scholarly journals Phylogenetic relationships in the southern African genus Drosanthemum (Ruschioideae, Aizoaceae)

PeerJ ◽  
2020 ◽  
Vol 8 ◽  
pp. e8999
Author(s):  
Sigrid Liede-Schumann ◽  
Guido W. Grimm ◽  
Nicolai M. Nürk ◽  
Alastair J. Potts ◽  
Ulrich Meve ◽  
...  

Background Drosanthemum, the only genus of the tribe Drosanthemeae, is widespread over the Greater Cape Floristic Region in southern Africa. With 114 recognized species, Drosanthemum, together with the highly succulent and species-rich tribe Ruschieae, constitute the ‘core ruschioids’ in Aizoaceae. Within Drosanthemum, nine subgenera have been described based on flower and fruit morphology. Their phylogenetic relationships, however, have not yet been investigated, hampering understanding of monophyletic entities and patterns of geographic distribution. Methods Using chloroplast and nuclear DNA sequence data, we performed network- and tree-based phylogenetic analyses of 73 species of Drosanthemum with multiple accessions for widespread species. A well-curated, geo-referenced occurrence dataset comprising the 134 genetically analysed and 863 further accessions was used to describe the distributional ranges of intrageneric lineages and the genus as a whole. Results Phylogenetic inference supports nine clades within Drosanthemum, seven of which group in two major clades, while the remaining two show ambiguous affinities. The nine clades are generally congruent to previously described subgenera within Drosanthemum, with exceptions such as cryptic species. In-depth analyses of sequence patterns in each gene region were used to reveal phylogenetic affinities inside the retrieved clades in more detail. We observe a complex distribution pattern including widespread, species-rich clades expanding into arid habitats of the interior (subgenera Drosanthemum p.p., Vespertina, Xamera) that are genetically and morphologically diverse. In contrast, less species-rich, genetically less divergent, and morphologically unique lineages are restricted to the central Cape region and more mesic conditions (Decidua, Necopina, Ossicula, Quastea, Quadrata, Speciosa). Our results suggest that the main lineages arose from an initial rapid radiation, with subsequent diversification in some clades.

2019 ◽  
Author(s):  
Sigrid Liede-Schumann ◽  
Guido W. Grimm ◽  
Nicolai M. Nürk ◽  
Alastair J. Potts ◽  
Ulrich Meve ◽  
...  

AbstractBackgroundDrosanthemum, the only genus of the tribe Drosanthemeae, is widespread over the Greater Cape Floristic Region in southern Africa. With 114 recognized species, Drosanthemum together with the highly succulent and species-rich tribe Ruschieae constitute the ‘core ruschioids’ in Aizoaceae. Within Drosanthemum, nine subgenera have been described based on flower and fruit morphology. Their phylogenetic relationships, however, have not yet been investigated, hampering understanding of monophyletic entities and patterns of geographic distribution.MethodsUsing chloroplast and nuclear DNA sequence data, we performed network- and tree-based phylogenetic analyses of 73 species represented by multiple accessions of Drosanthemum. A well-curated, geo-referenced occurrence data set comprising the phylogenetically studied and 867 further accessions was used to describe the distributional ranges of intrageneric lineages and the genus as a whole.ResultsPhylogenetic inference supports nine clades within Drosanthemum, seven of them group in two major clades, while the remaining two show ambiguous affinities. The nine clades are generally congruent to previously described subgenera within Drosanthemum, with exceptions such as (pseudo-) cryptic species. In-depth analyses of sequence patterns in each gene region revealed phylogenetic affinities not obvious in the phylogenetic tree. We observe a complex distribution pattern including widespread, species-rich clades expanding into arid habitats of the interior (subgenera Drosanthemum p.p., Vespertina, Xamera) that are molecular and morphologically diverse. In contrast, less species-rich, molecularly less divergent, and morphologically unique lineages are restricted to the central Cape region and more mesic conditions (Decidua, Necopina, Ossicula, Quastea, Quadrata, Speciosa). Our results suggest initial rapid radiation generating the main lineages, with some clades showing subsequent diversification.


