skip to main content

Inventarisasi Jenis Mangrove di Wilayah Pesisir Desa Sungai Nibung, Kalimantan Barat

Program Studi Ilmu Kelautan, FMIPA, Universitas Tanjungpura, Indonesia

Received: 10 Jan 2023; Revised: 2 Aug 2023; Accepted: 21 Sep 2023; Available online: 17 Nov 2023; Published: 10 Dec 2023.
Editor(s): Budi Warsito

Citation Format:
Abstract

Desa Sungai Nibung merupakan salah satu wilayah pesisir di Kabupaten Kubu Raya, yang telah ditetapkan sebagai salah satu kawasan konservasi di Kubu Raya. Pesisir Desa Sungai Nibung memiliki potensi sumberdaya alam dengan tingkat keanekaragaman tinggi, salah satunya mangrove. Mangrove memiliki peran penting secara ekologi dan ekonomi. Namun, pemanfaatan potensi sumberdaya alam yang tidak memperhatikan daya dukung lingkungan akan dapat mempengaruhi keseimbangan ekosistem, dan berdampak negatif pada keberadaan dan kelimpahan organisme. Keterbatasan data dan informasi mengenai potensi sumberdaya alam dan jasa-jasa lingkungan merupakan kendala utama dalam menentukan pola pengelolaan yang tepat untuk dikembangkan. Penelitian ini bertujuan untuk mengidentifikasi jenis mangrove di wilayah pesisir Desa Sungai Nibung, Kabupaten Kubu Raya, Kalimantan Barat. Penelitian dilakukan pada bulan Oktober - November 2022. Pengambilan data keanekaragaman jenis mangrove dilakukan menggunakan metode eksploratif dengan mencatat semua jenis mangrove yang ditemui di lokasi penelitian. Sampel mangrove diambil bagian akar, batang, daun, bunga, dan buah untuk selanjutnya dilakukan identifikasi. Hasil penelitian menemukan delapan belas spesies mangrove di wilayah pesisir Desa Sungai Nibung, dimana jenis yang paling dominan adalah Avicennia, Rhizophora, Bruguiera, Sonneratia, dan Nypa. Berdasarkan kriteria Red List IUCN, B. hainesii masuk dalam status Critically Endangered (CR) atau terancam punah, sehingga masuk ke dalam prioritas konservasi. Inventarisasi potensi bioekologi dapat dijadikan baseline data dalam mewujudkan pengelolaan wilayah pesisir secara terpadu (ICZM) dan mendukung rencana pengelolaan dan zonasi KKP3K Kubu Raya.

Note: This article has supplementary file(s).

Fulltext View|Download |  common.other
Cover Letter
Subject
Type Other
  Download (15KB)    Indexing metadata
Keywords: Inventarisasi; Mangrove; Bruguiera hainesii; Sungai Nibung; Kalimantan Barat

Article Metrics:

  1. Abubakar, S., Kadir, M.A., Wibowo, E.S., & Akbar, N. (2019). Manfaat Mangrove bagi Peruntukan Sediaan Farmasitika di Desa Mamuya Kecamatan Galela Timur Kabupaten Halmahera Timur (Tinjauan Etnofarmakologis). Jurnal Enggano, 4(1), 12-25
  2. Ahmed, S., Sarker, S.K., Friess, D.A., Kamruzzaman, Md., Jacobs, M., Islam, Md.A., Alam, Md.A., Suvo, M.J., Sani, Md.N.H., Dey, T., Naabeh, C.S.S., Pretzsch, H. (2022). Salinity reduces site quality and mangrove forest functions. From monitoring to understanding. Science of the Total Environment, 853, 158662
  3. Aini, F., Maritsa, H., Riany, H. (2020). The Potention of Nipah Fiber (Nypa fruticans Wurmb.) in the Production of Nata Fruticans using Soybean Sprouts as a Source of Nitrogen. Jurnal Biota, 6(2), 45-50
  4. Allen, J.A., Krauss, K.W., Duke, N.C., Herbst, D.R., Björkman, O., & Shih, C. (2000). Bruguiera species in Hawai: systematic considerations and ecological implications. Pacific Science, 54, 331-343
  5. Andri, A., Harahap, R.P., Aprizkiyandari, S., Agustine, L. (2022). Pendampingan Pembuatan Profil Kawasan Ekowisata Mangrove Telok Berdiri, Desa Sungai Kupah, Kecamatan Sungai Kakap, Kabupaten Kubu Raya. Jurnal Pengabdian Kepada Masyarakat Nusantara, 3(2), 513-519. https://doi.org/10.5533 8/jpkmn.v3i2.382
  6. Apriani, A., Akbar, A.A., & Jumiati. (2022). Valuasi Ekosistem Mangrove di Pesisir Kayong Utara, Kalimantan Barat. Jurnal Ilmu Lingkungan, 20(3), 553-562. doi: 10.14710/jil.20.3.553-562
