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利用高保真测序技术进行骡鸭基因组的单倍型解析组装。

Haplotype-resolved assembly of the mule duck genome using high-fidelity sequencing technology.

机构信息

College of Life Science, Inner Mongolia Agricultural University, Hohhot, China.

Annoroad Gene Technology Co., Ltd, Beijing, China.

出版信息

PLoS One. 2024 Jul 1;19(7):e0305914. doi: 10.1371/journal.pone.0305914. eCollection 2024.

Abstract

Mule duck is vitally important to the production of global duck meat. Here, we present two high-quality haplotypes of a female mule duck (haplotype 1 (H1):1.28 Gb, haplotype 2 (H2): 1.40 Gb). The continuity (H1: contig N50 = 14.90 Mb, H2: contig N50 = 15.70 Mb) and completeness (BUSCO: H1 = 96.9%, H2 = 97.3%) are substantially better than those of other duck genomes. We detected the structural variations (SVs) in H1 and H2. We observed a positive correlation between autosome length and the number of SVs. Z chromosome was some deficient in deletions and insertions, but W chromosome was some excessive. A total of 1,451 genes were haplotype specific expression (HSEs). Among them, 737 specifically expressed in H1, and 714 specifically expressed in H2. We found that H1 and H2 HSEs tended to be involved in similar biological processes, such as myometrial relaxation and contraction pathways, muscle structure development and phosphorylation. Our haplotype-resolved genome assembly provides a powerful platform for future functional genomics, molecular breeding, and genome editing in mule duck.

摘要

骡鸭对全球鸭肉生产至关重要。在这里,我们呈现了两个雌性骡鸭的高质量单倍型(单倍型 1 (H1):1.28 Gb,单倍型 2 (H2):1.40 Gb)。连续性(H1:contig N50 = 14.90 Mb,H2:contig N50 = 15.70 Mb)和完整性(BUSCO:H1 = 96.9%,H2 = 97.3%)明显优于其他鸭基因组。我们检测了 H1 和 H2 中的结构变异(SVs)。我们观察到常染色体长度与 SV 数量之间存在正相关。Z 染色体在缺失和插入方面有些不足,但 W 染色体则有些过多。共有 1451 个基因具有单倍型特异性表达(HSEs)。其中,737 个基因在 H1 中特异性表达,714 个基因在 H2 中特异性表达。我们发现 H1 和 H2 的 HSEs 倾向于参与相似的生物学过程,如子宫肌松弛和收缩途径、肌肉结构发育和磷酸化。我们的单倍型解析基因组组装为未来的功能基因组学、分子育种和骡鸭基因组编辑提供了强大的平台。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2faf/11216606/c4d369251547/pone.0305914.g001.jpg

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