首页> 外文期刊>GigaScience >Generation of a chromosome-scale genome assembly of the insect-repellent terpenoid-producing Lamiaceae species, Callicarpa americana
【24h】

Generation of a chromosome-scale genome assembly of the insect-repellent terpenoid-producing Lamiaceae species, Callicarpa americana

机译:生成染色体级基因组组装的昆虫疏脂萜类化合物的液体植物,Callicarpa Americana

获取原文
           

摘要

Background Plants exhibit wide chemical diversity due to the production of specialized metabolites that function as pollinator attractants, defensive compounds, and signaling molecules. Lamiaceae (mints) are known for their chemodiversity and have been cultivated for use as culinary herbs, as well as sources of insect repellents, health-promoting compounds, and fragrance. Findings We report the chromosome-scale genome assembly of Callicarpa americana L. (American beautyberry), a species within the early-diverging Callicarpoideae clade of Lamiaceae, known for its metallic purple fruits and use as an insect repellent due to its production of terpenoids. Using long-read sequencing and Hi-C scaffolding, we generated a 506.1-Mb assembly spanning 17 pseudomolecules with N50 contig and N50 scaffold sizes of 7.5 and 29.0 Mb, respectively. In all, 32,164 genes were annotated, including 53 candidate terpene synthases and 47 putative clusters of specialized metabolite biosynthetic pathways. Our analyses revealed 3 putative whole-genome duplication events, which, together with local tandem duplications, contributed to gene family expansion of terpene synthases. Kolavenyl diphosphate is a gateway to many of the bioactive terpenoids in C. americana ; experimental validation confirmed that CamTPS2 encodes kolavenyl diphosphate synthase. Syntenic analyses with Tectona grandis L. f. (teak), a member of the Tectonoideae clade of Lamiaceae known for exceptionally strong wood resistant to insects, revealed 963 collinear blocks and 21,297 C. americana syntelogs. Conclusions Access to the C. americana genome provides a road map for rapid discovery of genes encoding plant-derived agrichemicals and a key resource for understanding the evolution of chemical diversity in Lamiaceae.
机译:背景技术植物由于生产用作粉化仪引诱剂,防御化合物和信号分子的专用代谢物而表现出宽化学多样性。 Lamiaceae(薄荷)以其化学大学而闻名,并且已被培养为烹饪草药,以及昆虫驱虫剂来源,促进健康化合物和香味。调查结果我们报告了Callicarpa Americana L.(美国Beautibery)的染色体 - 级基因组组装,这是早期卦的胶质植物的一种物种,其金属紫色果实已知并用作昆虫驱蚊剂,因为它的产萜类化物产生。使用长读取测序和Hi-C脚手架,我们产生了506.1MB的组件,跨越17个伪分子,分别具有7.5和29.0 MB的N50 CONDIG和N50支架尺寸。总之,注释了32,164个基因,包括53个候选萜烯合成酶和47个专门的代谢物生物合成途径。我们的分析揭示了3个推定的全基因组重复事件,与当地串联重复一起导致萜烯合成酶的基因族膨胀。 Kolavenyl二磷酸盐是C. Americana中许多生物活性三萜类的网关;实验验证证实CAMTPS2编码了kolavenyl二磷酸合酶。与Tectona Grandis L. F的同步分析。 (柚木)是一种针对昆虫的异常强大的木材的Lamiaceae的构成膜的成员,揭示了963个共线块和21,297 C. Americana Syntelogs。结论Americana Genome的访问提供了一种用于快速发现编码植物衍生的农业的基因的路图,以及了解LamiCeae中化学多样性的进化的关键资源。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号