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Phylogeny and biogeography of Crinum L. (Amaryllidaceae) inferred from nuclear and limited plastid non-coding DNA sequences

2003/03/01 by Alan W. Meerow, David J. Lehmiller, Jason R. Clayton · 56 citations
Agricultural and Biological Sciences · Chemistry · #Amaryllidaceae #Biogeography #Biology #Botany #Chemical synthesis and alkaloids #Clade #Ecology #Evolutionary biology #Genus #Molecular phylogenetics #Monophyly #Pantropical #Phylogenetic tree #Plant Diversity and Evolution #Plant and animal studies #Subgenus #Zoology

paper · doi:10.1046/j.1095-8339.2003.00142.x

published in Botanical Journal of the Linnean Society 141(3), 349-363 (Oxford University Press)

openalex publication_date 2003/03/01 · openalex created_date 2025/10/10 · openalex updated_date 2026/07/22

Abstract

The genus Crinum L. is the only pantropical genus of the Amaryllidaceae. Phylogenetic and biogeographical analyses of nrDNA ITS and plastid trnL-F sequences for all continental groups of the genus Crinum and related African genera are presented, with the genus Amaryllis used as outgroup. ITS indicates that C. baumii is more closely related to Ammocharis and Cybistetes than to Crinum sensu stricto. Three clades are resolved in Crinum s.s. One unites a monophyletic American group with tropical and North African species. The second includes all southern African species and the Australian endemic C. flaccidum. The third includes monophyletic Madagascar, Australasian and Sino-Himalayan clades, with southern African species. The trnL-F phylogeny resolves an American and an Asian/Madagscar clade, and confirms the relationship of C. flaccidum with species endemic to southern Africa. The salverform, actinomorphic perianths of subg. Crinum appear to have evolved several times in the genus from ancestors with zygomorphic perianths (subg. Codonocrinum), thus neither subgenus is monophyletic. Biogeographical analyses place the origin of Crinum in southern Africa, as the region is optimized at all ancestral nodes in the tree topology, and in basal interior nodes of all but one of the major clades. The genus underwent three major waves of radiation corresponding to the three main clades resolved in our trees. Two entries into Australia for the genus are indicated, as are separate Sino-Himalayan and Australasian dispersal events.

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