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首页> 外文期刊>The Plant Cell >The most deeply conserved noncoding sequences in plants serve similar functions to those in vertebrates despite large differences in evolutionary rates.
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The most deeply conserved noncoding sequences in plants serve similar functions to those in vertebrates despite large differences in evolutionary rates.

机译:尽管进化速率差异很大,但植物中最保守的非编码序列的功能与脊椎动物相似。

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摘要

In vertebrates, conserved noncoding elements (CNEs) are functionally constrained sequences that can show striking conservation over >400 million years of evolutionary distance and frequently are located megabases away from target developmental genes. Conserved noncoding sequences (CNSs) in plants are much shorter, and it has been difficult to detect conservation among distantly related genomes. In this article, we show not only that CNS sequences can be detected throughout the eudicot clade of flowering plants, but also that a subset of 37 CNSs can be found in all flowering plants (diverging 170 million years ago). These CNSs are functionally similar to vertebrate CNEs, being highly associated with transcription factor and development genes and enriched in transcription factor binding sites. Some of the most highly conserved sequences occur in genes encoding RNA binding proteins, particularly the RNA splicing-associated SR genes. Differences in sequence conservation between plants and animals are likely to reflect differences in the biology of the organisms, with plants being much more able to tolerate genomic deletions and whole-genome duplication events due, in part, to their far greater fecundity compared with vertebrates.
机译:在脊椎动物中,保守的非编码元件(CNE)是功能受限的序列,可以在超过4亿年的进化距离上显示出惊人的保守性,并且通常位于距目标发育基因较远的碱基处。植物中的保守非编码序列(CNS)要短得多,并且很难在远距离相关的基因组中检测到保守性。在本文中,我们不仅显示可以在整个开花植物的真双子叶进化枝中检测到CNS序列,而且还可以在所有开花植物中发现37个CNS的子集(相距1.7亿年前)。这些CNS在功能上类似于脊椎动物CNE,与转录因子和发育基因高度相关,并且富含转录因子结合位点。一些高度保守的序列出现在编码RNA结合蛋白的基因中,特别是与RNA剪接相关的SR基因。动植物之间的序列保守性差异可能反映了生物体的生物学差异,其中植物更能忍受基因组缺失和全基因组复制事件,部分原因是它们的繁殖力远大于脊椎动物。

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