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Reconstruction of monocotelydoneous proto-chromosomes reveals faster evolution in plants than in animals

机译:重建单叶原体染色体显示植物比动物更快的进化

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摘要

Paleogenomics seeks to reconstruct ancestral genomes from the genes of today's species. The characterization of paleo-duplications represented by 11,737 orthologs and 4,382 paralogs identified in five species belonging to three of the agronomically most important subfamilies of grasses, that is, Ehrhartoideae (rice) Panicoideae (sorghum, maize), and Pooideae (wheat, barley), permitted us to propose a model for an ancestral genome with a minimal size of 33.6 Mb structured in five proto-chromosomes containing at least 9,138 predicted proto-genes. It appears that only four major evolutionary shuffling events (a, β, γ, and δ) explain the divergence of these five cereal genomes during their evolution from a common paleo-ances-tor. Comparative analysis of ancestral gene function with rice as a reference indicated that five categories of genes were preferentially modified during evolution. Furthermore, alignments between the five grass proto-chromosomes and the recently identified seven eudicot proto-chromosomes indicated that additional very active episodes of genome rearrangements and gene mobility occurred during angiosperm evolution. If one compares the pace of primate evolution of 90 million years (233 species) to 60 million years of the Poaceae (10,000 species), change in chromosome structure through speciation has accelerated significantly in plants.
机译:古基因组学试图从当今物种的基因中重建祖先的基因组。在11个直系同源物和4,382个旁系同源物所代表的古重复中,在五个属于农学上最重要的草亚科的三个物种中鉴定出的古重复体,即草hr科(大米,玉米)和)科(小麦,大麦) ,允许我们提出一个祖先基因组模型,其最小大小为33.6 Mb,由五个含有至少9138个预测原基因的原染色体构成。似乎只有四个主要的进化改组事件(a,β,γ和δ)解释了这五个谷物基因组从共同的古生物演化过程中的差异。以水稻为参考的祖先基因功能的比较分析表明,进化过程中优先修饰了五类基因。此外,五个草原染色体与最近鉴定出的七个真双子叶植物原染色体之间的比对表明在被子植物进化过程中发生了基因组重排和基因迁移的其他非常活跃的事件。如果将9000万年(233种)的灵长类动物进化到禾本科(10000种)的6000万年的生物进化速度进行比较,则通过物种形成的染色体结构变化在植物中已显着加速。

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    nstitut National de la Recherche Agronomique, Unite Mixte de Recherche 1095, Genetique, Diversite et Ecophysiologie des Cereales, Universite Blaise Pascal, 234 Avenue du Brezet, 63100 Clermont Ferrand, France INRA/UBP UMR GDEC 1095, Oomaine de Crouelle, 234 Avenue du Brezet 63100 Clermont Ferrand, France;

    Institut National de la Recherche Agronomique, Unite Mixte de Recherche 1095, Genetique, Diversite et Ecophysiologie des Cereales, Universite Blaise Pascal, 234 Avenue du Brezet, 63100 Clermont Ferrand, France;

    Institut National de la Recherche Agronomique, Unite Mixte de Recherche 1095, Genetique, Diversite et Ecophysiologie des Cereales, Universite Blaise Pascal, 234 Avenue du Brezet, 63100 Clermont Ferrand, France;

    Institut National de la Recherche Agronomique, Unite Mixte de Recherche 1095, Genetique, Diversite et Ecophysiologie des Cereales, Universite Blaise Pascal, 234 Avenue du Brezet, 63100 Clermont Ferrand, France;

    Institut National de la Recherche Agronomique, Centre National de la Recherche Scientifique, Unite Mixte de Recherche 441/2594, Laboratoire des Interactions Plantes-Microorganismes, 31326 Castanet Tolosan, France;

    Institut National de la Recherche Agronomique Unite Mixte de Recherche 444, BP 52627, 31326 Castanet Tolosan, France;

    Scottish Crop Research Institute, Invergowrie, Dundee, DD2 5DA, Scotland, United Kingdom;

    Department of Botany and Plant Sciences, 2150 Batchelor Hall, University of California, Riverside, CA 92521-0124;

    The Plant Genome Initiative at Rutgers, Waksman Institute, Piscataway, NJ 08854;

    Institut National de la Recherche Agronomique, Unite Mixte de Recherche 1095, Genetique, Diversite et Ecophysiologie des Cereales, Universite Blaise Pascal, 234 Avenue du Brezet, 63100 Clermont Ferrand, France;

  • 收录信息 美国《科学引文索引》(SCI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    grasses; paleogenomics;

    机译:草古基因组学;

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