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Sound Diversity as Representation to the Behavior of Spiny Lobster Panulirus homarus (Linnaeus, 1758)
Corresponding Author(s) : Hartoyo Hartoyo
Jurnal Ilmiah Perikanan dan Kelautan, Vol. 14 No. 2 (2022): JURNAL ILMIAH PERIKANAN DAN KELAUTAN
Abstract
Highlight Research
- The sound of d spiny lobster (Panulirus homarus) was identified, named rasp; slow rattle; and popping sound
- The sound characteristics of spiny lobster (Panulirus homarus) represent its behavior
- Passive acoustic and visual record method combination was implemented to analyze the relation between sounds and behavior of spiny lobster (Panulirus homarus)
Abstract
Spiny lobster Panulirus homarus is one of many important economic fishery resources in Indonesia. Continuous exploitation activities in the natural habitat can potentially disturb the sustainability of lobster resources. This species is known to produce sound with certain characteristics and highly dependent on environmental changes. This study aimed to investigate the characteristics of sound as a representation of behaviour. The sound produced by P. homarus was recorded for 24 hours using a hydrophone (a passive acoustic technique). The hydrophone converts the sound wave produced by the lobsters into electric voltage in millivolts, then were converted to a digital number, in order to be saved in a virtual format with the *.wav extension. The video system captured data on behaviors of resting, territoriality, aggression, and social attitudes. The results showed that P. homarus emitted rasp, slow rattle, and popping type of sound, with certain characteristics. All sounds types were characterized by a broadband frequency (4 - 20 kHz), and a source level ranging from 125 - 145 dB re 1 µPa. Rasp sound consisting of 12 - 40 pulses with a sound duration of 100 - 400 ms, represents a defensive behavior. Slow rattle sound with 2 - 7 pulses did not represent a specific behaviour and it is dominant during the night. However, the popping sound with only one pulse represented feeding behavior.
Keywords
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- Akmali, A., & Sari, P. D. W. (2020). Growth performance of cultivated spiny lobster ( Panulirus homarus, Linnaeus 1758) in Tuban, East Java, Indonesia. Egyptian Journal of Aquatic Biology & Fisheries, 24(3):381-388.
- Amron, A., Jaya, I., Hestirianoto, T., & von Juterzenka, K. (2018). Sound characteristics of terapon fish (Terapon jorbua) as a response to temperature changes. International Journal of Environmental Science and Technology, 15(11):2493-2498.
- Amron, Kumolo, W. A., Jaya, I., Hestirianoto, T., & Juterzenka, K. von. (2017). Daily sound production of Terapon jorbua: Impact of temperature and light condition. Journal of King Abdulaziz University: Marine Science, 27(2):27-37.
- Aslan, L. O. M., Iba, W., Bolu, L. O. R., Ingram, B. A., Gooley, G. J., & de Silva, S. S. (2015). Mariculture in SE Sulawesi, Indonesia: Culture practices and the socio economic aspects of the major commodities. Ocean and Coastal Management, 116:44-57.
- Bouwma, P. E., & Herrnkind, W. F. (2009). Sound production in Caribbean spiny lobster Panulirus argus and its role in escape during predatory attack by Octopus briareus. New Zealand Journal of Marine and Freshwater Research, 43(1):3-13.
- Buscaino, G., Filiciotto, F., Gristina, M., Bellante, A., Buffa, G., Di Stefano, V., MacCarrone, V., Tranchida, G., Buscaino, C., & Mazzola, S. (2011a). Acoustic behaviour of the European spiny lobster Palinurus elephas. Marine Ecology Progress Series, 441:177-184.
- Buscaino, G., Filiciotto, F., Gristina, M., Buffa, G., Bellante, A., Maccarrone, V., Patti, B., & Mazzola, S. (2011b). Defensive strategies of European spiny lobster Palinurus elephas during predator attack. Marine Ecology Progress Series, 423:143-154.
- Cobb, J. S., & Phillips, B. F. (1980). The biology and management of lobsters. Volume II. Ecology and management. Academic Press.
- De Vincenzi, G., Maccarrone, V., Filiciotto, F., Buscaino, G., & Mazzola, S. (2015). Behavioural responses of the European spiny lobster, Palinurus elephas (Fabricius, 1787), to conspecific and synthetic sounds. Crustaceana, 88(5):523-540.
- Fornshell, J. A., & Tesei, A. (2017). Observations of the sound producing organs in achelate lobster larvae. Arthropods, 6(2):36-46.
