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首页> 外文期刊>Plant Biotechnology Journal >Identification and characterization of candidate Rlm4 blackleg resistance genes in Brassica napus using next-generation sequencing. (Special Issue: Next generation sequencing technologies.)
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Identification and characterization of candidate Rlm4 blackleg resistance genes in Brassica napus using next-generation sequencing. (Special Issue: Next generation sequencing technologies.)

机译:利用下一代测序鉴定和表征候选者 RLM4 甘蓝型NAPUS的Blackleg抗性基因的鉴定和表征。 (特别问题:下一代测序技术。)

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摘要

A thorough understanding of the relationships between plants and pathogens is essential if we are to continue to meet the agricultural needs of the world's growing population. The identification of genes underlying important quantitative trait loci is extremely challenging in complex genomes such as Brassica napus (canola, oilseed rape or rapeseed). However, recent advances in next-generation sequencing (NGS) enable much quicker identification of candidate genes for traits of interest. Here, we demonstrate this with the identification of candidate disease resistance genes from B. napus for its most devastating fungal pathogen, Leptosphaeria maculans (blackleg fungus). These two species are locked in an evolutionary arms race whereby a gene-for-gene interaction confers either resistance or susceptibility in the plant depending on the genotype of the plant and pathogen. Preliminary analysis of the complete genome sequence of Brassica rapa, the diploid progenitor of B. napus, identified numerous candidate genes with disease resistance characteristics, several of which were clustered around a region syntenic with a major locus (Rlm4) for blackleg resistance on A7 of B. napus. Molecular analyses of the candidate genes using B. napus NGS data are presented, and the difficulties associated with identifying functional gene copies within the highly duplicated Brassica genome are discussed.Digital Object Identifier http://dx.doi.org/10.1111/j.1467-7652.2012.00716.x
机译:彻底了解植物与病原体之间的关系,如果我们继续满足世界不断增长的人口的农业需求,这是必不可少的。重要的定量性状基因座的基因鉴定在复杂的基因组中非常具有挑战性,例如芸苔Napus(油菜,油菜或油菜籽)。然而,下一代测序(NGS)的最近进展能够更快地识别候选基因的候选基因,用于感兴趣的特征。在这里,我们通过鉴定来自 b的候选疾病抗性基因来证明这一点。 Napus 为其最具破坏性的真菌病原体,瘦性的瘦性的maculans (Blackleg真菌)。这两种物种被锁定在进化臂竞争中,因此基因对植物的基因相互作用根据植物和病原体的基因型赋予植物中的抗性或敏感性。 Brassica Rapa ,β的二倍体祖细胞完全基因组序列的初步分析。 Napus ,鉴定了具有抗病抗性特性的许多候选基因,其中几个围绕一个区域组聚集,其具有用于Blackleg电阻的主要基因座( RlM4-I>)在 B的A7上。 napus 。使用 b的候选基因的分子分析。讨论了NAPUS NGS数据,并且讨论了与识别高复制的芸苔属的基因组内的功能基因拷贝相关的困难。分发对象标识符http://dx.doi.org/10.1111/ J.1467-7652.2012.00716.x.

著录项

  • 来源
    《Plant Biotechnology Journal 》 |2012年第6期| 共7页
  • 作者单位

    Centre for Integrative Legume Research and School of Agriculture and Food Sciences University of Queensland Brisbane Qld Australia;

    Australian Centre for Plant Functional Genomics School of Agriculture and Food Sciences University of Queensland Brisbane Qld Australia;

    NSW Department of Primary Industries Wagga Wagga Agricultural Institute Wagga Wagga NSW Australia;

    Centre for Integrative Legume Research and School of Agriculture and Food Sciences University of Queensland Brisbane Qld Australia;

    Australian Centre for Plant Functional Genomics School of Agriculture and Food Sciences University of Queensland Brisbane Qld Australia;

    NSW Department of Primary Industries Wagga Wagga Agricultural Institute Wagga Wagga NSW Australia;

    Centre for Integrative Legume Research and School of Agriculture and Food Sciences University of Queensland Brisbane Qld Australia;

    Australian Centre for Plant Functional Genomics School of Agriculture and Food Sciences University of Queensland Brisbane Qld Australia;

    NSW Department of Primary Industries Wagga Wagga Agricultural Institute Wagga Wagga NSW Australia;

    Centre for Integrative Legume Research and School of Agriculture and Food Sciences University of Queensland Brisbane Qld Australia;

    Australian Centre for Plant Functional Genomics School of Agriculture and Food Sciences University of Queensland Brisbane Qld Australia;

    NSW Department of Primary Industries Wagga Wagga Agricultural Institute Wagga Wagga NSW Australia;

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

    Brassica napus; Leptosphaeria maculans; candidate genes; next generation sequencing.;

    机译:Brassica Napus;瘦性基因;候选基因;下一代测序。;

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