Analisis Kelimpahan dan Keanekaragaman Perifiton di Sekitar Karamba Jaring Apung Sungai Barito Kalimantan Selatan
Abstract
Perifiton whose life is attached to the substrate, acts as a provider of nutrients and indicators of fishery water quality. The purpose of this study was to analyze the structure, abundance and diversity of epiphytic and epidendric periphyton in floating net cages and water quality. This research was conducted by purposive sampling in upstream, middle and downstream. The method used is exploratory quantitative, from May and June 2021 with sampling time at the beginning of each month. The main phytoplankton periphyton composition consists of Chlorophyceae and Bacillariophyceae. Chlorophyceae increased from 19 genera at the beginning of the observation to 24 genera, while Bacillariophyceae decreased from 22 to 21 genera. Phytoplankton periphytons that were always present in each observation both at STA-1, STA-2 and STA-3 were Synedra, Diatoma, Tabellaria, Fragillaria, Zygnema, Spirogyra, Mougeotiopsis, Microspora, Chlorodesmis cosmosa and Closterium. Unstable community structure with an abundance of 600 – 1320 cells/liter, uniformity index 0.53 – 0.884, diversity index 1.104 – 1.750 and dominance index 0.14 -0.47 classified as oligotropic. Similar periphyton upstream and midstream, but different downstream. The presence of Synedra in all locations indicates that there has been a decline in water quality due to low dissolved oxygen. Water quality at the site informs that low pH, high ammonia and high organic matter result in low dissolved oxygen.
Keywords
Full Text:
PDF (Bahasa Indonesia)References
Ameilda, Hanum C., Dewiyanti, I., Octavina, C. (2016). Struktur Komunitas Perifiton Pada Makroalga Ulvalactuca Di Perairan Pantai Ulee Lheue, Banda Aceh. Jurnal Ilmiah Mahasiswa Kelautan dan Perikanan Unsyiah, 1 (3): 337-347
Azim, M.E., Verdegem, M.C.J., Van Dam, A.A. Beveridge, M.C.M. (2005). Periphyton: Ecology, Exploitation and Management. CABI Publishing, USA.
Basmi, J. (2000). Planktonologi: plankton sebagai bioindikator kualitas perairan. Fakultas Perikanan dan Ilmu Kelautan. Institut Pertanian Bogor.
Bere, T. Tundisi, J.G., (2010). Epipsammic diatoms in streams influenced by urban pollution, São Carlos, SP, Brasil. Brazilian Journal of Biology Revista Brasileira de Biologia, 70 :921-930.
Bellinger, E.G, D.C. Sigee. (2010). Freshwater Algae: Identification and Use as Bioindicators. John Wiley and Sons
Biolo S, Rodrigues L. (2013). Comparison of the structure of theperiphytic community in distinct substrates from a neotropicalfloodplain. Int Res J Plant Sci 4:64–75
Biggs, B.J.F, C. Kilroy. (2000). Stream Periphyton Monitoring Manual. NIWA. Christchurch.
Campeau, S., Murkin, H.R. Titman, R.D. (1994). Relative importance of algae and emergent plant litter to freshwater marsh invertebrates. Canadian Journal of Fisheries and Aquatic Sciences, 51,3: 681-692.
Cooke S.J., Allison, E.H., Beard, T.D., Arlinghaus, R., Arthington, A.H., Bartley, D.M., Cowx, I.G., Fuentevilla, C., Leonard, N.J., Lorenzen, K., Lynch, A.J., Nguyen, V.M., Youn, S.-J., Taylor, W.W., Welcomme, R.L. 2016. On the sustainability of inland fisheries: Finding a future for the forgotten. Ambio. 45 :753-764
Dharmaji D, Asmawi S, Yunandar Y, Kuriawan R.R. (2020). Analisis kelimpahan dan keanekaragaman perifiton rawa Bangkau Kabupaten Hulu Sungai Selatan Kalimantan Selatan. Enviroscienteae 16 (3) : 366-372.
Dharmawan, R. (2010). Studi Komunitas Alga Perifiton di Kali Surabaya Kotamadya Surabaya. Skripsi. Institut Teknologi Sepuluh Nopember Surabaya.
Effendi, H. (2003). Telaah kualitas air bagi pengelolaan sumber daya dan lingkungan perairan. Kanisius, Yogyakarta.
[FAO] Food and Agriculture Organization. (2011). Guideines for the ecolabelling of fish and fishery products from inland capture fisheries. Rome, Italy.
Fachrul, M. F. (2006). Metode sampling bioekologi. Bumi Aksara. Jakarta.
Graham, R., Harris, J.H. (2005). Floodplain Inundation and Fish Dynamics in The Murray Darling Basin. Current Concepts and Future Research: A Scoping Study. CRC for Freshwater Ecology, Canberra.
