Divisions of Human Biology and Basic Sciences, Fred Hutchinson Cancer Research Center, 1100 Fairview Avenue North, Seattle WA, 98109, USA.
Evodevo. 2014 Feb 5;5(1):5. doi: 10.1186/2041-9139-5-5.
Adaptation to a new environment can be facilitated by co-inheritance of a suite of phenotypes that are all advantageous in the new habitat. Although experimental evidence demonstrates that multiple phenotypes often map to the same genomic regions, it is challenging to determine whether phenotypes are associated due to pleiotropic effects of a single gene or to multiple tightly linked genes. In the threespine stickleback fish (Gasterosteus aculeatus), multiple phenotypes are associated with a genomic region around the gene Ectodysplasin (Eda), but only the presence of bony lateral plates has been conclusively shown to be caused by Eda.
Here, we ask whether pleiotropy or linkage is responsible for the association between lateral plates and the distribution of the neuromasts of the lateral line. We first identify a strong correlation between plate appearance and changes in the spatial distribution of neuromasts through development. We then use an Eda transgene to induce the formation of ectopic plates in low plated fish, which also results in alterations to neuromast distribution. Our results also show that other loci may modify the effects of Eda on plate formation and neuromast distribution.
Together, these results demonstrate that Eda has pleiotropic effects on at least two phenotypes, highlighting the role of pleiotropy in the genetic basis of adaptation.
通过共继承在新栖息地都有利的一系列表型,可以促进对新环境的适应。尽管实验证据表明,多种表型通常映射到相同的基因组区域,但确定表型是由于单个基因的多效性还是多个紧密连锁的基因相关联仍然具有挑战性。在三刺鱼(Gasterosteus aculeatus)中,多个表型与基因 Ectodysplasin(Eda)周围的基因组区域相关,但只有骨侧板的存在被明确证明是由 Eda 引起的。
在这里,我们询问多效性或连锁是否是侧板出现与侧线神经节分布之间关联的原因。我们首先通过发育过程中识别出侧板外观与神经节空间分布变化之间的强烈相关性。然后,我们使用 Eda 转基因在低侧板鱼中诱导异位侧板的形成,这也导致神经节分布的改变。我们的结果还表明,其他基因座可能会改变 Eda 对侧板形成和神经节分布的影响。
综上所述,这些结果表明 Eda 对至少两种表型具有多效性,突出了多效性在适应遗传基础中的作用。