2009 ◽  
Vol 34 (3) ◽  
pp. 455-475 ◽  
Author(s):  
Harald Schneider ◽  
Alan R. Smith ◽  
Kathleen M. Pryer

Using a morphological dataset of 136 vegetative and reproductive characters, we infer the tracheophyte phylogeny with an emphasis on early divergences of ferns (monilophytes). The dataset comprises morphological, anatomical, biochemical, and some DNA structural characters for a taxon sample of 35 species, including representatives of all major lineages of vascular plants, especially ferns. Phylogenetic relationships among vascular plants are reconstructed using maximum parsimony and Bayesian inference. Both approaches yield similar relationships and provide evidence for three major lineages of extant vascular plants: lycophytes, ferns, and seed plants. Lycophytes are sister to the euphyllophyte clade, which comprises the fern and seed plant lineages. The fern lineage consists of five clades: horsetails, whisk ferns, ophioglossoids, marattioids, and leptosporangiate ferns. This lineage is supported by characters of the spore wall and has a parsimony bootstrap value of 76%, although the Bayesian posterior probability is only 0.53. Each of the five fern clades is well supported, but the relationships among them lack statistical support. Our independent phylogenetic analyses of morphological evidence recover the same deep phylogenetic relationships among tracheophytes as found in previous studies utilizing DNA sequence data, but differ in some ways within seed plants and within ferns. We discuss the extensive independent evolution of the five extant fern clades and the evidence for the placement of whisk ferns and horsetails in our morphological analyses.


2003 ◽  
Vol 81 (3) ◽  
pp. 232-247 ◽  
Author(s):  
Soili Stenroos ◽  
Elfriede Stocker-Wörgötter ◽  
Isao Yoshimura ◽  
Leena Myllys ◽  
Arne Thell ◽  
...  

Lichens consist of a fungal component that associates with either a green alga or cynobacterium, resulting in diverse morphologies. Resynthesis experiments of isolated myco- and photobionts, as well as internal transcribed spacer (ITS) rDNA phylogenies, suggest that the notoriously dissimilar photomorphs of Lobaria fendleri (Tuck. ex Mont.) Lindau and Lobaria amplissima (Scop.) Forss. both have a single mycobiont, which can simultaneously lichenize two unrelated photobionts, a eukaryote and a prokaryote. In the phylogenetic analyses, the genera Sticta and Durietzia appear monophyletic; whereas Lobaria and Pseudocyphellaria are both nonmonophyletic. Furthermore, the phylogenetic relationships of Durietzia, Lobarina, and Sticta relative to Lobaria and Pseudocyphellaria are in need of re-evaluation.Key words: internal transcribed spacer (ITS), photosymbiodeme, phylogeny, lichen-forming fungi, Lobaria amplissima, Lobaria fendleri, Pseudocyphellaria, Sticta.


2008 ◽  
Vol 5 (2) ◽  
pp. 221-224 ◽  
Author(s):  
Dawn M Reding ◽  
Jeffrey T Foster ◽  
Helen F James ◽  
H. Douglas Pratt ◽  
Robert C Fleischer

Natural selection plays a fundamental role in the ecological theory of adaptive radiation. A prediction of this theory is the convergent evolution of traits in lineages experiencing similar environments. The Hawaiian honeycreepers are a spectacular example of adaptive radiation and may demonstrate convergence, but uncertainty about phylogenetic relationships within the group has made it difficult to assess such evolutionary patterns. We examine the phylogenetic relationships of the Hawaii creeper ( Oreomystis mana ), a bird that in a suite of morphological, ecological and behavioural traits closely resembles the Kauai creeper ( Oreomystis bairdi ), but whose mitochondrial DNA (mtDNA) and osteology suggest a relationship with the amakihis ( Hemignathus in part) and akepas ( Loxops ). We analysed nuclear DNA sequence data from 11 relevant honeycreeper taxa and one outgroup to test whether the character contradiction results from historical hybridization and mtDNA introgression, or convergent evolution. We found no evidence of past hybridization, a phenomenon that remains undocumented in Hawaiian honeycreepers, and confirmed mtDNA and osteological evidence that the Hawaii creeper is most closely related to the amakihis and akepas. Thus, the morphological, ecological and behavioural similarities between the evolutionarily distant Hawaii and Kauai creepers represent an extreme example of convergent evolution and demonstrate how natural selection can lead to repeatable evolutionary outcomes.


