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PKPI和Pin1蛋白酶抑制剂的异源表达增强了植物的适应性和对生物胁迫的广谱抗性。

Heterologous Expression of PKPI and Pin1 Proteinase Inhibitors Enhances Plant Fitness and Broad-Spectrum Resistance to Biotic Threats.

作者信息

Turrà David, Vitale Stefania, Marra Roberta, Woo Sheridan L, Lorito Matteo

机构信息

Department of Agricultural Sciences, University of Naples Federico II, Naples, Italy.

Task Force on Microbiome Studies, University of Naples Federico II, Naples, Italy.

出版信息

Front Plant Sci. 2020 Apr 30;11:461. doi: 10.3389/fpls.2020.00461. eCollection 2020.

Abstract

Kunitz-type (PKPI) and Potato type I (Pin1) protease inhibitors (PIs) are two families of serine proteinase inhibitors often associated to plant storage organs and with well known insecticidal and nematicidal activities. Noteworthy, their ability to limit fungal and bacterial pathogenesis or to influence plant physiology has not been investigated in detail. To this aim, we generated a set of PVX-based viral constructs to transiently and heterologously express two potato (, ) and three potato (, , ) genes in plants, a widely used model for plant-pathogen interaction studies. Interestingly, transgenic plants expressing most of the tested PIs showed to be highly resistant against two economically important necrotrophic fungal pathogens, and . Unexpectedly, overexpression of the Kunitz-type or of the and Potato type I inhibitor genes also lead to a dramatic reduction in the propagation and symptom development produced by the bacterial pathogen . We further found that localized expression of and in leaves caused an increase in cell expansion and proliferation which lead to tissue hypertrophy and trichome accumulation. In line with this, the systemic expression of these proteins resulted in plants with enhanced shoot and root biomass. Collectively, our results indicate that PKPI and Pin1 PIs might represent valuable tools to simultaneously increase plant fitness and broad-spectrum resistance toward phytopathogens.

摘要

库尼茨型(PKPI)和马铃薯I型(Pin1)蛋白酶抑制剂(PIs)是两类丝氨酸蛋白酶抑制剂家族,常与植物贮藏器官相关,具有众所周知的杀虫和杀线虫活性。值得注意的是,它们限制真菌和细菌致病或影响植物生理的能力尚未得到详细研究。为此,我们构建了一组基于PVX的病毒载体,用于在本氏烟草(一种广泛用于植物-病原体相互作用研究的模式植物)中瞬时异源表达两个马铃薯( , )和三个马铃薯( , , )基因。有趣的是,表达大多数测试PI的转基因植物对两种经济上重要的坏死性真菌病原体( 和 )表现出高度抗性。出乎意料的是,库尼茨型或马铃薯I型 和 抑制剂基因的过表达也导致细菌病原体 引起的繁殖和症状发展显著减少。我们进一步发现, 和 在本氏烟草叶片中的局部表达导致细胞扩张和增殖增加,从而导致组织肥大和毛状体积累。与此一致的是,这些蛋白质的系统表达导致植株地上部和根部生物量增加。总的来说,我们的结果表明,PKPI和Pin1 PIs可能是同时提高植物适应性和对植物病原体广谱抗性的有价值工具。

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