Relationship between spat density, food availability, and growth of spawners in cultured Mizuhopecten yessoensis in Funka Bay: concurrence with El Niño Southern Oscillation

Author:

Baba Katsuhisa1234,Sugawara Rieko1234,Nitta Hisashi1234,Endou Kiyoshi1234,Miyazono Akira1234

Affiliation:

1. Hokkaido Hakodate Fisheries Experiment Station, 1-2-66 Yunokawa, Hakodate, Hokkaido 042-0932, Japan.

2. Hokkaido North-Oshima District Fisheries Training Center, 228-1 Morikawa, Mori, Hokkaido 049-2313, Japan.

3. Hokkaido Iburi District Fisheries Training Center, 1-156-3 Funami, Muroran, Hokkaido 051-0013, Japan.

4. Hokkaido Central Fisheries Experiment Station, 238 Hamanaka, Yoichi, Hokkaido 046-8555, Japan.

Abstract

To elucidate the factors that influence the interannual variation in the density of cultured Japanese scallop ( Mizuhopecten yessoensis ) spat, we analyzed the relationship between spat density (Ds), monthly chlorophyll a (chl a) concentration, water temperature, and adductor muscle weight of spawners over 15 years (1992–2006) in Funka Bay (Japan) on the western North Pacific Ocean. The interannual variation of spat density was best explained by a campaniform model that used chl a concentration in February ([chl]Feb) and a categorical variable that indicates whether growth of spawners in a year is low or not as independent variables (R2 = 0.91). The gonadosomatic index increased fastest in February. Low growth years were detected as outliers in the Ds – [chl]Feb relationship and were characterized by an average weight of adductor muscles in February of <12 g. Therefore, food availability during gonadal development and growth conditions of spawners were the main factors determining spat density. The proportion of ovary necrosis was high in the years of low [chl]Feb and low growth. Those years corresponded with El Niño and La Niña years, respectively. Thus, global climatic anomalies apparently affect reproduction of the scallop in Funka Bay.

Publisher

Canadian Science Publishing

Subject

Aquatic Science,Ecology, Evolution, Behavior and Systematics

Reference39 articles.

1. Modeling of the spring bloom in Funka Bay, Japan

2. Barber, B.J. 1984. Reproductive energy metabolism in the bay scallop, Argopecten irradians concentricus (Say). Ph.D. thesis, University of South Florida, Tampa, Florida.

3. Barber, B.J., and Blake, N.J. 2006. Reproductive physiology. In Scallops: biology, ecology and aquaculture. 2nd ed. Edited by S.E. Shumway and G.J. Parsons. Elsevier, Amsterdam, the Netherlands. pp. 357–416.

4. Beninger, P.G., and Le Pennec, M. 2006. Structure and function in scallop. In Scallops: biology, ecology and aquaculture. 2nd ed. Edited by S.E. Shumway and G.J. Parsons. Elsevier, Amsterdam, the Netherlands. pp. 123–227.

5. Brand, E., Merino, G.E., Abarca, A., and Stotz, W. 2006. Scallop fishery and aquaculture in Chile. In Scallops: biology, ecology and aquaculture. Edited by S.E. Shumway and G.J. Parsons. Elsevier, Amsterdam, the Netherlands. pp. 1293–1314.

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