First occurrence of Camptotheca fruits from late Miocene of southwestern China

2021 ◽  
pp. 1-8
Author(s):  
San-Ping Xie ◽  
Si-Hang Zhang ◽  
Jennifer C. McElwain ◽  
Peng Zhang ◽  
Bing Wang ◽  
...  
2020 ◽  
Vol 94 (4) ◽  
pp. 788-795 ◽  
Author(s):  
Ningthoujam Premjit Singh ◽  
Advait M. Jukar ◽  
Rajeev Patnaik ◽  
K. Milankumar Sharma ◽  
Nongmaithem Amardas Singh ◽  
...  

AbstractDeinotheriidae Bonaparte, 1845 is a family of browsing proboscideans that were widespread in the Old World during the Neogene. From Miocene deposits in the Indian subcontinent, deinotheres are known largely from dental remains. Both large and small species have been described from the region. Previously, only small deinothere species have been identified from Kutch in western India. In the fossiliferous Tapar beds in Kutch, dental remains have been referred to the small species Deinotherium sindiense Lydekker, 1880, but the specimens are too fragmentary to be systematically diagnostic. Here, we describe a large p4 of a deinothere from the Tapar beds and demonstrate that it is morphologically most similar to Deinotherium indicum Falconer, 1845, a large species of deinothere, thereby confirming the identity of deinotheres at Tapar. Deinotherium indicum from Tapar is larger than other deinotheres identified from Kutch and is the first occurrence of the species in the region. This new specimen helps constrain the age of the Tapar beds to the Tortonian and increases the biogeographic range of this species—hitherto only known from two localities on the subcontinent. This specimen also highlights the morphological diversity of South Asian deinothere p4s and allows us to reassess dental apomorphies used to delimit Indian deinothere species. Lastly, we argue that by the late Miocene, small deinotheres in Kutch were replaced by the large Deinotherium indicum.


1998 ◽  
Vol 17 (1) ◽  
pp. 71-85 ◽  
Author(s):  
Alyssa Peleo-Alampay ◽  
David Bukry ◽  
Li Liu ◽  
Jeremy R. Young

Abstract. A systematic study on the evolution and stratigraphic distribution of the species of Catinaster from several DSDP/ODP sites with magnetostratigraphic records is presented. The evolution of Catinaster from Discoaster is established by documentation of a transitional nannofossil species, Discoaster transitus. Two new subspecies, Catinaster coalitus extensus and Catinaster calyculus rectus are defined which appear to be intermediates in the evolution of Catinaster coalitus coalitus to Catinaster calyculus calyculus. The first occurrence of C. coalitus is shown to be in the lower part of C5n.2n at 10.7–10.9 Ma in the low to mid–latitude Atlantic and Pacific Oceans. The last occurrence of C. coalitus coalitus varies from the upper part of C5n.2n to the lower portion of C4A. Magnetobiostratigraphic evidence suggests that the FO of C. calyculus rectus is diachronous. Catinaster mexicanus occurs in the late Miocene and has been found only in the eastern equatorial Pacific, the Indian Ocean and the Gulf of Mexico.


2003 ◽  
Vol 174 (2) ◽  
pp. 187-193 ◽  
Author(s):  
Andossa Likius ◽  
Michel Brunet ◽  
Denis Geraads ◽  
Patrick Vignaud

