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Phenological studies of shrub and treelet species in tropical cloud forests of Costa Rica

Published online by Cambridge University Press:  10 July 2009

Suzanne Koptur*
Affiliation:
Department of BotanyUniversity of California, Berkeley, CA 94720, USA
William A. Haber
Affiliation:
Department of Entomology, University of California, Berkeley, CA 94720, USA
Gordon W. Frankie
Affiliation:
Department of Entomology, University of California, Berkeley, CA 94720, USA
Herbert G. Baker
Affiliation:
Department of BotanyUniversity of California, Berkeley, CA 94720, USA
*
Department of Biological Sciences, Florida International University, Miami, FL 33199, USA.

Abstract

(1) During 1978–1981, marked individuals of 107 species of treelets and shrubs in three forest types between 1300–1650 m elevation at Monteverde, Costa Rica, were monitored at monthly intervals for behaviour of leafing, flowering, and fruiting.

(2) Although there was not a pronounced seasonal pattern of leafing activity, more species produced new leaves in the dry season. Species that flush large quantities of new leaves do so more commonly in the drier months. Leaf loss was gradual and unobtrusive in species observed.

(3) Flowering activity was greatest in the late dry season and early wet season. Most species exhibited extended flowering; only 15% of the species were massively flowering. Massive flowerers showed less seasonality than extended flowerers.

(4) Of the species studied, the majority had relatively unspecialized flowers which were visited by a variety of insects; small bee-pollination was the next most common, followed by hummingbird, beetle, settling moth, sphingid, butterfly, large bee and fly pollination (the pollination system of 18 species was unknown). Hummingbird pollinated species showed little seasonality of flowering when compared with species exhibiting small moth, and beetle pollination syndromes, as well as those with unspecialized flowers.

(5) The vast majority of species studied have fleshy fruits (sarcochores). Fruiting activity was less markedly seasonal than flowering. Species with fruit are more numerous in the second half of the year (the wet season and early dry season). The second year of the study saw substantially fewer species in fruit than the first year; this is attributed to the greater than usual rainfall and inclement weather during the peak flowering season.

(6) Cloud forest shrub and treelet phenology is compared with patterns of other forests that have been studied. In general, the greater the rainfall, the less seasonality of flowering and fruiting is seen. Although Monteverde is very wet, rainfall is intermediate between that of lowland dry and lowland wet forest in Costa Rica. Seasonality of flowering and fruiting at Monteverde is more pronounced than at La Selva (wet) and less obvious than in Guanacaste (dry).

