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全面分析白粉病菌种群中杀菌剂抗性标记的出现和遗传结构。

Comprehensive analyses of the occurrence of a fungicide resistance marker and the genetic structure in Erysiphe necator populations.

机构信息

Plant Protection Institute, HUN-REN Centre for Agricultural Research, Budapest, Hungary.

Department of Plant Anatomy, Institute of Biology, Eötvös Loránd University, Budapest, Hungary.

出版信息

Sci Rep. 2023 Sep 13;13(1):15172. doi: 10.1038/s41598-023-41454-1.

Abstract

Genetically distinct groups of Erysiphe necator, the fungus causing grapevine powdery mildew infect grapevine in Europe, yet the processes sustaining stable genetic differences between those groups are less understood. Genotyping of over 2000 field samples from six wine regions in Hungary collected between 2017 and 2019 was conducted to reveal E. necator genotypes and their possible differentiation. The demethylase inhibitor (DMI) fungicide resistance marker A495T was detected in all wine regions, in 16% of the samples. Its occurrence differed significantly among wine regions and grape cultivars, and sampling years, but it did not differ between DMI-treated and untreated fields. Multilocus sequence analyses of field samples and 59 in vitro maintained isolates revealed significant genetic differences among populations from distinct wine regions. We identified 14 E. necator genotypes, of which eight were previously unknown. In contrast to the previous concept of A and B groups, European E. necator populations should be considered genetically more complex. Isolation by geographic distance, growing season, and host variety influence the genetic structuring of E. necator, which should be considered both during diagnoses and when effective treatments are planned.

摘要

引起葡萄白粉病的葡萄钩丝壳真菌(Erysiphe necator)在欧洲存在遗传上明显不同的群体,但维持这些群体之间稳定遗传差异的过程还不太清楚。对 2017 年至 2019 年间在匈牙利六个葡萄酒产区采集的 2000 多个田间样本进行了基因分型,以揭示 E. necator 基因型及其可能的分化。在所有葡萄酒产区都检测到了杀真菌剂(DMI)抗性标记 A495T,在 16%的样本中发现了该标记。其发生在不同的葡萄酒产区、葡萄品种和采样年份之间存在显著差异,但在 DMI 处理和未处理的田间之间没有差异。对田间样本和 59 个体外维持的分离物进行的多位点序列分析显示,来自不同葡萄酒产区的种群之间存在显著的遗传差异。我们确定了 14 种 E. necator 基因型,其中 8 种是以前未知的。与之前的 A 和 B 组概念不同,欧洲 E. necator 种群在遗传上应该被认为更加复杂。地理距离、生长季节和宿主品种的隔离影响了 E. necator 的遗传结构,这在进行诊断和制定有效治疗方案时都应予以考虑。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2546/10499922/7173cf413f76/41598_2023_41454_Fig1_HTML.jpg

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