- Hamilton, S., Silva, J. F., Pereira-Neves, A., Travassos, P., & Peixoto, S. (2019). Sound production mechanism in the Brazilian spiny lobsters (Family Palinuridae). Zoomorphology, 138(4):475-482.
- Henninger, H. P., & Watson, W. H. (2005). Mechanisms underlying the production of carapace vibrations and associated waterborne sounds in the American lobster, Homarus americanus. Journal of Experimental Biology, 208(17):3421-3429.
- Hisyam, M., Hestirianoto, T., & Jaya, I. (2020). Sound characteristic of Procambarus clarkii. IOP Conference Series: Earth and Environmental Science, 429(1):012036.
- Jézéquel, Y., Bonnel, J., Coston-Guarini, J., Guarini, J. M., & Chauvaud, L. (2018). Sound characterization of the European lobster Homarus gammarus in tanks. Aquatic Biology, 27:13-23.
- Jézéquel, Y., Chauvaud, L., & Bonnel, J. (2020). Spiny lobster sounds can be detectable over kilometres underwater. Scientific Reports, 10(1):1-11.
- Jones, C. M. (2010). Tropical spiny lobster aquaculture development in Vietnam, Indonesia and Australia. Journal of the Marine Biolological Association of India, 52(2):304-315.
- Mann D. A., & Lobel, P. S. (1995). Passive acoustic detection of sounds produced by the damselfish, Dascyllus albisella (Pomacentridae). Bioacoustics, 6(3):199-213.
- Meyer-Rochow, V. B., & Penrose, J. D. (1976). Sound production by the western rock lobster Panulirus longipes (Milne Edwards). Journal of Experimental Marine Biology and Ecology, 23(2):191-209.
- Meyer-Rochow, V. B., Penrose, J. D., Oldfield, B. P., & Bailey, W. J. (1982). Phonoresponses in the rock lobster Panulirus longipes (Milne Edwards). Behavioral and Neural Biology, 34(3):331-336.
- Moulton, J. M. (1957). Sound production in the spiny lobster Panulirus argus (Latreille). The Biological Bulletin, 113(2):286-295.
- Mulligan, B. E., & Fischer, R. B. (1977). Sounds and behavior of the spiny lobster Panulirus argus (Latreille, 1804) (Decapoda, Palinuridae). Crustaceana, 32(2):185-199.
- Patek, S. N., & Baio, J. E. (2007). The acoustic mechanics of stick-slip friction in the California spiny lobster (Panulirus interruptus). Journal of Experimental Biology, 210(20):3538-3546.
- Patek, S. N., & Oakley, T. H. (2003). Comparative tests of evolutionary trade-offs in a palinurid lobster acoustic system. Evolution, 57(9):2082-2100.
- Patek, S. N., Shipp, L. E., & Staaterman, E. R. (2009). The acoustics and acoustic behavior of the California spiny lobster (Panulirus interruptus). The Journal of the Acoustical Society of America, 125(5):3434.
- Patek, S. N. (2001). Spiny lobsters stick and slip to make sound. Nature, 411:153-154.
- Patek, S. N. (2002). Squeaking with a sliding joint: Mechanics and motor control of sound production in palinurid lobsters. Journal of Experimental Biology, 205(16):2375-2385.
- Petersen, E. H., Jones, C., & Priyambodo, B. (2012). Bioeconomics of spiny lobster farming in Indonesia. Asian Journal of Agriculture and Development, 10(1):25-39.
- Priyambodo, B., Jones, C., & Sammut, J. (2016). The effect of trap type and water depth on puerulus settlement in the spiny lobster aquaculture industry in Indonesia. Aquaculture, 442:132-137.
- Priyambodo, B., Jones, C. M., & Sammut, J. (2017). Improved collector design for the capture of tropical spiny lobster, Panulirus homarus and P. ornatus (Decapoda: Palinuridae), pueruli in Lombok, Indonesia. Aquaculture, 479:321-332.
- Priyambodo, B., Jones, C. M., & Sammut, J. (2020). Assessment of the lobster puerulus (Panulirus homarus and Panulirus ornatus, Decapoda: Palinuridae ) resource of Indonesia and its potential for sustainable harvest for aquaculture. Aquaculture, 528:735563.
- Staaterman, E. R., Claverie, T., & Patek, S. N. (2010). Disentangling defense: The function of spiny lobster sounds. Behaviour, 147(2):235-258.
