Bloomquist R F, Fowler T E, Sylvester J B, Miro R J, Streelman J T
Georgia Institute of Technology, School of Biological Sciences and Institute for Bioengineering and Bioscience, Atlanta, GA, USA.
Medical College of Georgia, School of Dentistry, Augusta, GA, USA.
BMC Dev Biol. 2017 Feb 3;17(1):3. doi: 10.1186/s12861-017-0146-0.
Lake Malawi cichlids represent one of a growing number of vertebrate models used to uncover the genetic and developmental basis of trait diversity. Rapid evolutionary radiation has resulted in species that share similar genomes but differ markedly in phenotypes including brains and behavior, nuptial coloration and the craniofacial skeleton. Research has begun to identify the genes, as well as the molecular and developmental pathways that underlie trait divergence.
We assemble a compendium of gene expression for Lake Malawi cichlids, across pharyngula (the phylotypic stage) and larval stages of development, encompassing hundreds of gene transcripts. We chart patterns of expression in Bone morphogenetic protein (BMP), Fibroblast growth factor (FGF), Hedgehog (Hh), Notch and Wingless (Wnt) signaling pathways, as well as genes involved in neurogenesis, calcium and endocrine signaling, stem cell biology, and numerous homeobox (Hox) factors-in three planes using whole-mount in situ hybridization. Because of low sequence divergence across the Malawi cichlid assemblage, the probes we employ are broadly applicable in hundreds of species. We tabulate gene expression across general tissue domains, and highlight examples of unexpected expression patterns.
On the heels of recently published genomes, this compendium of developmental gene expression in Lake Malawi cichlids provides a valuable resource for those interested in the relationship between evolution and development.
马拉维湖丽鱼科鱼类是越来越多用于揭示性状多样性的遗传和发育基础的脊椎动物模型之一。快速的进化辐射导致了一些物种,它们拥有相似的基因组,但在包括大脑和行为、婚姻色和颅面骨骼等表型上存在显著差异。研究已经开始确定导致性状差异的基因以及分子和发育途径。
我们汇编了马拉维湖丽鱼科鱼类在咽胚期(系统发育型阶段)和幼虫发育阶段的基因表达简编,涵盖了数百个基因转录本。我们使用全胚胎原位杂交技术,在三个平面上绘制了骨形态发生蛋白(BMP)、成纤维细胞生长因子(FGF)、刺猬蛋白(Hh)、Notch和无翅型(Wnt)信号通路,以及参与神经发生、钙和内分泌信号传导、干细胞生物学和众多同源框(Hox)因子的基因的表达模式。由于马拉维湖丽鱼科鱼类群体的序列差异较小,我们使用的探针广泛适用于数百个物种。我们列出了一般组织区域的基因表达情况,并突出了意外表达模式的例子。
继最近公布的基因组之后,这份马拉维湖丽鱼科鱼类发育基因表达简编为那些对进化与发育之间关系感兴趣的人提供了宝贵的资源。