The Extinction of Late Pleistocene Large Mammals from North Eurasian Perspective – Review of Ross D.E. MacPhee (with illustrations by Peter Schouten). End of the Megafauna: The Fate of the World’s Hugest, Fiercest, and Strangest Animals. 2019. W. W. Norton & Co. ISBN: 978-0-39324-929-3; xii + 236 pages, with 83 illustrations and 1 table. List price $35 US (hardback). Photo courtesy of W. W. Norton & Co.

Radiocarbon ◽  
2020 ◽  
Vol 62 (2) ◽  
pp. 265-268
Author(s):  
Yaroslav V Kuzmin
Author(s):  
Tony Hallam

We saw in Chapters 5 and 7 that the Quaternary was a time of low extinction rates despite a succession of strong environmental changes induced ultimately by climate. This began to change from a few tens of thousands of years ago with the arrival on our planet of Homo sapiens sapiens, which can be translated from the Latin as the rather smug ‘ultrawise Man’. It is widely accepted today that the Earth is undergoing a loss of species on a scale that would certainly rank in geological terms as a catastrophe, and has indeed, been dubbed ‘the sixth mass extinction’. Although the disturbance to the biosphere being created in modern times is more or less entirely attributable to human activity, we must use the best information available from historical, archaeological, and geological records to attempt to determine just when it began. Towards the end of the last ice age, known in Europe as the Würm and in North America as the Wisconsin, the continents were much richer in large mammals than today: for example, there were mammoths, mastodonts, and giant ground sloths in the Americas; woolly mammoths, elephants, rhinos, giant deer, bison, and hippos in northern Eurasia; and giant marsupials in Australia. Outside Africa most genera of large mammals, defined as exceeding 44 kilograms adult weight, disappeared within the past 100,000 years, an increasing number becoming extinct towards the end of that period. This indicates that there was a significant extinction event near the end of the Pleistocene. This event was not simultaneous across the world, however: it took place later in the Americas than Australia, and Africa and Asia have suffered fewer extinctions than other continents. There are three reasons for citing humans as the main reason for the late Pleistocene extinctions. First, the extinctions follow the appearance of humans in various parts of the world. Very few of the megafaunal extinctions that took place in the late Pleistocene can definitely be shown to pre-date the arrival of humans. There has, on the other hand, been a sequence of extinctions following human dispersal, culminating most recently on oceanic islands. Second, it was generally only large mammals that became extinct.


2017 ◽  
Vol 284 (1851) ◽  
pp. 20162438 ◽  
Author(s):  
Xinru Wan ◽  
Zhibin Zhang

Climate change and humans are proposed as the two key drivers of total extinction of many large mammals in the Late Pleistocene and Early Holocene, but disentangling their relative roles remains challenging owing to a lack of quantitative evaluation of human impact and climate-driven distribution changes on the extinctions of these large mammals in a continuous temporal–spatial dimension. Here, our analyses showed that temperature change had significant effects on mammoth (genus Mammuthus ), rhinoceros (Rhinocerotidae), horse (Equidae) and deer (Cervidae). Rapid global warming was the predominant factor driving the total extinction of mammoths and rhinos in frigid zones from the Late Pleistocene and Early Holocene. Humans showed significant, negative effects on extirpations of the four mammalian taxa, and were the predominant factor causing the extinction or major extirpations of rhinos and horses. Deer survived both rapid climate warming and extensive human impacts. Our study indicates that both the current rates of warming and range shifts of species are much faster than those from the Late Pleistocene to Holocene. Our results provide new insight into the extinction of Late Quaternary megafauna by demonstrating taxon-, period- and region-specific differences in extinction drivers of climate change and human disturbances, and some implications about the extinction risk of animals by recent and ongoing climate warming.


