Einstein Center for Neurosciences, NeuroCure Cluster of Excellence, Charité - Universitätsmedizin Berlin, Charitéplatz 1, 10117, Berlin, Germany.
Sci Data. 2019 Aug 26;6(1):156. doi: 10.1038/s41597-019-0161-z.
Studying neuronal circuits at cellular resolution is very challenging in vertebrates due to the size and optical turbidity of their brains. Danionella translucida, a close relative of zebrafish, was recently introduced as a model organism for investigating neural network interactions in adult individuals. Danionella remains transparent throughout its life, has the smallest known vertebrate brain and possesses a rich repertoire of complex behaviours. Here we sequenced, assembled and annotated the Danionella translucida genome employing a hybrid Illumina/Nanopore read library as well as RNA-seq of embryonic, larval and adult mRNA. We achieved high assembly continuity using low-coverage long-read data and annotated a large fraction of the transcriptome. This dataset will pave the way for molecular research and targeted genetic manipulation of this novel model organism.
由于脊椎动物大脑的大小和光散射特性,在细胞分辨率水平上研究神经元回路非常具有挑战性。Danionella translucida 是斑马鱼的近亲,最近被引入作为研究成年个体神经网络相互作用的模式生物。Danionella 在其整个生命周期中保持透明,具有已知最小的脊椎动物大脑,并具有丰富的复杂行为 repertoire。在这里,我们使用混合 Illumina/Nanopore 读文库以及胚胎、幼虫和成年 mRNA 的 RNA-seq 测序、组装和注释了 Danionella translucida 基因组。我们使用低覆盖度的长读数据实现了高组装连续性,并注释了转录组的很大一部分。这个数据集将为这个新型模式生物的分子研究和靶向遗传操作铺平道路。