  7. Arshan, M.L.M.K., Imaduddin, S., Magi, F. (2020). Biogenic synthesis of silver nanoparticles from mangrove plant Lumnitzera racemosa and its phytochemical screening and antibacterial activity. Asian Journal of Advances in Research, 3(2), 2936
  8. Asan, S.A., Anwari, M.S., Rifanjani, S., Darwati, H. (2019). Keanekaragaman Jenis Ikan di Kawasan Mangrove Sungai Kakap Kabupaten Kubu Raya Provinsi Kalimantan Barat. Jurnal Hutan Lestari, 7(1), 279-286. http://dx.doi.org/10.26418/jhl.v7i1.31723
  9. Astuti, M.D., Wulandari, M., Rosyidah, K., Nurmasari, R. (2021). Analisis Proksimat dan Fitokimia Buah Pedada (Sonneratia ovata Back.). Sains dan Terapan Kimia, 15(2), 154-163
  10. Audah, K.A., Batubara, R., Julkipli, Wijaya, E., Kurniawaty, E., & Batubara, I. (2020). Antibacterial Screening of Mangrove Extract Library Showed Potential Activity against Escherichia coli and Staphylococcus aureus. Journal of Tropical Life Science, 10(2), 105-111
  11. Aziz, I. & Khan, M.A. (2001). Effect of Seawater on the Growth, Ion Content and Water Potential of Rhizophora mucronata Lam. J. Plant Res., 114, 369-373
  12. Badhsheeba, M.A. & Vadivel, V. (2020). Physicochemical and Phytochemical Contents of leaves of Acrostichum aureum L. Journal of Global Biosciences, 9(4), 7003–7018
  13. Balai Pengelolaan Sumberdaya Pesisir dan Laut Pontianak. (2019). Rencana Pengelolaan dan Zonasi KKP3K Taman Pesisir Kubu Raya Kabupaten Kubu Raya. Direktorat Jenderal Pengelolaan Ruang Laut. Kementerian Kelautan dan Perikanan
  14. Bomfim, M.R., Santos, J.A., Costa, O.V. (2018). Morphology, physical and chemical characteristics of mangrove soil under riverine and marine influence: A case study on Subaé River Basin, Bahia, Brazil, Mangrove Ecosystem Ecology and Function, Sahadev Sharma, IntechOpen, London, United Kingdom
  15. Borges, J.S., De Grande, F.R., Costa, T.M. (2019). Do lower air or water temperatures limit the southern distribution of the white mangrove Laguncularia racemosa in South America? Estuarine, Coastal and Shelf Science, 230, 106449. https://doi.org/10. 1016/j.ecss.2019.106449
  16. Cavanaugh, K.C., Kellner, J.R., Forde, A.J., Gruner, D.S., & Parker, J.D. (2014). Poleward expansion of mangroves is a threshold response to decreased frequency of extreme cold events. Proceedings National Academy Sci., 111, 723-727. DOI: 10.1073/pnas.1315800111
  17. Chakraborty, S.K. (2013). The interactions of environmental variables determining the biodiversity of coastal mangrove ecosystem of west Bengal, India. J. Environ. Sci., 3, 251-265
  18. Cheablam, O. & Chanklap, B. (2020). Sustainable Nipa Palm (Nypa fruticans Wurmb.) Product Utilization in Thailand. Hindawi Scientifica, 1-10. https://doi.org/10.1155/2020/3856203
  19. Cooper, W.E., Kudo, H., & Duke, N.C. (2016). Bruguiera hainesii C.G. Rogers (Rhizophoraceae), an endangered species recently discovered in Australia. Austrobaileya, 9(4), 481–488
  20. Dai, A., Qian, T., Trenberth, K.E., & Millman, J.D. (2009). Changes in continental freshwater discharges from 1948 to 2004. J. Climate, 22, 2773-2779. DOI: 10.1175/2008JCL12592
  21. Darwish, A.G.G., Samy, M.N., Sugimoto, S., Otsuka, H., Matsunami, K. (2019). A new Macrolactone, Racemolide along with seven known compounds with biological activities from mangrove plant, Lumnitzera racemosa. Nat. Prod. Commun., 1-6
  22. Das, L., Patel, R., Salvi, H., Kamboj, R.D. (2019). Assessment of natural regeneration of mangrove with reference to edaphic factors and water in Southern Gulf of Kachchh, Gujarat, India. Heliyon, 5(8), e02250. DOI: 10.1016/j.heliyon.2019.e02250
  23. Devi, R.K., Rajesh, N.V., Vasantha, S., & Geetha, V.S. (2015). Anti-Parasitic action of Actinopteris radiata, Acrostichum aureum and Hemionitis arifolia. Pteridological Research, 4(1), 1-9
  24. Dhavan, P.P. & Jadhav, B.L. (2020). Eco-friendly approach to control dengue vector Aedes aegypti larvae with their enzyme modulation by Lumnitzera racemosa fabricated zinc oxide nanorods. SN Applied Sciences, 2(5), 843
