Tytuł artykułu
Treść / Zawartość
Pełne teksty:
Identyfikatory
Warianty tytułu
Języki publikacji
Abstrakty
Periphyton that lives attached to seagrass leaves is generally a source of autochthonous energy in the waters and has a major role in the food chain system that supports the primary productivity of seagrass beds. The aim of the current study was to study the extent to which mercury (Hg) levels affect the ecosystem by looking at Hg accumulation in the periphyton. This study used the method of species composition analysis, the density of epiphytic periphyton algae on seagrass, and analyzed the level of pollution in the Talawan Bajo estuary waters based on the bioaccumulation of mercury content in the periphyton and analyzed the periphyton as a bioindicator of the level of Hg pollution in the waters. The first stage was to identify the types of seagrass and periphyton and analyze the composition and density; diversity index, uniformity and dominance of periphyton. The second stage of this study included observation of the accumulation of heavy metal Hg on a laboratory scale and visualization of periphyton cells using TEMcell. Based on the results of the analysis, it was shown that the environmental conditions of the Talawaan Bajo estuary were polluted by heavy metal Hg because the Hg content accumulated in seagrass and periphyton exceeded the quality standards for aquatic biota. It was concluded that the environmental conditions of the Talawaan Bajo estuary were contaminated with heavy metal Hg because the Hg content accumulated in seagrass and periphyton exceeded the quality standards for aquatic biota. Hg contamination in aquatic ecosystems affects the life of biota in the environment, especially damage to tissue structures.
Słowa kluczowe
Wydawca
Rocznik
Tom
Strony
257--267
Opis fizyczny
Bibliogr. 36 poz., rys., tab.
Twórcy
- Department of Biology, Faculty of Mathematics, Natural and Earth Sciences, Manado State University, North Sulawesi, Indonesia
autor
- Faculty of Fisheries and Marine Sciences, Universitas Brawijaya, Jl. Veteran, Malang 65145, East Java, Indonesia
autor
- Marine Science Program, Faculty of Science and Technology, State Islamic University of Sunan Ampel, Surabaya, East Java, 60237, Indonesia
Bibliografia
- 1. Ariens E.J., Mutschler E., Simonis A.M., 1994. Toksikologi Umum. Yogyakarta: Gadjah Mada University Press.
- 2. Baffico, G.D., Pedrozo, F.L., 1996. Growth factors controlling periphyton production in a temperate reservoir in Patagonia used for fish farming. Lakes & Reservoirs: Research & Management, 2(3–4), 243–249.
- 3. Bell, A.H., Scudder, B.C., 2005. Bioaccumulation of mercury in riverine periphyton (No. OPENFILE-2004-1446). Geological Survey Washington Dc.
- 4. Bellinger, E.G., Sigee, D.C., 2015. Freshwater algae: identification, enumeration and use as bioindicators. John Wiley & Sons.
- 5. Blackmore, G., Wang, W.X., 2004. The transfer of cadmium, mercury, methylmercury, and zinc in an intertidal rocky shore food chain. Journal of Experimental Marine Biology and Ecology, 307(1), 91–110.
- 6. Borowitzka, M.A and Lethbridge., R.C. 1989. Seagrass Epiphytes. 458–499. In: Larkum A.W.D., McComb A.J., and Shepherd S.A. (Eds). Biology of seagrasses: a Treatise on the Bioly of Seagrasses with Special reference to the Australian Region. Aquatic Plant Studies 2. Elsevier Science publisher B. V. Amsterdam.
- 7. Chindah, A.C., Braide, S.A., Amakiri, J., Chikwendu, S.O.N., 2009. Heavy metal concentrations in sediment and periwinkle–Tympanotonus fuscastus in the different ecological zones of Bonny River system, Niger Delta, Nigeria. The Open Environmental Pollution and Toxicology Journal, 2(1), 14.
- 8. Dahuri, R., Rais. J., Ginting S.P. dan Sitepu M.J., 1996. Pengelolaan Sumberdaya Wilayah Pesisii dan Lautan secara Terpadu. Paradnya Paramita. Jakarta.
- 9. Darmono., 1995. Logam dalam Sistem biologi Makhluk Hidup. Jakarta. Universitas Indonesia. Hal 1 – 45.
- 10. Dixon, D.R., 1982. Aneuploidy in mussel embryos (Mytilus edulis L.) originating from a polluted dock. Marine Biology Letters, (3).
- 11. Economou-Amili, A., 1980. Periphyton Analysis for the Evaluation of Water Quality in Running Waters of greece. Hydrobiologia, 74, 39–48.
- 12. English, S.S., Wilkinson, C.C., Baker, V.V., 1997. Survey manual for tropical marine resources. Australian Institute of Marine Science.
- 13. Fukuyo, Y. 2000., Red Tide Microalga. (Online) fukuyo@mail.ecc.utokyo.ac.jp. Diakses tanggal 9 November 2019.
- 14. Geret, F., Jouan A., Turpin V., Bebianno M.J., Cosson R.P., 2002. Influence of metal exposure on metallothionein synthesis and lipid peroxidation in two bivalve mollusks: the oyster (Crassostrea gigas) and the mussel (Mytilus edulis) Aquat. Living Resour., 15, 61–66.
