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Genetic Characterization and Mapping of Late Blight Resistance Genes in the Wild Tomato Accessions Pi 163245 and Pi 224710

机译:Pi 163245和Pi 224710野生番茄种的晚疫病抗性基因的遗传特征和定位

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摘要

Late blight (LB), caused by the oomycete Phytophthora infestans (Mont.) de Bary is one of the most destructive diseases of tomato and potato worldwide. Development of fungicide resistant and more aggressive P. infestans clonal lineages has emphasized the importance of discovering and incorporating new genetic resistance in tomato cultivars. Although the cultivated tomato, Solanum lycopersicum L., contains limited genetic diversity, several related wild species of tomato are suitable for identification of new desirable traits. Previously, 67 S. pimpinellifolium accessions were screened for LB resistance in field, greenhouse and detached leaflet trials and 12 accessions with strong resistance to LB were identified. In this dissertation, two resistant accessions, PI 163245 and PI 224710, were selected for further genetic characterization. PI 163245 and PI 224710 were each hybridized with a LB susceptible tomato breeding line, Fla. 8059, and F1 progeny were self-fertilized to develop F 2 populations. Large F2 populations were grown and screened for LB resistance under greenhouse conditions, and the most resistant and most susceptible individuals in each F2 population were retained for conducting heritability studies as well as identifying and mapping of resistance loci.;To characterize the genetic basis of resistance in the two accessions, estimates of heritability (h2) were obtained based on F2:F3 parent-offspring (P:O) correlation analyses. An additional estimate of h2 was obtained based on F3:F4 generations when using the accession PI 163245. Estimates of h2 were moderately-high for both PI 163245 ( h2F2:F3 = 0.78, h 2F3:F4 = 0.94) and PI 224710 (h 2F2:F3 = 0.87). The heritable nature of the resistance suggested that PI 163245 and PI 224710 were potentially viable for breeding LB resistance in tomato, and that mapping of LB resistance loci was warranted.;To discover SNP markers for genetic mapping studies, reduced representation libraries (RRLs) for each of PI 163245, PI 224710 and Fla. 8059 were constructed and sequenced. Comparisons of accessions PI 163245 and PI 224710 with breeding line Fla. 8059 resulted in the identification of 33,385 and 20,894 single nucleotide polymorphisms (SNPs), respectively. The most resistant (n = 39) and susceptible (n = 35) F2 individuals in the PI 163245 mapping population were genotyped with 233 SNP markers, which were distributed throughout the genome. This selective genotyping approach identified four genomic intervals (quantitative trait loci, QTLs) on chromosomes 2, 3, 10, and 11 associated with LB resistance. Similarly, the most resistant (n = 40) and susceptible (n = 40) F2 individuals in the PI 224710 mapping population were genotyped with 144 SNPs, and LB resistance QTLs were identified on chromosomes 1, 2, 10, and 12. Resistance QTLs on chromosomes 2 and 10 co-localized with two previously identified LB resistance genes, qPh2.1 and Ph-2 respectively, however fine mapping and cloning is necessary to determine how these QTLs correspond to previously identified LB resistance genes. The remaining resistance QTLs did not appear to correspond to known LB resistance genes or QTLs in tomato, and thus are likely unique to this study. Efforts to fine map these resistance QTLs and incorporate them into elite tomato breeding lines are currently in progress.
机译:由卵菌疫霉疫霉(Monty)de Bary引起的晚疫病(LB)是全世界番茄和马铃薯最具破坏性的疾病之一。抗杀真菌剂和更具侵略性的无花果夜蛾无性系的开发强调了在番茄品种中发现并纳入新的遗传抗性的重要性。尽管栽培的番茄Solanum lycopersicum L.包含有限的遗传多样性,但几种相关的番茄野生物种适合于鉴定新的理想性状。以前,在田​​间,温室和离体小叶试验中筛选了67个小叶锦麦草种的LB抗性,并鉴定出12种对LB具有强抗性的种。本文选择了两个抗性材料PI 163245和PI 224710进行进一步的遗传鉴定。 PI 163245和PI 224710分别与LB易感番茄育种品系Fla.8059杂交,并自体受精F1后代以发育F 2种群。生长大量F2种群并在温室条件下筛选LB抗性,并保留每个F2种群中最抗性和最易感的个体进行遗传力研究以及鉴定和绘制抗性基因座。在这两个种质中,基于F2:F3亲子后代(P:O)相关分析获得了遗传力(h2)的估计值。使用保藏号PI 163245时,基于F3:F4代获得了h2的附加估计值。PI 163245(h2F2:F3 = 0.78,h 2F3:F4 = 0.94)和PI 224710(h)的h2估计值均中等偏高2F2:F3 = 0.87)。抗性的遗传性质表明,PI 163245和PI 224710对于在番茄中育种LB抗性具有潜在的可行性,并且有必要对LB抗性基因座进行定位。为了发现用于遗传绘图研究的SNP标记,使用了简化的代表性文库(RRL) PI 163245,PI 224710和Fla.8059中的每一个均已构建并测序。将登录号PI 163245和PI 224710与品系Fla。8059进行比较,分别鉴定出33,385和20,894个单核苷酸多态性(SNP)。用233个SNP标记对PI 163245作图群体中抵抗力最强(n = 39)和易感(n = 35)F2个体进行基因分型。这种选择性的基因分型方法在与LB抗性相关的2号,3号,10号和11号染色体上鉴定了四个基因组间隔(定量性状基因座,QTL)。同样,对PI 224710作图群体中抵抗力最强(n = 40)和易感人群(n = 40)的F2个体进行了144个SNP基因分型,并在1、2、10和12号染色体上鉴定了LB抗性QTL。在分别与两个先前鉴定的LB抗性基因qPh2.1和Ph-2共定位的2号和10号染色体上,需要精细定位和克隆以确定这些QTL如何对应于先前鉴定的LB抗性基因。其余的抗性QTL似乎与番茄中已知的LB抗性基因或QTL不对应,因此可能是本研究独有的。目前正在努力对这些抗性QTL进行精细定位,并将其整合到优质番茄育种系中。

著录项

  • 作者

    Ohlson, Erik William.;

  • 作者单位

    The Pennsylvania State University.;

  • 授予单位 The Pennsylvania State University.;
  • 学科 Genetics.;Plant sciences.;Plant pathology.
  • 学位 Ph.D.
  • 年度 2015
  • 页码 206 p.
  • 总页数 206
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:09

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