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利用链接读取和长读取技术从头组装橄榄实蝇(Bactrocera oleae)基因组,可最大限度减少缺口并提供出色的 Y 染色体组装。

De novo assembly of the olive fruit fly (Bactrocera oleae) genome with linked-reads and long-read technologies minimizes gaps and provides exceptional Y chromosome assembly.

机构信息

McGill University and Genome Quebec Innovation Centre, Department of Human Genetics, McGill University, Montreal, Canada.

Department of Biochemistry and Biotechnology, University of Thessaly, Biopolis, 41500, Larissa, Greece.

出版信息

BMC Genomics. 2020 Mar 30;21(1):259. doi: 10.1186/s12864-020-6672-3.

Abstract

BACKGROUND

The olive fruit fly, Bactrocera oleae, is the most important pest in the olive fruit agribusiness industry. This is because female flies lay their eggs in the unripe fruits and upon hatching the larvae feed on the fruits thus destroying them. The lack of a high-quality genome and other genomic and transcriptomic data has hindered progress in understanding the fly's biology and proposing alternative control methods to pesticide use.

RESULTS

Genomic DNA was sequenced from male and female Demokritos strain flies, maintained in the laboratory for over 45 years. We used short-, mate-pair-, and long-read sequencing technologies to generate a combined male-female genome assembly (GenBank accession GCA_001188975.2). Genomic DNA sequencing from male insects using 10x Genomics linked-reads technology followed by mate-pair and long-read scaffolding and gap-closing generated a highly contiguous 489 Mb genome with a scaffold N50 of 4.69 Mb and L50 of 30 scaffolds (GenBank accession GCA_001188975.4). RNA-seq data generated from 12 tissues and/or developmental stages allowed for genome annotation. Short reads from both males and females and the chromosome quotient method enabled identification of Y-chromosome scaffolds which were extensively validated by PCR.

CONCLUSIONS

The high-quality genome generated represents a critical tool in olive fruit fly research. We provide an extensive RNA-seq data set, and genome annotation, critical towards gaining an insight into the biology of the olive fruit fly. In addition, elucidation of Y-chromosome sequences will advance our understanding of the Y-chromosome's organization, function and evolution and is poised to provide avenues for sterile insect technique approaches.

摘要

背景

油橄榄果蝇,Bactrocera oleae,是橄榄果实农业产业中最重要的害虫。这是因为雌蝇将卵产在未成熟的果实中,孵化后幼虫以果实为食,从而破坏果实。缺乏高质量的基因组和其他基因组及转录组数据,阻碍了对果蝇生物学的理解,并提出了替代使用农药的控制方法。

结果

从实验室中饲养了超过 45 年的雄性和雌性 Demokritos 品系果蝇中提取基因组 DNA。我们使用短读长、mate-pair 和长读长测序技术,生成了一个雌雄果蝇的组合基因组组装(GenBank 登录号 GCA_001188975.2)。使用 10x Genomics 连接读取技术对雄性昆虫进行基因组 DNA 测序,然后进行 mate-pair 和长读长支架和缺口闭合,生成了一个高度连续的 489 Mb 基因组,支架 N50 为 4.69 Mb,L50 为 30 个支架(GenBank 登录号 GCA_001188975.4)。从 12 个组织和/或发育阶段生成的 RNA-seq 数据用于基因组注释。来自雄性和雌性的短读长和染色体数目的方法能够识别 Y 染色体支架,这些支架通过 PCR 得到了广泛验证。

结论

生成的高质量基因组是橄榄果实蝇研究的关键工具。我们提供了广泛的 RNA-seq 数据集和基因组注释,这对于深入了解橄榄果实蝇的生物学至关重要。此外,阐明 Y 染色体序列将有助于我们理解 Y 染色体的组织、功能和进化,并为不育昆虫技术方法提供途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/fb05/7106766/5c09ccdc9604/12864_2020_6672_Fig1_HTML.jpg

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