  25. Djamaluddin, R. (2018). Mangrove: Biologi, Ekologi, Rehabilitasi, dan Konservasi. Unsrat Press, 251 pp
  26. Duke, N.C. (2006). Australia’s Mangrove. University of Queensland. Australia
  27. Duke, N.C., Mackenzie, J., Wood, A. (2010). Tidal wetland flora of New Caledonia. Queensland, Australia: Project report prepared for Infremer, UniQuest Pty Limited. 1-90
  28. Duke, N., Kathiresan, K., Salmo III, S.G., Fernando, E.S., Peras, J.R., Sukardjo, S. & Miyagi, T. (2010). Ceriops decandra. The IUCN Red List of Threatened Species 2010: e.T178853A7627935. https://dx.doi.org/10. 2305/IUCN.UK.2010-2.RLTS.T178853A7627935. en. Accessed on 01 January 2023
  29. Duke, N., Kathiresan, K., Salmo III, S.G., Fernando, E.S., Peras, J.R., Sukardjo, S., Miyagi, T., Ellison, J., Koedam, N.E., Wang, Y., Primavera, J., Jin Eong, O., Wan-Hong Yong, J. & Ngoc Nam, V. (2010). Bruguiera hainesii. The IUCN Red List of Threatened Species 2010: e.T178834A7621565. https://dx.doi.org/10.2305/IUCN.UK.20102.RLTS.T178834A7621565.en. Accessed on 01 January 2023
  30. Efriyeldi, Mulyadi, A., & Samiaji, J. (2019). Pertumbuhan Api-Api (Avicennia alba) dan Kelimpahan Epifauna Bentik di Kawasan Rehabilitasi Mangrove Desa Kedaburapat Kabupaten Kepulauan Meranti. Dinamika Lingkungan Indonesia, 8(2), 113-122
  31. Ekosistem Khatulistiwa Lestari. (2022). Enhancing Forest, Peatland and Mangrove Restoration and Conservation Business Model in Kubu Raya Landscape. Kick-off Meeting
  32. El-Mallakh, T.V., Gao, Y., El-Mallakh, R.S. (2014). The effect of simulated acid rain on growth of root systems of Scindapsus aereus. Plant. Biol., 5(5187), 13-15. DOI: 10.4081/pb.2014.5187
  33. Eswaraiah, G., Peele, A.K., Krupanidhi, S., Kumar, B.R., Venkateswarulu, T.C. (2020). Studies on phytochemical, antioxidant, antimicrobial analysis and separation of bioactive leads of leaf extract from the selected mangroves. J. King. Saud. Univ. Sci., 32(1), 842-7
  34. Eswaraiah, G., Peele, A.K., Krupanidhi, S., Indira, M., Kumar, B.R., Venkateswarulu, T.C. (2020). GC-MS analysis for compound identification in leaf extract of Lumnitzera racemosa and evaluation of its in vitro anticancer effect against MCF7 and HeLa cell lines. J. King. Saud. Univ. Sci., 32(1), 780-3
  35. Fitri, Z.M., Kismiyati, & Mubarak, A.S. (2018). In Vitro Antibacteria Activity of Api-Api (Avicennia alba) Leave Extract Against Vibrio harveyi Causes Vibriosis. JIPK, 10(2), 131-136
  36. Gab-Alla, A.A., Khafagi, I.K., Morsy, W.M., & Fouda, M.M. (2010). Ecology of Avicennia marina mangals along Gulf of Aqaba, South Sinai, Red Sea. Egypt. J. Aquat. Biol. & Fish., 14(2), 79-93
  37. Gabariel, E., Yoswaty, D., & Nursyirwani. (2019). Daya Hambat Ekstrak Xylocarpus Granatum terhadap Bakteri Patogen (Pseudomonas aeruginosa, Escherichia coli dan Vibrio alginolyticus). Jurnal Perikanan dan Kelautan, 24(2), 114-118
  38. Gazali, M. & Nufus, H. (2019). Potensi Daun Mangrove Sonneratia alba smith Sebagai Antibakteri Asal Pesisir Kuala Bubon Aceh Barat. Jurnal Laôt Ilmu Kelautan, 1(2), 107-113
  39. Gazali, M., Nurjanah, Ukhty, N., Nurdin, M., & Zuriat. (2020). Skrining Senyawa Bioaktif Daun Perepat (Sonneratia alba J.E. Smith) sebagai Antioksidan Asal Pesisir Kuala Bubon Aceh Barat. JPHPI, 23(2), 402-411
  40. Giesen, W., Wulffraat, S., Zieren, M., Scholten, L. (2007). Mangrove Guidebook for Southeast Asia, RAP Publication2006/07: Dharmasarn Co., Ltd
  41. Gilman EL, Ellison J, Duke NC, Field CD. 2008. Threats to mangroves from climate change and adaptation options: A review. Aquat. Bot., 89(2), 237-250. DOI: 10.1016/j.aquabot.2007.12.009
  42. Hafizah-Malik, N., Zin, M.Z., Razak, A.S.B., Ibrahim, K., Zainol, M.K. (2017). Antioxidative activities and flavonoids contents in leaves of selected mangrove species in setiu wetland extracted using different solvents. Journal of Sustainability Science and Management, 3(3), 24-34
