首页> 外文期刊>Genome Biology and Evolution >Speciation in Cloudless Sulphurs Gleaned from Complete Genomes
【24h】

Speciation in Cloudless Sulphurs Gleaned from Complete Genomes

机译:无云硫磺的形态从完整的基因组中收集

获取原文
           

摘要

For 200 years, zoologists have relied on phenotypes to learn about the evolution of animals. A glance at the genotype, even through several gene markers, revolutionized our understanding of animal phylogeny. Recent advances in sequencing techniques allow researchers to study speciation mechanisms and the link between genotype and phenotype using complete genomes. We sequenced and assembled a complete genome of the Cloudless Sulphur (Phoebis sennae) from a single wild-caught specimen. This genome was used as reference to compare genomes of six specimens, three from the eastern populations (Oklahoma and north Texas), referred to as a subspecies Phoebis sennae eubule, and three from the southwestern populations (south Texas) known as a subspecies Phoebis sennae marcellina. While the two subspecies differ only subtly in phenotype and mitochondrial DNA, comparison of their complete genomes revealed consistent and significant differences, which are more prominent than those between tiger swallowtails Pterourus canadensis and Pterourus glaucus. The two sulphur taxa differed in histone methylation regulators, chromatin-associated proteins, circadian clock, and early development proteins. Despite being well separated on the whole-genome level, the two taxa show introgression, with gene flow mainly from P. s. marcellina to P. s. eubule. Functional analysis of introgressed genes reveals enrichment in transmembrane transporters. Many transporters are responsible for nutrient uptake, and their introgression may be of selective advantage for caterpillars to feed on more diverse food resources. Phylogenetically, complete genomes place family Pieridae away from Papilionidae, which is consistent with previous analyses based on several gene markers.
机译:200年来,动物学家依赖于学习动物演变的表型。甚至通过几种基因标记,甚至通过几种基因标记,革命了我们对动物系统发育的理解。测序技术的最新进展允许研究人员研究物种机制和使用完整基因组的基因型和表型之间的联系。我们测序并组装了从单个野生捕获的标本的无云硫(Phoebis Sennae)的完整基因组。该基因组作为参考,以比较六个标本的基因组,其中三个来自东部人群(俄克拉荷马和北德克萨斯州),称为菲尔比比斯·塞纳州令人遗叫的亚种植物(南德克萨斯州),被称为伯比斯峰(南德克萨斯州)马塞利亚。虽然这两个亚种仅在表型和线粒体DNA中巧妙地不同,但它们的完整基因组的比较揭示了一致而显着的差异,这比虎燕尾蕨类植物和Pterourus glaucus之间的突出更突出。两种硫磺群不同于组蛋白甲基化调节剂,染色质相关蛋白,昼夜昼夜钟和早期发育蛋白质。尽管在全基因组水平上很好地分开,但两个分类群显示出迟发,主要来自P. S.马塞利亚到第s。咬。狭窄基因的功能分析显示跨膜转运蛋白的富集。许多运输司负责营养吸收,它们的血液可能具有对毛虫的选择性优势,以饲料更多样化的食物资源。系统源性地,完整的基因组将Pieridae源于PapilionAdae,这与基于几个基因标记物的先前分析一致。

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