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20 December 2017

The Use of Biomass Halves the Amount of Carbon Stored by Plants...

04 December 2017

Surprise in the Kangaroo Family Tree – An Outsider Is a Close Relative, After All...

17 November 2017

European forests might not be realizing their full potential ...

14 November 2017

Partnertausch als Überlebensstrategie – Flechten passen sich durch Algenwechsel an neues Klima an ...

20 October 2017

Shallow soils promote savannas in South America...

07 September 2017

Rising winter temperatures contributed to the decline of the brown bear in Europe...

03 July 2017

Elevational range limits of alpine trees not solely determined by climate...

30 June 2017

Areas affected by fire are decreasing globally...

13 June 2017

Global hotspots for alien species are island and coastals regions...

31 May 2017

Downsizing in animal communities leads to functional decay in tropical forests...

24 May 2017

Zebras follow their memory when migrating ...

11 May 2017

Picky birds are most flexible...

09 May 2017

Open Day at Senckenberg Biodiversity and Climate Research Centre...

27 April 2017

Auf dem Gipfel der Evolution – Flechten bei der Artbildung zugeschaut...

19 April 2017

Bears breed across species borders...

30 March 2017

Ground water depletion due to international trade threathens food supply world-wide...

27 March 2017

Methan emissions from cows could rise by 70 per cent until 2050...

27 February 2017

New insights into the mechanisms into how ungulates got bigger in the Neogene...

20 February 2017

More warm-dwelling Animals and Plants as a Result of Climate Change ...

15 February 2017

Alien species on the rise worldwide...

02 February 2017

Partnerwahl bei Flechten – Warmes Klima macht wählerisch...

17 January 2017

Spiel mit dem Feuer – wie Eiszeitjäger das Landschaftsbild Europas prägten...

11 January 2017

How far do invasive species travel?...

04 January 2017

Domino effect: The loss of plant species triggers the extinction of animals...

Press Releases

New insights into the mechanisms into how ungulates got bigger in the Neogene

Frankfurt/ Germany, 2/27/2017. The observed increase of body size in ungulates during the 20 million years before the Pleistocene is driven by the process of species selection, according to researchers from the Senckenberg, Germany. Bigger ungulate species became more common because of a higher origination and lower extinction rate. The study, published recently in "Proceedings of Royal Society B", is the first to compare the evolution of two mammalian clades during the Neogene on two continents. The researchers point out that this biogeographic perspective yields complex explanations for apparently shared patterns.

What does the future hold for mammals? In the past, bigger was indeed better as several studies have shown an increasing trend of body size in mammals (including ungulates) until the great extinction events during the ice ages; coinciding with a cooling climate. Today it seems populations of larger-bodied species are threatened to a greater degree. Some researchers even consider dwarfing as a possible consequence of the ongoing temperature rise. Insights into the patters of body size evolution might help to predict the changes that lie ahead for mammals.

In order to understand how body size evolves in mammals, Dr. Shan Huang, Senckenberg Biodiversity and Climate Research Centre, and her colleagues analyzed a fossil data set of large herbivores (ungulates: orders Artiodactyla und Perissodactyla). The fossil remains, which include around 500 species of animals such as giraffes and hippos as well as rhinoceros and chalicotheres, cover the period between 23 to two million years ago. This is the first time the evolutionary patterns of body size in ungulates during this period were analyzed and compared between Europe and North America.

Whereas studies on body size had primarily investigated the trends of mean body size increase, Huang highlighted changes in the minimum body size. “Overall, we saw a significant increase in minimum (and maximum) body size during this time. This indicates active evolution, meaning that the animals did not evolve to bigger sizes in the course of time by chance. On the contrary, bigger species had an evolutionary advantage when competing for natural resources. This is what we call species selection“, says Huang.

According to the researchers, species selection is supported by two results. First of all, in the course of time artiodactyl species that had comparatively large bodies were more likely to diversify into new species compared to smaller artiodactyl species. This explains why in sum this order increased in body size on both continents. "It may be due to the fact that being bigger made it easier to adopt a new lifestyle and occupy new niches that appeared at that time – the basis for rapid diversification," co-author of the study, Dr. Susanne Fritz, Senckenberg Biodiversity and Climate Research Centre, explains.

Secondly, larger-bodied artiodactyl species in North America were less likely to go extinct than small-bodied species; a pattern which also emerged when the researchers compared perissodactyl species (odd-toed ungulates) in North America. The researchers speculate that this might be due to the fact that the North American continent lacked an easy southern pathway, restricting dispersal towards lower latitudes when the climate became colder towards the end of the Neogene. Larger-bodied species might have been more capable of coping with the new conditions and the associated changes in food sources.

"Our study demonstrates that similar macroevolutionary trends across regions might be generated by different processes. Even one single trait – like body size - can associate with origination and extinction rates differently in different regions and orders, perhaps even differently at different levels of taxonomic hierarchy" Huang sums up and adds: "It also highlights that the regional environment within which evolution takes place must be considered when disentangling the underlying mechanisms. To use this knowledge as a basis for future projections, we suggest doing more comparisons between continents in macroevolutionary studies."

Press images

 Hippopotamus Senckenberg

Skull of an individual of the family of Hippopotamidae from the pleistocene. In the 20 million years before, bigger species of ungulates such as this one became more common, so that ungulates as a group increased in body size through the process of species selection. Copyright: Senckenberg

Press images may be used at no cost for editorial reporting, provided that the original author’s name is published, as well. The images may only be passed on to third parties in the context of current reporting.


Dr. Shan Huang
Senckenberg Biodiversity and Climate Research Centre
Phone +49 (0)69- 7542 1845

Dr. Susanne Fritz
Senckenberg Biodiversity and Climate Research Centre
Phone +49 (0)69- 7542 1803

Sabine Wendler
Press officer
Senckenberg Biodiversity and Climate Research Centre
Phone +49 (0)69- 7542 1818


Huang, S. et al. (2017): Mammal body evolution in North America and Europe over 20 million years: Similar trends generated by different processes. Proceedings of the Royal Society B. doi: 10.1098/rspb.2016.2361

To study and understand nature with its limitless diversity of living creatures and to preserve and manage it in a sustainable fashion as the basis of life for future generations – this has been the goal of the Senckenberg Gesellschaft für Naturforschung (Senckenberg Nature Research Society) for 200 years. This integrative “geobiodiversity research” and the dissemination of research and science are among Senckenberg’s main tasks. Three nature museums in Frankfurt, Görlitz and Dresden display the diversity of life and the earth’s development over millions of years. The Senckenberg Nature Research Society is a member of the Leibniz Association. The Senckenberg Nature Museum in Frankfurt am Main is supported by the City of Frankfurt am Main as well as numerous other partners. Additional information can be found at www.senckenberg.de

200 years of Senckenberg! 2017 marks Senckenberg’s anniversary year. For 200 years, the society, which was founded in 1817, has dedicated itself to nature research with curiosity, passion and involvement. Senckenberg will celebrate its 200-year success story with a colorful program consisting of numerous events, specially designed exhibitions and a grand museum party in the fall. Of course, the program also involves the presentation of current research and future projects. Additional information can be found at: www.200jahresenckenberg.

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