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二倍体卡斯凯德啤酒花(Humulus lupulus)基因组的分步组装草案。

A draft phased assembly of the diploid Cascade hop (Humulus lupulus) genome.

机构信息

Department of Biochemistry and Biophysics, Oregon State University, Corvallis, OR, 97331, USA.

Pacific Biosciences of California, Menlo Park, CA, 94025, USA.

出版信息

Plant Genome. 2021 Mar;14(1):e20072. doi: 10.1002/tpg2.20072. Epub 2021 Feb 18.

Abstract

Hop (Humulus lupulus L. var Lupulus) is a diploid, dioecious plant with a history of cultivation spanning more than one thousand years. Hop cones are valued for their use in brewing and contain compounds of therapeutic interest including xanthohumol. Efforts to determine how biochemical pathways responsible for desirable traits are regulated have been challenged by the large (2.8 Gb), repetitive, and heterozygous genome of hop. We present a draft haplotype-phased assembly of the Cascade cultivar genome. Our draft assembly and annotation of the Cascade genome is the most extensive representation of the hop genome to date. PacBio long-read sequences from hop were assembled with FALCON and partially phased with FALCON-Unzip. Comparative analysis of haplotype sequences provides insight into selective pressures that have driven evolution in hop. We discovered genes with greater sequence divergence enriched for stress-response, growth, and flowering functions in the draft phased assembly. With improved resolution of long terminal retrotransposons (LTRs) due to long-read sequencing, we found that hop is over 70% repetitive. We identified a homolog of cannabidiolic acid synthase (CBDAS) that is expressed in multiple tissues. The approaches we developed to analyze the draft phased assembly serve to deepen our understanding of the genomic landscape of hop and may have broader applicability to the study of other large, complex genomes.

摘要

啤酒花(Humulus lupulus L. var Lupulus)是一种二倍体、雌雄异株的植物,其栽培历史已有一千多年。啤酒花的用途在于酿造啤酒,其球果中含有多种具有治疗作用的化合物,包括黄腐酚。人们一直致力于确定负责理想性状的生化途径是如何调控的,但啤酒花的基因组较大(28 亿碱基对)、重复序列多且杂合度高,这给相关研究带来了挑战。我们展示了卡斯凯德(Cascade)品种基因组的草图单倍型相位组装结果。我们对卡斯凯德基因组的草图组装和注释是迄今为止对啤酒花基因组最全面的描述。我们利用 FALCON 对啤酒花的 PacBio 长读序列进行组装,并利用 FALCON-Unzip 对其进行部分相位组装。单倍型序列的比较分析为选择性压力如何驱动啤酒花进化提供了线索。我们发现,在草案相位组装中,具有更大序列差异的基因富集了与应激反应、生长和开花功能相关的基因。由于长读测序能够提高长末端反转录转座子(LTR)的分辨率,我们发现啤酒花的重复序列超过 70%。我们鉴定了一个大麻素酸合酶(CBDAS)的同源物,该基因在多种组织中表达。我们开发的分析草案相位组装的方法有助于加深我们对啤酒花基因组景观的理解,并且可能具有更广泛的适用性,可用于研究其他大型复杂基因组。

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