Analysis of Growth Efficiency and Daily Growth Rate of Seaweed (G. verrucosa, G. lichenoides, and G. gigas) at Various Salinity Levels Based on the Final Weight-to-Initial Weight Ratio

Author's Information:

Dewi Virgiastuti Jarir

Fisheries Science Study Program, Faculty of Science and Technology, Cahaya Prima University, Indonesia & Department of Aquaculture, Bone Marine and Fisheries Polytechnic, Indonesia

Fina Fatwasari

Fisheries Science Study Program, Faculty of Science and Technology, Cahaya Prima University, Indonesia

Toto Hardianto

Department of Fisheries Science, Faculty of Agriculture and Fisheries, University of Dumoga Kotamobagu, Indonesia 

Nurayu Pratiwi

Department of Aquaculture, Bone Marine and Fisheries Polytechnic, Indonesia

Anton

Department of Fisheries Science, Faculty of Agriculture and Fisheries, University of Dumoga Kotamobagu, Indonesia 

Vol 05 No 05 (2026):Volume 05 Issue 05 May 2026

Page No.: 349-353

Abstract:

This study investigated the effects of salinity variation on the growth efficiency and daily growth rates of three commercially important seaweed species: Gracilaria verrucosaG. lichenoides, and G. gigas. The experimental design tested five salinity levels (10, 15, 20, 25, and 30 ppt) under controlled conditions during an 8-week cultivation period. Growth parameters were measured weekly, and data were analyzed using the Kruskal-Wallis non-parametric test. Results from the Kruskal-Wallis test revealed no significant effect of either salinity variation or seaweed species on growth efficiency and daily growth rate (p>0.05). Although observable differences in mean ranks occurred, these variations were not statistically significant. These findings conclude that all three Gracilaria species exhibit similar growth patterns across various salinity levels, demonstrating their adaptability to salinity changes without significant impacts on growth efficiency and daily growth rate. Further research should investigate other environmental factors such as nutrient availability, light intensity, and temperature to optimize cultivation conditions

KeyWords:

Gracilaria, salinity, growth efficiency, daily growth rate, environmental adaptation, seaweed cultivation

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