生物
基因组
遗传学
基因
基因密度
基因组进化
人口
染色体
顺序装配
基因组大小
进化生物学
基因表达
社会学
人口学
转录组
作者
Ting Cui,Qing Bai,Weiqiang Yu,Dongyang Guo,Yawen Ban,Kun Chen,Ali Raza,Guohui Zhou,Qingfa Wu
出处
期刊:Genomics
[Elsevier]
日期:2023-11-01
卷期号:115 (6): 110729-110729
标识
DOI:10.1016/j.ygeno.2023.110729
摘要
Sogatella furcifera is a destructive agricultural pest causing large threats to rice production in China and Southeast Asian countries. Despite recent breakthroughs in long-read sequencing, high quality genomic data are very limited in S. furcifera. In present study, a chromosome-level assembly of the S. furcifera genome was completed (0.64 GB), comprising 15 chromosomes covered 95.04% of the estimated genome size, along with other 624 small scaffolds making up the remaining 4.96% of the genome of S. furcifera. A total of 24,669 protein-coding genes, 1211 long noncoding RNA and 7595 circular RNA transcripts were predicted in this study. Comparative genomic analysis revealed rapidly evolved genes were associated with multiple immune-related pathways in S. furcifera. Genome resequencing of 44 individuals from 12 geographic populations revealed frequent gene flow among populations. The systemic genomic analysis will provide more insights into the understanding of the immunity and evolutionary adaptation of S. furcifera.
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