Author(s):  
Nic A. Williams ◽  
David R. Dixon ◽  
Eve C. Southward ◽  
Peter W. H. Holland

The Vestimentifera, or deep-sea tube worms, comprise an ecologically and anatomically unusual group of marine invertebrates, with poorly understood biogeography, ecology, phylogenetic affinities and evolutionary radiation. To gain insight into evolutionary diversification within the group, we have used a molecular biological approach. We report the cloning of a region of 28S ribosomal DNA from representatives of five vestimentiferan genera plus, for comparison, a polychaete and a perviate pogonophore. Phylogenetic analyses using these DNA sequences confirm thatRidgeiaandTevniaare closely related genera. The analyses also lead us to propose the hypothesis that the earliest vestimentiferan lineage to diverge gave rise to the genusLamellibrachiaonly. In addition, our comparative DNA sequence data now provide a means to use molecular methods for identification of deep-sea tube worms; we employed this approach to demonstrate that the first vestimentiferan specimen from the eastern Atlantic Ocean belongs to the genusLamellibrachia. DNA-based identification should have wide applications in the study of vestimentiferan biogeography and ecology.


2021 ◽  
Author(s):  
◽  
Gregorio Delgado

The division Ascomycota(Fungi) contains a large number of taxa known to reproduce only asexually by the formation of conidia or other non-motile propagules produced by mitotic cellular devisions. They are called anamorphic, mitosporic, asexual or conidial fungi and ecologically, they are often found associated with plant debris in different stages of decay. In general, saprobic anamorphs of ascomycetous affinities are poorly studied and their outstanding diversity is currently underexplored. Phylogenetic relationships are unknown for many of them and they are still largely underrepresented in the current phylogenetic classification system of Fungi, with many morphologically defined anamorphic taxa still awaiting taxonomic reassessment in the light of molecular approaches. The increasing usage of molecular markers combined with robust statistical methods has allowed their phylogenetic affinities to be revealed and to gradually incorporate many of them into the different taxonomic groups of the division Ascomycota. However, the phylogenetic placement and taxonomic status of a large number of saprobic taxa remain unresolved due to the lack of DNA sequence data. The present dissertation aims to explore the rich but understudied diversity of those anamorphic fungi traditionally known as hyphomycetes that inhabit dead plant debris. It consists of five publications in which a polyphasic approach integrating morphological, developmental, cultural and molecular data was used to incorporate novel or incertae sedis taxa within Ascomycota and to make more sound decisions regarding their taxonomic status. Specific objectives include: 1. the collection, isolation and morphological characterization of selected anamorphic fungi representing putative new or interesting taxa of uncertain phylogenetic placement; 2. the generation of novel DNA sequence data to infer their phylogenetic relationships and to resolve their taxonomic affinities within Ascomycota; 3. the testing of any previously available morphologically based hypotheses on their putative position, generic placement or relationships with teleomorphic, pleomorphic or other anamorphic taxa; and 4. the determination of their generic validity, monophyly and taxonomic boundaries using molecular data and phylogenetic analyses methods. Materials studied in these five projects consisted of specimens collected during field work carried out by the author or collaborators in different countries including USA, the Czech Republic and Panama between the years 2014 and 2017. The target substrates were dead leaves of different palm trees, dead wood and bark of pines and twigs or stems of unknown shrubs and woody vines that are all known to harbor a rich saprobic mycobiota. Putative novelties or anamorphic taxa with unknown or poorly studied phylogenetic affinities were selected for further morphological and molecular investigation. Micromorphological studies were based on fungal structures observed on natural substrate, herbarium specimens and in culture. DNA was extracted from cultures and PCR amplification followed by Sanger sequencing was carried out using relevant molecular markers employed in fungal phylogenetic studies. Newly obtained DNA sequence data were analyzed following a standard phylogenetic analysis pipeline and phylogenetic relationships were reconstructed using character-based methods such as Maximum Likelihood and Bayesian inference. Conclusion is that anamorphic Ascomycota inhabiting dead plant debris represents a largely untapped source of biodiversity and information still in need of further exploration. A new capnodiaceous genus Castanedospora, seven new species named Taeniolella sabalicola, Hermatomyces bifurcatus, H. constrictus, H. megasporus, H. sphaericoides, H. verrucosus and Septonema lohmanii, and two new combinations, Castanedospora pachyanthicola and H. reticulatus, are proposed based on morphological and DNA sequence data. Molecular phylogenetics was confirmed as the tool of choice for the inference of relationships in novel or incertae sedis anamorphic fungi that are otherwise difficult to assess in the absence of a teleomorphic state. They were first resolved or revisited for several saprobic species such as Ernakulamia cochinensis, H. sphaericus, H. tucumanensis or Septonema fasciculare in a suitable framework for phylogenetic hypothesis testing. Molecular data allowed to fully incorporate all these taxa in Ascomycota, particularly within the classes Dothideomycetes and Sordariomycetes, and to provide a foundation for better taxonomic decisions on their classification. Large and polyphyletic genera such as Taeniolella, Sporidesmium and Septonema, partially treated in this work and containing mostly saprobic species of obscure affinities, remained in need of further investigation.


