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神圣曼陀罗(Datura wrightii)从头组装的长读长基因组揭示了串联基因重复在防御食草动物反应进化中的作用。

A de novo long-read genome assembly of the sacred datura plant (Datura wrightii) reveals a role of tandem gene duplications in the evolution of herbivore-defense response.

机构信息

Department of Ecology and Evolutionary Biology, University of Arizona, Tucson, AZ, USA.

Department of Entomology, University of California Riverside, Riverside, CA, USA.

出版信息

BMC Genomics. 2024 Jan 2;25(1):15. doi: 10.1186/s12864-023-09894-1.

Abstract

The sacred datura plant (Solanales: Solanaceae: Datura wrightii) has been used to study plant-herbivore interactions for decades. The wealth of information that has resulted leads it to have potential as a model system for studying the ecological and evolutionary genomics of these interactions. We present a de novo Datura wrightii genome assembled using PacBio HiFi long-reads. Our assembly is highly complete and contiguous (N50 = 179Mb, BUSCO Complete = 97.6%). We successfully detected a previously documented ancient whole genome duplication using our assembly and have classified the gene duplication history that generated its coding sequence content. We use it as the basis for a genome-guided differential expression analysis to identify the induced responses of this plant to one of its specialized herbivores (Coleoptera: Chrysomelidae: Lema daturaphila). We find over 3000 differentially expressed genes associated with herbivory and that elevated expression levels of over 200 genes last for several days. We also combined our analyses to determine the role that different gene duplication categories have played in the evolution of Datura-herbivore interactions. We find that tandem duplications have expanded multiple functional groups of herbivore responsive genes with defensive functions, including UGT-glycosyltranserases, oxidoreductase enzymes, and peptidase inhibitors. Overall, our results expand our knowledge of herbivore-induced plant transcriptional responses and the evolutionary history of the underlying herbivore-response genes.

摘要

神圣曼陀罗植物(茄目:茄科:曼陀罗 Wrightii)已被用于研究植物-草食动物相互作用数十年。由此产生的丰富信息使其成为研究这些相互作用的生态和进化基因组学的潜在模型系统。我们使用 PacBio HiFi 长读序列组装了一个新的 Datura wrightii 基因组。我们的组装高度完整和连续(N50=179Mb,BUSCO 完整=97.6%)。我们成功地使用我们的组装检测到了以前记录的古老全基因组复制,并对产生其编码序列内容的基因复制历史进行了分类。我们将其用作基因组指导的差异表达分析的基础,以鉴定该植物对其专门草食动物(鞘翅目:叶甲科:Lema daturaphila)的诱导反应。我们发现与草食性相关的差异表达基因超过 3000 个,并且超过 200 个基因的表达水平升高持续数天。我们还将我们的分析结合起来,以确定不同基因复制类别在 Datura-herbivore 相互作用的进化中所起的作用。我们发现串联复制扩展了具有防御功能的多种草食动物反应基因的功能组,包括 UGT-糖基转移酶、氧化还原酶和肽酶抑制剂。总的来说,我们的结果扩展了我们对草食性诱导植物转录反应和潜在草食性反应基因进化历史的认识。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/71ff/10759348/a971908663dc/12864_2023_9894_Fig1_HTML.jpg

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