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沉默李痘病毒 5'UTR/P1 序列赋予对广泛的李痘病毒株的抗性。

Silencing of Plum pox virus 5'UTR/P1 sequence confers resistance to a wide range of PPV strains.

机构信息

CRA, Centro di Ricerca per la Patologia Vegetale, Via C.G. Bertero 22, Rome, Italy.

出版信息

Plant Cell Rep. 2010 Dec;29(12):1435-44. doi: 10.1007/s00299-010-0933-6. Epub 2010 Oct 21.

Abstract

An effective disease-control strategy should protect the host from the major economically important and geographically widespread variants of a pathogen. Plum pox virus (PPV) is the causal agent of sharka, the most devastating viral disease of Prunus species. We have shown previously that the hairpin RNA expression driven by h-UTR/P1, h-P1/HCPro, h-HCPro and h-HCPro/P3 constructs, derived from the PPV-M ISPaVe44 isolate, confers resistance to the homologous virus in Nicotiana benthamiana plants. Since the production of transgenic stone fruits and their evaluation for PPV resistance would take several years, the ISPaVe44-resistant plant lines were used to evaluate which construct would be the best candidate to be transferred to Prunus elite cultivars. To do that, nine PPV isolates of the D, M, Rec, EA and C strains originally collected from five Prunus species in different geographical areas, were typed by sequencing and used to challenge the transgenic N. benthamiana lines; 464 out of 464 virus-inoculated plants of lines h-UTR/P1, h-HCPro and h-HCPro/P3 showed complete and long-lasting resistance to the seven PPV isolates of D, M and Rec strains. Moreover, the h-UTR/P1 plants were also fully resistant to PPV-C and -EA isolates. Our data suggest that the h-UTR/P1 construct is of particular practical interest to obtain stone fruit plants resistant to the sharka disease.

摘要

一种有效的疾病控制策略应该保护宿主免受主要具有经济重要性和地理广泛分布的病原体变体的侵害。李痘病毒(PPV)是李坏死环斑病毒的病原体,是李属物种最具破坏性的病毒性疾病。我们之前已经表明,源自 PPV-M ISPaVe44 分离株的 h-UTR/P1、h-P1/HCPro、h-HCPro 和 h-HCPro/P3 构建体驱动的发夹 RNA 表达,在本氏烟植物中赋予对同源病毒的抗性。由于生产转基因核果及其对 PPV 抗性的评估需要数年时间,因此使用 ISPaVe44 抗性植物系来评估哪种构建体最适合转移到李属优良品种中。为此,对最初从五个不同地理区域的李属物种中收集的 D、M、Rec、EA 和 C 株系的 9 个 PPV 分离株进行测序分型,并用于挑战转基因 N. benthamiana 系;h-UTR/P1、h-HCPro 和 h-HCPro/P3 系的 464 株中的 464 株植物对 D、M 和 Rec 株系的 7 个 PPV 分离株表现出完全和持久的抗性。此外,h-UTR/P1 植株也对 PPV-C 和 -EA 分离株完全具有抗性。我们的数据表明,h-UTR/P1 构建体对于获得抗李坏死环斑病的核果植物具有特殊的实际意义。

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