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Identification of 10 novel snoRNA gene clusters from Arabidopsis thaliana

机译:拟南芥中的10个新的snoRNA基因簇的鉴定。

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Ten novel small nucleolar RNA (snoRNA) gene clusters, consisting of two or three snoRNA genes, respectively, were identified from Arabidopsis thaliana, Twelve of the 25 snoRNA genes in these clusters are homologous to those of yeast and mammals according to the conserved antisense sequences that guide 2'-O-ribose methylation of rRNA, The remaining 13 snoRNA genes, including two 5.8S rRNA methylation guides, are new genes identified from A,thaliana, Interestingly, seven methylated nucleotides, predicted by novel snoRNAs Z41a-Z46, are methylated neither in yeast nor in vertebrates. Using primer extension at low dNTP concentration the six methylation sites were determined as expected, These snoRNAs were recognized as specific guides for 2'-O-ribose methylation of plant rRNAs, Z42, however, did not guide the expected methylation of 25S rRNA in our assay. Thus, its function remains to be elucidated, The intergenic spacers of the gene clusters are rich in uridine (up to 40%) and most of them range in size from 35 to 100 nt, Lack of a conserved promoter element in each spacer and the determination of polycistronic transcription from a cluster by RT-PCR assay suggest that the snoRNAs encoded in the clusters are transcribed as a polycistron under an upstream promoter, and individual snoRNAs are released after processing of the precursor, Numerous snoRNA gene clusters identified from A.thaliana and other organisms suggest that the snoRNA gene cluster is an ancient gene organization existing abundantly in plants.
机译:从拟南芥中鉴定出十个新颖的小核仁RNA(snoRNA)基因簇,分别由两个或三个snoRNA基因组成。根据保守的反义序列,这些簇中的25个snoRNA基因中有十二个与酵母和哺乳动物的同源指导rRNA的2'-O-核糖甲基化,其余13个snoRNA基因,包括两个5.8S rRNA甲基化指导,是从拟南芥中鉴定的新基因。有趣的是,新的snoRNAs Z41a-Z46预测有七个甲基化核苷酸在酵母和脊椎动物中均未甲基化。使用在低dNTP浓度下的引物延伸,按预期确定了六个甲基化位点。这些snoRNA被公认为是植物rRNA 2'-O-核糖甲基化的特异性指南,但是Z42并未指导我们25S rRNA的预期甲基化。分析。因此,其功能仍有待阐明。基因簇的基因间隔子富含尿苷(最多40%),大多数大小在35到100 nt之间,每个间隔子中缺少保守的启动子元件,并且通过RT-PCR分析确定簇中多顺反子转录的结果表明,簇中编码的snoRNA在上游启动子下转录为多顺反子,并且在处理前体后释放了单个snoRNA,从拟南芥中鉴定出许多snoRNA基因簇。其他生物体则认为snoRNA基因簇是植物中大量存在的古老基因组织。

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