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Genetic Diversity of Blumeria graminis f. sp. hordei in Central Europe and Its Comparison with Australian Population

机译:鸡蛋遗传多样性f。 sp。中部大草原及其与澳大利亚人口的比较

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摘要

Population surveys of Blumeria graminis f. sp. hordei (Bgh), a causal agent of more than 50% of barley fungal infections in the Czech Republic, have been traditionally based on virulence tests, at times supplemented with non-specific Restriction fragment length polymorphism or Random amplified polymorphic DNA markers. A genomic sequence of Bgh, which has become available recently, enables identification of potential markers suitable for population genetics studies. Two major strategies relying on transposable elements and microsatellites were employed in this work to develop a set of Repeat junction markers, Single sequence repeat and Single nucleotide polymorphism markers. A resolution power of the new panel of markers comprising 33 polymorphisms was demonstrated by a phylogenetic analysis of 158 Bgh isolates. A core set of 97 Czech isolates was compared to a set 50 Australian isolates on the background of 11 diverse isolates collected throughout the world. 73.2% of Czech isolates were found to be genetically unique. An extreme diversity of this collection was in strong contrast with the uniformity of the Australian one. This work paves the way for studies of population structure and dynamics based on genetic variability among different Bgh isolates originating from geographically limited regions.
机译:Blumeria graminis的人口调查。 sp。 hordei(Bgh)是捷克共和国大麦真菌感染的50%以上的病原体,传统上是基于毒力测试的,有时还补充有非特异性限制性片段长度多态性或随机扩增的多态性DNA标记。 Bgh的基因组序列最近可用,可以鉴定适合人群遗传学研究的潜在标记。这项工作采用了两种主要的依赖转座因子和微卫星的策略来开发一套重复连接标记,单序列重复和单核苷酸多态性标记。通过对158个Bgh分离株的系统发育分析,证明了该新的包含33个多态性的标记物组的分辨能力。在全球范围内收集到11种不同菌株的背景下,将一组核心的97种捷克分离株与50种澳大利亚分离株进行了比较。发现73.2%的捷克分离株具有遗传独特性。该收藏品的极端多样性与澳大利亚收藏品的统一性形成鲜明对比。这项工作为基于地理有限区域的不同Bgh分离株之间的遗传变异性研究种群结构和动态铺平了道路。

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