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首页> 外文期刊>Physiologia plantarum >Transglutaminase activity changes during the hypersensitive reaction, a typical defense response of tobacco NN plants to TMV
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Transglutaminase activity changes during the hypersensitive reaction, a typical defense response of tobacco NN plants to TMV

机译:转谷氨酰胺酶活性在过敏反应过程中发生变化,这是烟草NN植物对TMV的典型防御反应

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The occurrence of glutamyl polyamines (PAs) and changes in activity and levels of transglutaminase (TGase, EC 2.3.2.13), the enzyme responsible for their synthesis, are reported during the progression of the hypersensitive reaction (HR) of resistant NN tobacco plants (Nicotiana tabacum L. cv. Samsun) to tobacco mosaic virus (TMV). Mature leaves of tobacco were collected over 0-72 h after inoculation with TMV or phosphate buffer (mock). In vivo synthesis of polyamine glutamyl derivatives (glutamyl PAs), catalyzed by TGase activity, was evaluated after supplying labeled putrescine (Pu, a physiological substrate of TGase) to leaves. Results show that, starting from 24 h, mono-(gamma-glutamyl)-Pu and bis-(gamma-glutamyl)-Sd were recovered in TMV-inoculated samples but not in mock-inoculated ones; 2 days later, in the former, the amount of glutamyl derivatives further increased. An in vitro radiometric assay showed that, in TMV-inoculated leaves, TGase activity increased from 24 h onwards relative to mock controls. An immunoblot analysis with AtPng1p polyclonal antibody detected a 72-kDa protein whose amount increased at 72 h in TMV-inoculated leaves and in the lesion-enriched areas. A biotin-labeled cadaverine incorporation assay showed that TGase activity occurred in S1 (containing soluble proteins), S2 (proteins released by both cell walls and membranes) and S3 (membrane intrinsic proteins) fractions. In S3 fraction, where changes were the most relevant, TGase activity was enhanced in both mock-inoculated and TMV-inoculated samples, but the stimulation persisted only in the latter case. These data are discussed in the light of a possible role of TGase activity and glutamyl PAs in the defense against a viral plant pathogen.
机译:在抗性NN烟草植物的超敏反应(HR)进行过程中,据报道发生了谷氨酰胺多胺(PAs)的发生以及转谷氨酰胺酶(TGase,EC 2.3.2.13)的活性和水平的变化(TGase,EC 2.3.2.13)( Nicotiana tabacum L. cv。Samsun)烟草花叶病毒(TMV)。用TMV或磷酸盐缓冲液(模拟物)接种后,在0-72小时内收集成熟的烟草叶片。向叶中供应标记的腐胺(Pu,TGase的生理底物)后,评估了由TGase活性催化的多胺谷氨酰胺衍生物(谷氨酰胺PAs)的体内合成。结果表明,从24 h开始,接种TMV的样品中回收了单-(γ-谷氨酰胺基)-Pu和双-(γ-谷氨酰基)-Sd,但在模拟接种的样品中未回收。 2天后,在前者中,谷氨酰胺衍生物的量进一步增加。体外放射分析表明,在TMV接种的叶片中,相对于模拟对照,TGase活性从24小时起增加。用AtPng1p多克隆抗体进行的免疫印迹分析检测到72 kDa的蛋白质,在TMV接种的叶片和病灶富集区域中,其含量在72 h时增加。生物素标记的尸胺掺入试验表明,TGase活性发生在S1(含有可溶性蛋白),S2(由细胞壁和膜释放的蛋白)和S3(膜固有蛋白)级分中。在变化最相关的S3部分中,模拟接种和TMV接种的样品中TGase活性均增强,但仅在后者情况下刺激持续存在。鉴于TGase活性和谷氨酰胺PA在防御病毒性植物病原体中的可能作用,讨论了这些数据。

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