Length-Weight Relationship and Condition Factors of Hotate Clams (Patinopecten yessoensis) Cultivated in Funka Bay, Japan at Different Stations

Authors

  • Fasya Pingka Diandari Universitas Jendral Soedirman Author
  • Emyliana Listiowati Author
  • Rima Oktavia Kusuma Author

DOI:

https://doi.org/10.62521/vrppxd61

Keywords:

Hotate clams, length-weight relation, condition factors, growth patterns

Abstract

Hotate clams (Patinopecten yessoensis) are a species of Bivalvia that is often found in the waters of Funka Bay, Hokkaido, Japan. The information regarding the relationship between length and weight and condition factors for hotate clams is important for knowing their growth patterns. This research aimed to examine the length-weight relationship and conditions of 56 Hotate clams collected in August of 2022 at two different locations. The relationship between length-weight and growth patterns shows that the range of b values at stations A and B is 2.45, and 1.86 in the waters of Funka Bay while the growth pattern in Funka Bay displays negative allometric growth with r values ranging from 0.90-0.92 (strong positive correlation). The condition factor values for Hotate clams at stations A and B are 5.45 and 1.28. There is a good welfare value for Hotate clams because the condition factor (Kn) is greater than one.

Downloads

Download data is not yet available.

References

Aban, S.M., Argente, F.A.T., Raguindin, R.S., Garcia, A.C., Ibarra, C.E. & De Vera, R.B (2017). Length-weight relationships of the asian green mussel, Perna viridis (Linnaeus 1758) (Bivalvia: Mytilidae) population in Bolinao Bay, Pangasinan. PSU Journal of Natural and Allied Sciences, 1(1):1-6.

Alnahdi, A., Leaniz, C.G.D., & King, A. J. (2016). Spatio-temporal variation in length-weight relationships and condition of the ribbonfish Trichiurus lepturus (Linnaeus, 1758): Implications for fisheries management. Journal Plos One, 11(8): 1–14.

At, A., Erling, U. J. P., Angsa, K. O. T. A. L., & Ceh, A. (2018). Hubungan Panjang Dan Berat Serta Faktor Kondisi Kerang Bulu Anadara antiquata Di Ujung Perling, Kota Langsa Aceh. 2, 30–34.

Buban, I. C. R., Soliman, V. S., Bobiles, R. U., & Pulvinar, A. (2019). Morpho- biometric relationship, relative condition factor and meat yield of distant scallop Bractechlamys vexillum (Reeve, 1853) in Asid Gulf, Philippines. Asian Fisheries Science, 32(4), 147–153.

Chauvaud, L., Patry, Y., Jolivet, A., Cam, E., Le Goff, C., Strand, Ø., Charrier, G., Thébault, J., Lazure, P., Gotthard, K., & Clavier, J. (2012). Variation in size and growth of the Great Scallop Pecten maximus along a latitudinal gradient. PLoS ONE, 7(5), 6–15.

Ding, J., Zhao, L., Chang, Y., Zhao, W., Du, Z., & Hao, Z. (2015). Transcriptome sequencing and characterization of Japanese scallop Patinopecten yessoensis from different shell color lines. PLoS ONE, 10(2), 1–18.

Dvoretsky, A. G., & Dvoretsky, V. G. (2022). Biological Aspects, Fisheries, and Aquaculture of Yesso Scallops in Russian Waters of the Sea of Japan. Diversity, 14(5).

Fisheriesaquaculture, F. A. O., & Paper, T. (2022). Hatchery-based seed production of the Japanese scallop, Mizuhopecten yessoensis. In Hatchery-based seed production of the Japanese scallop, Mizuhopecten yessoensis.

Hou, R., Bao, Z., Wang, S., Su, H., Li, Y., Du, H., Hu, J., Wang, S., & Hu, X. (2011). Transcriptome sequencing and De Novo analysis for Yesso Scallop (Patinopecten yessoensis) using 454 GS FLX. PLoS ONE, 6(6).

Ichinokawa, M., Okamura, H., & Kurota, H. (2017). The status of Japanese fisheries relative to fisheries around the world. ICES Journal of Marine Science, 74(5), 1277–1287.

Jiang, W., Li, J., Gao, Y., Mao, Y., Jiang, Z., Du, M., Zhang, Y., & Fang, J. (2016). Effects of temperature change on physiological and biochemical responses of Yesso scallop, Patinopecten yessoensis. Aquaculture, 451, 463–472.

Kuriakose, S. (2017). Estimation of length weight relationship in fishes. Course Manual Summer School on Advanced Methods for Fish Stock Assessment and Fisheries Management. Lecture Note Series, L, 215–220.

Mau, A., Kangkan, A. L., & Ayubi, A. Al. (2023). Sebaran Panjang Kerang Kepah Di Desa Tanah Merah Kecamatan Kupang Tengah Kabupaten Kupang. 4(1):145–153.