2021 ◽  
Vol 325 (1) ◽  
pp. 71-81
Author(s):  
M.V. Sablin ◽  
K.Yu. Iltsevich

The Epigravettian site of Yudinovo (Bryansk oblast, Russia) was discovered in 1930 by K.M. Polikarpovich. It is located in the Sudost’ river valley and has a unique stratigraphy. This article presents the results of the study of the remains of large mammals from Yudinovo and also discusses their significance in revising the former interpretation of the existence of the site during the very end of the final part of the Late Pleistocene. In total, 38 268 mammalian bones were identified from cultural layers excavated between 1947–2019. The faunal assemblage is relatively small with a dominance of woolly mammoth and arctic fox, typical of a cold and dry tundra-steppe environment. We undertook stable isotopic tracking from samples of bones. Our analyses confirm the hunting of both adult and juvenile larger mammals by ancient humans. Based on the eruption sequence and wear of the milk teeth from young animals, we were able to clarify the season of their death. It seems that these individuals were hunted during the late spring or early autumn. Traces of gnawing by dogs were recorded on a few bones. We also present in this article the results of the study of so-called “dwellings”, constructed by stacking up body parts and bones that were extracted from carcasses of freshly killed mammoths. We interpret these structures as middens representing the remains of ritually deposited hunted game. It can be assumed that these “dwellings” were probably an important part of the socio-symbolic system of the peoples, who created them.


1987 ◽  
Vol 28 (3) ◽  
pp. 415-426 ◽  
Author(s):  
David W. Steadman ◽  
Norton G. Miller

AbstractA humerus, coracoid, and pedal phalanx of the California Condor, Gymnogyps californianus, were recovered from the Hiscock Site in western New York, in an inorganic stratum containing wood that is 11,000 radiocarbon years old. Associated vertebrates include mastodont, wapiti, and caribou. Pollen and plant macrofossils from the sediments indicate a spruce-jack pine woodland and a local, herb-dominated wetland community. Historic records (all from western North America) and previous late Pleistocene fossils of the California Condor are associated mainly with warm-temperate climates and floras. The New York fossils show that this bird was able to live in a colder climate and in a boreal, coniferous setting at a time when appropriate food (large mammal carrion) was available. The California Condor, which survives only in captivity, has suffered a greater reduction in geographical range than previously suspected. Much of this reduction in range probably occurred ca. 11,000 yr B.P. when the extinction many North American large mammals resulted in severely reduced availability of food for the California Condor and other large scavenging birds.


2014 ◽  
Vol 82 (2) ◽  
pp. 378-387 ◽  
Author(s):  
Laureline Scherler ◽  
Thomas Tütken ◽  
Damien Becker

AbstractFossils of megaherbivores from eight late Pleistocene 14C- and OSL-dated doline infillings of Ajoie (NW Switzerland) were discovered along the Transjurane highway in the Swiss Jura. Carbon and oxygen analyses of enamel were performed on forty-six teeth of large mammals (Equus germanicus, Mammuthus primigenius, Coelodonta antiquitatis, and Bison priscus), coming from one doline in Boncourt (~ 80 ka, marine oxygen isotope stage MIS5a) and seven in Courtedoux (51–27 ka, late MIS3), in order to reconstruct the paleoclimatic and paleoenvironmental conditions of the region. Similar enamel δ13C values for both periods, ranging from − 14.5 to − 9.2‰, indicate that the megaherbivores lived in a C3 plant-dominated environment. Enamel δ18OPO4 values range from 10.9 to 16.3‰ with a mean of 13.5 ± 1.0‰ (n = 46). Mean air temperatures (MATs) were inferred using species-specific δ18OPO4–δ18OH2O-calibrations for modern mammals and a present-day precipitation δ18OH2O-MAT relation for Switzerland. Similar average MATs of 6.6 ± 3.6°C for the deposits dated to ~ 80 ka and 6.5 ± 3.3°C for those dated to the interval 51–27 ka were estimated. This suggests that these mammals in the Ajoie area lived in mild periods of the late Pleistocene with MATs only about 2.5°C lower than modern-day temperatures.


Geodiversitas ◽  
2015 ◽  
Vol 37 (2) ◽  
pp. 237-266 ◽  
Author(s):  
Jean-Baptiste Fourvel ◽  
Philippe Fosse ◽  
Philippe Fernandez ◽  
Pierre-Olivier Antoine

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