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鉴定拟南芥中不同类型活性氧特异性的顺式调控元件。

Identification of cis-regulatory elements specific for different types of reactive oxygen species in Arabidopsis thaliana.

机构信息

Department of Plant Physiology and Molecular Biology, University of Plovdiv, 24 Tsar Assen str., Plovdiv 4000, Bulgaria.

出版信息

Gene. 2012 May 10;499(1):52-60. doi: 10.1016/j.gene.2012.02.035. Epub 2012 Feb 28.

Abstract

The type of reactive oxygen species (ROS) is a major factor that determines the specificity of biological responses. These responses may be elicited by activation of transcription factors that recognize ROS-specific cis-regulatory elements in target genes. In search for Arabidopsis promoter motifs specific for particular types of ROS, genome-wide microarray expression profiles for 283 abiotic stress-related conditions were subjected to cluster analysis to identify gene groups induced by singlet oxygen, superoxide radicals, and H(2)O(2). Promoters of these gene groups were analyzed to identify cis-regulatory elements that are associated with specific types of ROS. Eleven ROS-specific de novo identified elements, seven known promoter motifs and several sequences enriched in ROS-responsive clusters but lacking in specificity are reported. The conservation of the identified motifs was determined in orthologous genes in C. papaya, V. vinifera and P. trichocarpa. Finally, biological functions were attributed to the motifs by calculation of GO-term enrichment for genes with conserved ROS-responsive elements.

摘要

活性氧(ROS)的类型是决定生物反应特异性的主要因素。这些反应可能是由转录因子的激活引起的,这些转录因子可以识别靶基因中 ROS 特异性顺式调节元件。为了寻找特定类型 ROS 的拟南芥启动子基序,对 283 种非生物胁迫相关条件的全基因组微阵列表达谱进行了聚类分析,以鉴定由单线态氧、超氧自由基和 H₂O₂诱导的基因群。对这些基因群的启动子进行了分析,以鉴定与特定类型 ROS 相关的顺式调节元件。报道了 11 个 ROS 特异性从头鉴定的元件、7 个已知的启动子基序以及在 ROS 响应簇中丰富但缺乏特异性的几个序列。在 C. papaya、V. vinifera 和 P. trichocarpa 的同源基因中确定了所鉴定基序的保守性。最后,通过计算具有保守 ROS 响应元件的基因的 GO 术语富集,为这些基序赋予了生物学功能。

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