TENTACLE COMPONENTS (NEMATOCYSTS AND ZOOXANTHELLA) OF Montipora danae in MARAK ISLAND, WEST SUMATERA

Authors

  • Lieng Lieng Department of Marine Science, Faculty of Fisheries and Marine Sciences, IPB University Author
  • Nevianty P Zamani Department of Marine Science, Faculty of Fisheries and Marine Sciences, IPB University Author
  • Dietriech Geoffrey Bengen Department of Marine Science, Faculty of Fisheries and Marine Sciences, IPB University Author
  • Yuli Naulita Department of Marine Science, Faculty of Fisheries and Marine Sciences, IPB University Author

DOI:

https://doi.org/10.31258/ajoas.7.3.398-404

Keywords:

Coral, Nematocysts, Zooxanthella

Abstract

Coral animals have tentacles in which there are Nematocysts in the ectoderm layer and zooxanthella in the endoderm layer, and these two components have a role as a defense and food source; this study was conducted to identify the components of Montipora danae coral tentacles. The research was conducted in Marak Island, West Sumatra, with a purposive sampling method based on the presence of M.danae. The coral samples were decalcified to separate the tissue from the skeleton. The results of this study indicate that M.danae consists of Nematocysts type sH (small Holotrich), MpM-I (Microbasic p-Mastighopore I), and H (Holotrich). Holotrich has the highest relative abundance of 74-91%, MpM-I has 3,92-20,63% and sH has 3-24%. Holotrich has larger morphometrics than sH and MpM-I, namely 72,76-82,35 μm capsule length and 19,55-24 μm capsule width. The zooxanthella density of M. danae was lower than that of normal corals at 624 cells/cm2.

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References

1. Fadhilah, F.M., Widiarti, R., & Johan, O. Pengaruh Intensitas Cahaya terhadap Kelimpahan Zooxanthellae pada Karang Polip Besar (Plerogyra, Physogyra dan Nemenzophyllia) Berdasarkan Perbedaan Kedalaman di Perairanpulau Panggang, Kepulauan Seribu. Konferensi Nasional. Tanjung Pinang, 2017.

2. Strömberg, S.M., & Östman, C. The Cnidome and Internal Morphology of Lophelia pertusa (Linnaeus, 1758) (Cnidaria, Anthozoa). Acta Zoologica, 2017; 98(2):191-213.

3. Paruntu, C.P., Darwisito, S., Angmalisang, P.A., & Rumengan, A.P. The Nematocysts of Some Scleractinian Coral Species from the Sulawesi Sea, Indonesia. AACL Bioflux, 2022;15(5): 2460-2470.

4. Kumar, V. Agri-India Today Coral Reefs: Tropical Rainforest of The Sea Is at Risk. Agriallis, 2022;02(07).

5. Thamrin, T. Karang, Biologi Reproduksi dan Ekologi. UR PRESS. Pekanbaru, 2017; p295

6. Ryland, J.S., & Lancaster, J.E. A Review of Zoanthid Nematocyst Types and their Population Structure. Coelenterate Biology 2003. Springer Netherlands; 2007:179-187.

7. Ballesteros, A., Östman, C., Santín, A., Marambio, M., Narda, M., & Gili, J.M. Cnidome and Morphological Features of Pelagia noctiluca (Cnidaria: Scyphozoa) Throughout the Different Life Cycle Stages. Front Mar Sci. 2021; 8.

8. Pudjiarto RK, Widiarti R, Johan O, Mufti D, Patria P. The Abundance of Zooxanthellae on Coral Colony Which Infected by Black Band Disease and White Syndrome at Pahawang Besar and Kelagian Kecil Island, Lampung. Konferensi Nasional. Banda Aceh. 2015.

9. [SNI] Standar Nasional Indonesia. Air dan air limbah-Bagian 3: Cara Uji Padatan Tersuspensi Total (Total Suspended Solid, TSS) Secara Gravimetri. 2004.

10. [Kepmen] Keputusan Menteri Lingkungan Hidup Nomor 51 tahun 2004 tentang Baku Mutu Air Laut, 2004.

11. Supriyadi, S., Hidayati, N., & Isdianto, A. Analisis Sirkulasi Arus Laut Permukaan dan Sebaran Sedimen Pantai Jabon Kabupaten Sidoarjo. Prosiding Seminar Nasional Kelautan dan Perikanan III, 2017: 175-181.

12. Thamrin, T., Hafiz, M., & Mulyadi, A. Pengaruh Kekeruhan terhadap Densitas Zooxanthellae pada Karang Scleractinia Acropora aspera di Perairan Pulau Mursala dan Pulau Poncan Sibolga, Sumatera Utara. Ilmu Kelautan, 2004; 9(2):82-85.

13. Asmiati, A.,Palupi, D.R., & Ira, I. Densitas Zooxanthellae berdasarkan Bentuk Pertumbuhan Karang di Perairan Kessilampe dan Bungkutoko Kendari. Sapa Laut, 2017; 2(2):37-44.

14. Paruntu, C., Rifai, H., & Kusen, J.D. Nematosit dari Tiga Spesies Karang Scleractinia, Genus Pocillopora. Jurnal Perikanan dan Kelautan Tropis, 2013;9(2):60.

15. Gagu, S., Darwasito, S., Wagey, B.T., Rumengan, A.P., Rndonuwu, A.B., & Paruntu, C.P. Dimensi dan Komposisi Nematosit pada Karang Scleractinia, Acropora florida and Acropora divaricata di Pantai Motandoi Selatan Kabupaten Bolaang Mongondow Sleatan, Jurnal Pesisir dan Laut Tropis, 2019; 7(3): 227-233.

16. Lieng, L., Efriyeldi, E., & Thamrin, T. Density Zooxanthella based on the Life Form of Coral on Marak Island West Sumatera Province. Asian Journal of Aquatic Sciences, 2020; 3(3):209-216.

17. Pangaribuan, H.T., Ain, C., & Soedarsono, P. Hubungan Kandungan Nitrat dan Fosfat dengan Densitas Zooxanthellae pada Polip Karang Acropora sp di Perairan Terumbu Karang Pulau Menjangan Kecil, Karimun Jawa. Diponegoro Journal of Maquares, 2013; 2(4):136-145.

18. Muhammad, F., Ismet, M.S., Ramadhan, M.I.A.K., & Zamani, N.P. The Effect of Plastic Waste Attachment on Branching Coral to Zooxanthellae Abundance in the Kelapa Dua Island Waters, Seribu Islands, Indonesia. Jurnal Ilmiah Perikanan dan Kelautan, 2021; 13(1):29-37.

19. Kuanui, P., Chavanich, S., Viyakarn, V., Omori, M., Fujita, T., & Lin, C. Effect of Light Intensity on Survival and Photosynthetic Efficiency of Cultured Corals of Different Ages. Estuar Coast Shelf Sci., 2020; 235.

20. Sifa, Z.F., Purnomo, W., Program, A., et al. Pelepasan Densitas Zooxanthellae Karang Acropora sp pada Beberapa Tingkat Salinitas. Saintek Perikanan: Indonesian Journal of Fisheries Science and Technology, 2020; 17(2):151-156.

21. Rizka, F.R., Purnomo, W.P., & Sabdaningsih, A. Pengaruh Total Suspended Solid (TSS) Terhadap Densitas Zooxhanthellae pada Karang Acropora sp dalam Skala Laboratorium. Jurnal Pasir Laut, 2020; 4(2):95-101.

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Published

2024-12-31

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