Wu Jun, Li Guomeng, Lin Zhimou, Zhang Yangzhi, Yu Wenyuan, Hu Rong, Zhan Shuai, Chen Yazhou
Hubei Hongshan Laboratory, Wuhan, 430070, China.
Hubei Insect Resources Utilization and Sustainable Pest Management Key Laboratory, College of Plant Science and Technology, Huazhong Agricultural University, Wuhan, 430070, China.
Sci Data. 2025 Jan 28;12(1):167. doi: 10.1038/s41597-025-04501-2.
The cabbage aphid, Brevicoryne brassicae, is a major pest on Brassicaceae plants, causing significant yield losses annually. However, the lack of genomic resources has hindered progress in understanding this pest at the molecular level. Here, we present a high-quality, chromosomal-level genome assembly for B. brassicae, based on PacBio HiFi long-read sequencing and Hi-C data. The final assembled genome size was 429.99 Mb, with a scaffold N50 of 93.31 Mb. Notably, 96.19% of the assembled sequences were anchored to eight chromosomes. The genome covered 99.24% of BUSCO genes and 95.16% of CEGMA genes, indicating a high level of completeness. By integrating high-coverage transcriptome data, we annotated 22,671 protein-coding genes and 3,594 lncRNA genes. Preliminary comparative genomic analyses focused on genes related to host colonization, such as chemosensory- and detoxification-related genes, as well as cross-kingdom lncRNA Ya. In summary, this study presents a contiguous and complete genome for B. brassicae, which will advance our understanding of the molecular mechanisms underlying its host adaptation, pest behavior, and interaction with Brassicaceae plants.
甘蓝蚜(Brevicoryne brassicae)是十字花科植物的主要害虫,每年造成重大产量损失。然而,基因组资源的缺乏阻碍了在分子水平上对这种害虫的了解。在此,我们基于PacBio HiFi长读长测序和Hi-C数据,为甘蓝蚜提供了一个高质量的染色体水平基因组组装。最终组装的基因组大小为429.99 Mb,支架N50为93.31 Mb。值得注意的是,96.19%的组装序列被锚定到八条染色体上。该基因组覆盖了99.24%的BUSCO基因和95.16%的CEGMA基因,表明完整性很高。通过整合高覆盖度转录组数据,我们注释了22,671个蛋白质编码基因和3,594个lncRNA基因。初步的比较基因组分析集中在与宿主定殖相关的基因上,如化学感应和解毒相关基因,以及跨界lncRNA Ya。总之,本研究为甘蓝蚜提供了一个连续且完整的基因组,这将推动我们对其宿主适应性背后的分子机制、害虫行为以及与十字花科植物相互作用的理解。