首页> 外文OA文献 >Genome-Wide in Silico Mapping of Scaffold/Matrix Attachment Regions in Arabidopsis Suggests Correlation of Intragenic Scaffold/Matrix Attachment Regions with Gene Expression1[w]
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Genome-Wide in Silico Mapping of Scaffold/Matrix Attachment Regions in Arabidopsis Suggests Correlation of Intragenic Scaffold/Matrix Attachment Regions with Gene Expression1[w]

机译:拟南芥中支架/基质附着区的计算机模拟全基因组研究表明基因表达支架/基质附着区与基因表达的相关性[w]

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摘要

We carried out a genome-wide prediction of scaffold/matrix attachment regions (S/MARs) in Arabidopsis. Results indicate no uneven distribution on the chromosomal level but a clear underrepresentation of S/MARs inside genes. In cases where S/MARs were predicted within genes, these intragenic S/MARs were preferentially located within the 5′-half, most prominently within introns 1 and 2. Using Arabidopsis whole-genome expression data generated by the massively parallel signature sequencing methodology, we found a negative correlation between S/MAR-containing genes and transcriptional abundance. Expressed sequence tag data correlated the same way with S/MAR-containing genes. Thus, intragenic S/MARs show a negative correlation with transcription level. For various genes it has been shown experimentally that S/MARs can function as transcriptional regulators and that they have an implication in stabilizing expression levels within transgenic plants. On the basis of a genome-wide in silico S/MAR analysis, we found a significant correlation between the presence of intragenic S/MARs and transcriptional down-regulation.
机译:我们对拟南芥中的支架/基质附着区域(S / MARs)进行了全基因组预测。结果表明在染色体水平上没有不均匀的分布,但是基因内部的S / MAR明显不足。如果在基因中预测到S / MAR,则这些基因内S / MAR优先位于5'-一半,最主要位于内含子1和2。使用拟南芥全基因组表达数据,该数据由大规模平行签名测序方法产生,我们发现含S / MAR的基因与转录丰度之间呈负相关。表达的序列标签数据与含S / MAR的基因具有相同的相关性。因此,基因内S / MARs显示与转录水平负相关。对于各种基因,实验已经证明S / MARs可以充当转录调节子,并且在稳定转基因植物中的表达水平方面具有重要意义。基于全基因组的计算机S / MAR分析,我们发现基因内S / MAR的存在与转录下调之间存在显着相关性。

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