Abstract A fragment of mandible and two metapodials complete unearthed from the fossiliferous aera of Kossom Bougoudi (KB3 and KB26), northern Chad are described. A comparative study allows to assign these specimens to Paracamelus gigas. The evolutionnary degree is compatible with an age around the Mio-Pliocene boundary (ca 5 Ma). Then, the Chadian remains are the oldest adequately dated record of this family in Africa. They are contemporaneous with the oldest known evidence of the genus Paracamelus from the late Miocene of Asia and Europe. Introduction. – During several field seasons in northern Chad, the “Mission Paléoanthropologique Franco-Tchadienne” (M. P. F. T) discovered new sites in the Kossom Bougoudi (KB) fossiliferous area, west of australopithecine sites [Brunet et al., 1995, 1997; Brunet and M.P.F.T, 2000]. These sites yielded a rich vertebrate fauna (fish, reptiles, birds and mammals), and have been biochronologically dated at around 5 Ma old, close to the Mio-Pliocene boundary [Brunet and M. P. F.T, 2000]. Among the mammal fauna, some remains of Camelidae provide the earliest evidence of this group in Africa, which was previously thought to be younger than 4 Ma, at Laetoli [Harris, 1987] and Koobi Fora [Harris, 1991]. Specimens from sites KB3 and KB26 are described here. Description Material : KB3.97.316 : right mandible fragment with p3, p4-m1 roots and m2-m3 teeth; KB3.99.03 : right metatarsus; KB26.97.03 : right metatarsus The mandible is rather robust with a high horizontal ramus. The mental foramen is located below m1. The p3 alveolus and p4 roots attest elongated premolars. The lingual face of the molars is flat. The third lobe of m3 is less labially shifted than in the living camels. There is no cement, nor cingulum. The metatarsals are long and robust (tab. III), and show a deep groove on the proximal anterior and posterior faces. The distal condyles are divergent and separated by a deep interarticular notch. They are symmetrical and of the same size differences, in contrast with the extant species where the external condyle is more slender than the internal one. Comparison. – The mandible (KB3.97.316) differs from the Camelus species mandible by having (1) a robust and deeper horizontal ramus, (2) a well developed p3, (3) a third lobe of m3 less labially shifted (4) Chadian metatarsals are morphologically different from those the living camels and being extremely long (tab. II). All characters of the Chadian specimens are congruent with Zdansky’s [1926] and Teilhard and Trassaert’s [1937] descriptions of genus Paracamelus. The KB horizontal ramus is deeper than that of P. alutensis (tab. I) from the early Pleistocene of Oltet Valley, Romania [Stefanescu, 1910]. The premolar row is longer. Unfortunately, a detailed comparison with P. aguirrei from the late Miocene (MN13) of Venta del Moro and Librilla, Spain is impossible because this species was defined on skeletal elements (upper molars, calcaneum, phalanxes) not yet recovered from Chad. However, the estimated alveolar length of p3 (20 mm) is similar to those of P. aguirrei (18,8 – 21,6 mm according to Morales [1984]). Lengths of KB tooth row (tab. I) and metatarsals (tab. II) fit into the range of variation recorded by Zdansky [1926] and by Teilhard and Trassaert [1937] for P. gigas from the late Miocene of China. The Chadian material cannot be assigned to the species P. alexejevi from the Pliocene (MN15) of Ukraine, because this species is smaller than P. aguirrei and P. gigas [Morales, 1984]. In conclusion, specimens from Chad do not display any important difference with Chinese species P. gigas and can tentatively be referred to this species. Biochronology and paleobiogeography. – The earliest known Old World camel correspond to P. aguirrei from the late Miocene (MN13) of Venta del Moro and Librilla in Spain [Morales et al., 1980; Made and Morales, 1999]. After Made and Morales [1999], this species is probably the ancestor of P. alexejevi from of Odessa Catacombs (MN15), Ukraine. In Europe, the chronological range of P. alutensis covers the Plio-Pleistocene. This species is present in the lower Pleistocene of Oltet Valley, Romania [Stefanescu, 1910] and in the early and Middle Pliocene (MN16) of Russia [Baigusheva, 1971]. It is also present in the late Pliocene of Sarikol Tepe, Turkey [Kostopoulos and Sen, 1999]. In China, the earliest record of P. gigas is about 5.5 Ma [Flynn, 1997; Made and Morales, 1999]. In conclusion the chronological range of Paracamelus is from the late Miocene to the Pleistocene. However, the Chadian specimens size is close to P. gigas (first occurrence in China around 5.5 Ma) and P. aguirrei from late Miocene (MN13) of Europe. The occurrence of Paracamelus at KB and its absence from the younger Chadian sites (3-4 Ma) of Koro-Toro and Kollé [Brunet et al., 1995; 1996] as well as in the Plio-Pleistocene localities of Africa, are congruent with an age close to the Mio-Pliocene boundary for the sites of KB. This interpretation is confirmed by the associated fauna, that indicates ca 5 Ma old for the whole of KB fossiliferous area [Brunet and M.P.F.T, 2000]. The age of the Chadian Paracamelus is close to the Mio-Pliocene boundary, slightly younger than specimens from late Miocene of China [Zdansky, 1926; Flynn, 1997], Spain [Morales et al., 1980] and Turkey [Made et al., 2002]. This demonstrates that the group had a wider distribution than previously thought. It indicates that the Camelidae reach a widespread distribution soon after their arrival from northern America [Webb, 1965; Pickford et al., 1993]. Conclusion. – The Chadian material displays distinctive features which allows to refer it to Paracamelus gigas. This taxon, poorly documented in Eurasia, has not been previously recognised in Africa. It will contribute to deciphering the phylogenetic relationships between various species of Paracamelus and the extant Camelus.


