桡足类 Eurytemora carolleeae 的基因组结构--E. affinis 种群中具有高度入侵性的大西洋支系。

Zhenyong Du, Gregory Gelembiuk, Wynne Moss, Andrew Tritt, Carol Eunmi Lee
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引用次数: 0

摘要

桡足类是地球上数量最多的生物之一,在水生生态系统中发挥着关键作用。在桡足类中,Eurytemora affinis 种群在许多沿海生境中数量占优势,是主要渔业的食物来源。耐人寻味的是,某些种群具有在快速时间尺度内入侵新盐度的非同寻常的能力。尽管桡足类具有重要的生态学意义,但一直缺乏高质量的基因组资源,这限制了我们全面剖析某些种群高度入侵和适应能力背后的基因组结构的能力。在这里,我们展示了来自大西洋支系(Eurytemora carolleeae)E. affinis物种复合体的首个染色体级桡足类基因组。该基因组是利用 30 代全兄妹交配产生的近交系的高覆盖长读数和高通量染色体构象捕获序列组装而成的。该基因组由 529.3 兆位(Mb)(等位基因 N50 = 4.2 Mb,支架 N50 = 140.6 Mb)组成,锚定在四条染色体上。基因组注释预测了 20,262 个蛋白质编码基因,其中离子转运体基因家族在对另外 12 个节肢动物基因组进行比较分析的基础上得到了大幅扩展。此外,我们还发现了离子转运基因历史基因体甲基化的全基因组特征,以及这些基因在每条染色体上的显著聚类。该基因组是迄今为止最连续的桡足类基因组之一,也是质量最高的海洋无脊椎动物基因组之一。因此,该基因组提供了宝贵的资源,有助于从根本上了解这种桡足类适应快速变化环境的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Genome Architecture of the Copepod Eurytemora carolleeae, the Highly Invasive Atlantic Clade of the E. affinis Species Complex.

Copepods are among the most abundant organisms on the planet and play critical functions in aquatic ecosystems. Among copepods, populations of the Eurytemora affinis species complex are numerically dominant in many coastal habitats and are food sources for major fisheries. Intriguingly, certain populations possess the unusual capacity to invade novel salinities on rapid time scales. Despite their ecological importance, high-quality genomic resources have been absent for calanoid copepods, limiting our ability to comprehensively dissect the genome architecture underlying the highly invasive and adaptive capacity of certain populations. Here, we presented the first chromosome-level genome of a calanoid copepod, from the Atlantic clade (Eurytemora carolleeae) of the E. affinis species complex. This genome was assembled using high-coverage long-read and high-throughput chromosome conformation capture sequences of an inbred line, generated through 30 generations of full-sib mating. This genome, consisting of 529.3 megabase (Mb) (contig N50 = 4.2 Mb, scaffold N50 = 140.6 Mb), was anchored onto four chromosomes. Genome annotation predicted 20,262 protein-coding genes, of which ion transporter gene families were substantially expanded based on comparative analyses of 12 additional arthropod genomes. Also, we found genome-wide signatures of historical gene body methylation of the ion transporter genes and the significant clustering of these genes on each chromosome. This genome represents one of the most contiguous copepod genomes to date and among the highest quality marine invertebrate genomes. As such, this genome provides an invaluable resource to help yield fundamental insights into the ability of this copepod to adapt to rapidly changing environments.

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