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多食性害虫墨西哥按实蝇(双翅目:实蝇科)的染色体水平基因组为按实蝇属的性染色体进化提供了见解。

Chromosome-scale genome of the polyphagous pest Anastrepha ludens (Diptera: Tephritidae) provides insights on sex chromosome evolution in Anastrepha.

作者信息

Congrains Carlos, Sim Sheina B, Paulo Daniel F, Corpuz Renee L, Kauwe Angela N, Simmonds Tyler J, Simpson Sheron A, Scheffler Brian E, Geib Scott M

机构信息

U.S. Department of Agriculture-Agricultural Research Service, Daniel K. Inouye U.S. Pacific Basin Agricultural Research Center, Tropical Pest Genetics and Molecular Biology Research Unit, Hilo, HI 96720, USA.

Department of Plant and Environmental Protection Services, University of Hawaii at Manoa, Honolulu, HI 96822, USA.

出版信息

G3 (Bethesda). 2024 Oct 4;14(12). doi: 10.1093/g3journal/jkae239.

Abstract

The Mexican fruit fly, Anastrepha ludens, is a polyphagous true fruit fly (Diptera: Tephritidae) considered one of the most serious insect pests in Central and North America to various economically relevant fruits. Despite its agricultural relevance, a high-quality genome assembly has not been reported. Here, we described the generation of a chromosome-level genome for the A. ludens using a combination of PacBio high fidelity long-reads and chromatin conformation capture sequencing data. The final assembly consisted of 140 scaffolds (821 Mb, N50 = 131 Mb), containing 99.27% complete conserved orthologs (BUSCO) for Diptera. We identified the sex chromosomes using three strategies: 1) visual inspection of Hi-C contact map and coverage analysis using the HiFi reads, 2) synteny with Drosophila melanogaster, and 3) the difference in the average read depth of autosomal versus sex chromosomal scaffolds. The X chromosome was found in one major scaffold (100 Mb) and eight smaller contigs (1.8 Mb), and the Y chromosome was recovered in one large scaffold (6.1 Mb) and 35 smaller contigs (4.3 Mb). Sex chromosomes and autosomes showed considerable differences of transposable elements and gene content. Moreover, evolutionary rates of orthologs of A. ludens and Anastrepha obliqua revealed a faster evolution of X-linked, compared to autosome-linked, genes, consistent with the faster-X effect, leading us to new insights on the evolution of sex chromosomes in this diverse group of flies. This genome assembly provides a valuable resource for future evolutionary, genetic, and genomic translational research supporting the management of this important agricultural pest.

摘要

墨西哥果蝇(Anastrepha ludens)是一种多食性实蝇(双翅目:实蝇科),被认为是中美洲和北美洲对多种经济相关水果危害最严重的害虫之一。尽管其与农业密切相关,但尚未有高质量的基因组组装报道。在此,我们描述了利用PacBio高保真长读长和染色质构象捕获测序数据相结合的方法,为墨西哥果蝇生成染色体水平基因组的过程。最终组装结果由140个支架(821 Mb,N50 = 131 Mb)组成,包含双翅目99.27%的完整保守直系同源基因(BUSCO)。我们使用三种策略鉴定性染色体:1)通过Hi-C接触图谱的视觉检查和利用HiFi读段进行覆盖度分析;2)与黑腹果蝇的共线性分析;3)常染色体与性染色体支架平均读深的差异。X染色体存在于一个主要支架(100 Mb)和八个较小的重叠群(1.8 Mb)中,Y染色体存在于一个大支架(6.1 Mb)和35个较小的重叠群(4.3 Mb)中。性染色体和常染色体在转座元件和基因含量上表现出显著差异。此外,墨西哥果蝇和斜纹果实蝇直系同源基因的进化速率显示,与常染色体连锁基因相比,X连锁基因进化更快,这与快X效应一致,为我们对这一多样果蝇群体中性染色体的进化提供了新的见解。这种基因组组装为未来支持对这种重要农业害虫进行管理的进化、遗传和基因组转化研究提供了宝贵资源。

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