335
Raikar, S. V., Ima, M., & Fujita, Y. (2001). Effects of temperature, salinity and light intensity on the
growth of Gracilaria spp. (Gracilariales, Rhodophyta) from Japan, Malaysia and India. Indian
Journal of Marine Science, 30, 98–104.
Robinson, N., Winberg, P., & Kirkendale, L. (2013). Genetic improvement of macroalgae: Status
to date and needs for the future. Journal of Applied Phycology, 25, 703–716.
Saha, S. B., Bhattacharyya, S. B., Mitra, A., & Choudhury, A. (2001). Quality of shrimp culture
farm effluents and its impact on the receiving environment. Bangladesh Journal of Zoology,
29, 139–149.
Sahoo, D., & Yarish, C. (2005). Mariculture of seaweeds. In R. A. Andersen (Ed.), Phycological
methods: Algal culturing techniques (pp. 219–237). New York: Academic Press.
Sahu, S., Jana, A. K., Sarkar, S., Dora, K. C., & Chowdhury, S. (2012). Econometric modelling of
shrimp (Penaeus monodon, fabricius) farming at Nandigram-II block, Purba Medinipur district
(W.B.). International Journal of Innovative Research in Science Engineering and Technology,
1(1), 121–124.
Singh, D., Buhmann, A. K., Flowers, T. J., et al. (2014). Salicornia as a crop plant in temperate
regions: Selection of genetically characterized ecotypes and optimization of their cultivation
conditions. AoB Plants. https://doi.org/10.1093/aobpla/plu071.
Smillie, C. (2015). Salicornia spp. as a biomonitor of Cu and Zn in salt marsh sediments. Ecol
Indic. 56, 70–78. https://doi.org/10.1016/j.ecolind.2015.03.010.
Song, S. H., Lee, C., Lee, S., et al. (2013). Analysis of microflora profile in Korean traditional
nuruk. Journal of Microbiology and Biotechnology, 23, 40–46.
Strickland, R. (1983). The Fertile Fjord. Plankton in Puget Sound. Seattle: Washington Sea Grant.
Weinberger, F., Buchholz, B., Karez, R., & Wahl, M. (2008). The invasive red alga Gracilaria
vermiculophylla in the Baltic Sea: Adaptation to brackish water may compensate for light limitation. Aquatic Biology, 3, 251–264.
Wu, H., Huo, Y., Han, F., Liu, Y., & He, P. (2015). Bioremediation using Gracilaria chouae cocultured with Sparus macrocephalus to manage the nitrogen and phosphorous balance in an
IMTA system in Xiangshan Bay, China. Marine Pollution Bulletin, 91, 272–279.
Yokoya, N. S., Hirotaka, K., Obika, H., & Litamura, T. (1999). Effects of environmental factors and plant growth regulators on growth of the red alga Gracilaria vermiculophylla from
Shikoku Island, Japan. Hydrobiologia, 398/399, 339–347.
References
Raikar, S. V., Ima, M., & Fujita, Y. (2001). Effects of temperature, salinity and light intensity on the
growth of Gracilaria spp. (Gracilariales, Rhodophyta) from Japan, Malaysia and India. Indian
Journal of Marine Science, 30, 98–104.
Robinson, N., Winberg, P., & Kirkendale, L. (2013). Genetic improvement of macroalgae: Status
to date and needs for the future. Journal of Applied Phycology, 25, 703–716.
Saha, S. B., Bhattacharyya, S. B., Mitra, A., & Choudhury, A. (2001). Quality of shrimp culture
farm effluents and its impact on the receiving environment. Bangladesh Journal of Zoology,
29, 139–149.
Sahoo, D., & Yarish, C. (2005). Mariculture of seaweeds. In R. A. Andersen (Ed.), Phycological
methods: Algal culturing techniques (pp. 219–237). New York: Academic Press.
Sahu, S., Jana, A. K., Sarkar, S., Dora, K. C., & Chowdhury, S. (2012). Econometric modelling of
shrimp (Penaeus monodon, fabricius) farming at Nandigram-II block, Purba Medinipur district
(W.B.). International Journal of Innovative Research in Science Engineering and Technology,
1(1), 121–124.
Singh, D., Buhmann, A. K., Flowers, T. J., et al. (2014). Salicornia as a crop plant in temperate
regions: Selection of genetically characterized ecotypes and optimization of their cultivation
conditions. AoB Plants. https://doi.org/10.1093/aobpla/plu071.
Smillie, C. (2015). Salicornia spp. as a biomonitor of Cu and Zn in salt marsh sediments. Ecol
Indic. 56, 70–78. https://doi.org/10.1016/j.ecolind.2015.03.010.
Song, S. H., Lee, C., Lee, S., et al. (2013). Analysis of microflora profile in Korean traditional
nuruk. Journal of Microbiology and Biotechnology, 23, 40–46.
Strickland, R. (1983). The Fertile Fjord. Plankton in Puget Sound. Seattle: Washington Sea Grant.
Weinberger, F., Buchholz, B., Karez, R., & Wahl, M. (2008). The invasive red alga Gracilaria
vermiculophylla in the Baltic Sea: Adaptation to brackish water may compensate for light limitation. Aquatic Biology, 3, 251–264.
Wu, H., Huo, Y., Han, F., Liu, Y., & He, P. (2015). Bioremediation using Gracilaria chouae cocultured with Sparus macrocephalus to manage the nitrogen and phosphorous balance in an
IMTA system in Xiangshan Bay, China. Marine Pollution Bulletin, 91, 272–279.
Yokoya, N. S., Hirotaka, K., Obika, H., & Litamura, T. (1999). Effects of environmental factors and plant growth regulators on growth of the red alga Gracilaria vermiculophylla from
Shikoku Island, Japan. Hydrobiologia, 398/399, 339–347.
References