  43. Hamran, Linda, R., Lovadi, I. (2014). Analysis of mangrove vegetation in Sebubus Village, Paloh Sub-district, Sambas District. Protobiont, 3(2), 201-208
  44. Handayani, D., Sandrawati, N., Ruslan, R., Nestianda, O., Fajrina, A., Tallei, T.E. (2019). Cytotoxic and antimicrobial activities of ethyl acetate extract of mangrove plant Scyphiphora hydrophyllacea C. F. Gaertn Associated fungi. Journal of Applied Pharmaceutical Science, 9(06), 075-079. DOI: 10.7324/JAPS.2019.90610
  45. Hanin, N.N.F. & Pratiwi, R. (2017). Kandungan Fenolik, Flavonoid dan Aktivitas Antioksidan Ekstrak Daun Paku Laut (Acrostichum aureum L.) Fertil dan Steril. J. Trop. Biodiv. Biotech., 2: 51-56
  46. Harnani, B.R.D. & Titah, H.S. (2017). Kemampuan Avicennia alba untuk Menurunkan Konsentrasi Tembaga (Cu) di Muara Sungai Wonorejo, Surabaya. Jurnal Teknik ITS, 6(2), 218-222
  47. Hariphin, Linda, R., Wardoyo, E.R.P. (2016). Analisis Vegetasi Hutan Mangrove Di Kawasan Muara Sungai Serukam Kabupaten Bengkayang. Protobiont, 5(3), 66-72. http://dx.doi.org/10.26418/protobiont.v5i3. 17066
  48. Hilmi, E., Sari, L.K., Cahyo, T.N., Mahdiana, A., Soedibya, P.H.T., Sudiana, E. (2022). Survival and growth rates of mangroves planted in vertical and horizontal aquaponic systems in North Jakarta, Indonesia. Biodiversitas, 22 (2), 686-693. DOI: 10.13057/biodiv/d230213
  49. Hossain, Md.F. & Islam, Md. A. (2015). Utilization of Mangrove Forest Plant: Nipa Palm (Nypa fruticans Wurmb.). American Journal of Agriculture and Forestry, 3(4), 156-160. doi: 10.11648/j.ajaf.20150304.16
  50. Imra, Tarman, K., Desniar. (2016). Aktivitas Antioksidan dan Antibakteri Ekstrak Nipah (Nypa fruticans) terhadap Vibrio sp. Isolat Kepiting Bakau (Scylla sp.). JPHPI, 19(3), 241-250. DOI: 10.17844/jphpi.2016.19.3.24
  51. Indra, S.F., Sudarmadji, Setiawan, R. (2019). Pola distribusi populasi pohon Rhizophora stylosa Griff. di Pantai Bilik Taman Nasional Baluran. Jurnal Hutan Tropis, 7(3), 261-266
  52. Irpan, F.B., Manurung, T.F., & Muflihati. (2017). Komposisi dan Struktur Vegetasi Penyusun Zonasi Hutan Mangrove Tanjung Prapat Muda-Tanjung Bakau Kabupaten Kubu Raya. Jurnal Hutan Lestari, 5(1), 104-112
  53. Irwanto, Paembonan, S.A., Ngakan, P.O., & Maulany, R.I. (2021). Estimated carbon stock of various mangrove zonation in Marsegu Island, West Seram, Maluku. IOP Conf. Series: Earth and Environmental Science, 807, 022044. doi: 10.1088/1755-1315/807/2/022044
  54. Jabbar, A., Nusantara, R.W., Akbar, A.A. (2021). Valuasi Ekonomi Ekosistem Mangrove Berbasis Ekowisata pada Hutan Desa di Kecamatan Batu Ampar Kalimantan Barat. Jurnal Ilmu Lingkungan, 19(1), 140-152. https://doi.org/10.14710/jil.19.1.140-152
  55. Jisha, S. & Sreeja, J. (2018). Preliminary study on the mosquito larvicidal efficacy of mangrove leaf extracts. Indian J. Sci. Res., 20(1), 68-70
  56. Kaliamurthi, S. & Selvaraj, G. (2016). Insight on Excoecaria agallocha: An Overview. Nat. Prod. Chem. Res., 4(2), 2-6
  57. Kartikasari, L., Nurhayati, A.P.D., Setiawan, E., Hidayati, D., Ashuri, N.M., Saadah, N.N., Muzaki, F.K., & Desmawati, I. (2017). Bioaktivitas ekstrak batang Xylocarpus granatum sebagai anti blackspot alternatif pada Litopenaeus vannamei pasca panen. Journal of Tropical Biodiversity and Biotechnology, 2, 16-20
  58. Keputusan Menteri Kelautan dan Perikanan Republik Indonesia Nomor 92/KEPMEN-KP/2020 tentang Kawasan Konservasi Pesisir dan Pulau-Pulau Kecil Kubu Raya dan Perairan Sekitarnya di Provinsi Kalimantan Barat
  59. Khairunnisa, C., Thamrin, E., & Prayogo, H. (2020). Keanekaragaman Jenis Vegetasi Mangrove di Desa Dusun Besar Kecamatan Pulau Maya Kabupaten Kayong Utara. Jurnal Hutan Lestari, 8(2), 325-336. DOI: http://dx.doi.org/10.26418/jhl.v8i2.40074
