Literature DB >> 24217743

Dietary modification by common brown lemurs (Eulemur fulvus) during seasonal drought conditions in western Madagascar.

Hiroki Sato1, Shinichiro Ichino2, Goro Hanya3.   

Abstract

Primates often modify dietary composition in relation to seasonal changes in food availability or climate conditions. We studied the feeding patterns of a troop of common brown lemurs (Eulemur fulvus), a semi-frugivorous strepsirhine, in a dry forest in northwestern Madagascar. To understand the mechanism of dietary modification, we recorded daily feeding times of diet items during 101 full-day observations over 1 year, and then conducted a linear model analysis to examine the effects of fruiting tree density in the forest, daily ambient temperature, and weekly rainfall (index of water retained in the forest) on the lemurs' daily feeding time. The lemurs spent dramatically more time on leaf-eating as well as total feeding time, and less time on fruit-eating during the late dry season (total 152 min/day, frugivory 56 min/day, folivory 77 min/day), as compared with other seasons when the diet was highly frugivorous (total 96 min/day, frugivory 81 min/day, folivory 8 min/day). Folivory increased as temperatures rose under the condition of low weekly rainfall, whereas frugivory was unrelated to fruiting tree density. Most (97.4%) diurnal folivory during the late dry season was spent consuming Lissochilus rutenbergianus, chewing the succulent leaves and licking the juice. Because the nutritional analysis showed that L. rutenbergianus is rich in water (80.1% of fresh weight) but poor in protein and nonstructural carbohydrates, its increased use was probably for rehydration. We conducted 13 full-night observations, because brown lemurs increase nocturnal activities during the dry season. At nighttime, the lemurs tended to spend more time eating fruit in the late dry season (32 min/night) than in the early dry season (14 min/night), and never consumed L. rutenbergianus. Fruits rich in nonstructural carbohydrates can be energy sources for Eulemur. They likely engaged in additional nocturnal frugivory for energy compensation. Brown lemurs have a flexible strategy of modifying their diet and feeding activities to cope with environmental stresses.

Entities:  

Keywords:  Behavioral thermoregulation; Eulemur; Feeding patterns; Rehydration; Seasonality; Tropical dry forests

Mesh:

Substances:

Year:  2013        PMID: 24217743     DOI: 10.1007/s10329-013-0392-0

Source DB:  PubMed          Journal:  Primates        ISSN: 0032-8332            Impact factor:   2.163


  16 in total

1.  Lemur traits and Madagascar ecology: coping with an island environment.

Authors:  P C Wright
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4.  Diet as a possible determinant of cathemeral activity patterns in primates.

Authors:  A Engqvist; A Richard
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Review 5.  Observational study of behavior: sampling methods.

Authors:  J Altmann
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Authors:  T Nakayama; T Hori; T Nagasaka; H Tokura; E Tadaki
Journal:  J Appl Physiol       Date:  1971-09       Impact factor: 3.531

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8.  Adaptations for leaf eating in the great basin kangaroo rat, Dipodomys microps.

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Journal:  Am J Phys Anthropol       Date:  2004-07       Impact factor: 2.868

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