Sim Sheina B, Calla Bernarda, Hall Brian, DeRego Theodore, Geib Scott M
Tropical Crop and Commodity Protection Research Unit, Daniel K. Inouye US Pacific Basin Agricultural Research Center, USDA Agricultural Research Services, Hilo, HI USA ; Department of Plant and Environmental Protection Sciences, University of Hawaii, Manoa, Honolulu, HI USA.
Tropical Crop and Commodity Protection Research Unit, Daniel K. Inouye US Pacific Basin Agricultural Research Center, USDA Agricultural Research Services, Hilo, HI USA.
Gigascience. 2015 Mar 31;4:14. doi: 10.1186/s13742-015-0053-x. eCollection 2015.
Bactrocera cucurbitae is a serious global agricultural pest. Basic genomic information is lacking for this species, and this would be useful to inform methods of control, damage mitigation, and eradication efforts. Here, we have sequenced, assembled, and annotated a comprehensive transcriptome for a mass-rearing sexing strain of this species. This forms a foundational genomic and transcriptomic resource that can be used to better understand the physiology and biochemistry of this insect as well as being a useful tool for population genetics.
A transcriptome assembly was constructed containing 17,654 transcript isoforms derived from 10,425 unigenes. This transcriptome size is similar to reports from other Tephritid species and probably includes about 70-80% of the protein-coding genes in the genome. The dataset is publicly available in NCBI and GigaDB as a resource for researchers.
Foundational knowledge on the protein-coding genes in B. cucurbitae will lead to improved resources for this species. Through comparison with a model system such as Drosophila as well as a growing number of related Tephritid transcriptomes, improved strategies can be developed to control this pest.
南瓜实蝇是一种严重的全球农业害虫。该物种缺乏基础基因组信息,而这些信息对于指导防治方法、减轻损害和根除工作将是有用的。在此,我们对该物种的一个大规模饲养的性别鉴定品系进行了测序、组装和注释,构建了一个全面的转录组。这形成了一个基础基因组和转录组资源,可用于更好地理解这种昆虫的生理和生化过程,也是群体遗传学的一个有用工具。
构建了一个转录组组装体,包含来自10,425个单基因的17,654个转录本异构体。这个转录组大小与其他实蝇科物种的报道相似,可能包含了基因组中约70-80%的蛋白质编码基因。该数据集已作为研究资源在NCBI和GigaDB上公开提供。
关于南瓜实蝇蛋白质编码基因的基础知识将为该物种带来更好的资源。通过与果蝇等模式系统以及越来越多相关实蝇科转录组进行比较,可以制定出更好的策略来控制这种害虫。