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S-genotype identification, genetic diversity and structure analysis of Italian sweet cherry germplasm

机译:意大利甜樱桃种质资源的S基因型鉴定,遗传多样性和结构分析

摘要

In this study, 186 local sweet cherry accessions from 12 Italian regions, plus eight reference accessions, were analysed for the first time, using 13 microsatellite markers. Moreover, their S-incompatibility genotypes were identified with consensus primers for the S-RNase and SFB genes. A total of 161 unique genotypes were found; 18 groups of synonyms, along with the discovery of cases of misidentification. The average number of alleles per locus was 9.7, the mean expected heterozygosity (He) was 0.63, the mean observed heterozygosity (Ho) was 0.65 and the mean polymorphic information content (PIC) was 0.58. The structure analysis revealed the presence of six populations, which reflected in some cases geographical areas, the exchange of material among regions and introduction of material from abroad. A total of 17 different S-alleles were found, combined in 24 incompatibility groups of the 47 reported so far. Furthermore, 10 new incompatibility groups, from XLVII to LVI, were identified. Seven genotypes with unique S-allele combinations were included in the pollen donor group 0. The mutant allele of the pollen SFB5âu80² was found in early ripening genotypes from Sicily and Sardinia. The variability of SSRs present in both introns of the allele S13was also explored; new combinations of variants were found and some accessions presented SSR variants typical of wild cherry. It is evident that the Italian sweet cherry germplasm collection represents a relevant source of genetic diversity that needs to be preserved for future breeding programmes.
机译:在这项研究中,使用13个微卫星标记首次分析了来自12个意大利地区的186个本地甜樱桃材料以及8个参考材料。此外,用S-RNase和SFB基因的共有引物鉴定了它们的S不相容基因型。总共发现了161种独特的基因型。 18组同义词,以及发现错误识别的案例。每个基因座的平均等位基因数目为9.7,平均预期杂合度(He)为0.63,平均观察到的杂合度(Ho)为0.65,平均多态信息含量(PIC)为0.58。结构分析表明存在六个人口,这在某些情况下反映了地理区域,区域之间的物质交换以及从国外引进的物质。总共发现了17个不同的S等位基因,并归入了迄今报告的47个不兼容的24个组中。此外,确定了从XLVII到LVI的10个新的不兼容组。花粉供体组0包括七个具有独特S等位基因组合的基因型。花粉SFB5âu80²的突变等位基因存在于来自西西里岛和撒丁岛的早期成熟基因型中。还研究了等位基因S13的两个内含子中SSR的变异性。发现了变体的新组合,并且一些登录号提出了野樱桃特有的SSR变体。显然,意大利甜樱桃种质资源是遗传多样性的重要来源,需要为以后的育种计划加以保存。

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