DOI QR코드

DOI QR Code

의암호 말조개, Unio douglasiae (Unionidae) 의 번식생태

Reproductive Ecology of the Freshwater Bivalve, Unio douglasiae (Unionidae) in Lake Uiam

  • 송미영 (국립수산과학원 중앙내수면연구소) ;
  • 임지례 (국립수산과학원 중앙내수면연구소) ;
  • 이완옥 (국립수산과학원 중앙내수면연구소) ;
  • 김성태 (국립수산과학원 자원관리과) ;
  • 김대희 (국립수산과학원 중앙내수면연구소)
  • Song, Mi-Young (Inland Fisheries Research Institute, National Fisheries Research and Development Institute) ;
  • Im, Jire (Inland Fisheries Research Institute, National Fisheries Research and Development Institute) ;
  • Lee, Wan-Ok (Inland Fisheries Research Institute, National Fisheries Research and Development Institute) ;
  • Kim, Sung Tae (Fisheries Resources Research Division, National Fisheries Research and Development Institute) ;
  • Kim, Dae-Hee (Inland Fisheries Research Institute, National Fisheries Research and Development Institute)
  • 투고 : 2015.09.03
  • 심사 : 2015.09.30
  • 발행 : 2015.09.30

초록

의암호에 서식하고 있는 말조개의 성장과 산란생태를 파악하기 위하여, 2014년 3월부터 2015년 2월까지 상대성장식, 생식소 발달단계에 따른 생식주기와 군성숙도의 월별변화를 조사하였다. 각장에 대한 각고, 각폭, 전중, 육중간의 상대성장식에서 상관계수 ($R^2$) 는 0.814-0.944로 높은 상관관계를 나타내었다. 말조개의 생식소는 소화맹낭의 주변부와 족부로 연결되는 망상결체조직에 분포하며 자웅이체로, 성숙한 난과 정자는 수관을 통해 아가미 반새에서 수정되어 수정란을 아가미의 보육낭에서 부화시켜 체외로 방출하는 난태생종이었다. 서식 지역의 월별 평균수온은 $3.9-25.9^{\circ}C$ 범위였다. 월별 비만도는 0.16-0.22 범위로 하계인 8월-9월에 낮은 값을 보이다가 10월부터 증가하여 11월과 1월에 0.22로 정점을 보였다. 월별 육중량비는 21.3-31.4%로 비만도의 월별 변화와 같은 경향을 나타내었다. 생식소지수는 0.00-4.00 범위를 나타내었고, 4월-7월까지 정점을 보인 후 8월부터 급격히 감소하였다. 생식년주기는 분열증식기 (11-1월), 성장기 (2-3월), 성숙기 (2-5월), 산란기 (4-9월), 회복기 (8-12월)로 구분되어 하계산란종이었다. 의암호산 말조개의 산란기는 4-9월 (주산란기 4-7월) 이였으며, 군성숙 각장은 29.4 mm였다.

The reproductive ecology of freshwater bivalve, Unio douglasiae in Lake Uiam were examined from March 2014 to February 2015. The gonads distributed in reticular connective tissue, the dioecious clams take an internal fertilization and fertilized eggs are stored in the foster-sack in the gills, then the hatched juveniles are released outside after an ovoviviparous process. The gonad index (GI) began to increase in April, reached the maximum value in July and to decrease in August. The reproductive cycle of U. douglasiae can be divided into five successive stages: multiplicative stage (November to January), growing stage (February to March), mature stage (February to May), spawning stage (April to September), recovery stage (August to December). The spawning periods were from April to September, and the main spawning occurred between April and July. The shell length at 50% group maturity was estimated to be 29.4 mm.

