Zoological Institute, University of Basel, Vesalgasse 1, 4051, Basel, Switzerland.
BMC Genomics. 2019 Jan 14;20(1):39. doi: 10.1186/s12864-018-5321-6.
Differential gene expression can be translated into differing phenotypic traits. Especially during embryogenesis, specific gene expression networks regulate the development of different body structures. Cichlid fishes, with their impressive phenotypic diversity and propensity to radiate, are an emerging model system in the genomics era. Here we set out to investigate gene expression throughout development in the well-studied cichlid fish Astatotilapia burtoni, native to Lake Tanganyika and its affluent rivers.
Combining RNA-sequencing from different developmental time points as well as integrating adult gene expression data, we constructed a new genome annotation for A. burtoni comprising 103,253 transcripts (stemming from 52,584 genomic loci) as well as a new reference transcriptome set. We compared our transcriptome to the available reference genome, redefining transcripts and adding new annotations. We show that about half of these transcripts have coding potential. We also characterize transcripts that are not present in the genome assembly. Next, using our newly constructed comprehensive reference transcriptome, we characterized differential gene expression through time and showed that gene expression is shifted between different body parts. We constructed a gene expression network that identified connected genes responsible for particular phenotypes and made use of it to focus on genes under potential positive selection in A. burtoni, which were implicated in fin development and vision.
We provide new genomic resources for the cichlid fish Astatotilapia burtoni, which will contribute to its further establishment as a model system. Tracing gene expression through time, we identified gene networks underlying particular functions, which will help to understand the genetic basis of phenotypic diversity in cichlids.
差异基因表达可以转化为不同的表型特征。特别是在胚胎发生过程中,特定的基因表达网络调节不同身体结构的发育。慈鲷鱼,以其令人印象深刻的表型多样性和辐射倾向,是基因组时代的新兴模式系统。在这里,我们着手研究在坦噶尼喀湖及其丰富的河流中发现的研究良好的慈鲷鱼 Astatotilapia burtoni 整个发育过程中的基因表达。
结合来自不同发育时间点的 RNA-seq 数据,并整合成年基因表达数据,我们为 A. burtoni 构建了一个新的基因组注释,包含 103,253 个转录本(源自 52,584 个基因组基因座)和一个新的参考转录组集。我们将我们的转录组与可用的参考基因组进行比较,重新定义转录本并添加新的注释。我们表明,大约一半的这些转录本具有编码潜力。我们还描述了不在基因组组装中的转录本。接下来,使用我们新构建的综合参考转录组,我们通过时间来描述差异基因表达,并表明基因表达在不同身体部位之间发生变化。我们构建了一个基因表达网络,识别出负责特定表型的相关基因,并利用它来关注 A. burtoni 中可能受到正选择的基因,这些基因与鳍的发育和视力有关。
我们为慈鲷鱼 Astatotilapia burtoni 提供了新的基因组资源,这将有助于进一步将其确立为模型系统。通过跟踪时间的基因表达,我们确定了特定功能背后的基因网络,这将有助于理解慈鲷鱼表型多样性的遗传基础。