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Genetics. 1991 Sep;129(1):261-70. doi: 10.1093/genetics/129.1.261.
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本文引用的文献

1
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。
Genetics. 1988 Oct;120(2):587-96. doi: 10.1093/genetics/120.2.587.
2
Structure of the sucrose synthase gene on chromosome 9 of Zea mays L.玉米 9 号染色体上蔗糖合酶基因的结构。
EMBO J. 1985 Jun;4(6):1373-80. doi: 10.1002/j.1460-2075.1985.tb03789.x.
3
Plant transposable elements generate the DNA sequence diversity needed in evolution.植物转座元件产生进化所需的DNA序列多样性。
EMBO J. 1985 Mar;4(3):591-7. doi: 10.1002/j.1460-2075.1985.tb03671.x.
4
Genetic and molecular analysis of the Enhancer (En) transposable element system of Zea mays.玉米增强子(En)转座子系统的遗传与分子分析。
EMBO J. 1985 Jan;4(1):17-23. doi: 10.1002/j.1460-2075.1985.tb02311.x.
5
Transposable element Mu1 is found in multiple copies only in Robertson's Mutator maize lines.转座因子Mu1仅在罗伯逊变异型玉米品系中以多个拷贝的形式存在。
J Mol Appl Genet. 1984;2(6):519-24.
6
Nucleotide sequence of the maize transposable element Mul.玉米转座因子Mul的核苷酸序列。
Nucleic Acids Res. 1984 Aug 10;12(15):5955-67. doi: 10.1093/nar/12.15.5955.
7
Stable non-mutator stocks of maize have sequences homologous to the Mu1 transposable element.玉米的稳定非突变株系具有与Mu1转座元件同源的序列。
Genetics. 1986 Nov;114(3):1007-21. doi: 10.1093/genetics/114.3.1007.
8
DNA modification of a maize transposable element correlates with loss of activity.玉米转座元件的DNA修饰与活性丧失相关。
Proc Natl Acad Sci U S A. 1986 Mar;83(6):1767-71. doi: 10.1073/pnas.83.6.1767.
9
The Mu transposable elements of maize: evidence for transposition and copy number regulation during development.玉米的Mu转座元件:发育过程中转座及拷贝数调控的证据
Genetics. 1986 Jan;112(1):107-19. doi: 10.1093/genetics/112.1.107.
10
Regulation of Mu element copy number in maize lines with an active or inactive Mutator transposable element system.具有活跃或不活跃Mutator转座元件系统的玉米品系中Mu元件拷贝数的调控
Mol Gen Genet. 1988 Jan;211(1):27-34. doi: 10.1007/BF00338389.

鉴定一个控制玉米中Mutator转座子系统的调控性转座子。

Identification of a regulatory transposon that controls the Mutator transposable element system in maize.

作者信息

Chomet P, Lisch D, Hardeman K J, Chandler V L, Freeling M

机构信息

Department of Plant Biology, University of California, Berkeley 94720.

出版信息

Genetics. 1991 Sep;129(1):261-70. doi: 10.1093/genetics/129.1.261.

DOI:10.1093/genetics/129.1.261
PMID:1657702
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1204575/
Abstract

The Mutator system of maize consists of more than eight different classes of transposable elements each of which can be found in multiple copies. All Mu elements share the approximately 220-bp terminal inverted repeats, whereas each distinct element class is defined by its unique internal sequences. The regulation of instability of this system has been difficult to elucidate due to its multigenic inheritance. Here we present genetic experiments which demonstrate that there is a single locus, MuR1, which can regulate the transposition of Mu1 elements. We describe the cloning of members of a novel class of Mu elements, MuR, and demonstrate that a member of the class is the regulator of Mutator activity, MuR1. This conclusion is based on several criteria: MuR1 activity and a MuR-homologous restriction fragment cosegregate; when MuR1 undergoes a duplicative transposition, an additional MuR restriction fragment is observed, and MuR1 activity and the cosegregating MuR fragment are simultaneously lost within clonal somatic sectors. In addition, the MuR element hybridizes to transcripts in plants with Mutator activity. Our genetic experiments demonstrate that the MuR1 transposon is necessary to specify Mutator activity in our lines.

摘要

玉米的增变系统由超过八种不同类型的转座元件组成,每种元件都有多个拷贝。所有Mu元件都有大约220个碱基对的末端反向重复序列,而每个不同的元件类型由其独特的内部序列定义。由于该系统的多基因遗传,其不稳定性的调控一直难以阐明。在这里,我们展示了一些遗传实验,这些实验表明存在一个单一的位点MuR1,它可以调控Mu1元件的转座。我们描述了一类新型Mu元件MuR成员的克隆,并证明该类别的一个成员是增变活性的调节因子MuR1。这一结论基于几个标准:MuR1活性和一个与MuR同源的限制片段共分离;当MuR1发生复制性转座时,会观察到一个额外的MuR限制片段,并且在克隆体细胞区域内,MuR1活性和共分离的MuR片段会同时丢失。此外,MuR元件与具有增变活性的植物中的转录本杂交。我们的遗传实验表明,MuR1转座子对于在我们的品系中确定增变活性是必需的。