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首页> 外文期刊>Genetics: A Periodical Record of Investigations Bearing on Heredity and Variation >GENETIC AND PHYSICAL STUDIES OF A PORTION OF THE WHITE LOCUS PARTICIPATING IN TRANSCRIPTIONAL REGULATION AND IN SYNAPSIS-DEPENDENT INTERACTIONS IN DROSOPHILA ADULT TISSUES
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GENETIC AND PHYSICAL STUDIES OF A PORTION OF THE WHITE LOCUS PARTICIPATING IN TRANSCRIPTIONAL REGULATION AND IN SYNAPSIS-DEPENDENT INTERACTIONS IN DROSOPHILA ADULT TISSUES

机译:一部分果蝇参与果蝇成年组织转录调控和突触相关相互作用的遗传和物理研究

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We have identified and sequenced the portion of the white locus affected by an idiosyncratic set of white mutant alleles (the wsp alleles). The affected white locus portion ( wsp region) extends from ca. 590 base pairs (bp) to ca. 1270 bp 5' to the apparent start site for the major white transcription unit. Based on the properties of these mutant alleles, we infer the existence of two distinct cis -acting regulatory elements in the wsp region and a third element mapping 3' to this region (3' to position ca. -670). Our analysis allows us to define the apparent position of one of the two wsp region elements with substantial precision. Examination of the DNA sequences in this region suggests that it is functionally similar to the enhancers identified in vertebrates. This same element participates in synapsis-dependent genetic interactions, suggesting a largely unexpected relationship between enhancer-like, cis -acting genetic elements and the genetic elements responsible for the synapsis-dependent genetic interactions in trans revealed by the existence of transvection effects. Our results further suggest that a presumptive regulatory locus (suppressor-of-white-spotted) regulates white transcription in adult tissues and is not involved in regulating white expression in larvae. We discuss the regulation of white expression in light of our studies. We also demonstrate unusual structures for an X-ray-induced deletion and a spontaneous deletion.
机译:我们已经确定并测序了由白色突变等位基因(wsp等位基因)的特异组影响的白色基因座部分。受影响的白色基因座部分(wsp区域)从ca延伸。 590个碱基对(bp)至ca.主要白色转录单位的明显起始位点5'处1270 bp。基于这些突变等位基因的特性,我们推断在wsp区域中存在两个不同的顺式作用调控元件,而第三个元件将3'映射到该区域(3'定位于-670)。我们的分析使我们能够非常精确地定义两个wsp区域元素之一的外观位置。检查该区域的DNA序列表明,其功能与脊椎动物中鉴定的增强子相似。该相同元素参与突触依赖性遗传相互作用,表明通过对流效应的存在揭示了增强子样,顺式作用遗传因子与负责反式中突触依赖性遗传相互作用的遗传因子之间的很大程度上出乎意料的关系。我们的结果进一步表明,推定的调节基因座(白斑抑制基因)调节成年组织中的白色转录,并且不参与调节幼虫中的白色表达。根据我们的研究,我们讨论了白色表达的调节。我们还演示了X射线诱导的删除和自发删除的不寻常的结构。

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