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1
Partial revertants of the transposable element-associated suppressible allele white-apricot in Drosophila melanogaster: structures and responsiveness to genetic modifiers.黑腹果蝇中转座元件相关的可抑制等位基因白杏色的部分回复突变体:结构及对遗传修饰因子的反应性
Genetics. 1988 Feb;118(2):221-34. doi: 10.1093/genetics/118.2.221.
2
Characterization of enhancer-of-white-apricot in Drosophila melanogaster.黑腹果蝇中白杏色增强子的特性分析
Genetics. 1990 Dec;126(4):1061-9. doi: 10.1093/genetics/126.4.1061.
3
A detailed developmental and structural study of the transcriptional effects of insertion of the Copia transposon into the white locus of Drosophila melanogaster.对Copia转座子插入黑腹果蝇白色基因座的转录效应进行的详细发育和结构研究。
Genetics. 1985 Nov;111(3):495-515. doi: 10.1093/genetics/111.3.495.
4
The suppressor of forked locus in Drosophila melanogaster: genetic and molecular analyses.黑腹果蝇中叉状基因座的抑制因子:遗传与分子分析
Genetica. 1992;85(3):185-203. doi: 10.1007/BF00132271.
5
Interactions among modifiers of retrotransposon-induced alleles of the white locus of Drosophila melanogaster.
Genet Res. 1990 Jun;55(3):141-51. doi: 10.1017/s0016672300025453.
6
Excision of copia element in a revertant of the white-apricot mutation of Drosophila melanogaster leaves behind one long-terminal repeat.在黑腹果蝇白眼杏色突变体的回复体中,copia元件的切除留下了一个长末端重复序列。
Mol Gen Genet. 1985;199(1):1-6. doi: 10.1007/BF00327501.
7
Interaction of the Enhancer of white-apricot with transposable element alleles at the white locus in Drosophila melanogaster.白杏色增强子与黑腹果蝇白色基因座上转座元件等位基因的相互作用。
Genetics. 1989 May;122(1):129-38. doi: 10.1093/genetics/122.1.129.
8
Molecular cloning and genetic analysis of the suppressor-of-white-apricot locus from Drosophila melanogaster.黑腹果蝇白杏色抑制基因座的分子克隆与遗传分析
Mol Cell Biol. 1987 Jul;7(7):2498-505. doi: 10.1128/mcb.7.7.2498-2505.1987.
9
Insertion of a copia element 5' to the Drosophila melanogaster alcohol dehydrogenase gene (adh) is associated with altered developmental and tissue-specific patterns of expression.在果蝇黑腹果蝇乙醇脱氢酶基因(adh)5'端插入一个copia元件,与发育和组织特异性表达模式的改变有关。
Genetics. 1989 Apr;121(4):787-94. doi: 10.1093/genetics/121.4.787.
10
A copy of the copia transposable element is very tightly linked to the Wa allele at the white locus of D. melanogaster.在黑腹果蝇的白眼基因座上,copia转座因子的一个拷贝与Wa等位基因紧密连锁。
Cell. 1981 Sep;25(3):705-11. doi: 10.1016/0092-8674(81)90177-x.

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The candidate splicing factor Sfswap regulates growth and patterning of inner ear sensory organs.候选剪接因子 Sfswap 调节内耳感觉器官的生长和形态发生。
PLoS Genet. 2014 Jan;10(1):e1004055. doi: 10.1371/journal.pgen.1004055. Epub 2014 Jan 2.
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A sex-influenced modifier in Drosophila that affects a broad spectrum of target loci including the histone repeats.果蝇中一种影响广泛靶基因座(包括组蛋白重复序列)的性别影响修饰因子。
Genetics. 1997 Jul;146(3):903-17. doi: 10.1093/genetics/146.3.903.
3
Characterization of a sex-influenced modifier of gene expression and suppressor of position-effect variegation in Drosophila.果蝇中基因表达的性别影响修饰因子及位置效应斑驳抑制因子的表征
Mol Gen Genet. 1996 Mar 20;250(5):601-13. doi: 10.1007/BF02174448.
4
An eye imaginal disc-specific transcriptional enhancer in the long terminal repeat of the tom retrotransposon is responsible for eye morphology mutations of Drosophila ananassae.汤姆反转录转座子长末端重复序列中的一个眼成虫盘特异性转录增强子导致了拟果蝇的眼形态突变。
Mol Gen Genet. 1996 May 23;251(2):161-6. doi: 10.1007/BF02172914.
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6
Species-specific signals for the splicing of a short Drosophila intron in vitro.体外剪接果蝇短内含子的物种特异性信号
Mol Cell Biol. 1993 Feb;13(2):1104-18. doi: 10.1128/mcb.13.2.1104-1118.1993.
7
Transcriptional activation of the Drosophila melanogaster glucose-6-phosphate dehydrogenase gene by insertion of defective P elements.通过插入缺陷型P因子激活果蝇葡萄糖-6-磷酸脱氢酶基因的转录
Mol Gen Genet. 1993 Dec;241(5-6):637-46. doi: 10.1007/BF00279906.
8
Effects of transposable elements on the expression of the forked gene of Drosophila melanogaster.转座元件对黑腹果蝇叉毛基因表达的影响。
Genetics. 1993 Oct;135(2):507-26. doi: 10.1093/genetics/135.2.507.
9
Intron definition in splicing of small Drosophila introns.果蝇小内含子剪接中的内含子定义
Mol Cell Biol. 1994 May;14(5):3434-45. doi: 10.1128/mcb.14.5.3434-3445.1994.
10
Mosaic suppressor, a gene in Drosophila that modifies retrotransposon expression and interacts with zeste.镶嵌抑制因子,果蝇中的一种基因,可调节逆转录转座子的表达并与zeste相互作用。
Genetics. 1994 Feb;136(2):573-83. doi: 10.1093/genetics/136.2.573.

