首页> 外文期刊>Nature Plants >A high-quality genome sequence of Rosa chinensis to elucidate ornamental traits
【24h】

A high-quality genome sequence of Rosa chinensis to elucidate ornamental traits

机译:Rosa Chinensis的高质量基因组序列,以阐明装饰性状

获取原文
获取原文并翻译 | 示例
           

摘要

Rose is the world's most important ornamental plant, with economic, cultural and symbolic value. Roses are cultivated worldwide and sold as garden roses, cut flowers and potted plants. Roses are outbred and can have various ploidy levels. Our objectives were to develop a high-quality reference genome sequence for the genus Rosa by sequencing a doubled haploid, combining long and short reads, and anchoring to a high-density genetic map, and to study the genome structure and genetic basis of major ornamental traits. We produced a doubled haploid rose line ('HapOB') from Rosa chinensis 'Old Blush' and generated a rose genome assembly anchored to seven pseudo-chromosomes (512 Mb with N50 of 3.4Mb and 564 contigs). The length of 512 Mb represents 90.1-96.1% of the estimated haploid genome size of rose. Of the assembly, 95% is contained in only 196 contigs. The anchoring was validated using high-density diploid and tetraploid genetic maps. We delineated hallmark chromosomal features, including the pericentromeric regions, through annotation of transposable element families and positioned centromeric repeats using fluorescent in situ hybridization. The rose genome displays extensive synteny with the Fragaria vesca genome, and we delineated only two major rearrangements. Genetic diversity was analysed using resequencing data of seven diploid and one tetraploid Rosa species selected from various sections of the genus. Combining genetic and genomic approaches, we identified potential genetic regulators of key ornamental traits, including prickle density and the number of flower petals. A rose APETALA2/TOE homologue is proposed to be the major regulator of petal number in rose. This reference sequence is an important resource for studying polyploidization, meiosis and developmental processes, as we demonstrated for flower and prickle development. It will also accelerate breeding through the development of molecular markers linked to traits, the identification of the genes underlying them and the exploitation of synteny across Rosaceae.
机译:玫瑰是世界上最重要的观赏植物,具有经济,文化和象征性的价值。玫瑰在全球范围内培养,并作为花园玫瑰,切花和盆栽植物出售。玫瑰很突出,可以具有各种倍性水平。我们的目标是通过测序双倍的单倍体,结合长期和短读取,并锚固到高密度遗传图谱,并研究主要观赏的基因组结构和遗传基础特质。我们从罗莎中国的“旧腮红”中产生了一倍加倍的单倍体玫瑰线('Hapob'),并产生升降至七个伪染色体的玫瑰基因组组件(512 MB,N50为3.4Mb和564个葡萄片)。 512 MB的长度代表升高的玫瑰单倍体基因组大小的90.1-96.1%。大会中,95%仅包含196个Contigs。使用高密度二倍体和四倍体遗传图验证锚定。我们划定了具有可转换元素家族的注释和使用荧光原位杂交的透射元素系列和定位的焦化重复的杂草染色体特征。玫瑰基因组与Fragaria VESCA Genome显示出广泛的同步,我们只描绘了两个主要重排。使用七个二倍体和一种四倍体ROSA物种中选择的遗传多样性分析遗传多样性。结合遗传和基因组方法,我们确定了关键装饰性状的潜在遗传调节因子,包括刺密度和花瓣数。提出了玫瑰阿培拉2 /脚趾同源物是玫瑰花瓣数的主要调节因子。该参考序列是研究多重化,减数分裂和发育过程的重要资源,正如我们对花和刺的发展所展示的那样。通过与特征相关的分子标志物的发展也将加速繁殖,鉴定它们的基因以及狼蛛的剥削。

著录项

  • 来源
    《Nature Plants》 |2018年第7期|共12页
  • 作者单位

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Flanders Res Inst Agr Fisheries &

    Food ILVO Plant Sci Unit Melle Belgium;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Flanders Res Inst Agr Fisheries &

    Food ILVO Plant Sci Unit Melle Belgium;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Wageningen Univ &

    Res Plant Breeding Wageningen Netherlands;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Flanders Res Inst Agr Fisheries &

    Food ILVO Plant Sci Unit Melle Belgium;

    Leibniz Univ Hannover Hannover Germany;

    Wageningen Univ &

    Res Business Unit Biosci Wageningen Netherlands;

    Wageningen Univ &

    Res Business Unit Biosci Wageningen Netherlands;

    Flanders Res Inst Agr Fisheries &

    Food ILVO Plant Sci Unit Melle Belgium;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Wageningen Univ &

    Res Plant Breeding Wageningen Netherlands;

    Wageningen Univ &

    Res Plant Breeding Wageningen Netherlands;

    Wageningen Univ &

    Res Plant Breeding Wageningen Netherlands;

    Wageningen Univ &

    Res Plant Breeding Wageningen Netherlands;

    Leibniz Univ Hannover Hannover Germany;

    Leibniz Univ Hannover Hannover Germany;

    Univ Paris Saclay INRA US EPGV 1279 Evry France;

    Univ Paris Saclay INRA US EPGV 1279 Evry France;

    Univ Paris Saclay INRA US EPGV 1279 Evry France;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Univ Paris Saclay URGI INRA Versailles France;

    Univ Paris Saclay URGI INRA Versailles France;

    Osaka Inst Technol Osaka Japan;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Wageningen Univ &

    Res Plant Breeding Wageningen Netherlands;

    Wageningen Univ &

    Res Business Unit Biosci Wageningen Netherlands;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

    Leibniz Univ Hannover Hannover Germany;

    Flanders Res Inst Agr Fisheries &

    Food ILVO Plant Sci Unit Melle Belgium;

    Univ Angers IRHS Agrocampus Ouest INRA SFR QuaSaV 4207 Beaucouze France;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 植物学;
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号