Goldsborough G., Robinson G. C., L. (1997). Response of benthic and planktonic alga biomass to experimental water-level manipulation in a prairie lake shore wetland. Wetland. 17, 167–181.
Huynh, M., N. Serediak. (2006). Algae Identification Field Guide. Agriculture and Agri-Food Canada
La T.T.K., Donna, L.J., Mark, A.H., Brian, R.H., Shane, E.B., Marinus, L.O. (2013). Macrophytes in shallow lakes: Relationships with water, sediment and watershed characteristics. Aquat. Bot. 109: 39–48
Lobo, E.A., Wetzel, C.E., Ector, L., Katoh, K., Lanza, S.B. Mayama, S. (2010). Response of epilithic diatom communities to environmental gradients in subtropical temperate Brazilian rivers. Limnetica, 29, 2: 323-340
Lynch A.J, Cowx, I.G., E. Fluet-Chouinard, Glaser S.M., Phang S.C., Bower S.D., Brooks J.L., Bunnell D.B., Claussen J.E., Cooke S.J., Beard T.D., Kao YC., Myers B.J.E., Reid A.J., Taylor J.J.,
Youn S.,Lorenzen K. (2017). Inland fisheries-Invisible but integral to the UN Sustainable Development Agenda for ending poverty by 2030. Global Environment Change. 47: 167–173.
Madubun, U. (2008). Produktivitas primer fitoplankton dan kaitannya dengan unsur hara dan cahaya di perairan Muara Jaya teluk Jakarta. Institut Pertanian Bogor.
Matt W.G., Kyle, D.Z., Brian, R.H., Mark, A.H., Robert, G.W., Sean, R.V., Jerry, A.Y. (2014). Relative importance of phosphorus, fish biomass, and watershed land use as drivers of phytoplankton abundance in shallow lakes. Sci. Total. Environ. 849–855
Mason, CF. (1981). Biology of freshwater pollution. Longman. New York
Prescott GW. (1970). The Freshwater Algae. University of Montana. IOWA
Rudiyanti, S. (2009). Kualitas perairan Sungai Banger Pekalongan berdasarkan indikator biologis. Jurnal Saintek Perikanan 4: 2: 46-52.
Rodrigues L, Bicudo DC. (2001). Similarity among periphyton algalcommunities in a lentic-lotic gradient of the upper Parana ́riverfloodplain. Braz Rev Bras Bot 24:235–248
Siswanto., Sofarini, D, Hanifa, S.M. (2021). Kajian Fisika Kimia Perairan Danau Bangkau sebagai Dasar Pengembangan Budidaya Ikan. Rekayasa 14 (2). 245-251.
Schaumburg, J., C. Schranz, G. Hofmann, D. Stelzer, S. Schneider, U. Schmedtje. (2004). Macrophytes and phytobenthos as indicators of ecological status in German lakes-a contribution to the implementation of the Water Framework Directive. Limnologica 34:302–314
Sitompul, S. (2000). Struktur komunitas perifiton di Sungai Babon Semarang. Skripsi. Universitas Diponegoro
Siagian M. (2010). Daya dukung waduk PLTA Koto Panjang Kampar Provinsi Riau. Jurnal Perikanan dan Kelautan. 15, 1: 25-38
Siagian, M. (2018). Pengaruh budidaya keramba jaring apung terhadap struktur komunitas perifiton pada substrat yang berbeda di sekitar DAM Site Waduk PLTA Koto Panjang Kampar Riau. Jurnal Akuatika Indonesia. 3,1: 26-35.
Supartiwi, E.N. (2000). Karakteristik komunitas fitoplankton dan perifiton sebagai indikator kualitas lingkungan Sungai Ciujung, Jawa Barat. Institut Pertanian Bogor.
Stevenson, R. J., Y. Pan, K. M. Manoylov, C. A. Parker, D. P. Larsen & A. T. Herlihy. (2008). Development of diatom indicators of ecological conditions for streams of the western US. Journal of the North American Benthological Society 27: 1000–1016.
Tavernini S, Nizzoli D, Rossetti G, Viaroli. (2009). Trophic state and seasonal dynamics of phytoplankton communities in two sand-pit lakes at difeferent successional stages. J. Limnol. 68 (2): 217-228
Telaumbamia, Victor B. Alexander T, Suryani A. (2013). Produktivitas primer perifiton di Sungai Nobursahan Sumatera Utara. Fakultas Pertanian. Univ Sumatera Utara : Medan
DOI
https://doi.org/10.21107/rekayasa.v14i3.12054Metrics
Refbacks
- There are currently no refbacks.
Copyright (c) 2021 Yunandar - Yunandar
This work is licensed under a Creative Commons Attribution-ShareAlike 4.0 International License.