2008 ◽  
Vol 148 (1) ◽  
pp. 36-59 ◽  
Author(s):  
Jing-Xian Xu ◽  
David K. Ferguson ◽  
Cheng-Sen Li ◽  
Yu-Fei Wang

Phytotaxa ◽  
2019 ◽  
Vol 393 (1) ◽  
pp. 1
Author(s):  
HUA ZHU

The Yunnan boast three broad-leaved forests, the semi-wet evergreen broad-leaved forest (SWEB) occurring in subtropical plateaus areas, the lower montane evergreen broad-leaved forest (LMEB) in tropical lower montane, and the upper montane evergreen broad-leaved forest (UMEB) in subtropical upper montane regions. Floristic composition and biogeography of these evergreen broad-leaved forests are studied and their diversification and divergence are revealed. I found similarities across the three forest types with species-rich families tending to have cosmopolitan distributions and families with less species exhibiting other distribution types. In biogeographical elements, the SWEB and the UMEB showed similar affinity in the proportion of tropical elements comprising total genera, specifically 45% and 44% respectively, and temperate elements totaling 46% and 48%, of all genera with northern temperate distribution comprising the highest ratio (18% in the SWEB and 20% in the UMEB ). LMEB tropical elements comprised 79% of the total genera, with tropical Asian distributed elements contributing the highest ratio (27%). While the three forest floras comprised of similar families, the same is not true at the genus and species levels. I suggest our results indicate divergence of the three forest floras, possibly from events in the geological history of Yunnan. From recent palaeobotanical studies, the diversification of floras of these evergreen broad-leaved forests in Yunnan occurred during the late Miocene with increased divergence with time in response not only to altitude changes and at the same time global cooling in Yunnan, but also the southeastward extrusion of Indochina geoblock influencing LMEB, and the Himalayan uplift affecting the floras of SWEB and UMEB.


2015 ◽  
Vol 425 ◽  
pp. 14-40 ◽  
Author(s):  
Shu-Feng Li ◽  
Li-Mi Mao ◽  
Robert A. Spicer ◽  
Julie Lebreton-Anberrée ◽  
Tao Su ◽  
...  

2015 ◽  
Vol 60 (20) ◽  
pp. 1768-1777 ◽  
Author(s):  
Yongjiang Huang ◽  
Xueping Ji ◽  
Tao Su ◽  
Li Wang ◽  
Chenglong Deng ◽  
...  

2020 ◽  
Vol 47 (11) ◽  
Author(s):  
Pei Li ◽  
Chunxia Zhang ◽  
Jay Kelley ◽  
Chenglong Deng ◽  
Xueping Ji ◽  
...  

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