Universidade Federal de Minas Gerais, Instituto de Ciências Biológicas, Departamento de Botânica, Laboratório de Sistemática Vegetal, Belo Horizonte, Minas Gerais, Brazil.
Systematic and Evolutionary Botany, University of Zurich, Zurich, Switzerland.
Mol Phylogenet Evol. 2023 Jul;184:107782. doi: 10.1016/j.ympev.2023.107782. Epub 2023 Apr 10.
The pantropical fern family Gleicheniaceae comprises approximately 157 species. Seven genera are currently recognized in the family, although their monophyly is still uncertain due to low sampling in phylogenetic studies. We examined the monophyly of the genera through extended sampling, using the first phylogenomic inference of the family including data from both nuclear and plastid genomes. Seventy-six samples were sequenced (70 Gleicheniaceae species and six outgroups) using high throughput sequencing, including all seven currently recognized genera. Plastid and nuclear data were recovered and assembled; the nuclear data was phased to reduce paralogy as well as hybrid noise in the final recovered topology. Maximum likelihood trees were built for each locus, and a concatenated dataset was built for both datasets. A species tree based on a multispecies coalescent model was generated, and divergence time analyses performed. We here present the first genomic phylogenetic inferences concerning Gleicheniaceae, confirming the monophyly of most genera except Sticherus, which we recovered as paraphyletic. Although most of the extant genera of Gleicheniaceae originated during the Mesozoic, several genera show Neogene and even Quaternary diversifications, and our results suggest that reticulation and polyploidy may have played significant roles during this diversification. However, some genera, such as Rouxopteris and Stromatopteris, appear to represent evolutionary relicts.
泛热带蕨类科里白科约有 157 种。目前该科有七个属被认可,但由于系统发育研究中的采样不足,它们的单系性仍不确定。我们通过扩展采样来检验属的单系性,利用包括核和质体基因组数据的该科首个系统基因组推断。使用高通量测序对 76 个样本进行了测序(70 种里白科物种和 6 个外群),包括目前认可的所有七个属。回收并组装了质体和核数据;对核数据进行了相位处理,以减少最终恢复拓扑结构中的并系和杂种噪声。为每个位点构建了最大似然树,并为两个数据集构建了一个连锁数据集。基于多物种合并模型生成了物种树,并进行了分化时间分析。我们在此提出了有关里白科的第一个基因组系统发育推断,除了我们发现的拟单系的 Sticherus 属外,确认了大多数属的单系性。尽管里白科的大多数现存属起源于中生代,但有几个属显示出中新世甚至第四纪的多样化,我们的结果表明,在这种多样化过程中,网状进化和多倍体可能发挥了重要作用。然而,一些属,如 Rouxopteris 和 Stromatopteris,似乎代表了进化遗迹。