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Second-generation sequencing for gene discovery in the Brassicaceae. (Special Issue: Next generation sequencing technologies.)

机译:黄铜痤疮中基因发现的第二代测序。 (特别问题:下一代测序技术。)

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摘要

The Brassicaceae contains the most diverse collection of agriculturally important crop species of all plant families. Yet, this is one of the few families that do not form functional symbiotic associations with mycorrhizal fungi in the soil for improved nutrient acquisition. The genes involved in this symbiosis were more recently recruited by legumes for symbiotic association with nitrogen-fixing rhizobia bacteria. This study applied second-generation sequencing (SGS) and analysis tools to discover that two such genes, NSP1 (Nodulation Signalling Pathway 1) and NSP2, remain conserved in diverse members of the Brassicaceae despite the absence of these symbioses. We demonstrate the utility of SGS data for the discovery of putative gene homologs and their analysis in complex polyploid crop genomes with little prior sequence information. Furthermore, we show how this data can be applied to enhance downstream reverse genetics analyses. We hypothesize that Brassica NSP genes may function in the root in other plant-microbe interaction pathways that were recruited for mycorrhizal and rhizobial symbioses during evolution.Digital Object Identifier http://dx.doi.org/10.1111/j.1467-7652.2012.00719.x
机译:Brassicaceae含有所有植物家庭的最多样化的农产品庄稼。然而,这是少数家庭之一,不与土壤中具有菌根真菌的功能共生关联的少数家族,以改善营养收购。涉及这种共生的基因是通过豆类与氮素固定的根瘤菌细菌的共生关联的豆类募集。该研究应用了第二代测序(SGS)和分析工具,以发现两个这样的基因, NSP1 (染色信号传导途径1 )和 nsp2 尽管没有这些共同体,但仍然在芸苔科的不同成员中仍然保守。我们展示了SGS数据在具有少量序列信息的复杂多倍体作物基因组中发现推定基因同源物及其分析。此外,我们展示了如何应用该数据来增强下游逆向遗传分析。我们假设芸苔Nsp 基因可以在其他植物微生物相互作用途径中起作用,该植物 - 微生物相互作用途径在进化期间为菌根和根瘤菌词组募集。分发对象标识符http://dx.doi.org/10.1111 /j.1467-7652.2012.00719.x

著录项

  • 来源
    《Plant Biotechnology Journal》 |2012年第6期|共10页
  • 作者单位

    ARC Centre of Excellence for Integrative Legume Research 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;

    ARC Centre of Excellence for Integrative Legume Research 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;

    ARC Centre of Excellence for Integrative Legume Research 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;

    ARC Centre of Excellence for Integrative Legume Research 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;

    ARC Centre of Excellence for Integrative Legume Research School of Agriculture and Food Sciences University of Queensland Brisbane QLD 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

    second-generation sequencing; TAGdb; Brassicaceae; symbiosis; homolog; evolution; NSP;

    机译:第二代测序;TagdB;Brassicaceae;共生;同源物;进化;NSP;

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