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首页> 外文期刊>The Plant Cell >Grass microRNA gene paleohistory unveils new insights into gene dosage balance in subgenome partitioning after whole-genome duplication.
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Grass microRNA gene paleohistory unveils new insights into gene dosage balance in subgenome partitioning after whole-genome duplication.

机译:Grass microRNA基因的古史揭示了全基因组复制后亚基因组分配中基因剂量平衡的新见解。

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摘要

The recent availability of plant genome sequences, combined with a robust evolutionary scenario of the modern monocot and eudicot karyotypes from their diploid ancestors, offers an opportunity to gain insights into microRNA (miRNA) gene paleohistory in plants. Characterization and comparison of miRNAs and associated protein-coding targets in plants allowed us to unravel (1) contrasted genome conservation patterns of miRNAs in monocots and eudicots after whole-genome duplication (WGD), (2) an ancestral miRNA founder pool in the monocot genomes dating back to 100 million years ago, (3) miRNA subgenome dominance during the post-WGD diploidization process with selective miRNA deletion complemented with possible transposable element-mediated return flows, and (4) the miRNA/target interaction-directed differential loss/retention of miRNAs following the gene dosage balance rule. Together, our data suggest that overretained miRNAs in grass genomes may be implicated in connected gene regulations for stress responses, which is essential for plant adaptation and useful for crop variety innovation.Digital Object Identifier http://dx.doi.org/10.1105/tpc.112.095752
机译:植物基因组序列的最新可用性,再加上来自其二倍体祖先的现代单子叶植物和双子叶植物核型的稳健进化场景,为了解植物中的microRNA(miRNA)基因古历史提供了机会。植物中miRNA和相关蛋白编码靶标的表征和比较使我们得以阐明(1)在全基因组复制(WGD)后单子叶植物和双子叶植物中miRNA的对比基因组保守模式,(2)单子叶植物中的祖先miRNA创建者库可追溯到1亿年前的基因组,(3)在WGD后二倍体化过程中的miRNA亚基因组优势,选择性的miRNA缺失,以及可能的转座因子介导的回流,以及(4)miRNA /靶标相互作用指导的差异丢失/遵循基因剂量平衡规则保留miRNA。总之,我们的数据表明,草基因组中过度保留的miRNA可能与胁迫反应的相关基因调控有关,这对于植物适应性至关重要,对作物品种创新很有用。数字对象标识符http://dx.doi.org/10.1105/ tpc.112.095752

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