Revista de Biología Tropical ISSN Impreso: 0034-7744 ISSN electrónico: 2215-2075

OAI: https://revistas.ucr.ac.cr/index.php/rbt/oai
Crecimiento del Mejillón Chora <i>Mytella guyanensis</i> L. (Bivalvia: Mytilidae), en el Golfo de Nicoya, Costa Rica
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Sibaja, W. G., & Villalobos, C. R. (1986). Crecimiento del Mejillón Chora <i>Mytella guyanensis</i> L. (Bivalvia: Mytilidae), en el Golfo de Nicoya, Costa Rica. Revista De Biología Tropical, 34(2), 231–236. Retrieved from https://revistas.ucr.ac.cr/index.php/rbt/article/view/24300

Abstract

In Mytella guyanensis Lamarck, 1819, the frequency distributions for the length, breadth and height of the shell are assymetrical and essentially unimodal (same age group). The maximum class frequencies are: 50-59.9 mm for the length; 22.5-26.9 mm for the breadth and 15-17.9 mm for the height. The shell is allometric and the length is an adequate parameter. During the first twelve months, the shell shows an activegrowth with an average of 5.084 mm/mo; in the next eigth months increments are in the order of 1.048 mm/mo decreasing to 0.428 mm/mo in the last ten months. Approximately 95 % of the asyntotic length (L.) is reached within twenty months of age. By the fifth month Mytella guyanensis is more than 25 mm long; however all individuals are sexually inmature.

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References

Allen, K.R. 1966. A method of fitting growth curves of the von Bertalanffy type. J. Fish. Res. Bd. Canada 23: 163-179.

Bannister, J .V. 1975. Shell parameters in relation to zonation in Mediterranean limpets. Mar. Biol. 31:63-67.

Cassic, R.M. 1950. The analysis of polymodal frecuencies distribution by the probability paper method. New Zel. S.C. Rev. 8: 89-91.

Cassie, R.M. 1954. Some uses of probability paper inthe analysis of size frecuency distributions. Austr. J. Mar. and Fresh. Res. 5: 513-522.

Ceccherelli, V. U. & R. Rossi. 1984. Settlement, growth and production of mussel M. galloprovincialis. Mar. Ecol. Prog. Ser. 166: 173-184.

Crabtree, D.M. et al. 1979/80. Consistency in growth line counts in bivalve specimens. Palaeogeography. Palaeoclimatology and Palaeoecology 29: 323-340.

MacDonald, B.A. & M. Thomas. 1980. Age determination of the soft-shell clam M. arenaria using shell internal growth lines. Mar. Biol. 58: 105-109.

Muhlia, A. et al. 1980. Análisis comparativo de los parámetros de crecimiento de tres especies de bivalvos del género Macoma, en el Pacífico Nororiental. An. Ctro. Ciene. Mar. y Limnol.; Univ. Nal. Auton. México 7: 291-302.

Newell, C. R. & H. Hidu. 1982. The effects of sediments type on growth rate and shell allometry in the soft shelled clam M. arenaria L.J. Exp. Mar. Biol. Ecol. 65: 285-295.

Palacios. J.A. 1985. Biometría, crecimiento y madurez sexual de la almeja blanca P. asperrima (Pclceypoda: Veneridae), en Colorado de Abangares, Guanacaste, Costa Rica. Tesis de Grado, Escuela de. Biología, Universidad Nacional, Heredia, Costa Rica. 87 p.

Palacios, J.A. et al. 1983. Estructura poblacional y cuantificación de Donax dentifer Hanley. 1843 (Pelecypoda: Donacidae) en playa Garza, Puntarenas, Costa Rica. Rev. Biol. Trop. 31: 251-256.

Ricker, W.E. 1975. Computation and interpretation of biological statistics of fish populations. Bull. Fish. Res. Bd. Canada No. 191. 382 p.

Seed, R. 1968. Factors influencing shell in the mussel Medulis. J. Mar. Biol. Ass. U.K. 48: 561-584.

Suchaneck, K,T.H . 1981. The role of disturbance in the evolution of life history strategies in .the intertidal mussels Medulis and M. californionus. Oecologia 50: 143-152.

Thompson, G.B. 1980. Distribution and population dynamics of the limpet Patella vulgata L. in Bantry Bay. J. Exp. Mar. Biol. Ecol. 45: 173-127.

Wilbur, K.M & G. Owen, G. 1964. Growth. In: Wilbur y Yonge (Eds.). Physiology of Molusca. Vol. l. Academic Press. 473 p.

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