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染色质重塑因子 MdRAD5B 通过与 MdLHP1 介导的 H3K27me3 耦联增强苹果的耐旱性。

The chromatin remodeller MdRAD5B enhances drought tolerance by coupling MdLHP1-mediated H3K27me3 in apple.

机构信息

State Key Laboratory of Crop Stress Biology for Arid Areas/Shaanxi Key Laboratory of Apple, College of Horticulture, Northwest A&F University, Yangling, China.

Shenzhen Research Institute, Northwest A&F University, Shenzhen, China.

出版信息

Plant Biotechnol J. 2024 Mar;22(3):617-634. doi: 10.1111/pbi.14210. Epub 2023 Oct 24.

Abstract

RAD5B belongs to the Rad5/16-like group of the SNF2 family, which often functions in chromatin remodelling. However, whether RAD5B is involved in chromatin remodelling, histone modification, and drought stress tolerance is largely unclear. We identified a drought-inducible chromatin remodeler, MdRAD5B, which positively regulates apple drought tolerance. Transposase-accessible chromatin with high-throughput sequencing (ATAC-seq) analysis showed that MdRAD5B affects the expression of 466 drought-responsive genes through its chromatin remodelling function in response to drought stress. In addition, MdRAD5B interacts with and degrades MdLHP1, a crucial regulator of histone H3 trimethylation at K27 (H3K27me3), through the ubiquitin-independent 20S proteasome. Chromatin immunoprecipitation-sequencing (ChIP-seq) analysis revealed that MdRAD5B modulates the H3K27me3 deposition of 615 genes in response to drought stress. Genetic interaction analysis showed that MdRAD5B mediates the H3K27me3 deposition of drought-responsive genes through MdLHP1, which causes their expression changes under drought stress. Our results unravelled a dual function of MdRAD5B in gene expression modulation in apple in response to drought, that is, via the regulation of chromatin remodelling and H3K27me3.

摘要

RAD5B 属于 SNF2 家族的 Rad5/16 样亚家族,该亚家族通常在染色质重塑中发挥作用。然而,RAD5B 是否参与染色质重塑、组蛋白修饰以及干旱胁迫耐受尚不清楚。我们鉴定了一个干旱诱导的染色质重塑因子 MdRAD5B,它正向调控苹果的耐旱性。转座酶可及染色质的高通量测序(ATAC-seq)分析表明,MdRAD5B 通过其在应对干旱胁迫时的染色质重塑功能,影响 466 个干旱响应基因的表达。此外,MdRAD5B 通过非依赖泛素的 20S 蛋白酶体与关键的组蛋白 H3 第 27 位三甲基化(H3K27me3)调控因子 MdLHP1 相互作用并使其降解。染色质免疫沉淀测序(ChIP-seq)分析表明,MdRAD5B 调节 615 个基因在应对干旱胁迫时的 H3K27me3 沉积。遗传互作分析表明,MdRAD5B 通过 MdLHP1 介导干旱响应基因的 H3K27me3 沉积,导致它们在干旱胁迫下的表达变化。我们的研究结果揭示了 MdRAD5B 在苹果响应干旱时调控基因表达的双重功能,即通过调节染色质重塑和 H3K27me3。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/4d66/11374048/b226e16a9c70/PBI-22-617-g003.jpg

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