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纳米抗体介导的植物对葡萄扇叶病毒的抗性。

Nanobody-mediated resistance to Grapevine fanleaf virus in plants.

机构信息

Institut de biologie moléculaire des plantes du CNRS, Université de Strasbourg, Strasbourg, France.

SVQV, INRA, Université de Strasbourg, Colmar, France.

出版信息

Plant Biotechnol J. 2018 Feb;16(2):660-671. doi: 10.1111/pbi.12819. Epub 2017 Oct 6.

Abstract

Since their discovery, single-domain antigen-binding fragments of camelid-derived heavy-chain-only antibodies, also known as nanobodies (Nbs), have proven to be of outstanding interest as therapeutics against human diseases and pathogens including viruses, but their use against phytopathogens remains limited. Many plant viruses including Grapevine fanleaf virus (GFLV), a nematode-transmitted icosahedral virus and causal agent of fanleaf degenerative disease, have worldwide distribution and huge burden on crop yields representing billions of US dollars of losses annually, yet solutions to combat these viruses are often limited or inefficient. Here, we identified a Nb specific to GFLV that confers strong resistance to GFLV upon stable expression in the model plant Nicotiana benthamiana and also in grapevine rootstock, the natural host of the virus. We showed that resistance was effective against a broad range of GFLV isolates independently of the inoculation method including upon nematode transmission but not against its close relative, Arabis mosaic virus. We also demonstrated that virus neutralization occurs at an early step of the virus life cycle, prior to cell-to-cell movement. Our findings will not only be instrumental to confer resistance to GFLV in grapevine, but more generally they pave the way for the generation of novel antiviral strategies in plants based on Nbs.

摘要

自发现以来,来源于骆驼科重链抗体的单域抗原结合片段,也称为纳米抗体(Nbs),已被证明是针对人类疾病和病原体(包括病毒)的治疗方法具有突出的兴趣,但它们在防治植物病原体方面的应用仍然有限。许多植物病毒,包括葡萄扇叶病毒(GFLV),一种线虫传播的二十面体病毒,也是扇叶退化病的病原体,在全球范围内分布广泛,对作物产量造成巨大负担,每年造成数十亿美元的损失,但对抗这些病毒的解决方案往往有限或效率低下。在这里,我们鉴定了一种针对 GFLV 的 Nb,它在模式植物本氏烟和葡萄砧木中稳定表达后赋予了对 GFLV 的强烈抗性,葡萄砧木是该病毒的天然宿主。我们表明,抗性对广泛的 GFLV 分离株有效,与接种方法无关,包括线虫传播,但对其近亲胡萝卜花叶病毒无效。我们还证明,病毒中和发生在病毒生命周期的早期,在细胞间运动之前。我们的发现不仅将有助于在葡萄藤中赋予对 GFLV 的抗性,而且更普遍地为基于 Nbs 在植物中产生新的抗病毒策略铺平了道路。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3b7/11388604/fe016087fe63/PBI-16-660-g002.jpg

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