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Transcription of the white locus in Drosophila melanogaster.果蝇中白色基因座的转录。
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The nature of unstable insertion mutations and reversions in the locus cut of Drosophila melanogaster: molecular mechanism of transposition memory.果蝇黑素体切割基因座位中不稳定插入突变和回复突变的本质:转座记忆的分子机制。
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Molecular cloning of the white locus region of Drosophila melanogaster using a large transposable element.利用一个大的可转座元件对黑腹果蝇的白区位点区域进行分子克隆。
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Transformation of white locus DNA in drosophila: dosage compensation, zeste interaction, and position effects.果蝇中白色基因座DNA的转化:剂量补偿、朱红色基因相互作用及位置效应
Cell. 1984 Feb;36(2):469-81. doi: 10.1016/0092-8674(84)90240-x.
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Vectors for P element-mediated gene transfer in Drosophila.用于果蝇中P因子介导的基因转移的载体。
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The effect of chromosomal position on the expression of the Drosophila xanthine dehydrogenase gene.染色体位置对果蝇黄嘌呤脱氢酶基因表达的影响。
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Drosophila melanogaster mutations suppressible by the suppressor of Hairy-wing are insertions of a 7.3-kilobase mobile element.可被毛翅抑制子抑制的黑腹果蝇突变是一个7.3千碱基移动元件的插入。
Proc Natl Acad Sci U S A. 1983 Mar;80(6):1678-82. doi: 10.1073/pnas.80.6.1678.

黑腹果蝇中转座元件相关的可抑制等位基因白杏色的部分回复突变体:结构及对遗传修饰因子的反应性

Partial revertants of the transposable element-associated suppressible allele white-apricot in Drosophila melanogaster: structures and responsiveness to genetic modifiers.

作者信息

Mount S M, Green M M, Rubin G M

机构信息

Department of Biochemistry, University of California, Berkeley 94720.

出版信息

Genetics. 1988 Feb;118(2):221-34. doi: 10.1093/genetics/118.2.221.

DOI:10.1093/genetics/118.2.221
PMID:2834265
原文链接:https://pmc.ncbi.nlm.nih.gov/articles/PMC1203276/
Abstract

The eye color phenotype of white-apricot (wa), a mutant allele of the white locus caused by the insertion of the transposable element copia into a small intron, is suppressed by the extragenic suppressor suppressor-of-white-apricot (su(wa] and enhanced by the extragenic enhancers suppressor-of-forked su(f] and Enhancer-of-white-apricot (E(wa]. Derivatives of wa have been analyzed molecularly and genetically in order to correlate the structure of these derivatives with their response to modifiers. Derivatives in which the copia element is replaced precisely by a solo long terminal repeat (sLTR) were generated in vitro and returned to the germline by P-element mediated transformation; flies carrying this allele within a P transposon show a nearly wild-type phenotype and no response to either su(f) or su(wa). In addition, eleven partial phenotypic revertants of wa were analyzed. Of these, one appears to be a duplication of a large region which includes wa, three are new alleles of su(wa), two are sLTR derivatives whose properties confirm results obtained using transformation, and five are secondary insertions into the copia element within wa. One of these, waR84h, differs from wa by the insertion of the most 3' 83 nucleotides of the I factor. The five insertion derivatives show a variety of phenotypes and modes of interaction with su[f) and su(wa). The eye pigmentation of waR84h is affected by su(f) and E(wa), but not su(wa). These results demonstrate that copia (as opposed to the interruption of white sequences) is essential for the wa phenotype and its response to genetic modifiers, and that there are multiple mechanisms for the alteration of the wa phenotype by modifiers.

摘要

白眼 - 杏色眼(wa)是白眼基因座的一个突变等位基因,由转座元件copia插入一个小内含子引起,其眼色表型受到基因外抑制子白眼 - 杏色眼抑制因子(su(wa))的抑制,并被基因外增强子叉状抑制因子抑制子(su(f))和白眼 - 杏色眼增强子(E(wa))增强。为了将这些衍生物的结构与其对修饰因子的反应相关联,对wa的衍生物进行了分子和遗传分析。通过体外产生copia元件被单个长末端重复序列(sLTR)精确取代的衍生物,并通过P因子介导的转化使其回到种系;携带P转座子内该等位基因的果蝇表现出近乎野生型的表型,并且对su(f)或su(wa)均无反应。此外,分析了wa的11个部分表型回复突变体。其中,一个似乎是包含wa的大片段重复,三个是su(wa)的新等位基因,两个是sLTR衍生物,其特性证实了使用转化获得的结果,五个是插入到wa内copia元件中的二次插入。其中之一,waR84h,与wa的不同之处在于插入了I因子最3'端的83个核苷酸。这五个插入衍生物表现出多种表型以及与su(f)和su(wa)的相互作用模式。waR84h的眼色素沉着受su(f)和E(wa)影响,但不受su(wa)影响。这些结果表明,copia(与白眼序列的中断相反)对于wa表型及其对遗传修饰因子的反应至关重要,并且修饰因子改变wa表型有多种机制。