Massey J H, Wittkopp P J
University of Michigan, Ann Arbor, MI, United States.
University of Michigan, Ann Arbor, MI, United States.
Curr Top Dev Biol. 2016;119:27-61. doi: 10.1016/bs.ctdb.2016.03.004. Epub 2016 Apr 25.
In Drosophila, as well as in many other plants and animals, pigmentation is highly variable both within and between species. This variability, combined with powerful genetic and transgenic tools as well as knowledge of how pigment patterns are formed biochemically and developmentally, has made Drosophila pigmentation a premier system for investigating the genetic and molecular mechanisms responsible for phenotypic evolution. In this chapter, we review and synthesize findings from a rapidly growing body of case studies examining the genetic basis of pigmentation differences in the abdomen, thorax, wings, and pupal cases within and between Drosophila species. A core set of genes, including genes required for pigment synthesis (eg, yellow, ebony, tan, Dat) as well as developmental regulators of these genes (eg, bab1, bab2, omb, Dll, and wg), emerge as the primary sources of this variation, with most genes having been shown to contribute to pigmentation differences both within and between species. In cases where specific genetic changes contributing to pigmentation divergence were identified in these genes, the changes were always located in noncoding sequences and affected cis-regulatory activity. We conclude this chapter by discussing these and other lessons learned from evolutionary genetic studies of Drosophila pigmentation and identify topics we think should be the focus of future work with this model system.
在果蝇以及许多其他动植物中,色素沉着在物种内部和物种之间都具有高度变异性。这种变异性,再加上强大的遗传和转基因工具,以及对色素模式如何在生化和发育过程中形成的了解,使得果蝇色素沉着成为研究负责表型进化的遗传和分子机制的首要系统。在本章中,我们回顾并综合了一系列快速增长的案例研究结果,这些研究考察了果蝇物种内部和之间腹部、胸部、翅膀和蛹壳色素沉着差异的遗传基础。一组核心基因,包括色素合成所需的基因(如黄色基因、乌木基因、棕褐色基因、Dat基因)以及这些基因的发育调节因子(如bab1基因、bab2基因、omb基因、Dll基因和wg基因),成为这种变异的主要来源,大多数基因已被证明在物种内部和之间的色素沉着差异中都起作用。在这些基因中确定了导致色素沉着差异的特定遗传变化的情况下,这些变化总是位于非编码序列中并影响顺式调节活性。我们通过讨论从果蝇色素沉着的进化遗传学研究中学到的这些以及其他经验教训来结束本章,并确定我们认为应该是这个模型系统未来工作重点的主题。