balance proliferation and differentiation to generate diverse cell types, yet how these transitions are fine-tuned remains unclear. In the Arabidopsis leaf epidermis, stomata form through regulated cell division, whereas pavement cells and trichomes arise through differentiation, making this tissue a tractable system for identifying modulators of developmental decisions. Here, we identified a previously uncharacterized homeodomain-like protein HDL, that is required for chromocenter organization through interactions with the histone deacetylase HDA6 and the methyltransferase KRYPTONITE. hdl mutants exhibit disrupted chromocenters and reduced cell division, resulting in fewer stomata and increased trichome formation. Chromatin immunoprecipitation and ATAC-sequencing reveal increased chromatin accessibility at HDL-associated regions and reduced accessibility and expression of stomatal lineage-related genes. Chromatin-state and H3K9me2 analyses further suggest that HDL functions as a chromatin organizer that maintains epigenetic balance at the interface between active and repressive chromatin domains, thereby shaping genome-wide transcriptional programs. Together, these findings identify HDL as a chromatin-associated factor linked to coordinated changes in chromocenter architecture and developmental plasticity.
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HOMEODOMAIN-LIKE shapes chromatin architecture and rewires leaf epidermal patterns. — 科研速览 Science Skim