scholarly journals The fossil record of turtles and tortoises (Testudines) of Mexico, Central America and the Caribbean Islands, with comments on its taxonomy and paleobiogeography: a bibliographic review

2020 ◽  
Vol 37 (3) ◽  
pp. 269-283
Author(s):  
Gerardo Carbot-Chanona ◽  
Gustavo Rivera-Velázquez ◽  
Eduardo Jiménez-Hidalgo ◽  
Víctor Hugo Reynoso

Testudines is the crown-group that includes all living forms of turtles and their closest relatives. This group is known from the late Triassic and persists to this day. The fossil record of Testudines in Mexico is scarce and has been previously compiled in several papers. Here we present an update including all osteological and ichnological records from México and Central America. In Mexico, the Testudines fossil record extends from the Late Triassic to the Pleistocene, being widely abundant during the Pleistocene. Kinosternon and Gopherus are the best represented taxa, known from the late Miocene (Hemphillian) to the late Pleistocene (Rancholabrean). Fossil turtles are well represented in Mexico, excluding the states of Campeche, Mexico City, Colima, Guerrero, Queretaro, Quintana Roo and Sinaloa. On the contrary, the ichnological records are only known in Coahuila, Puebla and Zacatecas. In Central America there are records of fossil turtles in El Salvador, Honduras, Costa Rica and Panama, the latter being the country holding most records. Finally, nine new species have been described in the region, six for Mexico (Notoemys tlaxiacoensis, Yelmochelys rosarioae, Mexichelys coahuilaensis, Gopherus donlaloi, G. auffenbergi and G. pargensis, of which G. auffenbergi is synonymous with G. berlandieri and G. pargensis is considered a nomen vanum) and three in Central America (Rhinoclemmys nicoyama from Costa Rica, and Rhinoclemmys panamaensis and Staurotypus moschus from Panama).

Author(s):  
Christoph Piscart ◽  
Khaoula Ayati ◽  
Mathieu Coulis

During recent investigations on the terrestrial invertebrates of the tropical rainforest on Martinique Island (Pitons du Carbet), specimens of a new species of the terrestrial amphipod genus Cerrorchestia Lindeman, 1990, C. taboukeli sp. nov., were collected by means of different quantitative and non-quantitative methods (hand collection and Tullgren extraction) in the forest floor. The new species can be easily distinguished from the only other species of the genus, C. hyloraina Lindeman, 1990, by gnathopod 2 (carpus short, palm longer than wide), pereopod 4 dactylus with a denticulate patch, pereopod 5 basis ovate with a deep posterodistal lobe reaching the distal end of the ischium, pleopod 3 ramus with more than six articles. Cerrorchestia tabouleki sp. nov. is the first forest-hopper discovered in the Lesser Antilles, raising the question of island colonization by terrestrial amphipods. Ecological data and a key to terrestrial Talitridae of Central America and the Caribbean islands are provided.


Zootaxa ◽  
2007 ◽  
Vol 1655 (1) ◽  
pp. 49-61 ◽  
Author(s):  
JOSÉ L. FERNÁNDEZ-TRIANA ◽  
HORACIO GRILLO RAVELO

We revise the Cuban species of Eiphosoma Cresson (Hymenoptera: Ichneumonidae: Cremastinae). Three new species are described: E. bioeco sp. nov., E. dearmasi sp. nov. and E. nelitae sp. nov. All species are assigned to species-groups as defined by Gauld (2000) for the Mesoamerican fauna, and a key to Cuban species is provided. A preliminary analysis of the distribution and faunal similarity for species within the Cuban archipelago is discussed; the Cuban fauna is compared to that of the Caribbean Islands, Florida (USA) and Costa Rica.


Zootaxa ◽  
2012 ◽  
Vol 3513 (1) ◽  
pp. 1 ◽  
Author(s):  
JOHN E. CADLE ◽  
JAY M. SAVAGE

