乌克兰马铃薯育种品系和品种对 PVY 极端抗性基因的分子鉴定

IF 0.4 Q4 AGRICULTURE, MULTIDISCIPLINARY
Yaroslav Hadzalo, S. O. Kyrychenko, R. Bondus, N. Kozub
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引用次数: 0

摘要

目的。在乌克兰培育的马铃薯品系和品种中,对马铃薯病毒 Y(PVY)的极端抗性(ER)负责的两个基因,即 Ryadg 和 Rychc,进行分子鉴定。方法。总共研究了 78 个马铃薯样本(40 个育种品系和 38 个品种)。为了鉴定 Ryadg 和 Rychc 基因,分别使用了分子标记 RYSC3 和 Rу186。采用硅胶技术从马铃薯叶片或块茎中分离 DNA,并对扩增产物进行琼脂糖凝胶电泳分析。结果使用分子标记对国家农业科学研究院马铃薯研究所波利西亚实验部培育的 40 个育种品系(2022 年收获)和国家农业科学研究院植物生产研究所乌斯季莫夫卡实验站收集的 1981-2015 年注册的 38 个栽培品种(V.Ya. Yuriev)进行了评估。Yuriev, the NAAS.五个品种(Oksamyt、Horlytsia、Lybid、Ivankivska rannia 和 Ikar)和 19 个品系含有 Rychc 标记。在一个栽培品种(Obriy)和八个育种品系中检测到了 Ryadgmarker 基因。根据 PVY 自然感染背景进行的田间评估表明,Obriy 和 Lybid 中的 ER 基因存在假阳性结果。育种品系组中 PVY Ryadg 和 Rychc 的 ER 基因频率大大高于品种样本,Rychc 分别为 47.5% 和 10.5%,Ryadg 分别为 20% 和 0%。结论我们的研究证实,在 4 个乌克兰马铃薯品种和 21 个育种品系中可能存在对 PVY 的极端抗性基因 Ryadg 和 Rychc。新育种品系中抗性基因携带者的频率(52.5%)高于已在生产中的品种(10.5%)。这两种基因的总频率与早先研究中发现的频率相当接近。检测到上述抗性基因的品系和品种是否在田间具有真正的抗性以及这些抗性基因在乌克兰马铃薯材料中的来源仍有待调查。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Molecular identification of extreme resistance genes to PVY among breeding lines and potato varieties of Ukrainian origin
Aim. Molecular identification of two genes responsible for extreme resistance (ER) to potato virus Y (PVY), viz. Ryadg and Rychc. in potato lines and varieties bred in Ukraine. Methods. In total 78 potato samples (40 breed- ing lines and 38 varieties) were studied. To identify the Ryadg and Rychc genes, the molecular markers RYSC3 and Rу186, respectively, were used. The silica-based technique was used to isolate DNA from potato leaves or tubers. Amplified products were analysed with agarose gel-electrophoresis. Results. Molecular markers were used to evaluate 40 breeding lines produced by the Polissia Experimental Department of the Institute for Potato Research, the NAAS, the harvest of 2022, and 38 cultivars, registered in the period of 1981–2015, from the collection of the Ustymivka experimental station of the Institute of Plant Production n.a. V.Ya. Yuriev, the NAAS. Five varieties, Oksamyt, Horlytsia, Lybid, Ivankivska rannia, and Ikar, and 19 lines contained the marker for Rychc. The gene Ryadg marker was detected in one cultivar (Obriy) and eight breeding lines. Six lines carried both genes Ryadg and Rychc. Field evaluation against the natural PVY infection background indicated false-positive results of the presence of ER genes in Obriy and Lybid. The frequencies of the ER genes to PVY Ryadg and Rychc were considerably higher in the group of breeding lines than in the sample of varieties, 47.5 and 10.5 % for Rychc, and 20 and 0 % for Ryadg, respectively. Conclusions. Our study confirmed the possible presence of extreme resistance genes to PVY, Ryadg and Rychc, in 4 Ukrainian potato varieties and 21 breeding lines. A higher frequency of carriers of the resistance genes was present in the new breeding lines (52.5 %) than in the varieties already in production (10.5 %). The total frequency of both genes was fairly similar to the one detected in the earlier study. If the lines and varieties where the above-mentioned resistance genes were detected are truly resistant in the field and origin of these resistance genes in the Ukrainian potato material has still to be investigated.
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Agricultural Science and Practice
Agricultural Science and Practice AGRICULTURE, MULTIDISCIPLINARY-
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