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首页> 外文期刊>The Plant Cell >Arabidopsis root initiation defective1, a DEAH-box RNA helicase involved in pre-mRNA splicing, is essential for plant development.Comments Comment in: Plant Cell. 2013 Jun;25(6):1912; PMID: 23771892
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Arabidopsis root initiation defective1, a DEAH-box RNA helicase involved in pre-mRNA splicing, is essential for plant development.Comments Comment in: Plant Cell. 2013 Jun;25(6):1912; PMID: 23771892

机译:拟南芥根起始缺陷1,一种参与de-mRNA剪接的DEAH-box RNA解旋酶,对植物发育至关重要。 2013年6月; 25(6):1912; PMID:23771892

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摘要

Pre-mRNA splicing is a critical process in gene expression in eukaryotic cells. A multitude of proteins are known to be involved in pre-mRNA splicing in plants; however, the physiological roles of only some of these have been examined. Here, we investigated the developmental roles of a pre-mRNA splicing factor by analyzing root initiation defective1-1 (rid1-1), an Arabidopsis thaliana mutant previously shown to have severe defects in hypocotyl dedifferentiation and de novo meristem formation in tissue culture under high-temperature conditions. Phenotypic analysis in planta indicated that RID1 is differentially required during development and has roles in processes such as meristem maintenance, leaf morphogenesis, and root morphogenesis. RID1 was identified as encoding a DEAH-box RNA helicase implicated in pre-mRNA splicing. Transient expression analysis using intron-containing reporter genes showed that pre-mRNA splicing efficiency was affected by the rid1 mutation, which supported the presumed function of RID1 in pre-mRNA splicing. Our results collectively suggest that robust levels of pre-mRNA splicing are critical for several specific aspects of plant development.Registry Number/Name of Substance 0 (Arabidopsis Proteins). 0 (RNA Precursors). 0 (Saccharomyces cerevisiae Proteins). EC 3-6-1 (PRP22 protein, S cerevisiae). EC 3-6-4-13 (DEAD-box RNA Helicases). EC 3-6-4-13 (RID1 protein, Arabidopsis). EC 3-6-4-13 (RNA Helicases).
机译:前mRNA剪接是真核细胞中基因表达的关键过程。已知许多蛋白质与植物中的前mRNA剪接有关。然而,仅检查了其中一些的生理作用。在这里,我们通过分析根起始缺陷1-1(rid1-1)(一种拟南芥拟南芥突变体,先前显示在组织培养下高水平下胚轴去分化和从头分生组织中存在严重缺陷)来研究前mRNA剪接因子的发育作用。温度条件。植物的表型分析表明,RID1在发育过程中是不同需要的,并在分生组织维持,叶片形态发生和根形态发生等过程中起作用。 RID1被鉴定为编码参与pre-mRNA剪接的DEAH-box RNA解旋酶。使用含内含子的报告基因进行瞬时表达分析表明,mRNA的剪接效率受rid1突变的影响,该突变支持RID1在mRNA剪接中的假定功能。我们的研究结果共同表明,强大的mRNA剪接水平对于植物发育的几个特定方面至关重要。注册号/物质0(拟南芥蛋白)的名称。 0(RNA前体)。 0(酿酒酵母蛋白)。 EC 3-6-1(PRP22蛋白,酿酒酵母)。 EC 3-6-4-13(DEAD-box RNA解旋酶)。 EC 3-6-4-13(RID1蛋白,拟南芥)。 EC 3-6-4-13(RNA解旋酶)。

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