We review the systematics of the Dendrophidion nuchale complex in Central America and northern South America andrecognize three species. The names D. nuchale (W. Peters) and D. clarkii Dunn apply to two of the species. The third isdescribed as a new species, D. rufiterminorum. It differs from D. clarkii and D. nuchale in coloration and hemipenial char-acters but all three species of the nuchale complex are very similar in scutellation characters. Dendrophidion nuchale isdistributed in the coast ranges and adjacent foothills of northern Venezuela, and in a seemingly disjunct population in theSerranía de Perijá in western Venezuela. The name clarkii was recently applied to all populations of the nuchale complexfrom Belize and Guatemala in the north to western Colombia and Ecuador in the south. Herein, we restrict the name D.clarkii to populations in lower Middle America (Costa Rica and Panama) and west of the Andes in Colombia and Ecuador.Dendrophidion rufiterminorum is distributed in northern Central America (Belize, Guatemala, northern Honduras) fol-lowed by a broad disjunction without records of the species throughout most of Honduras and Nicaragua; thereafter, a fewspecimens and photographs document the presence of D. rufiterminorum on the Caribbean versant of southern Nicaraguaand Costa Rica, and uplands of northwestern Costa Rica (Pacific versant). Two localities of sympatry between D. rufiter-minorum and D. clarkii are known in Costa Rica (one on the Atlantic versant, the other on Pacific versant). Nonetheless,there is sparse documentation of either species in Costa Rica. The populations referred to D. clarkii in southwestern CostaRica, the eastern half of Panama, and western Colombia and Ecuador need further study. Hemipenes of species of thenuchale complex are described. All three species have a pair of enormously enlarged sulcate spines and a regular lineararray of enlarged spines (spinose annulus) encircling the base of the apical region. These characters are also shared with D. dendrophis sensu lato but not other members of the dendrophis species group.


2019 ◽  
Vol 2 (6) ◽  
pp. 560-565
Author(s):  
MICHAEL S. ENGEL

Earwigs (Dermaptera) are an often-ignored group of polyneopteran insects, with nearly 2000 extant species distributed throughout the world (Grimaldi & Engel, 2005; Stork, 2018). All of the modern diversity belongs to the suborder Neodermaptera, a clade that first definitively appears in the Early Cretaceous (Engel et al., 2011; Wolfe et al., 2016), but likely diverged in the Late Jurassic, although there is a rich gradation of earlier earwig variety extending back to at least the Late Triassic (Kelly et al., 2017). The earlier-diverging lineages (such as Archidermaptera, Eodermaptera, and Turanodermaptera [Turanodermatidae]) lack some of the otherwise characteristic synapomorphies of crown-group Dermaptera, such as loss of ocelli, loss of tegminal venation, or reduction of the ovipositor (Grimaldi & Engel, 2005). While there is a rich variety of forms and morphological disparity among fossil Dermaptera, their record compared to other orders remains comparatively meagre. Given this overall scarcity in the fossil record, there is nonetheless a decent variety of lineages documented from various Cenozoic deposits (Wappler et al., 2005). A fairly large number of taxa have been described from Palaeogene and early Neogene impressions (e.g., Heer, 1865; Zhang, 1989; Zhang et al., 1994; Chatzimanolis & Engel, 2010), although the precise systematic placement of many are challenging to confirm given the nature of their preservation and the characters widely needed to properly assign earwigs. Those species preserved as amber inclusions offer a wider breadth of characters from which to ascertain affinities, and earwigs have been previously described from Oise, Baltic, Dominican, and Mexican ambers (Burr, 1911a; Nel et al., 2003; Ross & Engel, 2013; Engel, 2016, 2017).


Zootaxa ◽  
2018 ◽  
Vol 4427 (1) ◽  
pp. 1 ◽  
Author(s):  
ALEXANDER SÁNCHEZ-RUIZ ◽  
ANTONIO D. BRESCOVIT

