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Evidence for Genetic Similarity of Vegetative Compatibility Groupings in Sclerotinia homoeocarpa

机译:高果核盘菌营养相容性群体遗传相似性的证据

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摘要

Vegetative compatibility groups (VCGs) are determined for many fungi to test for the ability of fungal isolates to undergo heterokaryon formation. In several fungal plant pathogens, isolates belonging to a VCG have been shown to share significantly higher genetic similarity than those of different VCGs. In this study we sought to examine the relationship between VCG and genetic similarity of an important cool season turfgrass pathogen, Sclerotinia homoeocarpa. Twenty-two S. homoeocarpa isolates from the Midwest and Eastern US, which were previously characterized in several studies, were all evaluated for VCG using an improved nit mutant assay. These isolates were also genotyped using 19 microsatellites developed from partial genome sequence of S. homoeocarpa. Additionally, partial sequences of mitochondrial genes cytochrome oxidase II and mitochondrial small subunit (mtSSU) rRNA, and the atp6-rns intergenic spacer, were generated for isolates from each nit mutant VCG to determine if mitochondrial haplotypes differed among VCGs. Of the 22 isolates screened, 15 were amenable to the nit mutant VCG assay and were grouped into six VCGs. The 19 microsatellites gave 57 alleles for this set. Unweighted pair group methods with arithmetic mean (UPGMA) tree of binary microsatellite data were used to produce a dendrogram of the isolate genotypes based on microsatellite alleles, which showed high genetic similarity of nit mutant VCGs. Analysis of molecular variance of microsatellite data demonstrates that the current nit mutant VCGs explain the microsatellite genotypic variation among isolates better than the previous nit mutant VCGs or the conventionally determined VCGs. Mitochondrial sequences were identical among all isolates, suggesting that this marker type may not be informative for US populations of S. homoeocarpa.
机译:确定了许多真菌的营养相容性基团(VCG),以测试真菌分离株经历异核体形成的能力。在几种真菌植物病原体中,已显示属于VCG的分离株比不同VCG的分离株具有更高的遗传相似性。在这项研究中,我们试图检查VCG和重要的凉季草坪草病原体高核小核糖核酸的遗传相似性之间的关系。先前在几项研究中进行过表征的来自美国中西部和东部的22个高果链霉菌菌株均使用改良的nit突变体测定法进行了VCG评估。还使用从高果链球菌的部分基因组序列开发的19个微卫星对这些分离株进行了基因分型。另外,针对每个nit突变体VCG的分离物,产生了线粒体基因细胞色素氧化酶II和线粒体小亚基(mtSSU)rRNA的部分序列,以及atp6-rns基因间隔子,以确定线粒体单体型在VCG中是否不同。在筛选出的22种分离株中,有15种适合nit突变VCG分析,并分为6种VCG。这19个微卫星给出了57个等位基因。使用具有二进制微卫星数据算术平均值(UPGMA)树的非加权成对组方法,基于微卫星等位基因生成了分离基因型的树状图,显示出NIT突变体VCG的高度遗传相似性。对微卫星数据的分子方差的分析表明,与以前的nit突变体VCG或常规确定的VCG相比,当前的nit突变体VCG更好地解释了分离物中的微卫星基因型变异。所有分离株的线粒体序列均相同,这表明该标记物类型可能对美国高果链球菌种群没有帮助。

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