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该科植物对芜菁花叶病毒的抗性

Resistance to Turnip Mosaic Virus in the Family .

作者信息

Palukaitis Peter, Kim Su

机构信息

Department of Horticultural Sciences, Seoul Women's University, Seoul 0797, Korea.

Institute of Plant Analysis Technology Development, The Saeron Co., Suwon 16648, Korea.

出版信息

Plant Pathol J. 2021 Feb 1;37(1):1-23. doi: 10.5423/PPJ.RW.09.2020.0178.

Abstract

Resistance to diseases caused by turnip mosaic virus (TuMV) in crop species of the family has been studied extensively, especially in members of the genus . The variation in response observed on resistant and susceptible plants inoculated with different isolates of TuMV is due to a combination of the variation in the plant resistome and the variation in the virus genome. Here, we review the breadth of this variation, both at the level of variation in TuMV sequences, with one eye towards the phylogeny and evolution of the virus, and another eye towards the nature of the various responses observed in susceptible vs. different types of resistance responses. The analyses of the viral genomes allowed comparisons of pathotyped viruses on particular indicator hosts to produce clusters of host types, while the inclusion of phylogeny data and geographic location allowed the formation of the host/geographic cluster groups, the derivation of both of which are presented here. Various studies on resistance determination in particular brassica crops sometimes led to further genetic studies, in many cases to include the mapping of genes, and in some cases to the actual identification of the genes. In addition to summarizing the results from such studies done in brassica crops, as well as in radish and Arabidopsis (the latter as a potential source of candidate genes for brassica and radish), we also summarize work done using nonconventional approaches to obtaining resistance to TuMV.

摘要

对十字花科作物中由芜菁花叶病毒(TuMV)引起的疾病的抗性已得到广泛研究,尤其是在该属的成员中。在用不同分离株的TuMV接种的抗性和敏感植物上观察到的反应差异,是由于植物抗性组的变异和病毒基因组的变异共同作用的结果。在这里,我们回顾了这种变异的广度,一方面是在TuMV序列变异的层面,一只眼睛关注病毒的系统发育和进化,另一只眼睛关注在敏感植物与不同类型抗性反应中观察到的各种反应的本质。对病毒基因组的分析允许在特定指示宿主上对致病型病毒进行比较,以产生宿主类型的聚类,而系统发育数据和地理位置的纳入则允许形成宿主/地理聚类组,本文介绍了这两者的推导过程。对特定芸苔属作物抗性测定的各种研究有时会导致进一步的遗传学研究,在许多情况下包括基因定位,在某些情况下还包括基因的实际鉴定。除了总结在芸苔属作物、萝卜和拟南芥(后者作为芸苔属和萝卜候选基因的潜在来源)中进行的此类研究的结果外,我们还总结了使用非常规方法获得对TuMV抗性的工作。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/abd0/7847761/fe85131450bf/ppj-37-1-1-f1.jpg

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