The adult plant resistance (APR) genes Yr18, Yr29 and Yr46 in spring wheat showed significant effect against important yellow rust races under North-West European field conditions

IF 1.6 3区 农林科学 Q2 AGRONOMY Euphytica Pub Date : 2024-06-17 DOI:10.1007/s10681-024-03355-w
Ondřej Zelba, Sarah Wilderspin, Amelia Hubbard, Charlotte F. Nellist, Anders Krogh Mortensen, Philipp Schulz, Julio Huerta-Espino, Ravi Singh, Chris Khadgi Sørensen
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Abstract

Yellow rust caused by Puccinia striiformis f. sp. tritici (Pst) is one of the most important wheat diseases. Adult plant resistance (APR) genes have gained the attention of breeders and scientists because they show higher durability compared to major race-specific genes. Here, we determined the effect of the APR genes Yr18, Yr29 and Yr46 in North-West European field conditions against three currently important Pst races. We used three pairs of sibling wheat lines developed at CIMMYT, which consisted of a line with the functional resistance gene and a sibling with its non-functional allele. All APR genes showed significant effects against the Pst races Warrior and Warrior (–), and a race of the highly aggressive strain PstS2. The effects of Yr18 and Yr46 were especially substantial in slowing down disease progress. This effect was apparent in both Denmark, where susceptible controls reached 100 percent disease severity, and in United Kingdom where disease pressure was lower. We further validated field results by quantifying fungal biomass in leaf samples and by micro-phenotyping of samples collected during early disease development. Microscopic image analyses using deep learning allowed us to quantify separately the APR effects on leaf colonization and pustule formation. Our results show that the three APR genes can be used in breeding yellow rust resistant varieties of spring wheat to be grown in North-West European conditions, and that deep learning image analysis can be an effective method to quantify effects of APR on colonisation and pustule formation.

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在西北欧田间条件下,春小麦的成株抗性(APR)基因 Yr18、Yr29 和 Yr46 对重要的黄锈病菌株有显著抗病效果
由条纹赤霉病菌(Puccinia striiformis f. sp. tritici,Pst)引起的黄锈病是最重要的小麦病害之一。与主要的种族特异性基因相比,成株抗性(APR)基因表现出更高的耐久性,因此受到育种家和科学家的关注。在此,我们确定了 APR 基因 Yr18、Yr29 和 Yr46 在西北欧田间条件下对当前三个重要 Pst 株系的抗性效果。我们使用了 CIMMYT 培育的三对同胞小麦品系,其中包括一个带有功能性抗性基因的品系和一个带有非功能性等位基因的同胞品系。所有 APR 基因都对 Pst 菌株 Warrior 和 Warrior(-),以及高侵染性菌株 PstS2 有显著抗性。Yr18 和 Yr46 在延缓病害发展方面的作用尤为明显。这种效果在丹麦和英国都很明显,丹麦的易感对照病害严重程度达到了 100%,而英国的病害压力较低。我们通过量化叶片样本中的真菌生物量,以及对病害早期采集的样本进行显微分型,进一步验证了实地结果。利用深度学习进行的显微图像分析使我们能够分别量化 APR 对叶片定殖和脓疱形成的影响。我们的研究结果表明,三个 APR 基因可用于培育在西北欧条件下种植的抗黄锈病春小麦品种,而深度学习图像分析则是量化 APR 对定植和脓疱形成影响的有效方法。
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来源期刊
Euphytica
Euphytica 农林科学-农艺学
CiteScore
3.80
自引率
5.30%
发文量
157
审稿时长
4.5 months
期刊介绍: Euphytica is an international journal on theoretical and applied aspects of plant breeding. It publishes critical reviews and papers on the results of original research related to plant breeding. The integration of modern and traditional plant breeding is a growing field of research using transgenic crop plants and/or marker assisted breeding in combination with traditional breeding tools. The content should cover the interests of researchers directly or indirectly involved in plant breeding, at universities, breeding institutes, seed industries, plant biotech companies and industries using plant raw materials, and promote stability, adaptability and sustainability in agriculture and agro-industries.
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