Muchlisin, Z. A., Musman, M., & Siti Azizah, M. N. (2010). Length-weight relationships and condition factors of two threatened fishes, Rasbora tawarensis and Poropuntius tawarensis, endemic to Lake Laut Tawar, Aceh Province, Indonesia. Journal of Applied Ichthyology, 26(6), 949–953.

Ogunola, O. S., Onada, O. A., Falaye, A. E., and Kunzman, A. (2017). Preliminary Investigation of Some Biological Aspects of Length- Weight Relationship and Condition Factor of Periwinkle (Tympanotonus fuscatus, Linnaeus 1758) from Okrika Estuary. Global Journal of Science Frontier Research: Marine Science. 17(1): 1-9.

Radiarta, I. N., & Saitoh, S. I. (2008). Satellite-derived measurements of spatial and temporal chlorophyll-a variability in Funka Bay, southwestern Hokkaido, Japan. Estuarine, Coastal and Shelf Science, 79(3), 400–408.

Radiarta, I. N., Saitoh, S. I., & Miyazono, A. (2008). GIS-based multi-criteria evaluation models for identifying suitable sites for Japanese scallop (Mizuhopecten yessoensis) aquaculture in Funka Bay, southwestern Hokkaido, Japan. Aquaculture, 284(1–4): 127–135.

Ricker, W.E. (1975). Computation and Interpretation of Biological Statistics of Fish Populations. Bull. Fish. Res. Board Can. 19:91-382p.

Rochmady, R. (2012). Hubungan panjang bobot dan faktor kondisi kerang lumpur Anodontia edentula, Linnaeus 1758 di pulau Tobea Kecamatan Napabalano, Kabupaten Muna. Agrikan: Jurnal Agribisnis Perikanan, 5(1), 1–8.

Rohmah, A., & Muhsoni, F. F. (2020). Dinamika Populasi Kerang Tahu Meretrix meretrix Di Perairan Bangkalan Madura. Juvenil: Jurnal Ilmiah Kelautan Dan Perikanan, 1(3), 331–338.

Sharma, R., Venkateshvaran, K., and Purushothaman, C. S. (2005). Length- weight relationship and condition factor of Perna viridis (Linnaeus, 1758) and Meretrix meretrix (Linnaeus, 1758) from Mumbai waters. Journal Indian Fish. 32(2): 157 - 163.

Silaban, R., Silubun, D. T., & Jamlean, A. A. R. (2021). Aspek Ekologi Dan Pertumbuhan Kerang Bulu (Anadara antiquata) Di Perairan Letman, KAabupaten Maluku Tenggara. Jurnal Kelautan: Indonesian Journal of Marine Science and Technology, 14(2), 120–131.

Silina, A. V., & Zhukova, N. V. (2007). Growth variability and feeding of scallop Patinopecten yessoensis on different bottom sediments: Evidence from fatty acid analysis. Journal of Experimental Marine Biology and Ecology, 348(1–2), 46–59.

Uki, N. (2006). Stock enhancement of the Japanese scallop Patinopecten yessoensis in Hokkaido. Fisheries Research, 80(1), 62–66.

Wanimbo, E., & Kalor, J. D. (2019). Morfometrik Kerang Polymesoda erosa di Perairan Teluk Youtefa Jayapura Papua. ACROPORA: Jurnal Ilmu Kelautan Dan Perikanan Papua, 1(2).

Wiwiet Teguh Taufan, Anggoro, S., & Widowati, I. (2016). Bioekologi Kerang Simping (Amusium pleuronectes) Di Perairan Kabupaten Brebes. Prosiding Seminar Nasional Tahunan Ke V Hasil-Hasil Penelitian Perikanan Dan Kelautan, F1 07, 581–595.

Yu, Z., Liu, C., Wang, F., Xue, Z., Zhang, A., Lu, G., Wang, L., & Song, L. (2019). Diversity and annual variation of phytoplankton community in Yesso scallop (Patinopecten yessoensis) farming waters of North Yellow Sea of China. Aquaculture, 511(June), 734266.

Zabarun, A., Bahtiar, & Haslianti. (2016). Hubungan panjang berat, faktor kondisi dan rasio berat daging Kerang Pasir (Modiolus modulaides) di perairan Bungkutoko Kota Kendari. Jurnal Manajemen Sumberdaya Perairan, 2(1), 21–32.

Downloads

Published

2024-11-27

Issue

Section

Articles

How to Cite

Length-Weight Relationship and Condition Factors of Hotate Clams (Patinopecten yessoensis) Cultivated in Funka Bay, Japan at Different Stations. (2024). Journal Of Artha Biological Engineering, 2(1), 38-50. https://doi.org/10.62521/vrppxd61