EFFECTIVITY OF BIOACCUMULATION AND TRANSLOCATION OF HEAVY METALS (CD, ZN, AND PB) IN AVICENNIA MARINA GROWING AT WONOREJO MANGROVE ECOSYSTEM, EAST SURABAYA

Syarifah Hikmah Julinda Sari, Defri Yona, Viky Vidayanti, Firman Ramadhan

Abstract


Avicennia marina is a species of mangrove that has been studied extensively for its capability to uptake and accumulate heavy metals. Since Avicennia marina was found in the Wonorejo Mangrove ecosystem, which confirmed received anthropogenic inputs from Surabaya as the second largest city in Indonesia, the effectivity of bioaccumulation and translocation metals Cd, Zn, and Pb was studied. The sediments, roots, stems and leaves of Avicennia marina were collected in three sites in Wonorejo Mangrove Ecosystem, East Surabaya. The measurement of Cd, Zn and Pb was conducted by ICP-MS. To assess the effectiveness of accumulation and translocation capability, Bioconcentration Factor (BCF) and Translocation Factor (TF) were calculated. The results showed that the distribution of heavy metals Cd and Pb in the organs of the mangrove Avicennia marina exhibited distinct patterns. Although both of them are considered as non-essential elements, Cd tends to distribute evenly until leaves parts, while Pb tends to retain in the roots. In the case of Zn, as an essential element, the uptake was more intense compared to non-essential elements and mobilized until the leaves parts. Interestingly, once all metals reach the stem, they might transfer to the leaves as shown by TF values more than 1. Therefore, Avicennia marine has an effective defense mechanism in the presence of metals by regulating the accumulation and translocation of metals into detoxifying organs.


Keywords


Avicennia marina; heavy metals; bioaccumulation; translocation; detoxification mechanisms

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AMEH SYLVANUS, O., KGABI, N., TAOLE, S. H., AMEH, S., NNENESI ANNA, K., & SIMEON HALAHALA, T. (2016). Heavy Metal Seasonal Distribution in Shore Sediment Samples along the Coastline of Erongo Region, Western Namibia The Effects of Atmospheric Particulate Matter on Climate and Human Health View project Heavy Metal Seasonal Distribution in Shore Sediment Sa. European Journal of Scientific Research, 139(1), 49–63. http://www.europeanjournalofscientificresearch.com

AMIN, A. A., BAIHAQI, V. K., PRAWITMA, R., & KURNIAWAN, A. (2019). Analisis Daya Serap Mangrove Avicennia Marina Dan Rhizophora Mucronata Terhadap Logam Berat (Zn) Di Kawasan Mangrove Wonorejo, Surabaya, Jawa Timur. Seminar Nasional Kelautan XIV, 7–15.

AWALIYAH, H. F., YONA, D., & PRATIWI, D. C. (2018). Akumulasi logam berat (Pb dan Cu) pada Akar dan daun mangrove Avicennia marina di Sungai Lamong, Jawa Timur. Depik, 7(3), 187–197. https://doi.org/10.13170/depik.7.3.11020

BHATTI, S. S., KUMAR, V., SAMBYAL, V., SINGH, J., & NAGPAL, A. K. (2018). Comparative analysis of tissue compartmentalized heavy metal uptake by common forage crop: A field experiment. Catena, 160(November 2016), 185–193. https://doi.org/10.1016/j.catena.2017.09.015

CABOT, C., MARTOS, S., LLUGANY, M., GALLEGO, B., TOLRÀ, R., & POSCHENRIEDER, C. (2019). A Role for Zinc in Plant Defense Against Pathogens and Herbivores. Frontiers in Plant Science, 10(October), 1–15. https://doi.org/10.3389/fpls.2019.01171

DHARMANINGTYAS, N., MUSKANANFOLA, M. R., & TAUFANI, W. T. (2021). Jurnal Pasir Laut. 5(1), 9–16.

ELTURK, M., ABDULLAH, R., MOHAMAD ZAKARIA, R., & ABU BAKAR, N. K. (2019). Heavy metal contamination in mangrove sediments in Klang estuary, Malaysia: Implication of risk assessment. Estuarine, Coastal and Shelf Science, 226(January), 106266. https://doi.org/10.1016/j.ecss.2019.106266

GAO, W., GUO, C., HU, J., DONG, J., & ZHOU, L. H. (2021). Mature trichome is the earliest sequestration site of Cd ions in Arabidopsis thaliana leaves. Heliyon, 7(7), e07501. https://doi.org/10.1016/j.heliyon.2021.e07501

HAMZAH, F., & PANCAWATI, Y. (2013). Fitoremidiasi logam berat dengan menggunakan mangrove. Ilmu Kelautan, 18(4), 203–212.

HAMZAH, F., & SETIAWAN, A. (2010). Akumulasi logam berat pb, cu, dan zn di Hutan Mangrove Muara Angke, Jakarta Utara. Jurnal Ilmu Dan Teknologi Kelautan Tropis, 2(2), 41–52.

