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Variation in growth and reproduction of Bolomys lasiurus (Rodentia: Muridae) in an Amazonian savanna

Published online by Cambridge University Press:  10 July 2009

Angelo De Lima Francisco
Affiliation:
Departamento de Ecologia, Institute Nacional de Pesquisas da Amazônia, Caixa Postal 478, 69011–970 Manaus AM, Brazil
William E. Magnusson
Affiliation:
Departamento de Ecologia, Institute Nacional de Pesquisas da Amazônia, Caixa Postal 478, 69011–970 Manaus AM, Brazil
Tânia M. Sanaiotti
Affiliation:
Departamento de Ecologia, Institute Nacional de Pesquisas da Amazônia, Caixa Postal 478, 69011–970 Manaus AM, Brazil

Abstract

Reproduction by Bolomys lasiurus is strongly seasonal in the Amazonian savanna of Alter do Chāo, Pará, Brazil. No pregnant or lactating females were recorded during the early dry season (July-September). Relative growth rates showed a similar though less consistent pattern. These patterns do not appear to be due to a direct effect of rainfall as high reproduction and growth were recorded during the late dry season (October-November), even though rainfall and the availability of fruits of shrubs were low during that period. It is likely that reinitiation of reproduction during the dry season is due to an increase in the availability of invertebrates and/ or wind-dispersed seeds. Fire at the end of the dry season appears to affect the diet of the rats, causing an increase in the ingestion of invertebrates during the following wet season. However, our data do not indicate that fire affects individual reproductive output or growth.

Type
Research Article
Copyright
Copyright © Cambridge University Press 1995

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References

LITERATURE CITED

Alho, C. J. R. 1979a. Relative exclusiveness of space as a measure of spatial distribution of mammal populations. Revista Brasileira de Biologia 39:275299.Google Scholar
Alho, C. J. R. 1979b. The application of a technique to survey small mammal populations under ecological circumstances. Revista Brasileira de Biologia 39:597600.Google Scholar
Andrews, R. M. 1982. Patterns of growth in reptiles. Pp. 273320 in Cans, C. & Pough, F. H. (eds). Biology of the Reptilia, Volume 13. Physiology D: Physiological ecology. Academic Press, New York. 720 pp.Google Scholar
Bentley, P. J. 1977. Endocrinology. Pp. 402–276 in Goldenstein, L. (ed.). Introduction to comparative physiology. Holt, Rinehart & Winston, New York, NY. 533 pp.Google Scholar
Brisbin, I. L., Collins, C. T., White, G. C. & McCallum, D. A. 1987. A new paradigm for the analysis and interpretation of growth data: the shape of things to come. Auk 104:552554.CrossRefGoogle Scholar
Dalby, P. L. 1975. Biology of Pampas rodents. Publication of the Museum of Michigan State University, Biology Series 5:149272.Google Scholar
Fitch, H. S. 1970. Reproductive cycles in lizards and snakes. Museum of Natural History, The University of Kansas, Miscellaneous Publication 52:1247.Google Scholar
Glanz, W. E. 1982. Adaptive zones of neotropical mammals: a comparison of some temperate and tropical patterns. Pp. 95110 in Mares, M. A. & Genoways, H. H. (eds). Mammalian biology in South America. University of Pittsburgh, Pittsburgh. 539 pp.Google Scholar
Huber, O. 1982. Significance of savanna vegetation in the Amazon Territory of Venezuela. Pp. 221224 in Prance, G. T. (ed.). Biological diversification in the tropics. Columbia University Press, New York. 714 pp.Google Scholar
Macêdo, R. H. & Mares, M. A. 1987. Geographic variation in the South American cricetine rodent Bolomys lasiurus. Journal of Mammalogy 68:578594.CrossRefGoogle Scholar
Magnusson, W. E. 1987. Reproductive cycles of teiid lizards in Amazonian savanna. Journal of Herpetology 21:307316.CrossRefGoogle Scholar
Magnusson, W. E. & Sanaiotti, T. M. 1987. Dispersal of Miconia seeds by the rat Bolomys lasiurus. Journal of Tropical Ecology 3:277278.CrossRefGoogle Scholar
Melo, D. A. & Cavalcanti, I. P. 1982. Biologia de Zygodontomys laziurus (Rodentia-Cricetidae) em condiçōes de laboratório. Brasil Florestal 12:5762.Google Scholar
Miranda, I. De S. 1991. Estrutura e Fenologia de uma Comunidade Arbórea da Savana Amazônica de Alter do Chāo, Pará. Master's thesis, Instituto Nacional de Pesquisas da Amazônia/Universidade Federal do Amazonas. Manaus. 129 pp.Google Scholar
O'Connell, M. A. 1982. Population biology of North and South American grassland rodents: a comparative review. Pp. 167185 in Mares, M. A. & Genoways, H. H. (eds). Mammalian biology in South America. University of Pittsburgh, Pittsburgh, 539 pp.Google Scholar
Pereira, L. A. 1982. Uso ecologico do espaco de Zygodontomys lasiurus (Rodentia, Cricetinae) em habitat natural de cerrado do Brasil central. Master's Thesis, Universidade de Brasília, Brasília. 128 pp.Google Scholar
Pough, F. H., Heiser, J. B. & McFarland, W. N. 1989. Vertebrate life. MacMillan Publishing Co. New York, NY.937 pp.Google Scholar
Sanaiotti, T. M. & Magnusson, W. E. 1995. Effects of annual fires on the production of fleshy fruits used by birds in a Brazilian Amazonian savanna. Journal of Tropical Ecology. 11:5365.CrossRefGoogle Scholar
Souza, M. J. De & Alho, C. J. R. 1980. Distribuiçāo espacial do roedor silvestre Zygodontomys lasiurus em habitat natural do cerrado. Brasil Flortstal 10:3174.Google Scholar
Wilkinson, L. 1990. SYSTAT: the system for statistics. SYSTAT Inc., Evanston. 822 pp.Google Scholar