  60. Khumaidah, L., Nurmalasari, F., Putri, F.I., Purnomo, A.S., Santoso, M., Ersam, T., & Fatmawati, S. (2018). In vitro antioxidant activity of Sonneratia ovata Backer extract. Research Journal of Chemistry and Environtment, 22, 146-150
  61. Khumaidah, L., Purnomo, A.S., & Fatmawati, S. (2019). Antimicrobial Activity of Sonneratia ovata Backer. HAYATI Journal of Biosciences, 26(4), 152-155
  62. Kimura, N., Kainuma, M., Inoue, T., Chan, E.W.C., Tangah, J., Baba, K., Oshiro, N., Okamoto, C. (2017). Botany, uses, chemistry and bioactivities of mangrove plants V: Acrostichum aureum and A. speciosum. ISME/GLOMIS Electronic Journal, 15(1), 1-6
  63. Kirwan, M.L., Megonigal, J.P. (2013). Tidal wetland stability in the face of human impacts and sea-level rise. Nature, 504, 53–60
  64. Kodikara, K.A.S., Jayatissa, L.P., Huxham, M., Dahdouhguebas, F., Koedam, N. (2018). The effects of salinity on growth and survival of mangrove seedlings change with age. Acta. Bot. Bras., 32, 37-46
  65. Kumar, J.I.N., Sajish, P R., Kumar, R.N., Basil, G., Shailendra, V. (2011). Bioaccumulation of Lead, Zinc and Cadmium in Avicennia marina Mangrove Ecosystem near Narmada Estuary in Vamleshwar, West Coast of Gujarat, India. Journal Environmental Application & Science, (1), 008- 013
  66. Kusuma, K.R., Safitri, I., & Warsidah. (2021). Keanekaragaman Jenis Kepiting Bakau (Scylla Sp.) Di Kuala Kota Singkawang Kalimantan Barat. Jurnal Laut Khatulistiwa, 4(1), 1-9
  67. Kusumadewi, T., Khotimah, S., & Yanti, A.H. (2014). Ekstrak Metanol Buah Sonneratia alba J.E.Sm sebagai Penghambat Pertumbuhan Helminthosporium sp. yang diisolasi dari Daun Jagung. Protobiont, 3(2), 149-154
  68. Linda, T.M., Berlyansah, A., Fibriarti, B.L., Sofiyanti, N., Devi, S. (2022). Isolation and Analysis of Bioactive Compounds Endophytic Bacteria of Sea Fern (Acrtostichum aureum L.) from Bengkalis Island, Riau. Jurnal Biologi Tropis, 22 (1), 46-54. doi.org/10.29303/jbt.v22i1.3104
  69. Mandang, M.S.S., Sahambangun, D.E., Masinambou, C.D., & Dotulong, V. (2021). Daun Mangrove Sonneratia alba sebagai Teh Fungsional. Media Teknologi Hasil Perikanan, 9(3), 93–99
  70. Manohar, S.M. (2021). A Review of the Botany, Phytochemistry and Pharmacology of Mangrove Lumnitzera racemosa Willd. Pharmacogn Rev., 15(30), 107-116. DOI: 10.5530/phrev.2021.15.13
  71. Mao, L. & Foong, S.Y. (2013). Tracing ancestral biogeography of Sonneratia based on fossil pollen and their probable modern analogues. Palaeoworld, 22, 133-143
  72. Marini, Kushadiwijayanto, A.A., Nurrahman, Y.A. (2018). Struktur Komunitas Hutan Mangrove di Desa Sungai Bakau Kecil Kabupaten Mempawah Kalimantan Barat. Jurnal Laut Khatulistiwa, 1(3), 73-80
  73. Meidiana, V., Apriansyah, Safitri, I. (2019). Struktur Komunitas dan Estimasi Karbon Sedimen Mangrove di Desa Sebubus Kabupaten Sambas Kalimantan Barat. Jurnal Laut Khatulistiwa, 2(3), 107-117. DOI: http://dx.doi.org/10.26418/lkuntan.v2i3.35842
  74. Meng, Y., Bai, J., Gou, R., Cui, X., Feng, J., Dai, Z., Zhu, X., & Lin, G. (2021). Relationships between above- and below-ground carbon stocks in mangrove forests facilitate better estimation of total mangrove blue carbon. Carbon Balance and Management, 16(8), 1-14
  75. Nakhawa, A.D., Markad, S.S., Vichare, P.S., Shirdhankar, M.M. (2012). Mapping and change detection of mangrove forest in Sakhartar estuary of Ratnagiri district, Maharashtra. International Multidisciplinary Research Journal, 2(8), 4-8
  76. Nguyen, T.H.T., Pham, H.V.T., Pham, N.K.T., Quach, N.D.P., Pudhom, K., Hansen, P.E., & Nguyen, K.P.P. (2015). Chemical constituents from Sonneratia ovata Backer and their in vitro cytotoxicity and acetyl-cholinesterase inhibitory activities. Bioorganic and Medicinal Chemistry Letters, 25, 2366–2371
  77. Nguyen, H.P., Nguyen, T.L.T., Nguyen, T.D., Nguyen, T.A.T., Nguyen, T.T.M., Nguyen, K.P.P. (2017). A New Glycoside and in vitro evalution of α-Glucosidase inhibitory activity of constituents of the mangrove Lumnitzera racemosa. Nat. Prod. Commun., 12(11), 1751-4
