State Key Laboratory of Biocontrol, College of Ecology and Evolution, School of Life Sciences, Sun Yat-Sen University, Guangzhou, China.
Department of Entomology, College of Agriculture, South China Agricultural University, Guangzhou 510642, China.
Mol Phylogenet Evol. 2020 Aug;149:106847. doi: 10.1016/j.ympev.2020.106847. Epub 2020 May 5.
The family Epicopeiidae is a small group of day-flying moths, known for mimicking many different groups of butterflies and moths. So far, there still lacks a reliable phylogenetic framework of Epicopeiidae that is necessary to our understanding of the evolutionary process of their mimicry. In this study, we sequenced 94 nuclear protein-coding markers for 56 epicopeiid samples and 11 outgroups, covering all ten genera of Epicopeiidae. We used homemade PCR-generated baits to capture target sequences, which allowed us to utilize old and dried specimens that were difficult to handle by conventional PCR + Sanger sequencing. Maximum likelihood and Bayesian analyses of the newly obtained dataset (86,388 bp) at both DNA and protein levels produced identical phylogenies with strong support. The non-mimicry genus Deuveia is the sister group of other epicopeiid genera. Epicopeia and Nossa are not monophyletic, and these two genera nest together to form a clade. We also estimated divergence times of Epicopeiidae and found that their initial diversification happened in Eocene about 41 million years ago. The ancestral state reconstruction of mimicry type for this family suggested that thelast common ancestor of epicopeiid moths is non-mimetic, and the Riodinidae-mimicry type evolved first. In summary, our work provides a comprehensive and robust time-calibrated phylogeny of Epicopeiidae that provides a sound framework for revising their classification and interpreting character evolution.
Epicopeiidae 科是一小群日行性蛾类,以模仿许多不同的蝴蝶和蛾类而闻名。迄今为止,对于 Epicopeiidae 科的拟态进化过程的理解,仍然缺乏一个可靠的系统发育框架。在这项研究中,我们对 56 个 Epicopeiidae 样本和 11 个外群的 94 个核蛋白编码标记进行了测序,涵盖了 Epicopeiidae 科的所有 10 个属。我们使用自制的 PCR 生成的诱饵来捕获目标序列,这使我们能够利用难以通过传统 PCR+Sanger 测序处理的陈旧和干燥的标本。在 DNA 和蛋白质水平上对新获得的数据(86388bp)进行最大似然和贝叶斯分析,产生了具有强支持的相同系统发育。非拟态属 Deuveia 是其他 Epicopeiidae 属的姐妹群。Epicopeia 和 Nossa 不是单系的,这两个属嵌套在一起形成一个分支。我们还估计了 Epicopeiidae 的分歧时间,发现它们的初始多样化发生在大约 4100 万年前的始新世。该科拟态类型的祖先状态重建表明, Epicopeiidae 蛾类的最后共同祖先是非拟态的,而 Rhodinidae 拟态类型首先进化。总之,我们的工作为 Epicopeiidae 提供了一个全面而稳健的时间校准系统发育,为修订其分类和解释特征进化提供了一个良好的框架。