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Molecular Genetic Dissection of the Sex-Specific and Vital Functions of the Drosophila melanogaster Sex Determination Gene fruitless

机译:果蝇性别决定基因的性别特异性和重要功能的分子遗传解剖无结果

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A multibranched hierarchy of regulatory genes controls all aspects of somatic sexual development in Drosophila melanogaster . One branch of this hierarchy is headed by the fruitless (fru) gene and functions in the central nervous system, where it is necessary for male courtship behavior as well as the differentiation of a male - specific abdominal structure, the muscle of Lawrence (MOL). A preliminary investigation of several of the mutations described here showed that the fru gene also has a sex-nonspecific vital function. The fru gene produces a complex set of transcripts through the use of four promoters and alternative splicing. Only the primary transcripts produced from the most distal (P1) promoter are sex-specifically spliced under direction of the sex-determination hierarchy. We have analyzed eight new fru mutations, created by X-ray mutagenesis and P -element excision, to try to gain insight into the relationship of specific transcript classes to specific fru functions. Males that lack the P1-derived fru transcripts show a complete absence of sexual behavior, but no other defects besides the loss of the MOL. Both males and females that have reduced levels of transcripts from the P3 promoter develop into adults but frequently die after failing to eclose. Analysis of the morphology and behavior of adult escapers showed that P3-encoded functions are required for the proper differentiation and eversion of imaginal discs. Furthermore, the reduction in the size of the neuromuscular junctions on abdominal muscles in these animals suggests that one of fru 's sex-nonspecific functions involves general aspects of neuronal differentiation. In mutants that lack all fru transcripts as well as a small number of adjacent genes, animals die at an early pupal stage, indicating that fru 's function is required only during late development. Thus, fru functions both in the sex-determination regulatory hierarchy to control male sexual behavior through sex-specific transcripts and sex-nonspecifically to control the development of imaginal discs and motorneuronal synapses during adult development through sex-nonspecific transcript classes.
机译:调节基因的多分支层次控制了果蝇体细胞性发育的所有方面。这种等级制的一个分支以无果(fru)基因为首并在中枢神经系统中起作用,在该系统中,男性求偶行为以及男性特定腹部结构(劳伦斯的肌肉)的分化是必要的。对此处描述的几种突变的初步研究表明,fru基因还具有非性别特异性的生命功能。通过使用四个启动子和选择性剪接,fru基因产生了一组复杂的转录本。在性别决定体系的指导下,仅从最远端的(P1)启动子产生的初级转录本进行了性别特异性剪接。我们已经分析了由X射线诱变和P元素切除产生的八个新的fru突变,以试图深入了解特定转录物类别与特定fru功能的关系。缺少P1来源的Fru转录本的男性表现出完全没有性行为,但是除了丧失MOL外没有其他缺陷。来自P3启动子的转录水平降低的雄性和雌性都会发育成成年,但在无法封闭后经常死亡。对成年逃脱者的形态和行为的分析表明,P3编码的功能对于虚构椎间盘的适当分化和外翻是必需的。此外,这些动物腹肌神经肌肉接头大小的减少表明,fru的性别非特异性功能之一涉及神经元分化的一般方面。在缺乏所有fru转录物以及少量相邻基因的突变体中,动物会在p早期死亡,这表明fru的功能仅在发育后期才需要。因此,fru在性别决定监管层级中既通过性别特定的转录本来控制男性的性行为,又通过性别非特定的转录本类在非成年人中通过性别非特异性地控制虚影盘和运动神经突触的发育。

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