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本文引用的文献

1
Molecular analysis of ds controlling element mutations at the adh1 locus of maize.玉米 adh1 基因座 ds 控制元件突变的分子分析。
Science. 1984 Mar 23;223(4642):1265-8. doi: 10.1126/science.223.4642.1265.
2
Mutable R-navajo alleles of cyclic origin in maize.玉米中环型起源的可变性 R-navajo 等位基因。
Genetics. 1973 Feb;73(2):273-96. doi: 10.1093/genetics/73.2.273.
3
Reconstitution of the variegated pericarp allele in maize by transposition of modulator back to the p locus.通过调节子转座回到p位点来重建玉米中杂色果皮等位基因。
Genetics. 1966 Jan;53(1):7-16. doi: 10.1093/genetics/53.1.7.
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Twin Mutations in Medium Variegated Pericarp Maize.中花斑纹果皮玉米中的双突变
Genetics. 1962 Apr;47(4):489-501. doi: 10.1093/genetics/47.4.489.
5
Mutable a(1) of the En System in Maize.玉米中En系统的可变a(1)。
Genetics. 1961 Jul;46(7):759-71. doi: 10.1093/genetics/46.7.759.
6
Induction of Instability at Selected Loci in Maize.玉米特定基因座不稳定性的诱导
Genetics. 1953 Nov;38(6):579-99. doi: 10.1093/genetics/38.6.579.
7
Deletions in a dspm insert in a maize bronze-1 allele alter RNA processing and gene expression.玉米 Bronze-1 等位基因中的 dspm 插入缺失改变了 RNA 加工和基因表达。
Genetics. 1989 Jul;122(3):695-703. doi: 10.1093/genetics/122.3.695.
8
Transposition Pattern of the Maize Element Ac from the Bz-M2(ac) Allele.玉米 Bz-M2(ac) 等位基因 Ac 元件的转座模式。
Genetics. 1989 Jun;122(2):447-57. doi: 10.1093/genetics/122.2.447.
9
Characterization of an spm-controlled bronze-mutable allele in maize.玉米中 spm 控制的青铜突变等位基因的特征。
Genetics. 1984 Apr;106(4):769-79. doi: 10.1093/genetics/106.4.769.
10
Nucleoside Diphosphate Sugar-Starch Glucosyl Transferase Activity of wx Starch Granules.wx淀粉颗粒的核苷二磷酸糖-淀粉葡糖基转移酶活性
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玉米Wx-m5等位基因的状态变化是由于Ds的基因内转座。

Changes in state of the Wx-m5 allele of maize are due to intragenic transposition of Ds.

作者信息

Weil C F, Marillonnet S, Burr B, Wessler S R

机构信息

Botany Department, University of Georgia, Athens 30602.

出版信息

Genetics. 1992 Jan;130(1):175-85. doi: 10.1093/genetics/130.1.175.

DOI:10.1093/genetics/130.1.175
PMID:1310086
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1204791/
Abstract

The molecular basis for the unusual phenotype conditioned by the waxy(Wx)-m5 Ds allele has been elucidated. Unlike most Ds alleles, Wx-m5 is phenotypically wild-type in the absence of Ac. We find that the Wx-m5 gene contains a 2-kb Ds element at -470 relative to the start of Wx transcription, representing the most 5' insertion of any transposable element allele characterized to date in plants. Despite its wild type phenotype, Wx-m5 has reduced levels of Wx enzymatic activity indicating that Ds insertion influences Wx gene expression. In the presence of Ac, Wx-m5 kernels have sectors of null expression on a wild-type background and give rise to stable wx and unstable wx-m germinal derivatives. Seventeen of 20 derivatives examined are wx-m alleles and at least 15 of these appear to result from intragenic transposition of Ds from -470 to new sites within the Wx gene. Three wx-m alleles contain two Ds elements, one at -470 and a second in Wx coding sequences. Surprisingly, only 3 out of 20 derivatives are stable wx mutants and these have sustained gross rearrangements of Wx and flanking sequences. For most other maize transposable element alleles somatic sectors and germinal derivatives usually arise following element excision or deletions of element sequences. In contrast, element insertion following intragenic transposition is apparently responsible for most of the somatic sectors and germinal derivatives of Wx-m5.

摘要

蜡质(Wx)-m5 Ds等位基因所决定的异常表型的分子基础已得到阐明。与大多数Ds等位基因不同,在没有Ac的情况下,Wx-m5在表型上是野生型的。我们发现,Wx-m5基因在相对于Wx转录起始点-470处含有一个2 kb的Ds元件,这是迄今为止在植物中所鉴定的任何转座元件等位基因中最靠近5'端的插入。尽管Wx-m5具有野生型表型,但其Wx酶活性水平降低,这表明Ds插入影响了Wx基因的表达。在有Ac存在的情况下,Wx-m5籽粒在野生型背景上有零表达的扇形区域,并产生稳定的wx和不稳定的wx-m胚性衍生物。在检测的20个衍生物中,有17个是wx-m等位基因,其中至少15个似乎是由于Ds从-470处基因内转座到Wx基因内的新位点所致。三个wx-m等位基因含有两个Ds元件,一个在-470处,另一个在Wx编码序列中。令人惊讶的是,20个衍生物中只有3个是稳定的wx突变体,并且这些突变体的Wx及其侧翼序列发生了大规模重排。对于大多数其他玉米转座元件等位基因来说,体细胞扇形区域和胚性衍生物通常是在元件切除或元件序列缺失后出现的。相比之下,基因内转座后的元件插入显然是Wx-m5的大多数体细胞扇形区域和胚性衍生物产生的原因。