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Hoewener, A.

Publications and source records attributed to Hoewener, A..

2 recordsLinked to original sources

Phylogenomics and Systematics of African Sesuvium (Aizoaceae)

Sesuvium (Sesuvioideae-Aizoaceae) comprises leaf succulent annual and perennial herbs distributed in coastal or saline sites of subtropical and tropical regions. Some species of the genus tolerate highly salinized or polluted soils and show soil-improving properties. Sesuvium shows high flexibility of photosynthetic types, including and integrating C3, C4, and CAM photosynthesis. Previous molecular phylogenetic studies failed to resolve the infrageneric relationships of the genus. However, a better understanding of the systematics of this group is a prerequisite for further evolutionary studies. We explored the suitability of genome skimming, including mainly herbarium material, to produce a robust phylogeny of the presumably young African clade of Sesuvium. The approach generated an average of 6,289 orthologs per genome skimming sample and 30 complete to mostly complete plastomes. The coalescent-based species tree, as well as the plastome tree, shows stable resolution at the backbone of the African Sesuvium clade. An annual C3 species, here newly described, is sister to a C4 clade that is subdivided into two subclades, one comprising the annual S. hydaspicum (incl. S. nyasicum) and the other three perennial species, S. crithmoides, S. congense, and S. sesuvioides. Within each of these two subclades, high gene tree discordance, mainly driven by gene tree estimation error, was found.

evolutionary biology↗

A novel phylogenomics pipeline reveals complex pattern of reticulate evolution in Cucurbitales

High-throughput sequencing data, such as target capture, RNA-Seq, genome skimming, and high-depth whole genome sequencing, are used for phylogenomic analyses. Integrating these mixed data types into a single phylogenomic dataset requires several bioinformatic tools and significant computational resources. Here, we present CAPTUS, a novel pipeline to analyze mixed data efficiently. CAPTUS assembles these data types, searches for loci of interest, and produces paralog-filtered alignments. If reference target loci are not available for the studied taxon, CAPTUS can also be used to discover new putative homologs via sequence clustering. Compared to other software, CAPTUS allows the recovery of a greater number of more complete loci across more species. We apply CAPTUS to assemble a comprehensive dataset, comprising the four types of sequencing data for the angiosperm order Cucurbitales, a clade of about 3,100 species in eight mainly tropical plant families, including begonias (Begoniaceae) and gourds (Cucurbitaceae). Our phylogenomic results support the currently accepted circumscription of Cucurbitales except for the position of the holoparasitic Apodanthaceae, which group with Rafflesiaceae in Malpighiales. A subset of mitochondrial gene regions supports the earlier divergence of Apodanthaceae in Cucurbitales. However, the nuclear regions and majority of mitochondrial regions place Apodanthaceae in Malpighiales. Within Cucurbitaceae, we confirm the monophyly of all currently accepted tribes but also reveal hybridization and incomplete lineage sorting both in Cucurbitales and within Cucurbitaceae. We show that contradicting results among earlier phylogenetic studies in Cucurbitales can be reconciled when accounting for gene tree conflict and demonstrate the efficiency of CAPTUS for complex datasets.

bioinformatics↗