The spider genus Nops MacLeay is revised, with redescriptions of 22 previously known species and descriptions of 12 new species. A new diagnosis for the genus is provided and keys to separate the species are proposed. After this revision Nops includes 34 extant species, thereof 15 (44%) occur in the Caribbean Islands, four (12%) in Central America and 15 (44%) in South America. Females of Nops meridionalis Keyserling and Nops gertschi Chickering are found and described for the first time. Three new synonymies are proposed: Nops virginicus Sánchez–Ruiz with Nops blandus Bryant, Nops craneae Chickering with Nops maculatus Simon and Nops proseni Birabén with Nops farhati Prosen. Four species are considered inquerenda: Nops anisitsi Strand, Nops bellulus Chamberlin, Nops branicki (Taczanowski) and Nops glaucus Hasselt. The following new species are described: N. jaragua n. sp., N. navassa n. sp., and N. pallidus n. sp. from the Caribbean region; N. campeche n. sp. and N. tico n. sp. from Central America, and N. alexenriquei n. sp., N. amazonas n. sp., N. bahia n. sp., N. ipojuca n. sp., N. itapetinga n. sp., N. minas n. sp. and N. pocone n. sp. from South America. New geographical records and distribution maps are provided for all species, with illustrations and reviewed diagnoses. The Nops species are restricted to the Neotropical region, from the Caribbean Islands and Mexico to the north of Argentina. The highest species richness is concentrated in the Wider Caribbean Region, including Central America and the north of Colombia and Venezuela where 64.7% of the species occur. Endemism in the Caribbean islands is very high; most of these species are single island endemics. A cladistic analysis, based on morphological data, was executed to test the monophyly of the genus. This is the first cladistic analysis of Caponiidae, and it includes besides the Nops species, 1) the six other species that were transferred from Nops, now in the genera Orthonops, Cubanops, Tarsonops and Medionops, and 2) Nopsides ceralbonus Chamberlin and Nyetnops guarani Platnick & Lise. Therefore, representatives of all known Nopinae genera are included in the ingroup. The data matrix comprises 41 taxa scored for 47 morphological characters. The analyses under equal weights resulted in six equally parsimonious trees of 99 steps. All these trees are congruent with a unique hypothesis for Nopinae genera. Thus, all topological differences among the most parsimonious trees were the consequence of different hypotheses of relationships within Nops. The same result was also found under implied weighting with constants of concavity k = 2 to 13, where the topology of all trees was congruent for a single Nopinae genera hypothesis, but relationships within Nops were not resolved. All analysis under equal and implied weights recovered the monophyly of Nops with high support values, but internal clades within the genus showed low branch supports. Our results thus suggest that to resolve the internal relationships of Nops, studies based on molecular evidence are necessary to counteract the deficit of morphological data. The hypothesis obtained for Nopinae showed high branch support values for most of clades, corroborating all the transfers made from Nops. Medionops was recovered as the sister group of Nops with high support values. Nops, Medionops and Nopsides form a closely related, distinct spider group among nopine, supported by five unambiguous synapomorphies. Two of these synapomorphies could be functionally related: the presence of an arolium on the anterior pretarsi and the elongated and dorsally reflexed unpaired claw on the anterior legs. Nopsides appears to be a genus with apomorphic characters, presenting highly modified legs, but lacking the crista and gladius, and gaining a pair of anterior lateral eyes. Nyetnops is sister to all other nopine genera. Our results identified the necessity of further studies on nopine leg structures (arolium, crista, gladius and adesmatic joints) to improve understanding of the phylogenetic relationships of Nopinae genera. 


2020 ◽  
Vol 576 ◽  
Author(s):  
Christophe Piscart ◽  
Khaoula Ayati ◽  
Mathieu Coulis

During recent investigations on the terrestrial invertebrates of the tropical rainforest on Martinique Island (Pitons du Carbet), specimens of a new species of the terrestrial amphipod genus Cerrorchestia Lindeman, 1990, C. taboukeli sp. nov., were collected by means of different quantitative and non-quantitative methods (hand collection and Tullgren extraction) in the forest floor. The new species can be easily distinguished from the only other species of the genus, C. hyloraina Lindeman, 1990, by gnathopod 2 (carpus short, palm longer than wide), pereopod 4 dactylus with a denticulate patch, pereopod 5 basis ovate with a deep posterodistal lobe reaching the distal end of the ischium, pleopod 3 ramus with more than six articles. Cerrorchestia tabouleki sp. nov. is the first forest-hopper discovered in the Lesser Antilles, raising the question of island colonization by terrestrial amphipods. Ecological data and a key to terrestrial Talitridae of Central America and the Caribbean islands are provided.


2020 ◽  
Vol 29 (1) ◽  
pp. 101-114
Author(s):  
Oskar V. Conle ◽  
Frank H. Hennemann ◽  
Pablo Valero

Two new species of Taraxippus Moxey, 1971 are described and illustrated: T. samaraesp. nov. from Costa Rica and Panama and T. perezgelabertisp. nov. from the Dominican Republic. Both sexes and the previously unknown eggs are described. The genus is recorded from Central America for the first time. A distribution map and a discussion of the distributional pattern of Taraxippus are provided.


2014 ◽  
Vol 02 (03) ◽  
pp. 85-90 ◽  
Author(s):  
Mario Fernández Arce ◽  
Daniel Solís ◽  
Juan Luis Porras ◽  
Gino González

Zootaxa ◽  
2017 ◽  
Vol 4363 (4) ◽  
pp. 583
Author(s):  
NEAL L. EVENHUIS

A new species of bee fly of the genus Chrysanthrax Osten Sacken, C. pennyi, n. sp., is described and illustrated. It was reared from the larva of a myrmeleontid, which marks the first record of parasitism by the genus of that family. The pupal exuvium is described and illustrated and a key to species known from Central America is given. 


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