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利用单一样本的长读测序技术对鸟类虱 Brueelia nebulosa 及其相关物种进行基因组草图组装。

Draft genome assemblies of the avian louse Brueelia nebulosa and its associates using long-read sequencing from an individual specimen.

机构信息

Department of Biological Sciences, Arkansas State University, 2713 Pawnee Street, Jonesboro, AR 72401, USA.

Pacific Biosciences, 1305 O'Brien Drive, Menlo Park, CA 94025, USA.

出版信息

G3 (Bethesda). 2023 Apr 11;13(4). doi: 10.1093/g3journal/jkad030.

Abstract

Sequencing high molecular weight (HMW) DNA with long-read and linked-read technologies has promoted a major increase in more complete genome sequences for nonmodel organisms. Sequencing approaches that rely on HMW DNA have been limited to larger organisms or pools of multiple individuals, but recent advances have allowed for sequencing from individuals of small-bodied organisms. Here, we use HMW DNA sequencing with PacBio long reads and TELL-Seq linked reads to assemble and annotate the genome from a single individual feather louse (Brueelia nebulosa) from a European Starling (Sturnus vulgaris). We assembled a genome with a relatively high scaffold N50 (637 kb) and with BUSCO scores (96.1%) comparable to louse genomes assembled from pooled individuals. We annotated a number of genes (10,938) similar to the human louse (Pediculus humanus) genome. Additionally, calling phased variants revealed that the Brueelia genome is more heterozygous (∼1%) then expected for a highly obligate and dispersal-limited parasite. We also assembled and annotated the mitochondrial genome and primary endosymbiont (Sodalis) genome from the individual louse, which showed evidence for heteroplasmy in the mitogenome and a reduced genome size in the endosymbiont compared to its free-living relative. Our study is a valuable demonstration of the capability to obtain high-quality genomes from individual small, nonmodel organisms. Applying this approach to other organisms could greatly increase our understanding of the diversity and evolution of individual genomes.

摘要

使用长读长和连接读取技术对高分子量 (HMW) DNA 进行测序,极大地促进了非模式生物更完整基因组序列的产生。依赖 HMW DNA 的测序方法仅限于较大的生物体或多个个体的混合物,但最近的进展允许从小体型生物体的个体中进行测序。在这里,我们使用 PacBio 长读长和 TELL-Seq 连接读取来组装和注释来自一只欧洲椋鸟(Sturnus vulgaris)上的单个羽毛虱(Brueelia nebulosa)的基因组。我们组装了一个具有相对较高支架 N50(637 kb)的基因组,并且具有与从个体混合物中组装的虱基因组相当的 BUSCO 分数(96.1%)。我们注释了许多与人体虱(Pediculus humanus)基因组相似的基因(10,938 个)。此外,对相位变异的调用表明,与高度专性和扩散受限的寄生虫相比,Brueelia 基因组的杂合度更高(约 1%)。我们还组装和注释了个体虱的线粒体基因组和主要内共生体(Sodalis)基因组,该基因组显示在线粒体基因组中存在异质体,并且内共生体的基因组大小与自由生活的相关物相比有所减少。我们的研究是从个体小非模式生物中获得高质量基因组的能力的宝贵展示。将这种方法应用于其他生物体可以极大地提高我们对个体基因组多样性和进化的理解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b23f/10085802/8875784c3f66/jkad030f1.jpg

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