MACFARLANE, G. R., PULKOWNIK, A., & BURCHETT, M. D. (2003). Accumulation and distribution of heavy metals in the grey mangrove, Avicennia marina (Forsk.)Vierh.: Biological indication potential. Environmental Pollution, 123(1), 139–151. https://doi.org/10.1016/S0269-7491(02)00342-1

RACHMAWATI, R., 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. https://doi.org/10.13170/depik.7.3.10555

RAM, S. S., AICH, A., SENGUPTA, P., CHAKRABORTY, A., & SUDARSHAN, M. (2018). Assessment of trace metal contamination of wetland sediments from eastern and western coastal region of India dominated with mangrove forest. Chemosphere, 211, 1113–1122. https://doi.org/10.1016/j.chemosphere.2018.07.201

RIYANTI, I., PUTRI, W. A. E., ULQODRY, T. Z., & SANTERI, T. (2019). Akumulasi Logam Berat Zn dan Pb pada Sedimen, Akar dan Daun Mangrove Avicennia alba di Pulau Payung, Sumatera Selatan. Jurnal Lahan Suboptimal : Journal of Suboptimal Lands, 8(2), 141–147. https://doi.org/10.33230/jlso.8.2.2019.423

SARASWAT, S., & RAI, J. P. N. (2011). Complexation and detoxification of Zn and Cd in metal accumulating plants. Reviews in Environmental Science and Biotechnology, 10(4), 327–339. https://doi.org/10.1007/s11157-011-9250-y

SARI, S. H.J., HARLYAN, L. I., & YONA, D. (2018). Potential mangrove species in porong river estuary as inhibiting agent of heavy metal (Pb, Cu and Zn) pollution. Pertanika Journal of Tropical Agricultural Science, 41(1), 271–286.

SARI, S. H.J., HARLYAN, L. I., & YONA, D. (2023). Cadmium and zinc accumulation behaviour of hyperaccumulator Arabidopsis halleri ssp. gemmifera in the hydroponic system. Journal of Degraded and Mining Lands Management, 10(2), 4155–4162. https://doi.org/https://doi.org/10.15243/jdmlm.2023.102.4155

SARI, SYARIFAH HIKMAH JULINDA, KIRANA, J. F. A., & GUNTUR, G. (2017). Analisis Kandungan Logam Berat Hg dan Cu Terlarut di Perairan Pesisir Wonorejo, Pantai Timur Surabaya. Jurnal Pendidikan Geografi, 22(1), 1–9. https://doi.org/10.17977/um017v22i12017p001

SHI, C., DING, H., ZAN, Q., & LI, R. (2019). Spatial variation and ecological risk assessment of heavy metals in mangrove sediments across China. Marine Pollution Bulletin, 143(February), 115–124. https://doi.org/10.1016/j.marpolbul.2019.04.043

SOHETI, P., SUMARLIN, L. O., & MARISI, D. P. (2020). Fitoremediasi Limbah Radioaktif Cair Menggunakan Kayu Apu (Pistia stratiotes) Untuk Menurunkan Kadar Torium. Eksplorium, 41(2), 139. https://doi.org/10.17146/eksplorium.2020.41.2.6092

SUBIANDONO, E., BISMARK, M., HERIYANTO, N. M., GUNUNG, J., NO, B., BOX, P. O., & BOGOR, F. (2013). Dalam Penyerapan Polutan Logam Berat ( Absorption Ability of Avicennia marina ( Forsk .) Vierh . and Rhizophora apiculata Bl . in Heavy Metal Pollutants )* I . PENDAHULUAN Ekosistem mangrove di Indonesia saat ini kondisinya sangat mengkhawatirkan akibat t. Jurnal Penelitian Hutan Dan Konservasi Alam, 10(1), 93–102.

TESTI, E. H., SOENARDJO, N., & PRAMESTI, R. (2019). Logam Pb pada Avicennia marina Forssk, 1844 (Angiosperms : Acanthaceae) di Lingkungan Air, Sedimen, di Pesisir Timur Semarang. Journal of Marine Research, 8(2), 211–217. https://doi.org/10.14710/jmr.v8i2.25212

UPADHYAY, R. K. (2014). Metal stress in plants: its detoxification in natural environment. Revista Brasileira de Botanica, 37(4), 377–382. https://doi.org/10.1007/s40415-014-0087-9

USMAN, A. R. A., ALKREDAA, R. S., & AL-WABEL, M. I. (2013). Heavy metal contamination in sediments and mangroves from the coast of Red Sea: Avicennia marina as potential metal bioaccumulator. Ecotoxicology and Environmental Safety, 97, 263–270. https://doi.org/10.1016/j.ecoenv.2013.08.009

UTAMI, R., RISMAWATI, W., & SAPANLI, K. (2018). Pemanfaatan Mangrove Untuk Mengurangi Logam Berat di Perairan. Prosiding Seminar Nasional Hari Air Dunia 2018, 141–153.

WEIS, J. S., & WEIS, P. (2004). Metal uptake, transport and release by wetland plants: Implications for phytoremediation and restoration. Environment International, 30(5), 685–700. https://doi.org/10.1016/j.envint.2003.11.002

WIJAYA, N. I., & SANJAYA, R. F. (2021). Kerapatan Mangrove terhadap Kandungan Logam Pb, Cu, dan Cd pada Daging Ikan Bandeng (Chanos chanos) di Mangrove Wonorejo, Surabaya. Jurnal Pertanian Terpadu, 9(2), 150–161. https://doi.org/10.36084/jpt..v9i2.334

ZULFIQAR, U., FAROOQ, M., HUSSAIN, S., MAQSOOD, M., HUSSAIN, M., ISHFAQ, M., AHMAD, M., & ANJUM, M. Z. (2019). Lead toxicity in plants: Impacts and remediation. Journal of Environmental Management, 250(November 2018). https://doi.org/10.1016/j.jenvman.2019.109557




DOI: http://dx.doi.org/10.21776/ub.jeest.2023.010.02.7

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