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拟南芥 Topless 相关蛋白 1 减轻诱导免疫的生理损伤和生长缺陷。

Arabidopsis Topless-related 1 mitigates physiological damage and growth penalties of induced immunity.

机构信息

Department of Plant-Microbe Interactions, Max-Planck Institute for Plant Breeding Research, 50829, Cologne, Germany.

Dahlem Centre of Plant Sciences, Plant Physiology, Freie Universität Berlin, 14195, Berlin, Germany.

出版信息

New Phytol. 2023 Aug;239(4):1404-1419. doi: 10.1111/nph.19054. Epub 2023 Jun 12.

Abstract

Transcriptional corepressors of the Topless (TPL) family regulate plant hormone and immunity signaling. The lack of a genome-wide profile of their chromatin associations limits understanding of the TPL family roles in transcriptional regulation. Chromatin immunoprecipitation with sequencing (ChIP-Seq) was performed on Arabidopsis thaliana lines expressing GFP-tagged Topless-related 1 (TPR1-GFP) with and without constitutive immunity via Enhanced Disease Susceptibility 1 (EDS1). RNA-Seq profiling of the TPR1-GFP lines and pathogen-infected tpl/tpr mutants, combined with measuring immunity, growth, and physiological parameters was employed to investigate TPL/TPR roles in immunity and defense homeostasis. TPR1 was enriched at promoter regions of c. 1400 genes and c. 10% of the detected binding required EDS1 immunity signaling. In a tpr1 tpl tpr4 (t3) mutant, resistance to bacteria was slightly compromised, and defense-related transcriptional reprogramming was weakly reduced or enhanced, respectively, at early (< 1 h) and late 24 h stages of bacterial infection. The t3 plants challenged with bacteria or pathogen-associated molecular pattern nlp24 displayed photosystem II dysfunctions. Also, t3 plants were hypersensitive to phytocytokine pep1 at the level of root growth inhibition. Transgenic expression of TPR1 rescued these t3 physiological defects. We propose that TPR1 and TPL family proteins function in Arabidopsis to reduce detrimental effects associated with activated transcriptional immunity.

摘要

Topless(TPL)家族的转录核心抑制剂调节植物激素和免疫信号。由于缺乏其染色质关联的全基因组图谱,限制了对 TPL 家族在转录调控中作用的理解。通过增强的疾病易感性 1(EDS1)在表达 GFP 标记的 Topless 相关 1(TPR1-GFP)的拟南芥系中进行了染色质免疫沉淀与测序(ChIP-Seq)。对 TPR1-GFP 系和病原体感染的 tpl/tpr 突变体进行 RNA-Seq 分析 profiling,并结合测量免疫、生长和生理参数,以研究 TPL/TPR 在免疫和防御平衡中的作用。TPR1 在 c. 1400 个基因的启动子区域富集,检测到的 c. 10% 的结合需要 EDS1 免疫信号。在 tpr1 tpl tpr4(t3)突变体中,对细菌的抗性略有受损,而在细菌感染的早期(<1 h)和晚期 24 h 阶段,防御相关的转录重编程分别减弱或增强。用细菌或病原体相关分子模式 nlp24 挑战 t3 植物会导致光系统 II 功能障碍。此外,t3 植物对植物细胞因子 pep1 表现出根生长抑制水平的超敏反应。TPR1 的转基因表达挽救了这些 t3 生理缺陷。我们提出,TPR1 和 TPL 家族蛋白在拟南芥中发挥作用,以减轻与激活的转录免疫相关的有害影响。

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