首页> 外文OA文献 >Phylogenetic Analysis of 5′-Noncoding Regions From the ABA-Responsive rab16/17 Gene Family of Sorghum, Maize and Rice Provides Insight Into the Composition, Organization and Function of cis-Regulatory Modules
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Phylogenetic Analysis of 5′-Noncoding Regions From the ABA-Responsive rab16/17 Gene Family of Sorghum, Maize and Rice Provides Insight Into the Composition, Organization and Function of cis-Regulatory Modules

机译:高粱,玉米和水稻的ABA响应性rab16 / 17基因家族5'-非编码区的系统发生分析,为顺式调控模块的组成,组织和功能提供了见识

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摘要

Phylogenetic analysis of sequences from gene families and homologous genes from species of varying divergence can be used to identify conserved noncoding regulatory elements. In this study, phylogenetic analysis of 5′-noncoding sequences was optimized using rab17, a well-characterized ABA-responsive gene from maize, and five additional rab16/17 homologs from sorghum and rice. Conserved 5′-noncoding sequences among the maize, sorghum, and rice rab16/17 homologs were identified with the aid of the software program FootPrinter and by screening for known transcription-factor-binding sites. Searches for 7 of 8 (7/8)bp sequence matches within aligned 5′-noncoding segments of the rab genes identified many of the cis-elements previously characterized by biochemical analysis in maize rab17 plus several additional putative regulatory elements. Differences in the composition of conserved noncoding sequences among rab16/17 genes were related to variation in rab gene mRNA levels in different tissues and to response to ABA treatment using qRT-PCR. Absence of a GRA-like element in the promoter of sorghum dhn2 relative to maize rab17 was correlated with an ∼85-fold reduction of dhn2 RNA in sorghum shoots. Overall, we conclude that phylogenetic analysis of gene families among rice, sorghum, and maize will help identify regulatory sequences in the noncoding regions of genes and contribute to our understanding of grass gene regulatory networks.
机译:来自基因家族的序列和来自不同趋异物种的同源基因的系统发生分析可用于鉴定保守的非编码调控元件。在这项研究中,对5'-非编码序列的系统发育分析进行了优化,使用了来自玉米的ABA17基因,以及来自高粱和水稻的5个rab16 / 17同源基因,即rab17。借助软件程序FootPrinter并通过筛选已知的转录因子结合位点,鉴定了玉米,高粱和水稻rab16 / 17同源物中的保守5'-非编码序列。在rab基因的对齐5'-非编码片段中搜索8(7/8)bp序列中的7个,确定了许多以前通过玉米rab17生化分析表征的顺式元件,以及其他几个推定的调控元件。 rab16 / 17基因之间保守的非编码序列组成的差异与不同组织中rab基因mRNA水平的变化以及qRT-PCR对ABA处理的反应有关。相对于玉米rab17,高粱dhn2启动子中缺少GRA样元件与高粱芽中dhn2 RNA减少约85倍有关。总的来说,我们得出的结论是,对水稻,高粱和玉米之间的基因家族进行系统发育分析将有助于鉴定基因非编码区的调控序列,并有助于我们对草基因调控网络的理解。

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