- 15. Géret, F., Jouan, A., Turpin, V., Bebianno, M.J., Cosson, R.P., 2002. Influence of metal exposure on metallothionein synthesis and lipid peroxidation in two bivalve mollusks: the oyster (Crassostrea gigas) and the mussel (Mytilus edulis). Aquatic Living Resources, 15(1), 61–66.
- 16. Ghosh, M., Singh, S.P., 2005. A comparative study of cadmium phytoextraction by accumulator and weed species. Environmental Pollution, 133(2), 365–371.
- 17. Herawati, V.E., 2008. Analisis Kesesuaian Perairan Segara Anakan Kabupaten Cilacap Sebagai Lahan Budidaya Kerang Totok (Polymesoda Erosa) Ditinjau Dari Aspek Produktifitas Primer Menggunakan Penginderaan Jauh (Doctoral dissertation, Program Pasca Sarjana Universitas Diponegoro).
- 18. Janssen, P.H., Schuhmann, A., Moerschel, E., and Rainey, F.A., 1997. Novel anaerobic ultramicrobakteria beloging to the verrucomicrobiales lineage of bacterial descent isolated by dilution culture from anoxic rice paddy soil. Applied and Enviromental Microbiology 63, 1382–1388.
- 19. Mahida, U.N., 1992, Pencemaran air dan Pemanfaatan Limbah Industri, Kata Pengantar Otto Soemarwoto, Penerbit CV. Radjawali, Jakarta.
- 20. Menteri Negara KLH., 2004. Keputusan Menteri Negara Lingkungan Hidup No. 51 Tahun 2004 Tentang Baku Mutu Air Laut Untuk Biota Laut. Jakarta.
- 21. Ngangi, T.M., 2000. Analisis kandungan Merkuri di Teluk Wori. Skripsi. Fpik Unsrat. Manado.
- 22. Ochiai EI., 1987. General Principles of Biochemistry of Elements. New York. Plenum Press.
- 23. Oktavianti, R., 2004. Struktur Histologis Hepar Mencit (Mus musculus L.) Setelah Pemberian Aspartam Secara Oral. [Skripsi]. Surakarta.
- 24. Palar, H., 2004. Pencemaran dan Toksikologi Pencemaran Logam Berat. Rineka Cipta. Jakarta.
- 25. Price, S.A., Wilson, L.M., 1995. Patofisiologi: Konsep Klinik Proses Penyakit (diterjemahkan oleh Adji Dharma). EGC. Jakarta.
- 26. Robbins, S.L dan Kumar. V., 1995. Patologi I. Jakarta: EGC.
- 27. Rosalina, D., Herawati, E., Musa, M. and Risjani, Y., 2018a. Lead (Pb) adsorption in roots, rhizomes, and leaves of seagrass Cymodocea serrulata. Fresenius Environmental Bulletin, 27(12 A), 9156–9166.
- 28. Rosalina, D., Herawati, E.Y., Musa, M., Sofarini, D. And Risjani, Y., 2019a. Anatomical changes in the roots, rhizomes and leaves of seagrass (Cymodocea serrulata) in response to lead. Biodiversitas Journal of Biological Diversity, 20(9).
- 29. Rosalina, D., Herawati, E.Y., Musa, M., Sofarini, D., Amin, M. and Risjani, Y., 2019b. Lead Accumulation and Its Histological Impact on Cymodocea serrulata Seagrass in the Laboratory. Sains Malaysiana, 48(4), 813–822.
- 30. Salt D.E., 2000. Phytoextraction: Present applications and future promise. Di dalam: Wise DL, Trantolo DJ, Cichon EJ., Inyang HI, dan Stottmeister U (Ed). Bioremediation of Cotaminated Soils Marcek Dekker Inc. New York; Basel. Hlm, 729–743.
- 31. Supriharyono., 2007. Konservasi ekosistem sumberdaya hayati di wilayah pesisir dan laut tropis. Pustaka Pelajar. Jakarta.
- 32. Tamilselvan N., Saurav K., Kannabiran K., 2012. Biosorption of Cr (VI), Cr (III), Pb (II), and Cd (II) from Aqueous Solution by Sargassum wightii and Caulerpa racemosa Algal Biomass. J. Ocean Univ. China (Oceanic and Coastal Sea Research) 1, 52–58.
- 33. Viarengo, A., 1989. Heavy metals in marine invertebrates: mechanisms of regulation and toxicity at the cellular level. Rev. Aquat. Sci, 1(2), 295–317.
- 34. Yulianto, B., Ario, R., Agung, T., 2006. Daya Serap Rumput Laut (Gracilaria sp) Terhadap Logam Berat Tembaga (Cu) Sebagai Biofilter. Ilmu Kelautan: Indonesian Journal of Marine Sciences, 11(2), 72–78.
- 35. Yusuf, M., Hamzah, B., dan Rahman, N., 2013. Kandungan Merkuri (Hg) dalam Air Laut, Sedimen, dan Jaringan Ikan Belanak (Liza melinoptera) di Perairan Teluk Palu. J. Akd.Kim. 2(3), 140–145.
- 36. Zulkifli., 2000. Sebaran Spasial Komunitas Perifiton dan Asosiasinya dengan Lamun di Perairan Teluk Pandan Lampung Selatan. Thesis. Program Pascasarjana. IPB.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-ea1bcc3a-8aa5-448f-b515-759bca762349
JavaScript jest wyłączony w Twojej przeglądarce internetowej. Włącz go, a następnie odśwież stronę, aby móc w pełni z niej korzystać.