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Arabidopsis sigma factor binding proteins are activators of the WRKY33 transcription factor in plant defense.

机译:拟南芥sigma因子结合蛋白是植物防御中WRKY33转录因子的激活剂。

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Necrotrophic pathogens are important plant pathogens that cause many devastating plant diseases. Despite their impact, our understanding of the plant defense response to necrotrophic pathogens is limited. The WRKY33 transcription factor is important for plant resistance to necrotrophic pathogens; therefore, elucidation of its functions will enhance our understanding of plant immunity to necrotrophic pathogens. Here, we report the identification of two WRKY33-interacting proteins, nuclear-encoded SIGMA FACTOR BINDING PROTEIN1 (SIB1) and SIB2, which also interact with plastid-encoded plastid RNA polymerase SIGMA FACTOR1. Both SIB1 and SIB2 contain an N-terminal chloroplast targeting signal and a putative nuclear localization signal, suggesting that they are dual targeted. Bimolecular fluorescence complementation indicates that WRKY33 interacts with SIBs in the nucleus of plant cells. Both SIB1 and SIB2 contain a short VQ motif that is important for interaction with WRKY33. The two VQ motif-containing proteins recognize the C-terminal WRKY domain and stimulate the DNA binding activity of WRKY33. Like WRKY33, both SIB1 and SIB2 are rapidly and strongly induced by the necrotrophic pathogen Botrytis cinerea. Resistance to B. cinerea is compromised in the sib1 and sib2 mutants but enhanced in SIB1-overexpressing transgenic plants. These results suggest that dual-targeted SIB1 and SIB2 function as activators of WRKY33 in plant defense against necrotrophic pathogens.
机译:坏死病原体是引起许多毁灭性植物病害的重要植物病原体。尽管有影响,但我们对植物对坏死性病原体防御反应的了解有限。 WRKY33转录因子对于植物对坏死性病原体的抗性很重要。因此,阐明其功能将增进我们对植物对坏死性病原体免疫的了解。在这里,我们报告鉴定两个WRKY33相互作用蛋白,核编码的SIGMA因子结合蛋白1(SIB1)和SIB2,它们也与质体编码的质体RNA聚合酶SIGMA FACTOR1相互作用。 SIB1和SIB2都包含N末端叶绿体靶向信号和假定的核定位信号,表明它们是双重靶向的。双分子荧光互补表明WRKY33与植物细胞核中的SIB相互作用。 SIB1和SIB2都包含一个简短的VQ主题,这对于与WRKY33的交互非常重要。包含两个VQ基序的蛋白质识别C端WRKY域,并刺激WRKY33的DNA结合活性。与 WRKY33 一样, SIB1 和 SIB2 都由坏死性病原体灰葡萄孢(Botrytis cinerea)迅速而强烈地诱导。对B的抵抗力。 cinerea 在 sib1 和 sib2 突变体中受损,但在过表达 SIB1 的转基因植物中增强。这些结果表明,双重靶向的SIB1和SIB2在植物防御坏死性病原体中起WRKY33激活剂的作用。

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