Deep reticulation and incomplete lineage sorting obscure the diploid phylogeny of rain-lilies and allies (Amaryllidaceae tribe Hippeastreae)

N García, RA Folk, AW Meerow, S Chamala… - Molecular Phylogenetics …, 2017 - Elsevier
Hybridization is a frequent and important force in plant evolution. Next-generation
sequencing (NGS) methods offer new possibilities for clade resolution and ambitious …

Testing deep reticulate evolution in Amaryllidaceae tribe Hippeastreae (Asparagales) with ITS and chloroplast sequence data

N García, AW Meerow, DE Soltis, PS Soltis - Systematic Botany, 2014 - ingentaconnect.com
The phylogeny of Amaryllidaceae tribe Hippeastreae was inferred using chloroplast (3′
ycf1, ndhF, trnL (UAA)-F (GAA)) and nuclear (ITS rDNA) sequence data under maximum …

Reconstructing patterns of reticulate evolution in angiosperms: what can we do?

B Vriesendorp, FT Bakker - Taxon, 2005 - JSTOR
TAXON 54 (3) August 2005: 593-604 Vriesendorp & Bakker Reconstructing reticulate
evolution particular taxa (Ellstrand & al, 1996). When hybrid species are included in …

Karyological, morphological, and phylogenetic diversification in Leucocoryne Lindl (Allioideae, Amaryllidaceae)

G Souza, O Crosa, M Guerra - Plant Systematics and Evolution, 2015 - Springer
Abstract The genus Leucocoryne (Amaryllidaceae) comprises approximately 15 species and
is the only genus of the tribe Ipheieae endemic to the western region of Chile in sclerophyll …

Genome size dynamics in tribe Gilliesieae (Amaryllidaceae, subfamily Allioideae) in the context of polyploidy and unusual incidence of Robertsonian translocations

J Pellicer, O Hidalgo, J Walker… - Botanical Journal of …, 2017 - academic.oup.com
This study focuses on tribe Gilliesieae (Amaryllidaceae, Allioideae), which stand out
because of their karyotype diversity, constituting a textbook example of Robertsonian …

Chromosome diversity and evolution in Liliaceae

L Peruzzi, IJ Leitch, KF Caparelli - Annals of Botany, 2009 - academic.oup.com
Abstract Background and Aims There is an extensive literature on the diversity of karyotypes
found in genera within Liliaceae, but there has been no attempt to analyse these data within …

[HTML][HTML] Reticulate Evolution, Ancient Chloroplast Haplotypes, and Rapid Radiation of the Australian Plant Genus Adenanthos (Proteaceae)

FJ Nge, E Biffin, KR Thiele, M Waycott - Frontiers in Ecology and …, 2021 - frontiersin.org
Cytonuclear discordance, commonly detected in phylogenetic studies, is often attributed to
hybridization and/or incomplete lineage sorting (ILS). New sequencing technologies and …

[HTML][HTML] Phylogenomics of the Andean tetraploid clade of the American Amaryllidaceae (subfamily Amaryllidoideae): unlocking a polyploid generic radiation abetted …

AW Meerow, EM Gardner, K Nakamura - Frontiers in Plant Science, 2020 - frontiersin.org
One of the two major clades of the endemic American Amaryllidaceae subfam.
Amaryllidoideae constitutes the tetraploid-derived (n= 23) Andean-centered tribes, most of …

Phylotranscriptomics of Theaceae: generic-level relationships, reticulation and whole-genome duplication

Q Zhang, L Zhao, RA Folk, JL Zhao… - Annals of …, 2022 - academic.oup.com
Abstract Background and Aims Theaceae, with three tribes, nine genera and more than 200
species, are of great economic and ecological importance. Recent phylogenetic analyses …

The origin of the early differentiation of Ivies (Hedera L.) and the radiation of the Asian Palmate group (Araliaceae)

V Valcárcel, O Fiz-Palacios, J Wen - Molecular phylogenetics and evolution, 2014 - Elsevier
Abstract The Asian Palmate group is one of the four major clades of the family Araliaceae
that is formed by 18 genera, including ivies (Hedera L.). The Mediterranean diversity centre …