NEW early Campanian characiform fishes (OTOPHYSI: Characiformes) from west Texas support a south AMERICAN origin for KNOWN late CRETACEOUS characiforms from north America

2021 ◽  
pp. 104993
Author(s):  
Steven L. Wick
2005 ◽  
Vol 12 (3-4) ◽  
pp. 461-494 ◽  
Author(s):  
Judd A Case ◽  
Francisco J. Goin ◽  
Michael O. Woodburne

1983 ◽  
Vol 61 (1) ◽  
pp. 256-266 ◽  
Author(s):  
S. P. Vander Kloet

Vaccinium § Cyanococcus is defined by having verrucose twigs, dimorphic perennating buds, corymbose inflorescences, pedicels that are articulated with the calices, and berries that are pseudo-10-loculed. The section is endemic to North America and contains nine species, four of which have a hybrid origin. The ancestral group had a probable South American origin and migrated through the Caribbean to Florida, where the group underwent radiation. It is also shown that the lowbush diploid species in the section do not interbreed freely in all combinations and that the F1 hybrids may have a selective disadvantage.


2011 ◽  
Vol 48 (11) ◽  
pp. 1483-1488 ◽  
Author(s):  
Rubén Somoza

Determining the Late Cretaceous paleomagnetic pole for North America has been difficult because of the lack of suitable rocks of that age in cratonic areas to provide the necessary data. As an alternative, different studies have appealed to paleomagnetic data from rocks in western North America. Using paleopoles from stable areas in neighboring continents, it is suggested that the available Late Cretaceous paleomagnetic record in western North America should be analyzed in terms of rigid body deformations rather than be used to represent the cratonic reference field.


2021 ◽  
pp. 1-16
Author(s):  
Carlos Molineri ◽  
Oscar Ascuntar-Osnas ◽  
María del Carmen Zúñiga ◽  
Blanca Cecilia Ramos

Abstract Leptohyphes Eaton is one of the most species-rich American genera in Ephemeroptera, with 45 valid species distributed from south-central USA to Patagonia. Most species are distributed in central and northern Andes. Nymphs are frequent and abundant in mountain streams. We present a parsimony-based morphological phylogeny for the genus. Specific geographic records were studied using Hovenkamp’s protocol (barrier biogeography). Leptohyphes was recovered as a monophyletic group. The most ancient disjunction found in Leptohyphes separated Tepui-area from the rest of the Americas. Other interesting vicariant events were found, including the separation of eastern Atlantic mountains (Mata Atlantica) from the Andes; oriental and occidental slopes of the Andes; northern from central Andes; and northern Andes from Central and North America. An ancient tropical South American origin for the genus is supported, with a more recent diversification due to Andean orogeny. Clades and terminals reaching North America include few independent events of more recent range expansions.


PeerJ ◽  
2018 ◽  
Vol 6 ◽  
pp. e5910 ◽  
Author(s):  
Jessie Atterholt ◽  
J. Howard Hutchison ◽  
Jingmai K. O’Connor

The most complete known North American enantiornithine was collected in 1992 but never formally described. The so-called “Kaiparowits avisaurid” remains one of the most exceptional Late Cretaceous enantiornithine fossils. We recognize this specimen as a new taxon, Mirarce eatoni (gen. et sp. nov.), and provide a complete anatomical description. We maintain that the specimen is referable to the Avisauridae, a clade previously only known in North America from isolated tarsometatarsi. Information from this specimen helps to clarify evolutionary trends within the Enantiornithes. Its large body size supports previously observed trends toward larger body mass in the Late Cretaceous. However, trends toward increased fusion of compound elements across the clade as a whole are weak compared to the Ornithuromorpha. The new specimen reveals for the first time the presence of remige papillae in the enantiornithines, indicating this feature was evolved in parallel to dromaeosaurids and derived ornithuromorphs. Although morphology of the pygostyle and (to a lesser degree) the coracoid and manus appear to remain fairly static during the 65 million years plus of enantiornithine evolution, by the end of the Mesozoic at least some enantiornithine birds had evolved several features convergent with the Neornithes including a deeply keeled sternum, a narrow furcula with a short hypocleidium, and ulnar quill knobs—all features that indicate refinement of the flight apparatus and increased aerial abilities. We conduct the first cladistic analysis to include all purported avisuarid enantiornithines, recovering an Avisauridae consisting of a dichotomy between North and South American taxa. Based on morphological observations and supported by cladistic analysis, we demonstrate Avisaurus to be paraphyletic and erect a new genus for “A. gloriae,” Gettyia gen. nov.


2016 ◽  
Vol 12 (4) ◽  
pp. 20151047 ◽  
Author(s):  
Eric Gorscak ◽  
Patrick M. O‘Connor

Recent model-based phylogenetic approaches have expanded upon the incorporation of extinct lineages and their respective temporal information for calibrating divergence date estimates. Here, model-based methods are explored to estimate divergence dates and ancestral ranges for titanosaurian sauropod dinosaurs, an extinct and globally distributed terrestrial clade that existed during the extensive Cretaceous supercontinental break-up. Our models estimate an Early Cretaceous (approx. 135 Ma) South American origin for Titanosauria. The estimated divergence dates are broadly congruent with Cretaceous geophysical models of supercontinental separation and subsequent continental isolation while obviating the invocation of continuous Late Cretaceous continental connections (e.g. ephemeral land bridges). Divergence dates for mid-Cretaceous African and South American sister lineages support semi-isolated subequatorial African faunas in concordance with the gradual northward separation between South America and Africa. Finally, Late Cretaceous Africa may have linked Laurasian lineages with their sister South American lineages, though the current Late Cretaceous African terrestrial fossil record remains meagre.


2018 ◽  
Author(s):  
S. Augusta Maccracken ◽  
◽  
Ian M. Miller ◽  
Conrad C. Labandeira

Zootaxa ◽  
2005 ◽  
Vol 932 (1) ◽  
pp. 1 ◽  
Author(s):  
HARRY M. SAVAGE ◽  
R. WILLS FLOWERS ◽  
WENDY PORRAS V.

A new genus, Tikuna, is described based on recent collections of adults and nymphs of Choroterpes atramentum Traver from western Costa Rica. All recent collections are from streams on or near the Nicoya Complex, the oldest geological formation in Lower Central America. Tikuna belongs to a lineage of South American Atalophlebiinae (Leptophlebiidae: Ephemeroptera) whose origin is hypothesized to have been in the late Cretaceous–early Tertiary. Some implications of the distribution of Tikuna for theories on the origin of Costa Rica’s biota are discussed.


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