The genetics of Drosophila transgenics

G Roman - Bioessays, 2004 - Wiley Online Library
Bioessays, 2004Wiley Online Library
In Drosophila, the genetic approach is still the method of choice for answering fundamental
questions on cell biology, signal transduction, development, physiology and behavior. In this
approach, a gene's function is ascertained by altering either the amount or quality of the
gene product, and then observing the consequences. The genetic approach is itself
polymorphous, encompassing new and more complex techniques that typically employ the
growing collections of transgenes. The keystone of these modern Drosophila transgenic …
Abstract
In Drosophila, the genetic approach is still the method of choice for answering fundamental questions on cell biology, signal transduction, development, physiology and behavior. In this approach, a gene's function is ascertained by altering either the amount or quality of the gene product, and then observing the consequences. The genetic approach is itself polymorphous, encompassing new and more complex techniques that typically employ the growing collections of transgenes. The keystone of these modern Drosophila transgenic techniques has been the Gal4 binary system. Recently, several new techniques have modified this binary system to offer greater control over the timing, tissue specificity and magnitude of gene expression. Additionally, the advances in post‐transcriptional gene silencing, or RNAi, have greatly expanded the ability to knockdown almost any gene's function. Regardless of the growing experimental intricacy, the application of these advances to modify gene activity still obeys the fundamental principles of genetic analysis. Several of these transgenic techniques, which offer more precise control over a gene's activity, will be reviewed here with a discussion on how they may be used for determining a gene's function. BioEssays 26:1243–1253, 2004. © 2004 Wiley Periodicals, Inc.
Wiley Online Library