Isolation and characterization of indigenous copper resistant bacteria from Yogyakarta tannery factory waste

Authors

Wahyu Irawati , Polin Parulian Ambarita , Desi L. Sihombing , Vannesa El Shaday Ruth Advenita , Eunike Bunga Marvella

DOI:

10.29303/jbt.v22i3.3621

Published:

2022-08-18

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Abstract

The leather tanning industry is one of the industries that causes environmental damage because one of the processes uses copper to produce products such as bags, jackets, and shoes. Copper bioremediation using indigenous bacteria is an effective solution to the problem of pollution because it utilizes bacteria isolated from the polluted environment. This study aims to isolate and characterize copper-resistant bacteria from the waste of the Yogyakarta Tannery Industry. The medium used was Luria Bertani Agar with the addition of 3 mM CuSO4. The characterization carried out included the characterization of colony and cell morphology such as color, edges, optical appearance, cell shape, and Gram staining. The isolation results obtained eight isolates of copper-resistant bacteria, namely Y1, Y2, Y3, Y4, Y5, Y6, Y7, and Y8. Isolates Y1, Y2, Y3, Y4, Y5, and Y8 were Gram positive bacteria while isolates Y5 and Y6 were Gram negative bacteria. Colonies of isolates Y1, Y3, Y4, Y8 greenish color indicates the accumulation of copper in the cells as a mechanism of resistance. The discovery of isolates of copper-resistant bacteria from samples of the tannery industry waste is a useful study as an initial study to obtain isolates of Indonesian indigenous copper-resistant bacteria to be further developed as a copper bioremediation agent in the treatment of copper waste in the leather tanning industry.

Keywords:

Indigenous bacteria; bioremediation; colony; resistant; copper

References

Agustine L, Okfrianti Y, & Jum J. (2018). Identifikasi Total Bakteri Asam Laktat (BAL) pada Yoghurt dengan Variasi Sukrosa dan Susu Skim. Jurnal Dunia Gizi 1(2): 79. DOI: 10.33085/jdg.v1i2.2972

Ahmad, M. (2012) Implications of Bacterial Resistance against Heavy Metals in Bioremediation: A Review. Journal of Institute of Integrative Omics and Applied Biotechnology, 3, 39-46.

Anand PS, Jadhav P, Kamath KP, Kumar SR, Vijayalaxmi S, & Anil S. (2022). A case-control study on the association between periodontitis and coronavirus disease (COVID-19). Journal of Periodontology 93(4): 584–590. DOI: 10.1002/JPER.21-0272

Arhandi Putra Prima, Annisa Taufika Firdausi, & Dicky Pradana (2020). Aplikasi Penghitung Koloni Bakteri Berbasis Android. Jurnal Informatika Polinema 6(1): 23–32. DOI: 10.33795/jip.v6i1.288

Bulele T, Rares FES, & Porotu’o J. (2019). Identifikasi Bakteri dengan Pewarnaan Gram pada Penderita Infeksi Mata Luar di Rumah Sakit Mata Kota Manado. Jurnal e-Biomedik 7(1): 30–36. DOI: 10.35790/ebm.7.1.2019.22820

Cha JS, Cooksey DA. (1991). Copper resistance in Pseudomonas syringae mediated by periplasmic and outer membrane proteins. Proc Natl Acad Sci U S A.

Damayanti NWE, Abadi MF, & Bintari NWD. (2020). Perbedaan Jumlah Bakteriuri Pada Wanita Lanjut Usia Berdasarkan Kultur Mikrobiologi Menggunakan Teknik Cawan Tuang Dan Cawan Sebar. Meditory 8(1): 1–4

Firra R, W I, & Agung Rachmanto T. (2016). Peningkatan Efektifitas Aerasi Dengan Menggunakan Micro Bubble Generator (MBG). Jurnal Ilmiah Teknik Lingkungan 8(2): 88–97

Hartanto HSB, Hariyati R, & Soeprobowati TR. (2013). Pertumbuhan Populasi Chlorella Vulgaris Beijerinck Dengan Perlakuan Penambahan Logam Berat Tembaga ( Cu ) Pada Skala Laboratorium. Jurnal Biologi 2(1): 19–27

Irawati, W. & Tahya C.Y. (2020). ISOLASI DAN KARAKTERISASI ISOLAT BAKTERI RESISTEN TEMBAGA DARI SUNGAI CISADANE 19 No: 441–450

Irawati, W. (2019). Isolasi dan Karakterisasi Bakteri Resisten Tembaga Dari Pantai Timur Surabaya. BIOLINK (Jurnal Biologi Lingkungan Industri Kesehatan) 6(2): 95–105. DOI: 10.31289/biolink.v6i2.2558

Irawati W, Pinontoan R, & Yuwono T. (2020). Indigenous copper resistant bacteria isolated from activated sludge of water treatment plant in Surabaya, Indonesia. Biodiversitas 21(11): 5077–5084. DOI: 10.13057/biodiv/d211112

Irawati W, & Tahya CY. (2022). Isolasi bakteri resisten tembaga dari teluk jakarta. 19(2): 61–67

Kunito T, Nagaoka K, Tada N, Senoo K, Oyaizu H, Matsumoto S, & Saeki K. (1997). Characterization of cu-resistant bacterial communities in cu-contaminated soils. Soil Science and Plant Nutrition 43(3): 709–717. DOI: 10.1080/00380768.1997.10414795

Kurniawan A, & Sukandar D. (2017). BIOSORPTION OF Cr(VI) USING RICE STRAW WASTE. PONTE International Scientific Researchs Journal 73(4). DOI: 10.21506/j.ponte.2017.4.16

Melati I. (2020). Teknik Bioremediasi: Keuntungan, Keterbatasan dan Propek Riset. Prosiding Seminar Nasional Biotik (3): 272–286

