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首页> 外文期刊>BMC Genomics >Development of genomic resources for Citrus clementina: Characterization of three deep-coverage BAC libraries and analysis of 46,000 BAC end sequences
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Development of genomic resources for Citrus clementina: Characterization of three deep-coverage BAC libraries and analysis of 46,000 BAC end sequences

机译:柑桔基因组资源的开发:三个深层BAC库的表征和46,000个BAC末端序列的分析

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Background Citrus species constitute one of the major tree fruit crops of the subtropical regions with great economic importance. However, their peculiar reproductive characteristics, low genetic diversity and the long-term nature of tree breeding mostly impair citrus variety improvement. In woody plants, genomic science holds promise of improvements and in the Citrus genera the development of genomic tools may be crucial for further crop improvements. In this work we report the characterization of three BAC libraries from Clementine (Citrus clementina), one of the most relevant citrus fresh fruit market cultivars, and the analyses of 46.000 BAC end sequences. Clementine is a diploid plant with an estimated haploid genome size of 367 Mb and 2n = 18 chromosomes, which makes feasible the use of genomics tools to boost genetic improvement. Results Three genomic BAC libraries of Citrus clementina were constructed through EcoRI, MboI and HindIII digestions and 56,000 clones, representing an estimated genomic coverage of 19.5 haploid genome-equivalents, were picked. BAC end sequencing (BES) of 28,000 clones produced 28.1 Mb of genomic sequence that allowed the identification of the repetitive fraction (12.5% of the genome) and estimation of gene content (31,000 genes) of this species. BES analyses identified 3,800 SSRs and 6,617 putative SNPs. Comparative genomic studies showed that citrus gene homology and microsyntheny with Populus trichocarpa was rather higher than with Arabidopsis thaliana, a species phylogenetically closer to citrus. Conclusion In this work, we report the characterization of three BAC libraries from C. clementina, and a new set of genomic resources that may be useful for isolation of genes underlying economically important traits, physical mapping and eventually crop improvement in Citrus species. In addition, BAC end sequencing has provided a first insight on the basic structure and organization of the citrus genome and has yielded valuable molecular markers for genetic mapping and cloning of genes of agricultural interest. Paired end sequences also may be very helpful for whole-genome sequencing programs.
机译:背景技术柑橘属具有重要经济意义的亚热带地区主要的树果作物之一。然而,它们独特的繁殖特性,低遗传多样性和树木育种的长期性在很大程度上损害了柑橘品种的改良。在木本植物中,基因组科学有望改善,而在柑橘属中,基因组工具的开发对于进一步改善作物至关重要。在这项工作中,我们报告了柑桔(Citrus clementina)(最相关的柑橘类新鲜水果市场品种之一)的三个BAC文库的表征,并分析了46.000个BAC末端序列。 Clementine是一种二倍体植物,估计单倍体基因组大小为367 Mb,2n = 18个染色体,这使得利用基因组学工具促进遗传改良成为可能。结果通过EcoRI,MboI和HindIII消化,构建了柑橘柑桔的三个基因组BAC文库,并选择了56,000个克隆,这些克隆估计覆盖了19.5个单倍体基因组当量。 28,000个克隆的BAC末端测序(BES)产生了28.1 Mb的基因组序列,可用于鉴定该物种的重复部分(占基因组的12.5%)并评估基因含量(31,000个基因)。 BES分析确定了3,800个SSR和6,617个推定的SNP。比较基因组学研究表明,与毛果杨的柑橘基因同源性和微合成比在拟南芥(系统进化上更接近柑橘的物种)中更高。结论在这项工作中,我们报告了来自C. clementina的三个BAC文库的表征,以及一组新的基因组资源,这些资源可能对分离具有重要经济性状的基因,物理作图以及最终改善柑桔类作物的生长有用。此外,BAC末端测序为柑橘基因组的基本结构和组织提供了首次见识,并为遗传定位和农业目标基因的克隆提供了有价值的分子标记。配对的末端序列对于全基因组测序程序也可能非常有帮助。

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