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传粉窃蜜的黑喉花蜜鸟(Diglossa brunneiventris)的参考基因组。

A reference genome for the nectar-robbing Black-throated Flowerpiercer (Diglossa brunneiventris).

机构信息

Museum of Natural Science and Department of Biological Sciences, Louisiana State University, Baton Rouge, LA 70803, USA.

出版信息

G3 (Bethesda). 2021 Oct 19;11(11). doi: 10.1093/g3journal/jkab271.

Abstract

Black-throated Flowerpiercers (Diglossa brunneiventris) are one species representing a phenotypically specialized group of tanagers (Thraupidae) that have hooked bills which allow them to feed by stealing nectar from the base of flowers. Members of the genus are widely distributed in montane regions from Mexico to northern Argentina, and previous studies of Diglossa have focused on their systematics, phylogenetics, and interesting natural history. Despite numerous studies of species within the genus, no genome assembly exists to represent these nectivorous tanagers. We described the assembly of a genome sequence representing a museum-vouchered, wild, female D. brunneiventris collected in Peru. By combining Pacific Biosciences Sequel long-read technology with 10× linked-read and reference-based scaffolding, we produced a 1.08 Gbp pseudochromosomal assembly including 600 scaffolds with a scaffold N50 of 67.3 Mbp, a scaffold L50 of 6, and a BUSCO completeness score of 95%. This new assembly improves representation of the diverse species that comprise the tanagers, improves on scaffold lengths and contiguity when compared to existing genomic resources for tanagers, and provides another avenue of research into the genetic basis of adaptations common to a nectivorous lifestyle among vertebrates.

摘要

黑喉花蜜鸟(Diglossa brunneiventris)是一个具有特殊表型的唐纳雀科(Thraupidae)物种,其钩状喙使其能够通过从花朵底部窃取花蜜来进食。该属的成员广泛分布于从墨西哥到阿根廷北部的高山地区,之前对 Diglossa 的研究集中在它们的系统发育、系统发育和有趣的自然历史上。尽管对该属的许多物种进行了研究,但没有基因组组装来代表这些食蜜的唐纳雀。我们描述了一个代表秘鲁采集的博物馆标本、野生雌性 D. brunneiventris 的基因组序列组装。通过结合太平洋生物科学的单分子实时测序(long-read)技术与 10× 链接读取和基于参考的支架构建,我们生成了一个 10.8 亿碱基对的假染色体组装,包括 600 个支架,支架 N50 为 67.3 Mbp,支架 L50 为 6,以及 95%的 BUSCO 完整性评分。这个新的组装提高了对组成唐纳雀的不同物种的代表性,与现有的唐纳雀基因组资源相比,提高了支架的长度和连续性,并为研究适应脊椎动物食蜜生活方式的遗传基础提供了另一种途径。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/efb9/8527499/1a6a24afde9d/jkab271f1.jpg

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