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Wide Variation in Virulence and Genetic Diversity of Binucleate Rhizoctonia Isolates Associated with Root Rot of Strawberry in Western Australia

机译:西澳大利亚州草莓根腐病相关的双核根瘤菌菌株毒力和遗传多样性的广泛变化

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摘要

Strawberry (Fragaria×ananassa) is one of the most important berry crops in the world. Root rot of strawberry caused by Rhizoctonia spp. is a serious threat to commercial strawberry production worldwide. However, there is no information on the genetic diversity and phylogenetic status of Rhizoctonia spp. associated with root rot of strawberry in Australia. To address this, a total of 96 Rhizoctonia spp. isolates recovered from diseased strawberry plants in Western Australia were characterized for their nuclear condition, virulence, genetic diversity and phylogenetic status. All the isolates were found to be binucleate Rhizoctonia (BNR). Sixty-five of the 96 BNR isolates were pathogenic on strawberry, but with wide variation in virulence, with 25 isolates having high virulence. Sequence analysis of the internal transcribed spacers of the ribosomal DNA separated the 65 pathogenic BNR isolates into six distinct clades. The sequence analysis also separated reference BNR isolates from strawberry or other crops across the world into clades that correspond to their respective anastomosis group (AG). Some of the pathogenic BNR isolates from this study were embedded in the clades for AG-A, AG-K and AG-I, while other isolates formed clades that were sister to the clades specific for AG-G, AG-B, AG-I and AG-C. There was no significant association between genetic diversity and virulence of these BNR isolates. This study demonstrates that pathogenic BNR isolates associated with root rot of strawberry in Western Australia have wide genetic diversity, and highlights new genetic groups not previously found to be associated with root rot of strawberry in the world (e.g., AG-B) or in Australia (e.g., AG-G). The wide variation in virulence and genetic diversity identified in this study will be of high value for strawberry breeding programs in selecting, developing and deploying new cultivars with resistance to these multi-genetic groups of BNR.
机译:草莓(Fragaria×ananassa)是世界上最重要的浆果作物之一。草莓根腐病引起的根腐病。对全球商业草莓生产构成严重威胁。但是,目前尚无关于Rhizoctonia spp的遗传多样性和系统发育状况的信息。与澳大利亚草莓的根腐病有关。为了解决这个问题,总共有96个Rhizoctonia spp。从西澳大利亚州患病草莓植物中回收的分离株具有核条件,毒力,遗传多样性和系统发育状况。发现所有分离物均为双核根瘤菌(BNR)。 96株BNR菌株中有65株对草莓有致病性,但毒力差异很大,其中25株具有高毒力。核糖体DNA内部转录间隔区的序列分析将65个致病性BNR分离株分为六个不同的进化枝。序列分析还将来自世界各地草莓或其他农作物的参考BNR分离株分为对应于其各自吻合组(AG)的进化枝。来自这项研究的一些致病性BNR分离株被嵌入到AG-A,AG-K和AG-I的进化枝中,而其他分离株形成的进化枝与AG-G,AG-B,AG-我和AG-C。这些BNR分离株的遗传多样性和毒力之间没有显着关联。这项研究表明,与西澳大利亚州草莓根腐病相关的致病性BNR分离物具有广泛的遗传多样性,并着重指出了以前在世界上(例如,AG-B)或在澳大利亚均未发现与草莓根腐病相关的新遗传群体。 (例如AG-G)。在这项研究中确定的毒力和遗传多样性的广泛差异,对于草莓育种计划的选择,开发和部署对这些BNR多基因组具有抗性的新品种具有很高的价值。

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