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通过干扰介体传播控制植物病毒的现状与展望。

Status and prospects of plant virus control through interference with vector transmission.

机构信息

Earth & Life Institute, Université Catholique de Louvain, B-1348 Louvain-la-Neuve, Belgium.

出版信息

Annu Rev Phytopathol. 2013;51:177-201. doi: 10.1146/annurev-phyto-082712-102346. Epub 2013 May 6.

Abstract

Most plant viruses rely on vector organisms for their plant-to-plant spread. Although there are many different natural vectors, few plant virus-vector systems have been well studied. This review describes our current understanding of virus transmission by aphids, thrips, whiteflies, leafhoppers, planthoppers, treehoppers, mites, nematodes, and zoosporic endoparasites. Strategies for control of vectors by host resistance, chemicals, and integrated pest management are reviewed. Many gaps in the knowledge of the transmission mechanisms and a lack of available host resistance to vectors are evident. Advances in genome sequencing and molecular technologies will help to address these problems and will allow innovative control methods through interference with vector transmission. Improved knowledge of factors affecting pest and disease spread in different ecosystems for predictive modeling is also needed. Innovative control measures are urgently required because of the increased risks from vector-borne infections that arise from environmental change.

摘要

大多数植物病毒依靠媒介生物在植物间传播。尽管有许多不同的自然媒介,但很少有植物病毒-媒介系统得到很好的研究。本综述描述了我们目前对蚜虫、蓟马、粉虱、叶蝉、飞虱、沫蝉、螨虫、线虫和游动孢子内寄生虫传播病毒的理解。还回顾了通过寄主抗性、化学物质和综合虫害管理控制媒介的策略。显然,在传播机制的知识方面存在许多空白,并且缺乏针对媒介的可用寄主抗性。基因组测序和分子技术的进步将有助于解决这些问题,并通过干扰媒介传播来实现创新的控制方法。还需要更好地了解不同生态系统中影响病虫害传播的因素,以便进行预测建模。由于环境变化导致媒介传播感染的风险增加,因此迫切需要创新的控制措施。

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