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利用马铃薯X病毒表达系统在本氏烟草中生产一种工程化杀伤肽。

Production of an engineered killer peptide in Nicotiana benthamiana by using a potato virus X expression system.

作者信息

Donini Marcello, Lico Chiara, Baschieri Selene, Conti Stefania, Magliani Walter, Polonelli Luciano, Benvenuto Eugenio

机构信息

ENEA, UTS Biotecnologie, Sezione Genetica e Genomica Vegetale, C.R. Casaccia, P.O. Box 2400, I-00100 Rome, Italy.

出版信息

Appl Environ Microbiol. 2005 Oct;71(10):6360-7. doi: 10.1128/AEM.71.10.6360-6367.2005.

Abstract

The decapeptide killer peptide (KP) derived from the sequence of a single-chain, anti-idiotypic antibody acting as a functional internal image of a microbicidal, broad-spectrum yeast killer toxin (KT) was shown to exert a strong microbicidal activity against human pathogens. With the aim to exploit this peptide to confer resistance to plant pathogens, we assayed its antimicrobial activity against a broad spectrum of phytopathogenic bacteria and fungi. Synthetic KP exhibited antimicrobial activity in vitro towards Pseudomonas syringae, Erwinia carotovora, Botrytis cinerea, and Fusarium oxysporum. KP was also expressed in plants by using a Potato virus X (PVX)-derived vector as a fusion to the viral coat protein, yielding chimeric virus particles (CVPs) displaying the heterologous peptide. Purified CVPs showed enhanced antimicrobial activity against the above-mentioned plant pathogens and human pathogens such as Staphylococcus aureus and Candida albicans. Moreover, in vivo assays designed to challenge KP-expressing plants (as CVPs) with Pseudomonas syringae pv. tabaci showed enhanced resistance to bacterial attack. The results indicate that the PVX-based display system is a high-yield, rapid, and efficient method to produce and evaluate antimicrobial peptides in plants, representing a milestone for the large-scale production of high-added-value peptides through molecular farming. Moreover, KP is a promising molecule to be stably engineered in plants to confer broad-spectrum resistance to phytopathogens.

摘要

源自单链抗独特型抗体序列的十肽杀伤肽(KP),作为一种杀微生物的广谱酵母杀伤毒素(KT)的功能性内影像,已显示出对人类病原体具有强大的杀微生物活性。为了利用这种肽赋予植物对病原体的抗性,我们测定了其对多种植物致病细菌和真菌的抗菌活性。合成的KP在体外对丁香假单胞菌、胡萝卜软腐欧文氏菌、灰葡萄孢和尖孢镰刀菌具有抗菌活性。通过使用源自马铃薯X病毒(PVX)的载体将KP与病毒外壳蛋白融合,使其在植物中表达,产生展示异源肽的嵌合病毒颗粒(CVP)。纯化的CVP对上述植物病原体以及金黄色葡萄球菌和白色念珠菌等人类病原体显示出增强的抗菌活性。此外,旨在用烟草丁香假单胞菌挑战表达KP的植物(作为CVP)的体内试验表明,植物对细菌攻击的抗性增强。结果表明,基于PVX的展示系统是一种在植物中生产和评估抗菌肽的高产、快速且高效的方法,代表了通过分子农业大规模生产高附加值肽的一个里程碑。此外,KP是一种有前景的分子,可在植物中进行稳定工程改造,以赋予对植物病原体的广谱抗性。

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