Naik M, Dubey SK, & Pandey A. (2012). Pseudomonas aeruginosa strain WI-1 from Mandovi estuary possesses metallothionein to alleviate lead toxicity and promotes plant growth. Ecotoxicology and Environmental Safety 79:129–33

Nurhamiddin F, & Ibrahim MH. (2018). Studi Pencemaran Logam Berat Timbal (Pb) dan Tembaga (Cu) pada Sedimen Laut di Pelabuhan Bastiong Kota Ternate Provinsi Maluku Utara. jurnal Dintek 11(1): 41–55

Nurhidayati S, Faturrahman F, & Ghazali M. (2015). DETEKSI BAKTERI PATOGEN YANG BERASOSIASI DENGAN Kappaphycus alvarezii (Doty) BERGEJALA PENYAKIT ICE-ICE. Jurnal Sains Teknologi & Lingkungan 1(2): 24–30. DOI: 10.29303/jstl.v1i2.53

Oktafeni M. (2016). Studi Pencemaran Limbah Cair Dengan Parameter BOD5 dan pH di Pasar Ikan Tradisional dan Pasar Modern di Kota Semarang. Jurnal Kesehatan Masyarakat (e-Journal) 4(2):166–175

Pratama G, Kurniawan ID, & Ilhamdy AF. (2020). Pengendalian Pencemaran Limbah Domestik sebagai Upaya Rehabilitasi Pesisir di Desa Malangrapat, Kabupaten Bintan. PRIMA: Journal of Community Empowering and Services 4(1): 45. DOI: 10.20961/prima.v4i1.41228

Prayitno P, Widowati TP, Suryaningsih PE, & Susila RJ. (2001). Isolasi dan identifikasi mikroorganisme dalam lumpur aktif pengolahan limbah industri kulit. Majalah Kulit, Karet, dan Plastik, 33. DOI: 10.20543/mkkp.v17i1-2.255

Priadie B. (2012). Teknik Bioremediasi Sebagai Alternatif Dalam Upaya Pengendalian Pencemaran Air. Jurnal Ilmu Lingkungan 10(1): 38. DOI: 10.14710/jil.10.1.38-48

Putri DM, Budiharjo A, Kusdiyantini E. (2014). ISOLASI, KARAKTERISASI BAKTERI ASAM LAKTAT, DAN ANALISIS PROKSIMAT DARI PANGAN FERMENTASI RUSIP IKAN TERI (Stolephorus sp.). Jurnal Biologi 3(2): 11–19

Rachma A, Sarjono PR, & Aminin ALN. (2009). Isolasi Bakteri Termofilik Sumber Air Panas Gedongsongo dengan Media Pengaya Minimal YT (Yeast Tripton) serta Identifikasi Genotipik dan Fenotipik. Jurnal Kimia Sains dan Aplikasi 12(3): 66–71. DOI: 10.14710/jksa.12.3.66-71

Rahmatullah W, Novianti E, & Sari ADL. (2021). Identifikasi Bakteri Udara Menggunakan Teknik Pewarnaan Gram. Jurnal Ilmu Kesehatan Bhakti Setya Medika 6(2): 84–92

Said MI, & Likadja JC. (2012). Isolasi dan Identifikasi Bakteri yang Berpotensi Sebagai Penghasil Enzim Protease Pada Industri Penyamakan KUlit PT. Adhi Satria Abadi (ASA), Yogyakarta. Jurnal Ilmu Teknologi Pangan (JITP) 2(2): 121–128

Santosa RW. (2013). DAMPAK PENCEMARAN LINGKUNGAN LAUT OLEH PERUSAHAAN PERTAMBANGAN TERHADAP NELAYAN TRADISIONAL. (2): 65–78

Sekarwati N, Murachman B, & Sunarto (2015). Dampak Logam Berat Cu (Tembaga) dan Ag (Perak) pada Limbah Cair Industri Perak terhadap Kualitas Air Sumur dan Kesehatan Masyarakat serta Upaya Pengendaliannya di Kotagede Yogyakarta. Jurnal Ekosains VII(1): 13

Solioz M, Abicht HK, Mermod M, & Mancini S. (2010). Response of Gram-positive bacteria to copper stress. Journal of Biological Inorganic Chemistry 15(1): 3–14. DOI: 10.1007/s00775-009-0588-3

Tanjung CF, Effendi I, & Elizal E. (2018). Growth of Heterotrophic Bacteria in Sea Water Polluted By Rinso Detergent. Asian Journal of Aquatic Sciences 1(1): 58–65. DOI: 10.31258/ajoas.1.1.58-65

Wuertz S, & Mergeay M. (1997). The impact of heavy metals on soil microbial communities and their activities. In: van Elsas JD, Trevors JT, Wellington EMH (eds) Modern Soil Microbiology. Marcel Dekker, New York.

Author Biographies

Wahyu Irawati, Universitas Pelita Harapan

Author Origin : Indonesia

Polin Parulian Ambarita, Universitas Pelita Harapan

Author Origin : Indonesia

Desi L. Sihombing , Universitas Pelita Harapan

Author Origin : Indonesia

Vannesa El Shaday Ruth Advenita, Universitas Pelita Harapan

Author Origin : Indonesia

Eunike Bunga Marvella, BPK Penabur Gading Serpong

Author Origin : Indonesia

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How to Cite

Irawati, W. ., Ambarita, P. P. ., Sihombing , D. L. ., Ruth Advenita, V. E. S. ., & Marvella, E. B. . (2022). Isolation and characterization of indigenous copper resistant bacteria from Yogyakarta tannery factory waste. Jurnal Biologi Tropis, 22(3), 795–802. https://doi.org/10.29303/jbt.v22i3.3621

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