| Literature DB >> 22467998 |
Madeleine E Hardus, Adriano R Lameira, Astri Zulfa, S Suci Utami Atmoko, Han de Vries, Serge A Wich.
Abstract
Meat-eating is an important aspect of human evolution, but how meat became a substantial component of the human diet is still poorly understood. Meat-eating in our closest relatives, the great apes, may provide insight into the emergence of this trait, but most existing data are for chimpanzees. We report 3 rare cases of meat-eating of slow lorises, Nycticebus coucang, by 1 Sumatran orangutan mother-infant dyad in Ketambe, Indonesia, to examine how orangutans find slow lorises and share meat. We combine these 3 cases with 2 previous ones to test the hypothesis that slow loris captures by orangutans are seasonal and dependent on fruit availability. We also provide the first (to our knowledge) quantitative data and high-definition video recordings of meat chewing rates by great apes, which we use to estimate the minimum time necessary for a female Australopithecus africanus to reach its daily energy requirements when feeding partially on raw meat. Captures seemed to be opportunistic but orangutans may have used olfactory cues to detect the prey. The mother often rejected meat sharing requests and only the infant initiated meat sharing. Slow loris captures occurred only during low ripe fruit availability, suggesting that meat may represent a filler fallback food for orangutans. Orangutans ate meat more than twice as slowly as chimpanzees (Pan troglodytes), suggesting that group living may function as a meat intake accelerator in hominoids. Using orangutan data as a model, time spent chewing per day would not require an excessive amount of time for our social ancestors (australopithecines and hominids), as long as meat represented no more than a quarter of their diet. ELECTRONIC SUPPLEMENTARY MATERIAL: The online version of this article (doi:10.1007/s10764-011-9574-z) contains supplementary material, which is available to authorized users.Entities:
Year: 2012 PMID: 22467998 PMCID: PMC3311982 DOI: 10.1007/s10764-011-9574-z
Source DB: PubMed Journal: Int J Primatol ISSN: 0164-0291 Impact factor: 2.264
Fig. 1Slow loris capture locations in the research area of Ketambe, including cases described by Utami and van Hooff (1997). (Illustrations by A. R. Lameira).
Slow loris captures by Sumatran orangutans at Ketambe research station
| # | Year | Month | Data available | Reference |
|---|---|---|---|---|
| 1 | 1989–1991 | — | Location | Utami and van Hooff ( |
| 2 | 1989–1991 | — | Location | Utami and van Hooff ( |
| 3 | 1989–1991 | — | Location | Utami and van Hooff ( |
| 4 | 1992 | February | Location, food availability | Utami and van Hooff ( |
| 5 | 1993 | April | Location, food availability | Utami and van Hooff ( |
| 6 | 1994 | February | Location, food availability | Utami and van Hooff ( |
| 7 | 2007 | February | Location, food availability, duration, feeding rate, meat sharing | This study |
| 8 | 2007 | December | Location, food availability, duration, feeding rate, meat sharing, chewing rates | This study |
| 9 | 2008 | April | Location, food availability, duration, feeding rate | This study |
Fig. 2(a) Frequency histogram showing the distribution of number of follow hours of Yet for the various observed fruit availabilities in 2006–2008. (b) Frequency histogram showing the null distribution of mean values of fruit availability for 10,000 sets of 3 randomly drawn fruit availabilities based on the distribution shown in a.
Fig. 3(a) Fruit availability 1991–1994, fruit range (5.6–19.6%), ripe fruit range (1.9–10.1%). The slow loris symbol represents the date of slow loris captures by orangutans. (b) Fruit availability 2006–2008, fruit range (1.8–8.0%), ripe fruit range (0.7–4.6%). No data are available for April–August 2007 because of local political unrest. The slow loris symbol represents the date of slow loris captures by orangutans.
Feeding time and rates on slow lorises by the focal mother and infant during the 3 recent cases
| Year | Month | Time (min) mother | Time (min) infant | Total time | Feeding rate mother (g/h) | Feeding rate infant (g/h) |
|---|---|---|---|---|---|---|
| 2007 | February | 174 | 114 | 174 | 160.9 | 142.4 |
| 2007 | December | 244 | 46 | 244 | 155.3 | 137.5 |
| 2008 | April | 140 | 196 | 196 | 141.2 | 124.8 |
Time (min) mother and time (min) infant = the feeding time for the adult orangutan female and her infant. Total time = total observation time from moment of capture until end of consumption, during which mother and infant ate the slow loris either alone or together.
Fig. 4Time spent feeding on insects per month for 6 adult females in the Ketambe area during 2007 and 2008.
Time chewing on raw meat required to satisfy 25% of an individual’s energy daily requirements vs. feeding rates of orangutans and chimpanzees and daily energy requirements of Australopithecus africanus and Homo erectus
| Daily energy requirements |
|
|
|---|---|---|
| Feeding rate | ||
| Orangutans: 185 kcal/h | 2.04 h | 3.36 h |
| Chimpanzees: 400 kcal/hb | 0.94 h | 1.55 hc |
aAiello and Key (2002).
bWrangham and Conklin-Brittain (2003).
c cf. Wrangham and Conklin-Brittain (2003).