키워드

참고문헌

  1. Boolootian, R.A., Farmanfarmaian, A. and Giese, A.C. (1962) On the reproductive cycle and breeding habits of two western species of Haliotis. Biological bulletin, 122: 183-192. https://doi.org/10.2307/1539587
  2. Chang, Y,J. and Lee, T.Y. (1982) Gametogenesis and reproductive cycle of the cockel. Fulvia mutica (Reeve). Journal of Korean Fisheries Society, 15: 241-253. [in Korean]
  3. Chen, T.-H., Ouyang S., Xiong L.-P., Qi, T. and Wu, X.-P. (2010) Studies on the population structure and reproductive traits of Unio douglasiae in Qinglan Lake, Jiangxi Province. Acta hydrobiologica Sinica, 34(3): 479-487.
  4. Chung, E.-Y., Hur S.B., Hur Y.-B. and Lee J.S. (2001) Gonadal maturation and artificial spawning of the Manila clam, Ruditapes philippinarum (Bivalvia: Veneridae), in Komso Bay, Korea. Journal of Fisheries Science and Technology, 4(4): 208-218.
  5. Eversole, A.G. (1997) Gametogenesis of Mercennaria mercennaria, M. cappechiensis and their hybrids. Mautilus, 110: 107-110.
  6. Lee, J.-S. and Min, D.-K. (2002) A catalogue of Molluscan Fauna in Korea. Korean Journal of Malacology, 18(2): 93-217. [in Korean]
  7. Lee, S.H., Baik, S.K., Hwang, S.J. and Kim, B.H. (2009) Comparison of Grazing Characteristics of a Freshwater Bivalve Unio douglasiae (Unionidae) on the Cold and Warm Phytoplankton Communities in Eutrophic Lake. Korean Journal of Limnology, 42(1): 115i-123. [in Korean]
  8. Lee, Y.J., Kim, B.H., Kim, Y.N., Um, H.Y. and Hwang, S.J. (2008) Effects of Temperature, Food Concentration, and Shell size on Filtering Rate and Pseudofeces Production of Unio douglasiae on Microcystis aeruginosa. Korean Journal of Limnology, 41: 61-67. [in Korean]
  9. Liu, H.Z., Zhu, Y.R., Smith, C. and Reichard, M. (2006) Evidence of Host Specificity and Congruence between Phylogenies of Bitterling and Freshwater Mussels. Zoological Studies, 45(3): 428-434.
  10. Mann, R. (1979) Some biochemical and physiological aspects of growth and gametogenesis in Crassostrea gigas and Ostrea edulis grown at sustained elevated temperatures. Journal of marine Biological association of U.K., 59: 95-110. https://doi.org/10.1017/S0025315400046208
  11. Kim, B.H., Lee, J.H. and Hwang, S.J. (2011) Inter- and intra-specific differences in filtering activities between two unionids, Anodonta woodiana and Unio douglasiae, in ambient eutrophic lake waters. Ecological Engineering, 37: 1957-1967. [in Korean] https://doi.org/10.1016/j.ecoleng.2011.08.008
  12. Kim, H.S., Yang, H. and Park, J.Y. (2013) Host species Preference of Acheilognathus signifer (Pisces: Acheilognathinae) for spawning in Freshwater Mussels. Korean Journal of Ichthyology, 25(4): 208-215. [in Korean]
  13. Kwon, O.K., Lee J. S. and Park, G. M. (1987) the studies on the mollusks in the lake Ulam(7). Kor. J. Limn., 20(1): 30-38. [in Korean]
  14. Kwon, O.K., Min, D.K. Lee, J.R. Lee, J.S., Je J.G. and Choe, B.L. (2001) Korean Mollusks with color illustration. Min's shell House, 332pp. [in Korean]
  15. Park, G.M. and Kwon, O.K. (1995) Seasonal Gonadal Cycle of the Seven Species of Freshwater Unionidae (Pelecypoda: Unionoida). The Korean Journal of Malacology, 11(2): 147-163. [in Korean]
  16. Shimizu, A., Aida, K. and Hanya, I. (1987) Annual Reproductive Cycle in an Autumn-Spawning Bitterling Acheilognathus rhombea. Nippon Suisan Gakkaishi, 53(4): 529-536. https://doi.org/10.2331/suisan.53.529
  17. Yokoyama, A. and Park, H.D., (2002) Mechanism and Prediction for Contamination of Freshwater Bivalves (Unionidae) with the Cyanobacterial Toxin Microcystin in Hypereutrophic Lake Suwa, Japan. Environmental Toxicology, 17(5): 424-433. https://doi.org/10.1002/tox.10075