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全基因组关联研究,以评估控制黄瓜在农田中对黄瓜蚜传黄化病毒和黄瓜花叶病毒的抗性及其对传毒介体吸引力的遗传因素。

Genome-wide association studies to assess genetic factors controlling cucumber resistance to CABYV and CMV in crop fields and the attractiveness for their vector.

作者信息

Monnot Séverine, Ravineau Anaïs, Coindre Eva, Mistral Pascale, Leyre Karine, Chadœuf Joel, Cantet Melissa, Boissot Nathalie

机构信息

INRAE, Génétique et Amélioration des Fruits et Légumes, allée des chênes, 84143 Montfavet, France.

Bayer Crop Science, Vegetable Trait Discovery, Mas Lamy, 13670 Saint-Andiol, France.

出版信息

Hortic Res. 2025 Jan 14;12(5):uhaf016. doi: 10.1093/hr/uhaf016. eCollection 2025 May.

Abstract

Cucumber crops face high pressure from pathogens, including various viral species. Mapping quantitative trait loci (QTL) for vegetable resistance to viruses has primarily been conducted after mechanical inoculation in controlled environments, but not in crop field conditions. Moreover, viruses that cannot be mechanically inoculated, e.g. the cucurbit aphid-borne yellows virus (CABYV), have been overlooked in resistance studies. Here, we aimed to identify QTLs reducing epidemics of two prevalent cucumber viruses: CABYV and the cucumber mosaic virus (CMV). We evaluated the resistance of 256 elite cucumber lines and landraces in crop field conditions by screening for the presence of both viruses six-times during the season. We mapped twelve QTLs reducing CABYV epidemics and seven QTLs reducing CMV epidemics by combining multiloci genome-wide association studies and local score approach analyses. We also examined the attractiveness of this cucumber panel for , a major cucumber virus vector. We identified five QTLs that reduced the attractiveness, including one co-localizing with a QTL reducing CABYV epidemics. Interestingly, some accessions deemed CMV-resistant after mechanical inoculation in controlled environments showed high infection rates in crop field conditions. Only one QTL for CMV resistance was detected in both conditions, indicating that these phenotypes are regulated by independent QTLs. Local linkage disequilibrium study findings suggested that certain QTLs reducing epidemics were introduced early into elite lines through serendipity or selection. QTLs could be pyramided with other low-effect QTLs through genomic selection to obtain cucumber cultivars with enhanced field resistance to viruses.

摘要

黄瓜作物面临着包括多种病毒在内的病原体的巨大压力。蔬菜抗病毒的数量性状位点(QTL)定位主要是在可控环境下通过机械接种后进行的,而非在田间条件下。此外,那些无法通过机械接种的病毒,如葫芦蚜传黄化病毒(CABYV),在抗性研究中一直被忽视。在此,我们旨在鉴定能减少两种常见黄瓜病毒流行的QTL:CABYV和黄瓜花叶病毒(CMV)。我们通过在生长季六次筛查两种病毒的存在情况,评估了256个优良黄瓜品系和地方品种在田间条件下的抗性。我们结合多位点全基因组关联研究和局部评分方法分析,定位了12个减少CABYV流行的QTL和7个减少CMV流行的QTL。我们还研究了该黄瓜群体对主要黄瓜病毒传播媒介[此处原文缺失相关媒介名称]的吸引力。我们鉴定出5个降低吸引力的QTL,其中一个与减少CABYV流行的QTL共定位。有趣的是,一些在可控环境下经机械接种后被认为抗CMV的材料在田间条件下却表现出高感染率。在两种条件下仅检测到一个抗CMV的QTL,这表明这些表型受独立的QTL调控。局部连锁不平衡研究结果表明,某些减少流行的QTL是通过偶然或选择早期引入优良品系的。QTL可通过基因组选择与其他低效应QTL聚合,以获得对病毒田间抗性增强的黄瓜品种。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6f05/11975396/beca280054bb/uhaf016f1.jpg

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