Growth and Survival of the Seaweed Eucheuma cottonii Cultivated Using a Verticulture System

Authors

Lalu Alfito Dinata

Aquaculture Study Program, Department of Fisheries and Marine Sciences, Faculty of Agriculture, University of Mataram, Jalan Pendidikan No.32 Mataram 83115, Nusa Tenggara Barat (Indonesia)

Salnida Yuniarti Lumbessy ORCID icon for Salnida Yuniarti Lumbessy

Aquaculture Study Program, Department of Fisheries and Marine Sciences, Faculty of Agriculture, University of Mataram, Jalan Pendidikan No.32 Mataram 83115, Nusa Tenggara Barat (Indonesia)

Apri I. Supii

Research Center for Marine and Land Bioindustry, National Research and Innovation Agency (BRIN), NTB (Indonesia)

Article Information

DOI: 10.51584/IJRIAS.2025.101100118

Subject Category: Social science

Volume/Issue: 10/11 | Page No: 1281-1291

Publication Timeline

Submitted: 2025-12-04

Accepted: 2025-12-11

Published: 2025-12-23

Abstract

Eucheuma cottonii is one of the most widely cultivated seaweeds in the Asia–Pacific region, including Indonesia. Various farming techniques have been developed to enhance its production, yet the use of verticulture—multi-tiered cultivation structures—remains limited for this species. This study is one of the first to systematically evaluate the application and effectiveness of a multi-tiered verticulture system for E. cottonii cultivation, specifically analyzing the effect of depth gradient within this novel structure. The experiment was conducted from June to September 2025 in Kodek Bay, North Lombok, Indonesia, using a completely randomized design with four depth treatments and three replicates: 0 m (P0), 1 m (P1), 2 m (P2), and 3 m (P3). Seedlings with an initial weight of 30 g were used. The measured parameters included absolute weight gain, specific growth rate, thallus length, thallus number, survival rate, and water quality. Data were analyzed using analysis of variance (ANOVA) followed by Duncan’s multiple range test in SPSS. The results showed that depth treatments had a significant effect on absolute weight gain, specific growth rate, thallus length, thallus number, and survival of E. cottonii. Water-quality parameters remained within optimal ranges across all treatments, with temperature 27–28°C, pH 8.06–8.07, salinity 34–35 ppt, and light intensity 3,061–5,607 lux. The best performance was obtained at the 0-m depth (P0), yielding an absolute weight gain of 29.29±2.14 g, thallus length of 1.1±0.12 cm, 67±1.53 thalli, a specific growth rate of 2.27±0.12% day⁻¹, and a survival rate of 88.9±0.58%. Based on these findings, the 0-m depth (water surface) is definitively recommended for E. cottonii farming using the verticulture system in Kodek Bay and similar shallow waters with equivalent oceanographic conditions.

Keywords

E. cottonii, depth, growth, Kodek Bay, verticulture

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References

1. Nurmalasari, A. (2024). Macroalgae Diversity in Tangnga-tangnga Beach Waters of Polewali Mandar Regency as a Biodiversity Learning Resource. Thesis. Faculty of Teacher Training and Education, Universitas Sulawesi Barat, Indonesia. [Google Scholar] [Crossref]

2. Nugroho, E., & Kusnendar, E. (2015). Agribisnis Rumput Laut. Jakarta: Penebar Swadaya [Google Scholar] [Crossref]

3. Soenardjo, N. (2011). Aplikasi budidaya rumput laut Eucheuma cottonii (Weber van Bosse) dengan metode jaring lepas dasar (net bag) model cidaun. Buletin Oseanografi Marina, 1(1), 36-44. DOI: https://doi.org/10.14710/jbs.%25v.%25i.104-112 [Google Scholar] [Crossref]

4. Mambai, R. Y., Salam, S., & Indrawati, E. (2020). Analysis of Seaweed (Eucheuma cottonii) Aquaculture Development in Kosiwo Waters, Yapen Regency. Urban and Regional Studies Journal, 2(2), 66-70. [Google Scholar] [Crossref]

5. Darmawati, R., & Jayadi, A. E. (2016). Optimization of Caulerpa sp. Growth Cultivated at Different Depths in Laguruda Waters, Takalar Regency. Jurnal Octopus, 5(1), 435-442 [Google Scholar] [Crossref]

6. Pong-Masak, P. R., & Sarira, N. H. 2016. Pertumbuhan dan produksi rumput laut Kappaphycus alvarezii dengan aplikasi metode vertikultur di Kabupaten Buton Tengah, Provinsi Sulawesi Tenggara. Prosiding Forum Inovasi Teknologi Akuakultur, Indonesia. FITA: 449-456 [Google Scholar] [Crossref]

7. Wiyanto, T. H., Ilham, I., & Purwanti, D. A. (2019). Cultivation Technique of Kappaphycus alvarezii Using the Verticulture Method. Buletin Teknik Litkayasa Akuakultur, 17(2), 99-105. [Google Scholar] [Crossref]

8. Ikhsan, A., Diniarti, N., & Sumsanto, M. (2025). Biomass Production and Agar Yield of Gracilaria sp. Under Varying TAN Concentrations. Journal of Fish Nutrition, 5(1), 79-89. DOI: https://doi.org/10.29303/jfn.v5i1.7551 [Google Scholar] [Crossref]