Zootaxa ◽  
2011 ◽  
Vol 3138 (1) ◽  
pp. 1 ◽  
Author(s):  
JOSEPH R. MENDELSON III ◽  
DANIEL G. MULCAHY ◽  
TYLER S. WILLIAMS ◽  
JACK W. SITES JR.

We combine mitochondrial and nuclear DNA sequence data with non-molecular (morphological and natural history) data to conduct phylogenetic analyses and generate an evolutionary hypothesis for the relationships among nearly every species of Mesoamerican bufonid in the genus Incilius. We collected a total of 5,898 aligned base-pairs (bp) of sequence data from mitochondrial (mtDNA: 12S–16S, cyt b, ND2–CO1, including tRNAsTRP–TYR and the origin of light strand replication; total 4,317 bp) and nuclear (CXCR4 and RAG1; total 1,581 bp) loci from 52 individual toads representing 37 species. For the non-molecular data, we collected 44 characters from 29 species. We also include Crepidophryne, a genus that has not previously been included in molecular analyses. We present results of parsimony and Bayesian analyses for these data separately and combined. Relationships based on the non-molecular data were poorly supported and did not resolve a monophyletic Incilius (Rhinella marina was nested within). Our molecular data provide significant support to most of the relationships. Our combined analyses demonstrate that inclusion of a considerably smaller dataset (44 vs. 5,898 characters) of non-molecular characters can provide significant support where the molecular relationships were lacking support. Our combined results indicate that Crepidophryne is nested within Incilius; therefore, we place the former in the synonymy of the latter taxon. Our study provides the most comprehensive evolutionary framework for Mesoamerican bufonids (Incilius), which we use as a starting point to invoke discussion on the evolution of their unique natural history traits.


