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首页> 外文期刊>Rice >Functional classification of rice flanking sequence tagged genes using MapMan terms and global understanding on metabolic and regulatory pathways affected by dxr mutant having defects in light response
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Functional classification of rice flanking sequence tagged genes using MapMan terms and global understanding on metabolic and regulatory pathways affected by dxr mutant having defects in light response

机译:使用MapMan术语对水稻侧翼序列标签基因进行功能分类,以及对受光反应缺陷的dxr突变体影响的代谢和调控途径的整体理解

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BackgroundRice is one of the most important food crops for humans. To improve the agronomical traits of rice, the functions of more than 1,000 rice genes have been recently characterized and summarized. The completed, map-based sequence of the rice genome has significantly accelerated the functional characterization of rice genes, but progress remains limited in assigning functions to all predicted non-transposable element (non-TE) genes, estimated to number 37,000–41,000. ResultsThe International Rice Functional Genomics Consortium (IRFGC) has generated a huge number of gene-indexed mutants by using mutagens such as T-DNA, Tos17 and Ds/dSpm. These mutants have been identified by 246,566 flanking sequence tags (FSTs) and cover 65?% (25,275 of 38,869) of the non-TE genes in rice, while the mutation ratio of TE genes is 25.7?%. In addition, almost 80?% of highly expressed non-TE genes have insertion mutations, indicating that highly expressed genes in rice chromosomes are more likely to have mutations by mutagens such as T-DNA, Ds , dSpm and Tos17 . The functions of around 2.5?% of rice genes have been characterized, and studies have mainly focused on transcriptional and post-transcriptional regulation. Slow progress in characterizing the function of rice genes is mainly due to a lack of clues to guide functional studies or functional redundancy. These limitations can be partially solved by a well-categorized functional classification of FST genes. To create this classification, we used the diverse overviews installed in the MapMan toolkit. Gene Ontology (GO) assignment to FST genes supplemented the limitation of MapMan overviews. ConclusionThe functions of 863 of 1,022 known genes can be evaluated by current FST lines, indicating that FST genes are useful resources for functional genomic studies. We assigned 16,169 out of 29,624 FST genes to 34 MapMan classes, including major three categories such as DNA, RNA and protein. To demonstrate the MapMan application on FST genes, transcriptome analysis was done from a rice mutant of 1-deoxy-D-xylulose 5-phosphate reductoisomerase ( DXR) gene with FST. Mapping of 756 down-regulated genes in dxr mutants and their annotation in terms of various MapMan overviews revealed candidate genes downstream of DXR -mediating light signaling pathway in diverse functional classes such as the methyl-D-erythritol 4-phosphatepathway (MEP) pathway overview, photosynthesis, secondary metabolism and regulatory overview. This report provides a useful guide for systematic phenomics and further applications to enhance the key agronomic traits of rice.
机译:背景技术稻米是人类最重要的粮食作物之一。为了改善水稻的农艺性状,最近已对1,000多个水稻基因的功能进行了表征和总结。完整的,基于图谱的水稻基因组序列已大大加速了水稻基因的功能表征,但在将功能分配给所有预测的非转座元件(non-TE)基因(估计数量为37,000-41,000)方面仍然进展有限。结果国际水稻功能基因组学联盟(IRFGC)通过使用诱变剂如T-DNA,Tos17和Ds / dSpm产生了大量的基因索引突变体。这些突变体已被246,566个侧翼序列标签(FST)所鉴定,覆盖了水稻中65%的非TE基因(38,869个中的25,275个),而TE基因的突变率为25.7%。此外,几乎80%的高度表达的非TE基因具有插入突变,这表明水稻染色体中高度表达的基因更容易被诱变剂(例如T-DNA,Ds,dSpm和Tos17)突变。已经鉴定了约2.5%的水稻基因的功能,并且研究主要集中在转录和转录后调控上。鉴定水稻基因功能的进展缓慢主要是由于缺乏指导功能研究或功能冗余的线索。这些限制可以通过对FST基因的功能分类很好地解决。为了创建此分类,我们使用了MapMan工具包中安装的各种概述。 FST基因的基因本体论(GO)分配补充了MapMan概述的局限性。结论目前的FST品系可以评估1,022个已知基因中的863个功能,这表明FST基因是功能基因组研究的有用资源。我们将29,624个FST基因中的16,169个分配给了34个MapMan类,包括DNA,RNA和蛋白质三大类。为了证明MapMan在FST基因上的应用,从带有FST的1-脱氧-D-木酮糖5-磷酸还原异构酶(DXR)基因的水稻突变体中进行了转录组分析。 dxr突变体中756个下调基因的定位及其在各种MapMan概述中的注释显示了DXR介导的光信号传导途径下游的候选基因处于各种功能类别,例如甲基D-赤藓糖醇4-磷酸途径(MEP)途径概述,光合作用,次级代谢和调节概述。该报告为系统表型学和进一步应用以增强水稻关键农艺性状提供了有用的指导。

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