Fine mapping a QTL for BYDV-PAV resistance in maize.

IF 4.4 1区 农林科学 Q1 AGRONOMY Theoretical and Applied Genetics Pub Date : 2024-06-19 DOI:10.1007/s00122-024-04668-z
Maria Schmidt, Ricardo Guerreiro, Nadia Baig, Antje Habekuß, Torsten Will, Britta Ruckwied, Benjamin Stich
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Abstract

Barley yellow dwarf (BYD) is one of the economically most important virus diseases of cereals worldwide, causing yield losses up to 80%. The means to control BYD are limited, and the use of genetically resistant cultivars is the most economical and environmentally friendly approach. The objectives of this study were i) to identify the causative gene for BYD virus (BYDV)-PAV resistance in maize, ii) to identify single nucleotide polymorphisms and/or structural variations in the gene sequences, which may cause differing susceptibilities to BYDV-PAV of maize inbreds, and iii) to characterize the effect of BYDV-PAV infection on gene expression of susceptible, tolerant, and resistant maize inbreds. Using two biparental mapping populations, we could reduce a previously published quantitative trait locus for BYDV-PAV resistance in maize to ~ 0.3 Mbp, comprising nine genes. Association mapping and gene expression analysis further reduced the number of candidate genes for BYDV-PAV resistance in maize to two: Zm00001eb428010 and Zm00001eb428020. The predicted functions of these genes suggest that they confer BYDV-PAV resistance either via interfering with virus replication or by inducing reactive oxygen species signaling. The gene sequence of Zm00001eb428010 is affected by a 54 bp deletion in the 5`-UTR and a protein altering variant in BYDV-PAV-resistant maize inbreds but not in BYDV-PAV-susceptible and -tolerant inbreds. This finding suggests that altered abundance and/or properties of the proteins encoded by Zm00001eb428010 may lead to BYDV-PAV resistance.

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精细绘制玉米抗 BYDV-PAV 的 QTL 图。
大麦黄矮病(BYD)是全球经济上最重要的谷物病毒病之一,造成的产量损失高达 80%。控制 BYD 的手段有限,而使用抗病基因栽培品种是最经济、最环保的方法。本研究的目的是 i) 鉴定玉米对 BYDV-PAV 抗性的致病基因;ii) 鉴定基因序列中可能导致玉米近交系对 BYDV-PAV 不同敏感性的单核苷酸多态性和/或结构变异;iii) 鉴定 BYDV-PAV 感染对易感、耐受和抗性玉米近交系基因表达的影响。利用两个双亲制图群体,我们可以将以前发表的玉米抗BYDV-PAV的数量性状位点缩小到约0.3 Mbp,包括9个基因。关联图谱和基因表达分析进一步将玉米对 BYDV-PAV 抗性的候选基因数量减少到两个:Zm00001eb428010和Zm00001eb428020。这些基因的预测功能表明,它们通过干扰病毒复制或诱导活性氧信号转导来赋予玉米对 BYDV-PAV 的抗性。在抗 BYDV-PAV 的玉米近交系中,Zm00001eb428010 的基因序列受到 5`-UTR 中 54 bp 缺失和蛋白质改变变体的影响,而在易感和耐受 BYDV-PAV 的近交系中则不受影响。这一发现表明,Zm00001eb428010 编码的蛋白质的丰度和/或特性的改变可能会导致对 BYDV-PAV 的抗性。
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来源期刊
CiteScore
9.60
自引率
7.40%
发文量
241
审稿时长
2.3 months
期刊介绍: Theoretical and Applied Genetics publishes original research and review articles in all key areas of modern plant genetics, plant genomics and plant biotechnology. All work needs to have a clear genetic component and significant impact on plant breeding. Theoretical considerations are only accepted in combination with new experimental data and/or if they indicate a relevant application in plant genetics or breeding. Emphasizing the practical, the journal focuses on research into leading crop plants and articles presenting innovative approaches.
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