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Smith, G. F.

Publications and source records attributed to Smith, G. F..

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Nuclear phylogenomics reveals strong geographic patterns in the evolutionary history of Aloe and related genera (alooids)

Background and AimsWith >700 species, Aloe and its generic kin (alooids) are a morphologically diverse group of succulent plants with a wide range across Africa, Madagascar and the Arabian Peninsula. Species such as Aloe vera and A. ferox are cultivated at scale for natural products, whole foods, and cosmetics. Despite substantial -taxonomy contributions, infrageneric classification of Aloe has remained unresolved. Molecular systematics has been compromised by the lack of informative characters in standard markers and high costs of obtaining informative nuclear loci from large genomes (e.g. >15 Gbp); and the difficulty of obtaining quality DNA extractions from material of known provenance. Here these constraints are overcome with target capture sequencing that allows cost-effective sequencing of informative low-copy nuclear loci and unlocks genetic resources from preserved specimens in herbaria as well as silica-dried tissues. MethodsUsing a custom kit for alooids, 189 nuclear loci were sequenced in 294 species, including 50 herbarium specimens, to build a new phylogenomic framework for the big genus Aloe and 11 closely related genera in the alooid clade. Available taxonomic classifications for Aloe sensu stricto were contrasted against the obtained topology in an effort to stabilise taxonomy. Genus-level representations of the family Asphodelaceae were sequenced with the same tool. Key resultsThe new phylogenomic framework demonstrates the monophyly of the alooids and confirms recent classifications in which smaller genera (Aloidendron, Aloiampelos, Aristaloe, Gonialoe, Kumara) are separated. Strong geographic patterns in the Aloe phylogeny are contrasted by less obvious phylogenetic structure in habit (growth form), and vegetative or reproductive morphology that are mainstays of -taxonomy. ConclusionRepeated incidents of adaptive radiation and niche specialisation appear to underlie species diversity in Aloe. This study illustrates the power of combined (nuclear) phylogenomic and -taxonomic inference, including the utility of herbarium genomics, in resolving the systematics of big genera. Lay summaryThe alooids are a group of >700 succulent plants, such as Aloe vera. Testing their taxonomy with genetics is difficult as Aloe genomes are large and very similar between species. A targeted approach was used to classify alooids with highly variable nuclear genes in {+/-}300 species. The evolutionary relationships of alooids are determined principally by geographic distribution patterns, rather than plant morphology or flower shape.

evolutionary biology↗

A new phylogenetic framework for the genus Kalanchoe (Crassulaceae) and implications for infrageneric classification

Background and AimsKalanchoe is a diverse genus in the Crassulaceae, with a centre of diversity in Madagascar and sub-Saharan Africa. The genus is known for its popularity in horticulture, its use as a model system for research on CAM photosynthesis and vegetative reproduction, its high invasive potential, and its use in traditional medicine. The genus-rank circumscription and infrageneric classification of Kalanchoe has been the subject of debate for centuries, especially regarding the status and rank of what is now treated as K. subg. Bryophyllum and K. subg. Kitchingia. We aim to generate a densely sampled phylogeny of Kalanchoe s.l. and evaluate the current infrageneric classification system. MethodsWe inferred a phylogenetic tree for Kalanchoe using a ddRAD sequencing approach, covering 70% of taxa and four out of five subgenera currently recognised in the genus. Key ResultsWe recovered four well-supported clades, partially corresponding to the current subgeneric classification. Kalanchoe subg. Calophygia resolves as sister to the rest of the genus. The relationships among the three remaining clades, however, receive less support. The predominantly mainland African K. subg. Kalanchoe forms a strongly supported clade that resolves as sister to K. subg. Bryophyllum. These two clades are together sister to a clade containing mainly species from K. subg. Kitchingia and K. sect. Pubescentes. ConclusionsThe current subgeneric classification of Kalanchoe is partially backed up by our phylogenetic tree but requires further refinement. The tree topology suggests a Malagasy origin of the genus and one dispersal event to the African mainland, with subsequent dispersal from continental Africa to the Arabian Peninsula and Southeast Asia. The formation of bulbils on the leaf margin is restricted to a larger clade within K. subg. Bryophyllum and thus only evolved once. Our tree provides a framework for further taxonomic, evolutionary, and physiological research on the genus.

evolutionary biology↗