  78. Noor, T., Batool, N., Mazhar, R., Ilyas, N. (2015). Effects of siltation, temperature and salinity on mangrove plants. Eur. Acad. Res., 2(11), 14172-14179
  79. Nugroho, T.S., Fahrudin, A., Yulianda, F., Bengen, D.G. (2019). Analisis kesesuaian lahan dan daya dukung ekowisata mangrove di Kawasan Mangrove Muara Kubu, Kalimantan Barat. JPSL, 9(2), 483-497. http://dx.doi.org/10.29244/jpsl.9.2.483-497
  80. Nurrahman, Y.A., Djunaedi, O.S., Rostika, R. (2012). Struktur dan Komposisi Vegetasi Mangrove di Pesisir Kecamatan Sungai Raya Kepulauan Kabupaten Bengkayang Kalimantan Barat. Jurnal Perikanan dan Kelautan, 3(1), 99-107
  81. Nursofiati, Kushadiwijayanto, A.A., Safitri, I. (2020). Struktur Komunitas dan Laju Produksi Karbon Serasah Daun Mangrove di Kuala Singkawang. Jurnal Laut Khatulistiwa, 3(3), 105 – 112
  82. Nurmalasari, F., Ersam, T., Fatmawati, S. (2016). Isolasi Senyawa Antioksidan dari Kulit Batang Sonneratia ovata Backer. Jurnal Sains dan Seni ITS, 5(2), 2337-3520
  83. Nursofiati, Kushadiwijayanto, A.A., & Safitri, I. (2020). Struktur Komunitas dan Laju Produksi Karbon Serasah Daun Mangrove di Kuala Singkawang. Jurnal Laut Khatulistiwa, 105-112
  84. Nuryadi, D., Erwin, & Usman. (2019). Uji Fitokimia dan Aktivitas Antioksidan Ekstrak Batang Bakau Api-api Putih (Avicennia alba Blume). Prosiding Seminar Nasional Kimia 2019, Jurusan Kimia FMIPA UNMUL Samarinda, 103-108
  85. Okugbo, O.T., Usunobun, U., Esan, A., Adegbegi, J.A., Oyedeji, J.O., Okiemien, C.O. (2012). A review of Nipa palm as a renewable energy source in Nigeria. Res. J. Appl. Sci. Eng. Technol., 4, 2367-2371
  86. Osland, M., Feher, L.C., Griffith, K.T., Cavanaugh, K.C., Enwright, N.M., Day, R.H., Stagg, C.L., Krauss, K.W., Howard, R.J., Grace, J.B., & Rogers, K. (2017). Climatic controls on the global distribution, abundance, and species richness of mangrove forests. Ecological Monographs, 87(2), 341-359
  87. Padli, Z., Muin, A., & Iskandar. (2019). Komposisi Vegetasi Hutan Mangrove Pantai Air Mata Permai Kecamatan Muara Pawan Kabupaten Ketapang. Jurnal Hutan Lestari, 7(1), 178-188. DOI: http://dx.doi.org/10.26418/jhl.v7i1.31250
  88. Parida, A.K. & Jha, B. (2010). Salt tolerance mechanisms in mangroves: a review. Trees, 24, 199-217
  89. Paul, T. & Ramasubbu, S. (2017). The antioxidant, anticancer and anticoagulant activities of Acanthus ilicifolius L. roots and Lumnitzera racemosa Willd. leaves, from southeast coast of India. J. Appl. Pharm. Sci., 7(3), 81-7
  90. Paulin, J.P., Callanta, R.B.P., Tan, M.A., Ramos, M.C.R., Ysrael, M.C. (2020). An α-glucosidase iridoid glycoside inhibitor from Scyphiphora hydrophyllacea (Rubiaceae). Acta Manilana, 68, 51–56
  91. Perera, K.A.R., Amarasinghe, M.D., Somaratna, S. (2013). Vegetation structure and species distribution of mangroves along a soil salinity gradient in a micro tidal estuary on the north-western coast of Sri Lanka. Am. J. Sci., 1, 7-15
  92. Perry, C.L. & Mendelssohn, I.A. (2009). Ecosystem effects of expanding populations of Avicennia germinans in a Louisiana salt marsh. Wetlands, 29, 396-406. DOI: 10.1672/08-100.1
  93. Peters, R., Walther, M., Lovelock, C., Jiang, J., Berger, U. (2020). The interplay between vegetation and water in mangroves: new perspectives for mangrove stand modelling and ecological research. Wetl. Ecol. Manag., 28, 697–712
  94. Prianto, E., Jhonnerie, R., Firdaus, R., Hidayat, T., Miswadi. (2006). Keanekaragaman Hayati dan Struktur Ekologi Mangrove Dewasa di Kawasan Pesisir Kota Dumai - Propinsi Riau. Biodiversitas, 7(4), 327-332. Doi.10.13057/biodiv/d070406
  95. Puspitasari, D. (2017). Aktivitas antibakteri dari ekstrak getah mangrove Excoecaria agallocha pada pelarut kloroform terhadap Escherichia coli dan Staphylococcus aureus. Acta Aquatica, 4(1), 1-3
