黄莺(Setophaga petechia)高度连续的基因组组装。

IF 3 2区 生物学 Q2 EVOLUTIONARY BIOLOGY
Whitney L E Tsai, Merly Escalona, Kimball L Garrett, Ryan S Terrill, Ruta Sahasrabudhe, Oanh Nguyen, Eric Beraut, William Seligmann, Colin W Fairbairn, Ryan J Harrigan, John E McCormack, Michael E Alfaro, Thomas B Smith, Rachael A Bay
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引用次数: 0

摘要

黄莺(Setophaga petechia)是新大陆莺科(Parulidae)的一种小型鸣禽,在广泛分布的地区表现出表型和生态差异,对加州的河岸栖息地保护非常重要。在这里,我们展示了一个来自加利福尼亚南部的经鉴定的雌性黄莺的高质量从头基因组组装。利用 HiFi 长读数和 Omni-C 近距离测序技术,我们生成了一个 1.22 Gb 的组装体,其中包括 687 个脚架,连续序列 N50 为 6.80 Mb,脚架 N50 为 21.18 Mb,BUSCO 完整性得分为 96.0%。这种高度连续的基因组组装为了解基因流动、分化和本地适应的历史提供了重要资源,并可为这种魅力无穷的鸟类的保护管理提供信息。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A highly contiguous genome assembly for the Yellow Warbler (Setophaga petechia).

The Yellow Warbler (Setophaga petechia) is a small songbird in the wood-warbler family (Parulidae) that exhibits phenotypic and ecological differences across a widespread distribution and is important to California's riparian habitat conservation. Here, we present a high-quality de novo genome assembly of a vouchered female Yellow Warbler from southern California. Using HiFi long-read and Omni-C proximity sequencing technologies, we generated a 1.22 Gb assembly including 687 scaffolds with a contig N50 of 6.80 Mb, scaffold N50 of 21.18 Mb, and a BUSCO completeness score of 96.0%. This highly contiguous genome assembly provides an essential resource for understanding the history of gene flow, divergence, and local adaptation in Yellow Warblers and can inform conservation management of this charismatic bird species.

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来源期刊
Journal of Heredity
Journal of Heredity 生物-遗传学
CiteScore
5.20
自引率
6.50%
发文量
63
审稿时长
6-12 weeks
期刊介绍: Over the last 100 years, the Journal of Heredity has established and maintained a tradition of scholarly excellence in the publication of genetics research. Virtually every major figure in the field has contributed to the journal. Established in 1903, Journal of Heredity covers organismal genetics across a wide range of disciplines and taxa. Articles include such rapidly advancing fields as conservation genetics of endangered species, population structure and phylogeography, molecular evolution and speciation, molecular genetics of disease resistance in plants and animals, genetic biodiversity and relevant computer programs.
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