Type
Research Article
Copyright
Copyright © Cambridge University Press 1988

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References

LITERATURE CITED

Augspurger, C. K. 1980. Mass-flowering of a tropical shrub (Hybanthus prunifolius): influence on pollinator attraction and movement. Evolution 34:475488.Google ScholarPubMed
Augspurger, C. K. 1981. Reproductive synchrony of a tropical shrub: experimental studies on effect of pollinators and seed predators on Hybanthus prunifolius (Violaceae). Ecology 62:775789.CrossRefGoogle Scholar
Augspurger, C. K. 1982. A cue for synchronous flowering. Pp. 133150 in Leigh, E. G. et al. (eds). The ecology of a tropical forest. Smithsonian Institution Press.Google Scholar
Baker, H. G., Bawa, K. S., Frankie, G. W. & Opler, P. A. 1983. Reproductive biology of plants in tropical forests. In Golley, F. B. (ed.). Tropical rain forest ecosystems; structure and function. Ecosystems of the World 14A. Elsevier Scientific Publishing Comapny, Amsterdam.Google Scholar
Bawa, K. S. 1974. Breeding systems of tree species of a lowland tropical community. Evolution 28:8592.CrossRefGoogle ScholarPubMed
Bawa, K. S. 1979. Breeding systems of trees in a tropical wet forest. New Zealand Journal of Botany 17:521524.CrossRefGoogle Scholar
Bawa, K. S. & Beach, J. S. 1983. Self-incompatibility systems in the Rubiaceae of a tropical lowland wet forest. American Journal of Botany 70:12811288.CrossRefGoogle Scholar
Borchert, R. 1983. Phenology and control of flowering in tropical trees. Biotropica 15(2):8189.CrossRefGoogle Scholar
Buskirk, R. E. & Buskirk, W. H. 1976. Changes in arthropod abundance in a highland Costa Rican forest. American Midland Naturalist 95(2):288298.CrossRefGoogle Scholar
Croat, T. B. 1975. Phenological behavior of habit and habitat classes on Barro Colorado Island (Panama Canal Zone). Biotropica 7:270277.CrossRefGoogle Scholar
Dansereau, P. & Lems, K. 1957. The grading of dispersal types in plant communities and their ecological significance. Contributions to the Institute of Botany, University of Montreal 71:152.Google Scholar
Feinsinger, P. 1976. Organization of a tropical guild of nectarivorous birds. Ecological Monographs 46(3):257291.CrossRefGoogle Scholar
Frankie, G. W., Baker, H. G. & Opler, P. A. 1974. Comparative phenological studies of trees in tropical wet and dry forests in the lowlands of Costa Rica. Journal of Ecology 62:881919.CrossRefGoogle Scholar
Gentry, A. H. 1974. Flowering phenology and diversity in tropical Bignoniaceae. Biotropica 6:6468.CrossRefGoogle Scholar
Herrera, C. M. 1984. Avian interference of insect frugivory: an exploration into the plant-bird-fruit pest evolutionary triad. Oikos 42:203210.CrossRefGoogle Scholar
Hilty, S. L. 1980. Flowering and fruiting periodicity in a premontane rain forest in Pacific Colombia. Biotropica 12:292306.CrossRefGoogle Scholar
Holdridge, L. R. 1967. Life zone ecology. Revised edition. Tropical Science Center. San Jose, Costa Rica.Google Scholar
Janzen, D. H. 1983. Costa Rican natural history. University of Chicago Press. Chicago, USA.CrossRefGoogle Scholar
Lawton, R. O. & Dryer, V. H. 1981. The vegetation of the Monteverde Cloud Forest Reserve. Brenesia 18:101116.Google Scholar
Koptur, S. 1983. Flowering phenology and floral biology of Inga. Systematic Botany 8:354368.CrossRefGoogle Scholar
Lieberman, D. 1982. Seasonality and phenology in a dry tropical forest in Ghana. Journal of Ecology 70:791806.CrossRefGoogle Scholar
Lumer, C. 1980. Rodent pollination of Blakea (Melastomataceae) in a Costa Rican Forest. Brittonia 32:512517.CrossRefGoogle Scholar
Milton, K., Windsor, D. M., Morrison, D. M. & Estribi, M. A. 1982. Fruiting phenologies of two neotropical Ficus species. Ecology 63:752762.CrossRefGoogle Scholar
Opler, P. A., Frankie, G. W. & Baker, H. G. 1976. Rainfall as a factor in the release, timing, and synchronization of anthesis by tropical trees and shrubs. Journal of Biogeography 3:231236.CrossRefGoogle Scholar
Opler, P. A., Frankie, G. W. & Baker, H. G. 1980. Comparative phenological studies of treelet and shrub species in tropical wet and dry forests in the lowlands of Costa Rica. Journal of Ecology 68:167188.CrossRefGoogle Scholar
Powell, G. V. N. 1979. Structure and dynamics of interspecific flocks in a neotropical mid-elevation forest. Auk 96(2):375390.Google Scholar
Rathcke, B. & Lacey, E. P. 1985. Phenological patterns of terrestrial plants. Annual Review of Ecology and Systematics 16:179214.CrossRefGoogle Scholar
Reich, P. B. & Borchert, R. 1984. Water stress and tree phenology in a tropical dry forest in the lowlands of Costa Rica. Journal of Ecology 72:6174.CrossRefGoogle Scholar
Sobrevila, C. & Arroyo, M. T. K. 1978. Breeding systems in a montane tropical cloud forest in Venezuela. Plant Systematics and Evolution 140:1937.CrossRefGoogle Scholar
Tanner, E. V. J. 1982. Species diversity and reproductive mechanisms in Jamaican trees. Biological Journal of the Linnean Society 18(3):263278.CrossRefGoogle Scholar
Wheelwright, N. T. 1985. Competition for dispersers, and the timing of flowering and fruiting in a guild of tropical trees. Oikos 44:465477.CrossRefGoogle Scholar