Resistance of old winter bread wheat landraces to tan spot

Q4 Biochemistry, Genetics and Molecular Biology Proceedings on Applied Botany, Genetics and Breeding Pub Date : 2024-01-11 DOI:10.30901/2227-8834-2023-4-205-214
N. Mironenko, N. Kovalenko, O. A. Baranova, O. Mitrofanova
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Abstract

Background. The most effective and environmentally safe way to combat wheat diseases is to produce cultivars resistant to their pathogens. For this purpose, old landraces are often used as genetically diverse sources of traits important for breeding. In the process of wheat breeding for resistance to tan spot caused by the fungus Pyrenophora tritici-repentis (Died.) Drechs. (abbr. Ptr), selection is carried out against the dominant allele of Tsn1, the gene of sensitivity to the toxin Ptr ToxA, which induces necrosis and represents the main pathogenicity factor of Ptr controlled by the ToxA gene. The aim of the study was to characterize a set of bread wheat (Triticum aestivum L.) accessions from the VIR collection for resistance to various Ptr populations, genotype these accessions using Xfcp623 – a DNA marker of the Tsn1 gene, and identify sources of tan spot resistance.Materials and methods. Sixty-seven accessions of winter bread wheat landraces were studied. Seedling resistance to two Ptr populations was assessed using a 5-point scale adopted at VIZR. The allelic state of Tsn1 was identified by PCR.Results. Dominant alleles of Tsn1 were found for 55% of the studied accessions. Seventeen accessions were resistant or moderately resistant to two Ptr populations and an isolate from Krasnodar Territory previously used for their characterization. Nine of them had the tsn1tsn1 genotype, and 8 had Tsn1Tsn1. The accessions mainly belonged to three agroecological groups proposed by N. I. Vavilov: “steppe winter bread wheat (Banatka wheats)”, “North European forest awnless bread wheats (Sandomirka wheats)”, and “Caucasian mountain winter bread wheat”.Conclusion. The identified 17 accessions resistant to Ptr are potential breeding sources of resistance. In the studied set of accessions, no significant relationship was found between the allelic state of the Tsn1 gene in the accession and its response to the infection with pathogen populations, including isolates with the ToxA gene.
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老的冬季面包小麦品种对黑斑病的抗性
背景。防治小麦病害的最有效、最环保的方法是培育出抗病原菌的栽培品种。为此,古老的陆地品系通常被用作育种重要性状的遗传多样性来源。在小麦抗三尖杉属真菌(Pyrenophora tritici-repentis (Died.) Drechs.(Ptr)引起的晒斑病的育种过程中,针对 Tsn1 的显性等位基因进行了选择,Tsn1 是对毒素 Ptr ToxA 敏感的基因,它能诱导坏死,是由 ToxA 基因控制的 Ptr 的主要致病因子。本研究的目的是鉴定 VIR 收集的一组面包小麦(Triticum aestivum L.)品种对各种 Ptr 群体的抗性,利用 Tsn1 基因的 DNA 标记 Xfcp623 对这些品种进行基因分型,并确定晒斑抗性的来源。研究了 67 个冬季面包小麦地方品种。使用 VIZR 采用的 5 点量表评估了幼苗对两个 Ptr 群体的抗性。通过 PCR 鉴定了 Tsn1 的等位基因状态。55% 的研究品种发现了 Tsn1 的显性等位基因。有 17 个品种对两个 Ptr 群体和一个来自克拉斯诺达尔边疆区的分离株具有抗性或中度抗性。其中 9 个具有 tsn1tsn1 基因型,8 个具有 Tsn1Tsn1 基因型。这些品种主要属于 N. I. Vavilov 提出的三个农业生态群组:N. I.Vavilov:"草原冬季面包小麦(Banatka 小麦)"、"北欧森林无芒面包小麦(Sandomirka 小麦)"和 "高加索山地冬季面包小麦"。已确定的 17 个抗 Ptr 的品种是潜在的抗性育种来源。在所研究的这组品种中,没有发现品种中 Tsn1 基因的等位基因状态与其对病原体群(包括带有 ToxA 基因的分离株)感染的反应有显著关系。
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来源期刊
Proceedings on Applied Botany, Genetics and Breeding
Proceedings on Applied Botany, Genetics and Breeding Biochemistry, Genetics and Molecular Biology-Biotechnology
CiteScore
0.70
自引率
0.00%
发文量
65
审稿时长
12 weeks
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