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HISTONE MONOUBIQUITINATION1 Interacts with a Subunit of the Mediator Complex and Regulates Defense against Necrotrophic Fungal Pathogens in Arabidopsis

机译:组蛋白MONOUBIQUITINATION1与介体复合物的一个亚基相互作用并调节拟南芥中对坏死性真菌病原菌的防御作用

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摘要

This work examines the role of the Arabidopsis thaliana RING E3 ligase, HISTONE MONOUBIQUITINATION1 (HUB1) in disease resistance. Loss-of-function alleles of HUB1 show increased susceptibility to the necrotrophic fungal pathogens Botrytis cinerea and Alternaria brassicicola, whereas HUB1 overexpression conferred resistance to B. cinerea. By contrast, responses to the bacterial pathogen Pseudomonas syringae are unaltered in hub1 plants. hub1 mutants have thinner cell walls but increased callose around an infection site. HUB1 acts independently of jasmonate, but ethylene (ET) responses and salicylate modulate the resistance of hub1 mutants to necrotrophic fungi. The ET response factor ETHYLENE INSENSITIVE2 is epistatic to HUB1 for A. brassicicola resistance but additive to HUB1 for B. cinerea resistance. HUB1 interacts with MED21, a subunit of the Arabidopsis Mediator, a conserved complex that regulates RNA polymerase II. RNA interference lines with reduced MED21 expression are highly susceptible to A. brassicicola and B. cinerea, whereas T-DNA insertion alleles are embryonic lethal, suggesting an essential role for MED21. However, HUB1-mediated histone H2B modification is independent of histone H3 and DNA methylation. In sum, histone H2B monoubiquitination is an important chromatin modification with regulatory roles in plant defense against necrotrophic fungi most likely through modulation of gene expression.
机译:这项工作检查了拟南芥RING E3连接酶,组蛋白MONOUBIQUITINATION1(HUB1)在抗病性中的作用。 HUB1的功能丧失等位基因显示出对坏死性真菌病原体灰葡萄孢和棉链霉菌的敏感性增加,而HUB1过表达赋予了对灰葡萄孢的抗性。相反,在hub1植物中对细菌病原体丁香假单胞菌的反应没有改变。 hub1突变体的细胞壁较薄,但感染部位周围的call愈增多。 HUB1的行为与茉莉酸酯无关,但乙烯(ET)响应和水杨酸酯调节hub1突变体对坏死性真菌的抗性。 ET响应因子ETHENSENE INSENSITIVE2对油菜曲霉抗性对HUB1具有上位性,而对灰葡萄孢的抗性对HUB1具有累加性。 HUB1与MED21相互作用,MED21是拟南芥介体的一个亚基,它是调节RNA聚合酶II的保守复合物。 MED21 表达降低的RNA干扰株对 A高度敏感。 Brasicicola B。灰质,而T-DNA插入等位基因具有胚胎致死性,表明MED21的重要作用。但是,HUB1介导的组蛋白H2B修饰独立于组蛋白H3和DNA甲基化。总之,组蛋白H2B单泛素化是重要的染色质修饰,最有可能通过调节基因表达而在植物防御坏死性真菌中发挥调节作用。

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