- Ton, A., Hai, N., & Speelman, S. (2020). Involving stakeholders to support sustainable development of the marine lobster aquaculture sector in Vietnam. Marine Policy, 113:103799.
- Versluis, M., Schmitz, B., Von der Heydt, A., & Lohse, D. (2000). How snapping shrimp snap: Through cavitating bubbles. Science, 289(5487):2114-2117.
- Ward, D., Morison, F., Morrissey, E., Jenks, K., & Watson, W. H. (2011). Evidence that potential fish predators elicit the production of carapace vibrations by the American lobster. Journal of Experimental Biology, 214(15):2641-2648.
- Wardiatno, Y., Hakim, A. A., Mashar, A., Butet, N. A., Adrianto, L., & Farajallah, A. (2016). On the presence of the Andaman lobster, Metanephrops andamanicus (Wood-Mason , 1891) (Crustacea Astacidea Nephropidae) in Palabuhanratu bay (S-Java, Indonesia). Biodiversity Journal, 7(1):17-20.
References
Akmali, A., & Sari, P. D. W. (2020). Growth performance of cultivated spiny lobster ( Panulirus homarus, Linnaeus 1758) in Tuban, East Java, Indonesia. Egyptian Journal of Aquatic Biology & Fisheries, 24(3):381-388.
Amron, A., Jaya, I., Hestirianoto, T., & von Juterzenka, K. (2018). Sound characteristics of terapon fish (Terapon jorbua) as a response to temperature changes. International Journal of Environmental Science and Technology, 15(11):2493-2498.
Amron, Kumolo, W. A., Jaya, I., Hestirianoto, T., & Juterzenka, K. von. (2017). Daily sound production of Terapon jorbua: Impact of temperature and light condition. Journal of King Abdulaziz University: Marine Science, 27(2):27-37.
Aslan, L. O. M., Iba, W., Bolu, L. O. R., Ingram, B. A., Gooley, G. J., & de Silva, S. S. (2015). Mariculture in SE Sulawesi, Indonesia: Culture practices and the socio economic aspects of the major commodities. Ocean and Coastal Management, 116:44-57.
Bouwma, P. E., & Herrnkind, W. F. (2009). Sound production in Caribbean spiny lobster Panulirus argus and its role in escape during predatory attack by Octopus briareus. New Zealand Journal of Marine and Freshwater Research, 43(1):3-13.
Buscaino, G., Filiciotto, F., Gristina, M., Bellante, A., Buffa, G., Di Stefano, V., MacCarrone, V., Tranchida, G., Buscaino, C., & Mazzola, S. (2011a). Acoustic behaviour of the European spiny lobster Palinurus elephas. Marine Ecology Progress Series, 441:177-184.
Buscaino, G., Filiciotto, F., Gristina, M., Buffa, G., Bellante, A., Maccarrone, V., Patti, B., & Mazzola, S. (2011b). Defensive strategies of European spiny lobster Palinurus elephas during predator attack. Marine Ecology Progress Series, 423:143-154.
Cobb, J. S., & Phillips, B. F. (1980). The biology and management of lobsters. Volume II. Ecology and management. Academic Press.
De Vincenzi, G., Maccarrone, V., Filiciotto, F., Buscaino, G., & Mazzola, S. (2015). Behavioural responses of the European spiny lobster, Palinurus elephas (Fabricius, 1787), to conspecific and synthetic sounds. Crustaceana, 88(5):523-540.
Fornshell, J. A., & Tesei, A. (2017). Observations of the sound producing organs in achelate lobster larvae. Arthropods, 6(2):36-46.
Hamilton, S., Silva, J. F., Pereira-Neves, A., Travassos, P., & Peixoto, S. (2019). Sound production mechanism in the Brazilian spiny lobsters (Family Palinuridae). Zoomorphology, 138(4):475-482.
Henninger, H. P., & Watson, W. H. (2005). Mechanisms underlying the production of carapace vibrations and associated waterborne sounds in the American lobster, Homarus americanus. Journal of Experimental Biology, 208(17):3421-3429.
Hisyam, M., Hestirianoto, T., & Jaya, I. (2020). Sound characteristic of Procambarus clarkii. IOP Conference Series: Earth and Environmental Science, 429(1):012036.
Jézéquel, Y., Bonnel, J., Coston-Guarini, J., Guarini, J. M., & Chauvaud, L. (2018). Sound characterization of the European lobster Homarus gammarus in tanks. Aquatic Biology, 27:13-23.