  96. Qodriati, T. (2023). Identifikasi dan kelimpahan mikroplastik pada air dan sedimen di muara Sungai Terus, Desa Sungai Nibung, Kalimantan Barat. [Skripsi}
  97. Rachmawati, Yona, D., Kasitowati, R.D. (2018). Potensi mangrove Avicennia alba sebagai agen fitoremediasi timbal (Pb) dan tembaga (Cu) di Perairan Wonorejo, Surabaya. Depik, 7(3), 227-236. DOI: 1013170/depik.7.3.10555
  98. Raganas, A.F.M. & Magcale-Macandog, D.B. (2020). Physicochemical factors influencing zonation patterns, niche width and tolerances of dominant mangroves in southern Oriental Mindoro, Philippines. OCEAN LIFE, 4(4), 51-62. DOI: 10.13057/oceanlife/o040201
  99. Rahmah, S. & Usman. (2019). Pemanfaatan Ekstrak Daun Api-Api Putih (Avicennia alba) sebagai Bioformalin untuk Mencegah Pembusukan Ikan Kembung (Rastrelliger brachysoma). Pros. Semnas KPK, 2, 36-38
  100. Rangkuti, A.M., Cordova, M.R., Rahmawati, A., Yulma, Adimu, H.E. (2017). Ekosistem Pesisir dan Laut Indonesia. Bumi Aksara. Jakarta. 482 pp
  101. Ranjana, Jadhav, B.L., Dhavan, P.P., Patel, P. (2019). In vitro antidiabetic activity and phytochemical analysis of Lumnitzera racemosa leaves. Int. Res. J. Pharm., 10(4), 220-7
  102. Record, S., Charney, N.D., Zakaria, R.M., & Ellison, A.M. (2013). Projecting global mangrove species and community distribution under climate change. Ecosphere, 4, 1-23. DOI: 10.1890/ES12-00296.1
  103. Reef, R. & Lovelock, C.E. (2015). Regulation of water balance in mangroves. Ann Bot., 115(3), 385- 395
  104. Robert, E.M.R., Schmitz, N., Boeren, I. (2011). Successive cambia: a developmental oddity or an adaptive structure? PloS One, (1), e16558
  105. Rodtassana, C. & Poungparn, S. (2012). Quantitative analysis of the root system of Avicennia alba based on the pipe model theory. ScienceAsia, 38, 414-418
  106. Rumalean, A.S., Purwanti, F., Hendrarto, B., Hutabarat, S. (2019). Struktur Komunitas Hutan Mangrove pada Kawasan Mempawah Mangrove Park di Desa Pasir Mempawah Hilir. Jurnal Ilmu dan Teknologi Kelautan Tropis, 11(1), 221-230. doi.org/10.29244/ jitkt.v11i1.25704
  107. Safitri, I., Kushadiwijayanto, A.A., Nurdiansyah, S.I., Sofiana, M.S.J., Warsidah. (2023). Inventory of Bivalve in the Coastal Area of Desa Sungai Nibung West Kalimantan. Jurnal Biologi Tropis, 23(2), 92–98. DOI: 10.29303/jbt.v23i2.4676
  108. Safitri, I., Kushadiwijayanto, A.A., Sofiana, M.S.J., Apriansyah, Nurrahman, Y.A., Nurdiansyah, S.I., Enjella, Ginting, M.J.P. (2023). Inventory Of Gastropods In The Coastal Area Of Desa Sungai Nibung West Kalimantan. Barakuda 45: Jurnal Ilmu Perikanan Dan Kelautan, 5(1), 45-57. https://doi.org/10.47685/ barakuda45.v5i1.333
  109. Salakory, R.A.Y.B., Harahab, N., Yanuwiadi, B. (2018). Economic Value of Mangrove Forest Ecosystem Damage in Ambon Baguala District Ambon Maluku Indonesia. J-PAL, 9(2), 71-77. DOI: 10.21776/ub.jpal.2018.009.02.02
  110. Salmo III, S.G., Fernando, E.S., Peras, J.R., Sukardjo, S., Miyagi, T., Ellison, J., Koedam, N.E., Wang, Y., Primavera, J., Jin Eong, O., Wan-Hong Yong, J. & Ngoc Nam, V. (2010). Sonneratia ovata. The IUCN Red List of Threatened Species 2010: e.T178814A7615033. https:// dx.doi.org/10.2305/IUCN.UK.2010-2.RLTS.T178814A7615033.en. Accessed on 01 January 2023
  111. Samarakoon, S.R., Shanmuganathan, C., Ediriweera, M.K., Piyathilaka, P., Tennekoon, K.H., Thabrew, I., Galhena, P., De Silva, E.D. (2017). Anti-hepatocarcinogenic and Anti-oxidant Effects of Mangrove Plant Scyphiphora hydrophyllacea. Pharmacogn Mag., 13(1), S76–S83. doi: 10.4103/0973-1296.203989
  112. Sanubari, M.O., Sedayu, A., Miarsyah, M. (2016). Potensi Acrostichum aureum L. (Pteridaceae) Sebagai Bioakumulator Logam Berat Mangan (Mn) dan Tembaga (Cu). BIOMA, 12(2), 1-5
  113. Sapitri, E.W., Batubara, I., Syafitri, U.D. (2019). Optimization Extraction of Xylocarpus granatum Stem as Antioxidant and Antiglycation. HAYATI Journal of Biosciences, 26(2), 50-55
