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寄生蜂 Diachasma alloeum 的基因组,生态物种形成和向无性繁殖过渡的新兴模式。

Genome of the Parasitoid Wasp Diachasma alloeum, an Emerging Model for Ecological Speciation and Transitions to Asexual Reproduction.

机构信息

Department of Biology, University of Iowa, IA.

Institute for Genome Sciences, University of Maryland School of Medicine, Baltimore, MD.

出版信息

Genome Biol Evol. 2019 Oct 1;11(10):2767-2773. doi: 10.1093/gbe/evz205.

Abstract

Parasitoid wasps are among the most speciose animals, yet have relatively few available genomic resources. We report a draft genome assembly of the wasp Diachasma alloeum (Hymenoptera: Braconidae), a host-specific parasitoid of the apple maggot fly Rhagoletis pomonella (Diptera: Tephritidae), and a developing model for understanding how ecological speciation can "cascade" across trophic levels. Identification of gene content confirmed the overall quality of the draft genome, and we manually annotated ∼400 genes as part of this study, including those involved in oxidative phosphorylation, chemosensation, and reproduction. Through comparisons to model hymenopterans such as the European honeybee Apis mellifera and parasitoid wasp Nasonia vitripennis, as well as a more closely related braconid parasitoid Microplitis demolitor, we identified a proliferation of transposable elements in the genome, an expansion of chemosensory genes in parasitoid wasps, and the maintenance of several key genes with known roles in sexual reproduction and sex determination. The D. alloeum genome will provide a valuable resource for comparative genomics studies in Hymenoptera as well as specific investigations into the genomic changes associated with ecological speciation and transitions to asexuality.

摘要

寄生蜂是种类最多的动物之一,但可用的基因组资源相对较少。我们报告了一种寄生蜂 Diachasma alloeum(膜翅目:Braconidae)的基因组草图组装,该蜂是苹果小卷叶蛾 Rhagoletis pomonella(双翅目:Tephritidae)的专性寄生蜂,也是一个正在发展的模型,用于了解生态物种形成如何可以“级联”跨越营养水平。基因内容的鉴定证实了草案基因组的整体质量,我们在此研究中手动注释了约 400 个基因,包括参与氧化磷酸化、化学感觉和繁殖的基因。通过与欧洲蜜蜂 Apis mellifera 和寄生蜂 Nasonia vitripennis 等模式膜翅目昆虫以及亲缘关系较近的 Braconid 寄生蜂 Microplitis demolitor 的比较,我们发现基因组中转座元件大量增殖,寄生蜂中的化学感觉基因扩张,以及几个已知在有性生殖和性别决定中起关键作用的基因得以维持。D. alloeum 基因组将为膜翅目比较基因组学研究以及与生态物种形成和向无性繁殖过渡相关的基因组变化的具体研究提供有价值的资源。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/41b6/6781843/94752aaea538/evz205f1.jpg

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