The Condor ◽  
2004 ◽  
Vol 106 (3) ◽  
pp. 664-670 ◽  
Author(s):  
Carlos Daniel Cadena ◽  
Andrés M. Cuervo ◽  
Scott M. Lanyon

Abstract The phylogenetic affinities of the Red-bellied Grackle (Hypopyrrhus pyrohypogaster), a Colombian endemic and the only member of this genus, are enigmatic. Based on phylogenetic analyses of sequences from the cytochrome b and ND2 mitochondrial genes, we present a first hypothesis on the systematic position of Hypopyrrhus. In so doing, we complete the sampling at the genus level for a published phylogeny of New World blackbirds (Johnson and Lanyon 1999). Hypopyrrhus belongs in a clade composed of mostly South American species within the grackles and allies assemblage, one of the five main lineages in the Icteridae. Within this lineage, Hypopyrrhus is consistently placed in a clade with Gymnomystax mexicanus and Lampropsar tanagrinus, but parsimony and maximum-likelihood reconstructions do not agree on which of these species is its sister taxon. Vocal and morphological data suggest that Hypopyrrhus and Gymnomystax are likely sister taxa. The addition of Hypopyrrhus does not cause major topological changes to Johnson and Lanyon's (1999) phylogeny of the grackles and allies; thus, the conclusions of evolutionary studies that used this phylogeny as a baseline remain largely unaltered. Relaciones Filogenéticas de Hypopyrrhus pyrohypogaster (Icteridae) Inferidas a Partir de Secuencias de ADN Mitocondrial Resumen. Las afinidades filogenéticas de Hypopyrrhus pyrohypogaster, el único miembro de este género endémico de Colombia, son enigmáticas. En este estudio establecemos la posición sistemática de Hypopyrrhus con base en análisis filogenéticos de secuencias de los genes mitocondriales citocromo b y ND2. Además, completamos el muestreo a nivel genérico para una filogenia del grupo publicada por Johnson y Lanyon (1999). Hypopyrrhus pertenece a un clado compuesto principalmente por especies suramericanas dentro del grupo de los changos y chamones, uno de los cinco clados principales de los Icteridae. Dentro de este grupo, Hypopyrrhus se ubica consistentemente en un clado junto con Gymnomystax mexicanus y Lampropsar tanagrinus, pero las reconstrucciones de parsimonia y máxima verosimilitud se contradicen en cuanto a cuál de estas especies es su taxón hermano. Datos de vocalizaciones y morfología sugieren que Hypopyrrhus y Gymnomystax son probablemente géneros hermanos. La incorporación de Hypopyrrhus a la filogenia de Johnson y Lanyon (1989) no causó cambios topoló gicos importantes, por lo que las conclusiones de los estudios evolutivos que usaron esta filogenia como base no fueron alteradas.


2021 ◽  
Author(s):  
Gregorio Delgado ◽  
Andrew N Miller ◽  
Akira Hashimoto ◽  
Toshiya Iida ◽  
Moriya Ohkuma ◽  
...  

Abstract The phylogenetic affinities of four representative Endocalyx taxa, including three species and two varieties, are studied based on materials collected on different palm hosts in Japan and the states of Hawaii and Texas, USA. They include specimens and their isolates belonging to E. cinctus, E. indumentum, E. melanoxanthus var. grossus and E. melanoxanthus var. melanoxanthus. Phylogenetic analyses of nuclear ribosomal DNA sequence data (ITS-LSU nrDNA) confirmed that Endocalyx belongs to the order Xylariales (Sordariomycetes) where all species and varieties treated form a strongly supported monophyletic lineage within the family Cainiaceae. They were also phylogenetically well resolved and consistent with their morphological and ecological circumscription. Species status is proposed for E. melanoxanthus var. grossus under the name E. grossus comb. et stat. nov. on the basis of its distinct morphological, molecular, cultural and ecological characteristics. The putative placement of Endocalyx within the family Apiosporaceae (Amphisphaeriales) based on the presence of basauxic conidiophores is rejected considering that all species treated clustered within the distant Cainiaceae (Xylariales). This characteristic mode of conidiophore elongation is determined to have evolved independently within unrelated or distant ascomycetous lineages. Novel morphological and cultural features of Endocalyx taxa based on new isolates are commented. The recently described E. metroxyli is reduced to synonym with E. melanoxanthus.


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