Conserved Noncoding Sequences Highlight Shared Components of Regulatory Networks in Dicotyledonous Plants

Conserved Noncoding Sequences Highlight Shared Components of Regulatory Networks in Dicotyledonous Plants
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DOI:
10.1105/tpc.112.103010
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发表时间:
2012-10-01
期刊:
影响因子:
11.6
通讯作者:
Ott, Sascha
Ott, Sascha
中科院分区:
生物学1区
文献类型:
--
作者:
Baxter, Laura;Jironkin, Aleksey;Ott, Sascha

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DNA中的保守非编码序列(CNSs)是控制基因表达调控元件的可靠指针。使用比较基因组学方法与四个双子叶植物物种(拟南芥,木瓜[番木瓜],白杨[杨],和葡萄[葡萄属葡萄]),我们检测到数百个CNSs拟南芥基因上游。不同的定位,长度和富集的转录因子结合位点表明这些CNSs在转录调控中发挥功能性作用。与CNS相关的一组基因中转录因子的富集与以下假设一致:它们一起形成保守的转录网络的一部分,其功能是调节其他转录因子并控制发育。我们确定了一组启动子,其中调控机制可能是模式生物拟南芥和其他双子叶植物之间共享,提供了进一步研究的重点领域。
Conserved noncoding sequences (CNSs) in DNA are reliable pointers to regulatory elements controlling gene expression. Using a comparative genomics approach with four dicotyledonous plant species (Arabidopsis thaliana, papaya [Carica papaya], poplar [Populus trichocarpa], and grape [Vitis vinifera]), we detected hundreds of CNSs upstream of Arabidopsis genes. Distinct positioning, length, and enrichment for transcription factor binding sites suggest these CNSs play a functional role in transcriptional regulation. The enrichment of transcription factors within the set of genes associated with CNS is consistent with the hypothesis that together they form part of a conserved transcriptional network whose function is to regulate other transcription factors and control development. We identified a set of promoters where regulatory mechanisms are likely to be shared between the model organism Arabidopsis and other dicots, providing areas of focus for further research.