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Genome-wide analysis, evolutionary expansion, and expression of early auxin-responsive SAUR gene family in rice (Oryza sativa).

机译:水稻(Oryza sativa)早期植物生长素应答性SAUR基因家族的全基因组分析,进化扩展和表达。

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Small auxin-up RNAs (SAURs) are the early auxin-responsive genes represented by a large multigene family in plants. Here, we report the identification of 58 OsSAUR gene family members from rice (Oryza sativa japonica cv Nipponbare), the model monocot plant, by a reiterative database search and manual reannotation; 2 of these are pseudogenes. The coding sequences of OsSAURs do not possess any intron. Most of the predicted OsSAUR protein sequences harbor a putative nuclear localization signal at their N-terminus. Localized gene duplications appear to be the primary genetic event responsible for SAUR gene family expansion in rice. Interestingly, the duplication of OsSAURs was found to be associated with the chromosomal block duplication as well. The phylogenetic analysis revealed that the SAUR gene family expanded in rice and Arabidopsis due to species-specific expansion of the family in monocots and dicots. The auxin-responsive elements and downstream element are conserved in the upstream and downstream sequences, respectively, of OsSAURs. In addition to the 21 OsSAURs with full-length cDNA sequences and 20 with expressed sequence tags, gene expression analyses of at least 7 OsSAURs by RT-qPCR indicated that the majority of identified OsSAURs most likely are expressed in rice. The transcript abundance of the OsSAURs examined increased within a few minutes of exogenous auxin application with varying kinetics. The present study provides basic genomic information for the rice SAUR gene family and will pave the way for deciphering the precise role of SAURs in plant growth and development.
机译:小生长素上调RNA(SAURs)是早期的生长素应答基因,由植物中的大型多基因家族代表。在这里,我们报告了通过重复数据库搜索和手动重新注释,从模型单子叶植物水稻(Oryza sativa japonica cv Nipponbare)中鉴定出58个OsSAUR基因家族成员。这些中的2个是假基因。 OsSAUR的编码序列不具有任何内含子。大多数预测的OsSAUR蛋白序列在其N端均具有推定的核定位信号。本地化的基因重复似乎是导致SAUR基因家族在水稻中扩展的主要遗传事件。有趣的是,发现OsSAURs的重复也与染色体阻滞重复相关。系统发育分析表明,SAUR基因家族在单子叶植物和双子叶植物中由于在水稻和拟南芥中的物种特异性扩展而扩展。生长素应答元件和下游元件分别在OsSAUR的上游和下游序列中保守。除了21个具有全长cDNA序列的OsSAUR和20个具有表达的序列标签外,通过RT-qPCR对至少7个OsSAUR的基因表达分析表明,大多数已鉴定的OsSAUR最有可能在水稻中表达。检测的OsSAURs的转录本丰度在外源生长素应用的几分钟内以不同的动力学增加。本研究为水稻SAUR基因家族提供了基本的基因组信息,并将为破译SAUR在植物生长和发育中的确切作用铺平道路。

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