首页> 美国卫生研究院文献>Plant Physiology >The Mediator Complex in Plants: Structure Phylogeny and Expression Profiling of Representative Genes in a Dicot (Arabidopsis) and a Monocot (Rice) during Reproduction and Abiotic Stress
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The Mediator Complex in Plants: Structure Phylogeny and Expression Profiling of Representative Genes in a Dicot (Arabidopsis) and a Monocot (Rice) during Reproduction and Abiotic Stress

机译:植物介体复合物:生殖和非生物胁迫期间双子叶植物(拟南芥)和单子叶植物(水稻)中代表性基因的结构系统发育和表达谱

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摘要

The Mediator (Med) complex relays regulatory information from DNA-bound transcription factors to the RNA polymerase II in eukaryotes. This macromolecular unit is composed of three core subcomplexes in addition to a separable kinase module. In this study, conservation of Meds has been investigated in 16 plant species representing seven diverse groups across the plant kingdom. Using Hidden Markov Model-based conserved motif searches, we have identified all the known yeast/metazoan Med components in one or more plant groups, including the Med26 subunits, which have not been reported so far for any plant species. We also detected orthologs for the Arabidopsis (Arabidopsis thaliana) Med32, -33, -34, -35, -36, and -37 in all the plant groups, and in silico analysis identified the Med32 and Med33 subunits as apparent orthologs of yeast/metazoan Med2/29 and Med5/24, respectively. Consequently, the plant Med complex appears to be composed of one or more members of 34 subunits, as opposed to 25 and 30 members in yeast and metazoans, respectively. Despite low similarity in primary Med sequences between the plants and their fungal/metazoan partners, secondary structure modeling of these proteins revealed a remarkable similarity between them, supporting the conservation of Med organization across kingdoms. Phylogenetic analysis between plant, human, and yeast revealed single clade relatedness for 29 Med genes families in plants, plant Meds being closer to human than to yeast counterparts. Expression profiling of rice (Oryza sativa) and Arabidopsis Med genes reveals that Meds not only act as a basal regulator of gene expression but may also have specific roles in plant development and under abiotic stress conditions.
机译:介体(Med)复合体将调控信息从DNA结合的转录因子传递至真核生物的RNA聚合酶II。除可分离的激酶模块外,该大分子单元还由三个核心亚复合物组成。在这项研究中,已对代表整个植物界的七个不同组的16种植物物种进行了Meds的保存研究。使用基于隐马尔可夫模型的保守基序搜索,我们确定了一个或多个植物群中所有已知的酵母/ metazoan Med成分,包括Med26亚基,到目前为止尚未针对任何植物物种进行报道。我们还检测了所有植物组中拟南芥(Arabidopsis thaliana)Med32,-33,-34,-35,-36和-37的直系同源物,并且在计算机分析中将Med32和Med33亚基鉴定为酵母/后生动物Med2 / 29和Med5 / 24。因此,植物Med复合物似乎由一个或多个34个亚基的成员组成,而酵母和后生动物分别为25和30个成员。尽管植物和它们的真菌/金属蛋白酶伴侣之间的原始Med序列相似性很低,但是这些蛋白质的二级结构建模显示它们之间的显着相似性,支持了跨王国的Med组织的保存。在植物,人类和酵母之间的系统发生分析表明,植物中29个Med基因家族具有单一进化枝相关性,植物Meds与人类相比更接近酵母。水稻(Oryza sativa)和拟南芥Med基因的表达谱分析表明,Meds不仅是基因表达的基础调节剂,而且在植物发育和非生物胁迫条件下也可能具有特定作用。

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