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南非马铃薯上立枯丝核菌AG 3-PT的群体遗传结构

Population genetic structure of Rhizoctonia solani AG 3-PT from potatoes in South Africa.

作者信息

Muzhinji Norman, Woodhall James W, Truter Mariette, van der Waals Jacquie E

机构信息

Department of Plant Science, University of Pretoria, Private Bag X20, Hatfield, Pretoria 0028, South Africa; Tobacco Research Board, Zimbabwe.

Department of Plant, Soil and Entomological Sciences, Parma Research and Extension Center, University of Idaho, Parma, ID 83660, USA.

出版信息

Fungal Biol. 2016 May;120(5):701-10. doi: 10.1016/j.funbio.2016.02.009. Epub 2016 Mar 10.

Abstract

Rhizoctonia solani AG 3-PT is an important potato pathogen causing significant yield and quality losses in potato production. However, little is known about the levels of genetic diversity and structure of this pathogen in South Africa. A total of 114 R. solani AG 3-PT isolates collected from four geographic regions were analysed for genetic diversity and structure using eight microsatellite loci. Microsatellite analysis found high intra-population genetic diversity, population differentiation and evidence of recombination. A total of 78 multilocus genotypes were identified with few shared among populations. Low levels of clonality (13-39 %) and high levels of population differentiation were observed among populations. Most of the loci were in Hardy-Weinberg equilibrium and all four populations showed evidence of a mixed reproductive mode of both clonality and recombination. The PCoA clustering method revealed genetically distinct geographic populations of R. solani AG 3-PT in South Africa. This study showed that populations of R. solani AG 3-PT in South Africa are genetically differentiated and disease management strategies should be applied accordingly. This is the first study of the population genetics of R. solani AG 3-PT in South Africa and results may help to develop knowledge-based disease management strategies.

摘要

立枯丝核菌AG 3-PT是一种重要的马铃薯病原菌,在马铃薯生产中导致显著的产量和质量损失。然而,对于该病原菌在南非的遗传多样性水平和结构了解甚少。使用8个微卫星位点,对从四个地理区域收集的总共114株立枯丝核菌AG 3-PT分离株进行了遗传多样性和结构分析。微卫星分析发现群体内遗传多样性高、群体分化以及重组证据。总共鉴定出78种多位点基因型,群体间共享的很少。在群体间观察到低水平的克隆性(13%-39%)和高水平的群体分化。大多数位点处于哈迪-温伯格平衡,所有四个群体都显示出克隆性和重组混合生殖模式的证据。主坐标分析聚类方法揭示了南非立枯丝核菌AG 3-PT在遗传上不同的地理群体。这项研究表明,南非立枯丝核菌AG 3-PT群体在遗传上是分化的,应相应地应用疾病管理策略。这是南非立枯丝核菌AG 3-PT群体遗传学的首次研究,结果可能有助于制定基于知识的疾病管理策略。

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