Soft wheat cultivars grown in the Saratov region and their resistance to Septoria blotch

Yu. V. Zeleneva, E. A. Konkova
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Abstract

Septoria is one of the harmful diseases of wheat cultivars cultivated in the Saratov region. This infectious disease of fungal etiology limits yield indicators and rapidly progresses in many regions of the Russian Federation. The aim of the research was to assess the resistance of winter and spring wheat cultivars that are referred to as promising and recommended for cultivation in the Low Volga region of the Russian Federation to pathogens of Septoria, to study the populations of Parastagonospora nodorum and P. pseudonodorum in the territory of the Saratov region in order to detect the presence of effector genes. Using molecular markers, we performed the identification of genes encoding NEs in 220 Parastagonospora spp. fungal isolates obtained from 7 cultivars of soft winter wheat, 6 taken from the winter triticale, 5 from soft spring wheat, 3 from durum spring wheat and 1 from spring oats. Among the P. nodorum isolates studied, there were both single genes Tox1, Tox3, and ToxA, and combinations of two genes in one genotype. The presence of the ToxA gene was not noted in the genotype of P. pseudonodorum isolates. During 2020–2022, a collection of winter and spring wheat cultivars was studied to detect resistance to Septoria blotch in field conditions (13 cultivars of winter wheat and 7 cultivars of spring wheat accordingly). The resistance of the cultivars was proven by laboratory evaluation. Three inoculums were used, including the isolates of Z. tritici, P. nodorum (ToxA, Tox1, Tox3), P. pseudonodorum (ToxA, Tox1, Tox3) mainly obtained from Saratov populations of 2022 (except for P. pseudonodorum with the ToxA gene). The tested cultivars were characterized using the Xfcp623 molecular marker, diagnostic for Tsn1/ tsn1 genes, which controls sensitivity to the fungal toxin of PtrToxA. Of greatest interest are 11 wheat genotypes that showed resistance to one, two and three species which served as causative agents of Septoria blotch (Zymoseptoria tritici, P. nodorum, P. pseudonodorum). These are the soft winter wheat cultivars Gostianum 237 (tsn1), Lutescens 230 (Tsn1), Guberniya (Tsn1), Podruga (Tsn1), Anastasia (Tsn1), Sosedka (Tsn1) and the soft spring wheat cultivars Favorit (tsn1), Prokhorovka (tsn1), Saratovskaya 70 (tsn1), Saratovskaya 73 (tsn1), Belyanka (tsn1). The results obtained are of interest as they might increase the efficiency of selection based on the elimination of genotypes with dominant Tsn1 alleles sensitive to PtrToxA. In addition to the economic value of the cultivars studied, it is recommended to use them in breeding for resistance to Septoria blotch.
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在萨拉托夫地区种植的软质小麦品种及其对紫斑病的抗性
Septoria是在萨拉托夫地区种植的小麦品种的有害病害之一。这种由真菌引起的传染病限制了产量指标,并在俄罗斯联邦的许多地区迅速蔓延。研究的目的是评估在俄罗斯联邦下伏尔加地区被认为有希望和推荐种植的冬小麦和春小麦品种对Septoria病原体的抗性,研究萨拉托夫地区nodorum Parastagonospora nodorum和P. pseudonodorum的种群以检测效应基因的存在。利用分子标记技术,对来自7个软质冬小麦品种、6个冬小黑麦品种、5个软质春小麦品种、3个硬粒春小麦品种和1个春燕麦品种的220株拟对抗性孢子菌真菌进行了NEs编码基因的鉴定。在研究的结核分枝杆菌分离株中,既有Tox1、Tox3和ToxA单基因,也有两个基因在一个基因型中的组合。弓形虫基因型中未发现弓形虫基因。在2020-2022年期间,选取冬小麦和春小麦品种(13个冬小麦品种和7个春小麦品种),在田间条件下检测稻瘟病抗性。通过室内鉴定,证实了品种的抗性。采用3种接种菌株,主要从2022年萨拉托夫(Saratov)种群中分离出小麦Z.、镰状假单胞虫(ToxA、Tox1、Tox3)和假单胞虫(ToxA、Tox1、Tox3)(携带ToxA基因的假单胞虫除外)。利用Xfcp623分子标记对所选品种进行鉴定,该分子标记用于诊断对PtrToxA真菌毒素敏感的Tsn1/ Tsn1基因。最令人感兴趣的是11种小麦基因型,它们对一种、两种和三种稻瘟病病原(小麦酵母菌(Zymoseptoria tritici)、野芽孢菌(P. nodorum)、假芽孢菌(P. pseudonodorum))表现出抗性。分别是软小麦品种Gostianum 237 (tsn1)、Lutescens 230 (tsn1)、Guberniya (tsn1)、Podruga (tsn1)、Anastasia (tsn1)、Sosedka (tsn1)和软春小麦品种Favorit (tsn1)、Prokhorovka (tsn1)、Saratovskaya 70 (tsn1)、Saratovskaya 73 (tsn1)、Belyanka (tsn1)。所获得的结果是有趣的,因为它们可能提高基于消除对PtrToxA敏感的显性Tsn1等位基因型的选择效率。除了所研究的品种具有经济价值外,还建议将其用于抗紫斑病的育种中。
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