Zogbaum Lily, Friend Patrick G, Albertson R Craig
Bryn Mawr College, Bryn Mawr, PA, USA.
Amherst College, Amherst, MA, USA.
Mol Ecol. 2021 Feb;30(3):761-774. doi: 10.1111/mec.15766. Epub 2021 Jan 27.
Teleost gill arches are exquisitely evolved to maximize foraging efficiency, and include structures for the capture, filtering, and processing of prey. While both plasticity and a genetic basis for gill arch traits have been noted, the relative contributions of genetics and the environment in shaping these structures remains poorly understood. East African cichlids are particularly useful in this line of study due to their highly diverse and plastic feeding apparatus. Here we explore the gene-by-environmental effects on cichlid GRs by rearing pure bred species and their F hybrids in different foraging environments. We find that anatomical differences between species are dependent on the environment. The genetic architecture of these traits is also largely distinct between foraging environments. We did, however, note a few genomic "hotspots" where multiple traits map to a common region. One of these, for GR number across multiple arches, maps to the ptch1 locus, a key component of the Hedgehog (Hh) pathway that has previously been implicated in cichlid oral jaw shape and plasticity. Since Hh signalling has not previously been implicated in GR development, we explored functional roles for this pathway. Using a small molecule inhibitor in cichlids, as well as zebrafish transgenic systems, we demonstrate that Hh levels negatively regulate GR number, and are both necessary and sufficient to maintain plasticity in this trait. In all these data underscore the critical importance of the environment in determining the relationship between genotype and phenotype, and provide a molecular inroad to better understand the origins of variation in this important foraging-related trait.
硬骨鱼的鳃弓经过了精妙的进化,以最大化觅食效率,包括用于捕获、过滤和处理猎物的结构。虽然已经注意到鳃弓特征的可塑性和遗传基础,但遗传学和环境在塑造这些结构中的相对贡献仍知之甚少。东非丽鱼科鱼类因其高度多样且具有可塑性的摄食器官,在这一研究领域中特别有用。在这里,我们通过在不同的觅食环境中饲养纯种物种及其杂种F1代,来探索基因与环境对丽鱼科鱼类鳃耙(GRs)的影响。我们发现物种之间的解剖学差异取决于环境。这些特征的遗传结构在不同的觅食环境中也有很大差异。然而,我们确实注意到了一些基因组“热点”,多个特征映射到一个共同区域。其中之一,即多个鳃弓上的GR数量,映射到ptch1基因座,这是刺猬(Hh)信号通路的一个关键组成部分,此前已被证明与丽鱼科鱼类的口腔颌骨形状和可塑性有关。由于Hh信号传导以前未被证明与GR发育有关,我们探索了该信号通路的功能作用。通过在丽鱼科鱼类中使用小分子抑制剂以及斑马鱼转基因系统,我们证明Hh水平负向调节GR数量,并且对于维持该性状的可塑性既必要又充分。所有这些数据都强调了环境在决定基因型与表型关系中的至关重要性,并为更好地理解这一重要觅食相关性状变异的起源提供了分子途径。