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分子工具推断水稻黄花叶病毒分离物的抗破性能力。

Molecular Tools to Infer Resistance-Breaking Abilities of Rice Yellow Mottle Virus Isolates.

机构信息

AfricaRice Center, M'bé Research Station, Bouaké 01 BP 2551, Côte d'Ivoire.

WASCAL/CEA-CCBAD, Université Félix Houphouët-Boigny, Abidjan 01 BP V 34, Côte d'Ivoire.

出版信息

Viruses. 2023 Apr 13;15(4):959. doi: 10.3390/v15040959.

Abstract

Rice yellow mottle virus (RYMV) is a major biotic constraint to rice cultivation in Africa. RYMV shows a high genetic diversity. Viral lineages were defined according to the coat protein (CP) phylogeny. Varietal selection is considered as the most efficient way to manage RYMV. Sources of high resistance were identified mostly in accessions of the African rice species, . Emergence of resistance-breaking (RB) genotypes was observed in controlled conditions. The RB ability was highly contrasted, depending on the resistance sources and on the RYMV lineages. A molecular marker linked to the adaptation to susceptible and resistant was identified in the viral protein genome-linked (VPg). By contrast, as no molecular method was available to identify the hypervirulent lineage able to overcome all known resistance sources, plant inoculation assays were still required. Here, we designed specific RT-PCR primers to infer the RB abilities of RYMV isolates without greenhouse experiments or sequencing steps. These primers were tested and validated on 52 isolates, representative of RYMV genetic diversity. The molecular tools described in this study will contribute to optimizing the deployment strategy of resistant lines, considering the RYMV lineages identified in fields and their potential adaptability.

摘要

水稻黄花叶病毒(RYMV)是非洲水稻种植的主要生物限制因素。RYMV 表现出高度的遗传多样性。病毒谱系是根据外壳蛋白(CP)系统发育定义的。品种选择被认为是管理 RYMV 的最有效方法。高抗性的来源主要在非洲稻种的品种中被发现。在受控条件下观察到抗性破坏(RB)基因型的出现。RB 能力高度不同,这取决于抗性来源和 RYMV 谱系。在病毒蛋白基因组连接(VPg)中鉴定到与适应感病和抗性的分子标记。相比之下,由于没有分子方法可以识别能够克服所有已知抗性来源的高毒力谱系,因此仍然需要进行植物接种试验。在这里,我们设计了特定的 RT-PCR 引物,无需温室实验或测序步骤即可推断 RYMV 分离物的 RB 能力。这些引物在代表 RYMV 遗传多样性的 52 个分离物上进行了测试和验证。本研究中描述的分子工具将有助于优化抗性品系的部署策略,考虑到田间鉴定的 RYMV 谱系及其潜在的适应性。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/359b/10144094/c0579633e85d/viruses-15-00959-g001.jpg

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