Biodiversity Research Center, Academia Sinica, Taipei 115, Taiwan.
Biodiversity Program, Taiwan International Graduate Program, Academia Sinica and National Taiwan Normal University, Taipei, Taiwan.
Nucleic Acids Res. 2023 Aug 25;51(15):8035-8047. doi: 10.1093/nar/gkad647.
Obtaining sufficient genetic material from a limited biological source is currently the primary operational bottleneck in studies investigating biodiversity and genome evolution. In this study, we employed multiple displacement amplification (MDA) and Smartseq2 to amplify nanograms of genomic DNA and mRNA, respectively, from individual Caenorhabditis elegans. Although reduced genome coverage was observed in repetitive regions, we produced assemblies covering 98% of the reference genome using long-read sequences generated with Oxford Nanopore Technologies (ONT). Annotation with the sequenced transcriptome coupled with the available assembly revealed that gene predictions were more accurate, complete and contained far fewer false positives than de novo transcriptome assembly approaches. We sampled and sequenced the genomes and transcriptomes of 13 nematodes from early-branching species in Chromadoria, Dorylaimia and Enoplia. The basal Chromadoria and Enoplia species had larger genome sizes, ranging from 136.6 to 738.8 Mb, compared with those in the other clades. Nine mitogenomes were fully assembled, and displayed a complete lack of synteny to other species. Phylogenomic analyses based on the new annotations revealed strong support for Enoplia as sister to the rest of Nematoda. Our result demonstrates the robustness of MDA in combination with ONT, paving the way for the study of genome diversity in the phylum Nematoda and beyond.
从有限的生物来源中获取足够的遗传物质,目前是研究生物多样性和基因组进化的主要操作瓶颈。在这项研究中,我们分别采用多重置换扩增(MDA)和 Smartseq2 来扩增单个秀丽隐杆线虫的纳克级基因组 DNA 和 mRNA。尽管在重复区域观察到基因组覆盖度降低,但我们使用牛津纳米孔技术(ONT)生成的长读序列生成了覆盖参考基因组 98%的组装。与测序转录组进行注释,并结合可用的组装结果表明,与从头转录组组装方法相比,基因预测更准确、更完整,且假阳性更少。我们对 Chromadoria、Dorylaimia 和 Enoplia 早期分支物种的 13 个线虫进行了基因组和转录组的采样和测序。与其他分支相比,基础的 Chromadoria 和 Enoplia 物种的基因组大小更大,范围从 136.6 到 738.8 Mb。9 个线粒体基因组完全组装,与其他物种完全没有同线性。基于新注释的系统发育分析强烈支持 Enoplia 是 Nematoda 其余物种的姐妹群。我们的结果表明 MDA 与 ONT 相结合的稳健性,为研究线虫门及其他物种的基因组多样性铺平了道路。