  114. Sarker, S.K., Reeve, R., Matthiopoulos, J. (2021). Solving the fourth-corner problem: forecasting ecosystem primary production from spatial multispecies trait based models. Ecol. Monogr., 91, e01454
  115. Setyastuti, T.A., Puspitasari, I., Sukamto, D., & Asmaran, R.A. (2022). Pemanfaatan Getah Excoecaria agallocha sebagai Bahan Aktif Pembasmi Hama Trisipan (Cerithidea sp.). Chanos chanos, 20(1), 1-8
  116. Simanjuntak, M. (2009). Hubungan Faktor Lingkungan Kimia, Fisika Terhadap Distribusi Plankton di Perairan Belitung Timur, Bangka Belitung. Journal of Fisheries Sciences, 11(1), 31-45
  117. Solomon, S. (2007). Climate change 2007-the physical science basis: Working group I contribution to the fourth assessment report of the IPCC. 4. Cambridge University Press, Cambridge
  118. Sormin, R.B.D.D., Nendissa, M., Mailoa, M.N., Rieuwpassa, F., & Wenno, M.R. (2021). Antibacterial activity of Rhizophora apiculata extract originated from Inner Ambon Bay against selected pathogen bacteria. IOP Conf. Series: Earth and Environmental Science, 797, 012017
  119. Sukairi, A.H., Asaruddin, M.R., Sabri, W.M.A.W., Yusop, S.A.T.W. (2018). Crystallization and Biological Studies of Nypa fruticans Wurmb Sap. IJPST-SUPP, 1(1), 37-42
  120. Susilo. (2017). Analisis Vegetasi Mangrove (Rhizhopora) di Pesisir Pantai Pulau Menjangan Besar Karimunjawa. Biomedika, 10(2), 65-67
  121. Thasya, R., Nurdiansyah, S.I., & Nurrahaman, Y.A. (2023). Struktur Komunitas Kepiting Bakau di Kawasan Mangrove Desa Sungai Nibung, Kabupaten Kubu Raya, Kalimantan Barat. Jurnal Laut Khatulistiwa, 6(2), 90-98. DOI: 10.26418/lkuntan.v6i2.64637
  122. Tobing, A.N.L., Darmanti, S., Hastuti, E.D., & Izzati, M. (2022). Anatomical Adaptation of Grey Mangrove (Avicennia marina) Leaf in the Pond and Coast Located in Mangunharjo, Semarang, Central Java. Biosaintifika, 14(1), 57-64
  123. Uddin, S.J., Bettadapura, J., Guillon, P., Grice, I.D., Mahalingam, S., & Tiralongo, E. (2013). In-vitro Antiviral Activity of a Novel Phthalic Acid Ester Derivative Isolated from the Bangladeshi Mangrove Fern Acrostichum aureum. J. Antivir. Antiretrovir., 5(6), 139-144
  124. Usman, L., Syamsuddin, & Hamzah, S.N. (2013). Analisis vegetasi mangrove di Pulau Dudepo Kecamatan Anggrek Kabupaten Gorontalo Utara. Jurnal Ilmiah Perikanan dan Kelautan, 1(1), 11-17
  125. Usman, Megawati, Malik, M., Ekwanda, R.R.M., & Hariyanti, T. (2020). Toksisitas Ekstrak Etanol Mangrove Sonneratia alba terhadap Larva Nyamuk Aedes aegypti. Jurnal Sains dan Kesehatan, 2(3), 222-227
  126. Win S, Towprayoon S, Chidthaisong A. 2019. Adaptation of mangrove trees to different salinity areas in the Ayeyarwaddy Delta Coastal Zone, Myanmar. Estuar. Coast. Shelf. Sci., 228, 106389. DOI: 10.1016/j.ecss.2019.106389
  127. Wona, H., Kesaulija, F.F., & Warmetan, H. (2009). The Use of Mangrove Vegetation by Community in Kampong Akudiomi District of Kwatisore, Nabire. Becc, 11(1), 12-17
  128. Yoshikai, M., Nakamura, T., Suwa, R., Sharma, S., Rollon, R., Yasuoka, J. (2021). Predicting mangrove forest dynamics across a soil salinity gradient using an individual based vegetation model linked with plant hydraulics. Biogeosci. Discuss. 1–34
  129. Yu, S.Y., Wang, S.W., Hwang, T.L., Wei, B.L., Su, C.J., Chang, F.R. (2018). Components from the leaves and twigs of mangrove Lumnitzera racemosa with anti-angiogenic and anti-inflammatory effects. Mar. Drugs., 16(11), 404
  130. Yuniarti, E. (2021). Strategi Pengembangan Mempawah Mangrove Center (MMP) Kabupaten Mempawah Hilir. Journal of Urban and Regional Planning, 2(1), 50-58. DOI: http://dx.doi.org/10.26418/uniplan.v2i1.45900
  131. Zuswiryati, Nuraya, T., & Sari, D.W. (2022). Identifikasi dan Keanekaragaman Mangrove di Desa Bakau Besar dan Bakau Kecil Kabupaten Mempawah Kalimantan Barat. Jurnal Laut Khatulistiwa, 5(3), 138-149

Last update:

No citation recorded.

Last update: 2024-07-04 08:02:26

No citation recorded.