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首页> 外文期刊>Mechanisms of Development >In silico identification and in vivo validation of a set of evolutionary conserved plant root-specific cis-regulatory elements. (Special Issue: Developmental plasticity and adaptation in plants.)
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In silico identification and in vivo validation of a set of evolutionary conserved plant root-specific cis-regulatory elements. (Special Issue: Developmental plasticity and adaptation in plants.)

机译:在计算机鉴定和一组进化保守植物根系特异性顺式调控元件的体内验证。 (特刊:植物的发育可塑性和适应性。)

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摘要

Marker genes are specifically expressed in a tissue, organ or time of development. Here we used a computational screen to identify marker genes of the root in Arabidopsis thaliana. We mined the existing transcriptome datasets for genes having high expression in roots while being low in all other organs under a wide range of growth conditions. We show that the root-specificity of these genes is conserved in the sister species Arabidopsis lyrata, indicating that their expression pattern is under selective pressure. We delineated the cis-regulatory elements responsible for root-specific expression and validated two third of those in planta as bona fide root-specific regulatory sequences. We identified three motifs over-represented in these sequences, which mutation resulted in alteration of root-specific expression, demonstrating that these motifs are functionally relevant. In addition, the three motifs are also over-represented in the cis-regulatory regions of the A. lyrata orthologs of our root-specific genes, and this despite an overall low degree of sequence conservation of these regions. Our results provide a resource to assess root-identity in the model genus Arabidopsis and shed light on the evolutionary history of gene regulation in plants.
机译:标记基因在组织,器官或发育时间中特异性表达。在这里,我们使用计算屏幕来识别拟南芥中根的标记基因。我们挖掘了现有的转录组数据集,寻找在广泛的生长条件下在根中具有高表达而在所有其他器官中却低表达的基因。我们显示这些基因的根特异性在姐妹物种拟南芥中是保守的,表明它们的表达模式处于选择性压力下。我们划定了负责根特异性表达的顺式调控元件,并验证了植物中三分之二的真实根特异性调控序列。我们确定了这些序列中过度代表的三个基序,该突变导致根特异性表达的改变,表明这些基序在功能上相关。另外,这三个基序在我们根特异基因的拟南芥直向同源物的顺式调节区域中也过分表达,尽管这些区域的序列保守性总体较低。我们的研究结果提供了一种资源,可用于评估拟南芥属模型中的根身份,并阐明植物中基因调控的进化历史。

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