Tassone Erica E, Geib Scott M, Hall Brian, Fabrick Jeffrey A, Brent Colin S, Hull J Joe
Plant Physiology and Genetics Research Unit, US Arid Land Agricultural Research Center, USDA Agricultural Research Services, Maricopa, AZ USA.
Tropical Crop and Commodity Protection Research Unit, Daniel K Inouye Pacific Basin Agricultural Research Center, USDA Agricultural Research Services, Hilo, HI USA.
Gigascience. 2016 Jan 28;5:6. doi: 10.1186/s13742-016-0109-6. eCollection 2016.
The plant bug Lygus hesperus Knight is a polyphagous pest of many economically important crops. Despite its pest status, little is known about the molecular mechanisms responsible for much of the biology of this species. Earlier Lygus transcriptome assemblies were limited by low read depth, or because they focused on specific conditions. To generate a more comprehensive transcriptome, we supplemented previous datasets with new reads corresponding to specific tissues (heads, antennae, and male reproductive tissues). This transcriptome augments current Lygus molecular resources and provides the foundational knowledge critical for future comparative studies.
An expanded, Trinity-based de novo transcriptome assembly for L. hesperus was generated using previously published whole body Illumina data, supplemented with 293 million bp of new raw sequencing data corresponding to five tissue-specific cDNA libraries and 11 Illumina sequencing runs. The updated transcriptome consists of 22,022 transcripts (average length of 2075 nt), 62 % of which contain complete open reading frames. Significant coverage of the BUSCO (benchmarking universal single-copy orthologs) dataset and robust metrics indicate that the transcriptome is a quality assembly with a high degree of completeness. Initial assessment of the new assembly's utility revealed that the length and abundance of transcripts predicted to regulate insect physiology and chemosensation have improved, compared with previous L. hesperus assemblies.
This transcriptome represents a significant expansion of Lygus transcriptome data, and improves foundational knowledge about the molecular mechanisms underlying L. hesperus biology. The dataset is publically available in NCBI and GigaDB as a resource for researchers.
牧草盲蝽是多种具有重要经济价值作物的多食性害虫。尽管它具有害虫地位,但对于该物种许多生物学特性背后的分子机制却知之甚少。早期的牧草盲蝽转录组组装受到读取深度低的限制,或者是因为它们专注于特定条件。为了生成更全面的转录组,我们用对应特定组织(头部、触角和雄性生殖组织)的新读取数据补充了先前的数据集。这个转录组增加了当前牧草盲蝽的分子资源,并为未来的比较研究提供了至关重要的基础知识。
利用先前发表的全身体Illumina数据,补充对应五个组织特异性cDNA文库的2.93亿碱基对新原始测序数据和11次Illumina测序运行,生成了一个基于Trinity的扩展型牧草盲蝽从头转录组组装。更新后的转录组由22,022个转录本组成(平均长度为2075 nt),其中62%包含完整的开放阅读框。BUSCO(基准通用单拷贝直系同源物)数据集的显著覆盖和稳健指标表明该转录组是一个具有高度完整性的高质量组装。对新组装实用性的初步评估显示,与先前的牧草盲蝽组装相比,预测调控昆虫生理和化学感受的转录本的长度和丰度有所改善。
这个转录组代表了牧草盲蝽转录组数据的显著扩展,并增进了对牧草盲蝽生物学背后分子机制的基础知识。该数据集在NCBI和GigaDB上公开提供,作为研究人员的资源。