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The Mutator-Related Cy Transposable Element of Zea Mays L. Behaves as a near-Mendelian Factor.玉米中的 Mutator 相关 Cy 转座元件表现为近孟德尔因子。
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DNA sequence and transcript analysis of transposon MuA2, a regulator of Mutator transposable element activity in maize.转座子MuA2的DNA序列与转录分析,MuA2是玉米中Mutator转座子活性的一个调控因子。
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High level expression of the Activator transposase gene inhibits the excision of Dissociation in tobacco cotyledons.激活子转座酶基因的高水平表达抑制了烟草子叶中解离元件的切除。
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Epigenetic regulation of the maize Spm transposable element: novel activation of a methylated promoter by TnpA.玉米Spm转座元件的表观遗传调控:TnpA对甲基化启动子的新激活作用
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Addition of A- and U-rich sequence increases the splicing efficiency of a deleted form of a maize intron.富含A和U的序列的添加提高了玉米内含子缺失形式的剪接效率。
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玉米调控型MuDR转座元件所编码的主要转录本的特征分析

Characterization of the major transcripts encoded by the regulatory MuDR transposable element of maize.

作者信息

Hershberger R J, Benito M I, Hardeman K J, Warren C, Chandler V L, Walbot V

机构信息

Department of Biological Sciences, Stanford University, California 94305-5020, USA.

出版信息

Genetics. 1995 Jul;140(3):1087-98. doi: 10.1093/genetics/140.3.1087.

DOI:10.1093/genetics/140.3.1087
PMID:7672579
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1206663/
Abstract

The MuDR element controls the transposition of the Mutator transposable element family in maize. Previous studies reported the presence of two major MuDR-homologous transcripts that correlate with Mutator activity. In this study, we describe the structure and processing of these two major transcripts. The transcripts are convergent, initiating from opposite ends of the element within the 220-bp terminal inverted repeats. The convergent transcripts do not overlap, and only 200 bp of internal MuDR sequences are not transcribed. Cloning and sequencing of multiple MuDR cDNAs revealed unusual intron/exon junctions, differential splicing, and multiple polyadenylation sites. RNase protection experiments indicated that some splicing failure occurs in young seedlings, and that a low level of antisense RNA exists for both transcripts. On a whole plant level, the presence of the major MuDR transcripts strictly correlates with Mutator activity in that no MuDR transcripts are observed in non-Mutator or inactive Mutator stocks. Examination of various tissues from active Mutator stocks indicates that the two transcripts are present in all organs and tissues tested, including those with no apparent transposition activity. This suggests that Mutator activity is not simply controlled by the level of the major MuDR transcripts.

摘要

MuDR元件控制着玉米中Mutator转座元件家族的转座。先前的研究报道了两种主要的与MuDR同源的转录本,它们与Mutator活性相关。在本研究中,我们描述了这两种主要转录本的结构和加工过程。这些转录本是反向的,从元件220bp末端反向重复序列内的相对两端起始。反向转录本不重叠,元件内部只有200bp的序列未被转录。多个MuDR cDNA的克隆和测序揭示了不寻常的内含子/外显子连接、差异剪接和多个聚腺苷酸化位点。核糖核酸酶保护实验表明,在幼苗中发生了一些剪接失败,并且两种转录本都存在低水平的反义RNA。在整株植物水平上,主要MuDR转录本的存在与Mutator活性严格相关,因为在非Mutator或无活性的Mutator植株中未观察到MuDR转录本。对有活性的Mutator植株的各种组织进行检测表明,这两种转录本存在于所有测试的器官和组织中,包括那些没有明显转座活性的组织。这表明Mutator活性并非简单地由主要MuDR转录本的水平控制。