White-Cooper Helen
School of Biosciences; Cardiff University; Cardiff UK.
Spermatogenesis. 2012 Jan 1;2(1):11-22. doi: 10.4161/spmg.19088.
The Drosophila testis has numerous advantages for the study of basic cellular processes, as production of sperm requires a highly orchestrated and complex combination of morphological changes and developmentally regulated transitions. Experimental genetics using Drosophila melanogaster has advanced dramatically with the advent of systems for ectopic expression of genetic elements in specific cells. However the genetic tools used in Drosophila research have rarely been generated with the testes in mind, and the utility of relatively few systems has been documented for this tissue. Here I will summarize ectopic expression systems that are known to work for the testis, and provide advice for selection of the most appropriate expression system in specific experimental situations.
果蝇睾丸对于研究基本细胞过程具有诸多优势,因为精子的产生需要形态变化和发育调控转变的高度协调且复杂的组合。随着在特定细胞中异位表达遗传元件的系统的出现,利用黑腹果蝇进行的实验遗传学取得了巨大进展。然而,果蝇研究中使用的遗传工具很少是针对睾丸设计的,并且针对该组织记录在案的可用系统相对较少。在这里,我将总结已知对睾丸有效的异位表达系统,并为在特定实验情况下选择最合适的表达系统提供建议。