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黑腹果蝇中雄性主导信息素的遗传分析。

A genetic analysis of male-predominant pheromones in Drosophila melanogaster.

作者信息

Scott D, Richmond R C

机构信息

Department of Biology, Indiana University, Bloomington 47405.

出版信息

Genetics. 1988 Jul;119(3):639-46. doi: 10.1093/genetics/119.3.639.

Abstract

Chemical signals from males play an important role in stimulating Drosophila melanogaster females to mate, and male-predominant pheromones may influence a female's choice of mates. Male-predominant pheromones also inhibit courtship, thereby functioning as antiaphrodisiacs. Interstrain variation in the ratio of two male-predominant pheromones (7-tricosene and 7-pentacosene) has been reported, but the genetic basis for this potentially important variation has not been examined. In a series of crosses between strains that differ radically in the amounts of 7-tricosene and 7-pentacosene, we have identified both X-linked and autosomal contributions to interstrain variation in the amounts of these compounds. The X-linked loci act as enhancers for production of the compound predominant in the strain from which the X chromosome originated. Autosomal factors for each of the two compounds appear to segregate as high vs. low, with incomplete dominance of high 7-tricosene over low, and low 7-pentacosene over high. A significant negative correlation between the quantities of 7-pentacosene and 7-tricosene in the F2 and backcross progeny, but not in the F1s or parentals, indicates linkage between autosomal loci regulating the expression of each compound. However, the phenotypic distributions of the backcross progeny indicate that additional unlinked loci are also directly involved in the production of these two hydrocarbons.

摘要

雄性果蝇发出的化学信号在刺激雌性黑腹果蝇进行交配方面发挥着重要作用,雄性占主导的信息素可能会影响雌性对配偶的选择。雄性占主导的信息素还会抑制求偶行为,从而起到抗催情剂的作用。据报道,两种雄性占主导的信息素(7-二十三碳烯和7-二十五碳烯)的比例存在品系间差异,但尚未研究这种潜在重要差异的遗传基础。在一系列7-二十三碳烯和7-二十五碳烯含量差异极大的品系间杂交实验中,我们确定了X连锁基因和常染色体基因对这些化合物含量品系间差异的贡献。X连锁基因座对源自携带该X染色体的品系中占主导的化合物的产生起到增强作用。这两种化合物各自的常染色体因子似乎以高与低的形式分离,高含量的7-二十三碳烯对低含量的呈不完全显性,低含量的7-二十五碳烯对高含量的呈不完全显性。在F2代和回交后代中,7-二十五碳烯和7-二十三碳烯的含量之间存在显著的负相关,但在F1代或亲本中不存在,这表明调控每种化合物表达的常染色体基因座之间存在连锁关系。然而,回交后代的表型分布表明,其他不连锁的基因座也直接参与了这两种碳氢化合物的产生。

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