Jézéquel, Y., Chauvaud, L., & Bonnel, J. (2020). Spiny lobster sounds can be detectable over kilometres underwater. Scientific Reports, 10(1):1-11.
Jones, C. M. (2010). Tropical spiny lobster aquaculture development in Vietnam, Indonesia and Australia. Journal of the Marine Biolological Association of India, 52(2):304-315.
Mann D. A., & Lobel, P. S. (1995). Passive acoustic detection of sounds produced by the damselfish, Dascyllus albisella (Pomacentridae). Bioacoustics, 6(3):199-213.
Meyer-Rochow, V. B., & Penrose, J. D. (1976). Sound production by the western rock lobster Panulirus longipes (Milne Edwards). Journal of Experimental Marine Biology and Ecology, 23(2):191-209.
Meyer-Rochow, V. B., Penrose, J. D., Oldfield, B. P., & Bailey, W. J. (1982). Phonoresponses in the rock lobster Panulirus longipes (Milne Edwards). Behavioral and Neural Biology, 34(3):331-336.
Moulton, J. M. (1957). Sound production in the spiny lobster Panulirus argus (Latreille). The Biological Bulletin, 113(2):286-295.
Mulligan, B. E., & Fischer, R. B. (1977). Sounds and behavior of the spiny lobster Panulirus argus (Latreille, 1804) (Decapoda, Palinuridae). Crustaceana, 32(2):185-199.
Patek, S. N., & Baio, J. E. (2007). The acoustic mechanics of stick-slip friction in the California spiny lobster (Panulirus interruptus). Journal of Experimental Biology, 210(20):3538-3546.
Patek, S. N., & Oakley, T. H. (2003). Comparative tests of evolutionary trade-offs in a palinurid lobster acoustic system. Evolution, 57(9):2082-2100.
Patek, S. N., Shipp, L. E., & Staaterman, E. R. (2009). The acoustics and acoustic behavior of the California spiny lobster (Panulirus interruptus). The Journal of the Acoustical Society of America, 125(5):3434.
Patek, S. N. (2001). Spiny lobsters stick and slip to make sound. Nature, 411:153-154.
Patek, S. N. (2002). Squeaking with a sliding joint: Mechanics and motor control of sound production in palinurid lobsters. Journal of Experimental Biology, 205(16):2375-2385.
Petersen, E. H., Jones, C., & Priyambodo, B. (2012). Bioeconomics of spiny lobster farming in Indonesia. Asian Journal of Agriculture and Development, 10(1):25-39.
Priyambodo, B., Jones, C., & Sammut, J. (2016). The effect of trap type and water depth on puerulus settlement in the spiny lobster aquaculture industry in Indonesia. Aquaculture, 442:132-137.
Priyambodo, B., Jones, C. M., & Sammut, J. (2017). Improved collector design for the capture of tropical spiny lobster, Panulirus homarus and P. ornatus (Decapoda: Palinuridae), pueruli in Lombok, Indonesia. Aquaculture, 479:321-332.
Priyambodo, B., Jones, C. M., & Sammut, J. (2020). Assessment of the lobster puerulus (Panulirus homarus and Panulirus ornatus, Decapoda: Palinuridae ) resource of Indonesia and its potential for sustainable harvest for aquaculture. Aquaculture, 528:735563.
Staaterman, E. R., Claverie, T., & Patek, S. N. (2010). Disentangling defense: The function of spiny lobster sounds. Behaviour, 147(2):235-258.
Ton, A., Hai, N., & Speelman, S. (2020). Involving stakeholders to support sustainable development of the marine lobster aquaculture sector in Vietnam. Marine Policy, 113:103799.
Versluis, M., Schmitz, B., Von der Heydt, A., & Lohse, D. (2000). How snapping shrimp snap: Through cavitating bubbles. Science, 289(5487):2114-2117.
Ward, D., Morison, F., Morrissey, E., Jenks, K., & Watson, W. H. (2011). Evidence that potential fish predators elicit the production of carapace vibrations by the American lobster. Journal of Experimental Biology, 214(15):2641-2648.
Wardiatno, Y., Hakim, A. A., Mashar, A., Butet, N. A., Adrianto, L., & Farajallah, A. (2016). On the presence of the Andaman lobster, Metanephrops andamanicus (Wood-Mason , 1891) (Crustacea Astacidea Nephropidae) in Palabuhanratu bay (S-Java, Indonesia). Biodiversity Journal, 7(1):17-20.