9. Cokrowati, N., Arjuni, A., & Rusman, R. (2018). Growth of Kappaphycus alvarezii Seaweed from Tissue Culture. Jurnal Biologi Tropis, 18(2), 216-223. [Google Scholar] [Crossref]

10. Nur, A. I., Syam, H., & Patang, P. (2016). The Effect of Water Quality on the Production of Kappaphycus alvarezii Seaweed. Jurnal Pendidikan Teknologi Pertanian, 2(1), 27-40 [Google Scholar] [Crossref]

11. Rukka, A. H., Masyahoro, A., & Samsul, Y. (2022). Analysis of the growth of seaweed (Eucheuma cottonii) on the initial weight and different plant distance cultured off the base of waters of lingayan island. Jurnal Ilmiah Samudra Akuatika, 6(2), 45-54 [Google Scholar] [Crossref]

12. Novianti, D. N., Rejeki, S., & Susilowati, T. (2015). Effect of Different Initial Weights on the Growth of Sea Grapes (Caulerpa lentillifera) Cultivated at Pond Bottoms in Jepara. Journal of Aquaculture Management and Technology, 4(4), 67-73. [Google Scholar] [Crossref]

13. Valentine, R. Y., Sudiarsa, I. N., Tangguda, S., & Hariyadi, D. R. (2021). Growth Performance and Water Quality Dynamics in Sea Grape (Caulerpa sp.) Cultivation with Different Shading. Jurnal Agroqua: Media Informasi Agronomi dan Budidaya Perairan, 19(1), 15-23. [Google Scholar] [Crossref]

14. Ismianti, J., Diniarti, N., & Ghazali, M. (2018). Effect of Depth on the Growth of Sea Grapes (Caulerpa racemosa) Using the Longline Method in Tanjung Bele Village, Moyo Hilir District, Sumbawa Regency. Universitas Mataram [Google Scholar] [Crossref]

15. Majid, A., Cokrowati, N., Diniarti, N., (2018). Growth of Seaweed (Eucheuma cottonii) at Different Depths in Ekas Bay, Jerowaru District, East Lombok. E-Journal BUDIDAYA PERAIRAN, 2-5 [Google Scholar] [Crossref]

16. Tindage, T., Ngangi, E., Kreckhoff, R., Mudeng, J., & Sambali, H. (2021). Growth of Kappaphycus alvarezii cultivated using monofilament string vertically. e-Journal BUDIDAYA PERAIRAN. 10(2),128 – 133. DOI:10.35800/bdp.10.2.2022.36802 [Google Scholar] [Crossref]

17. Adam, M. A., Indarkasi, R. H., Lumbessy, S. Y., & Kotta, R. (2023). Analysis of the Growth of Caulerpa racemosa Seaweed Using the Bag Technique. Lempuk: Jurnal Ilmu Kelautan dan Perikanan, 2(1), 9-17. [Google Scholar] [Crossref]

18. Rozaki, A., Triajie, H., Wahyuni, E. A., & Arisandi, A. (2013). ). Effect of Cultivation Site Distance on Cell Morphology and Morphology of Kappaphycus alvarezii in Lobuk Village, Bluto District, Sumenep Regency. Jurnal Kelautan: Indonesian Journal of Marine Science and Technology, 6(2), 105-110. [Google Scholar] [Crossref]

19. Indarkasi, R. H., Adam, M. A., Lumbessy, S. Y., & Kotta, R. (2023). Analysis of the Growth of Caulerpa racemosa Seaweed Using the Bag Technique. Lempuk: Jurnal Ilmu Kelautan dan Perikanan, 2(1), 9-17 [Google Scholar] [Crossref]

20. Cokrowati, N., Diniarti, N., NurÃ, D., Waspodo, S., & Marzuki, M. (2019). Exploration and Seedling Domestication of Seaweed (Eucheuma cottonii) in Ekas Bay Waters, East Lombok. Jurnal Biologi Tropis, 19(1), 51-53. [Google Scholar] [Crossref]

21. Febriani, A., Diniarti, N., & Setyono, B. D. H. (2022). Effect of Different Depths on Chlorophyll-a and Carotenoid Content of Kappaphycus alvarezii in Ekas Bay, East Lombok. Jurnal Perikanan Unram, 12(4), 493-503. [Google Scholar] [Crossref]

22. Susilowati, T., Rejeki, S., Zulfitriani, Z., & Dewi, E. N. (2012). Influence of Planting Depth on Growth Rate of Eucheuma cottonii Cultivated with Longline Method in Mlonggo Beach, Jepara Regency. SAINTEK PERIKANAN: Indonesian Journal of Fisheries Science and Technology, 8(1), 7-12. [Google Scholar] [Crossref]

23. Dewi, A. P. W. K., Ekawaty, R. (2019).The Potential of Seaweed Cultivation in Relation to the Impact 0f Tourism Development in the Waters of Kutuh Beach. Journal of Marine and Aquatic Sciences, 5(1), 94-99 [Google Scholar] [Crossref]

24. Andiska, Irawan, H., & Wulandari, R. (2021). The Effect of Depth on the Growth of Kappaphycus alvarezii Seaweed Using the Longline Method. Intek Akuakultur, 5(2), 25-35. DOI: https://doi.org/10.31629/intek.v5i2.3091 [Google Scholar] [Crossref]

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