Sustainable Aquaculture: The Role of Probiotic Fortification In Enhancing Catfish Growth In Biofloc Aquaponics Technology

Authors

  • Endah Rita Sulistya Dewi Universitas PGRI Semarang
  • Ratna Mufidah Universitas PGRI Semarang
  • Reni Rakhmawati Universitas PGRI Semarang
  • Maria Ulfah Universitas PGRI Semarang https://orcid.org/0000-0001-5287-6854
  • Nur Khoiri Universitas PGRI Semarang
  • Angelica Tricia Wijaya Universitas PGRI Semarang
  • Noraine Salleh Hudin Sultan Idris Education University Malaysia

DOI:

https://doi.org/10.26877/y4rfps86

Keywords:

Aquaculture sustainability, Fish health, Aquaponics, Nutrient retention, Growth performance

Abstract

Catfish (Pangasius sp.) is a freshwater fish commodity that is widely cultivated in the Indonesian fisheries sector. The aim of this research was to determine the effect of fortification of liquid probiotics bioprisma and biogan on the protein and fat of catfish meat in the biofloc aquaponics technology. The catfish used in this study was 7-8 cm in size. The research was carried out using a completely randomized design (CRD) method with 3 treatments and 3 replications, the treatments were as follows: P0 = without addition of probiotics, P1 = addition of bioprisma probiotics 0.15 mL/l,5 L of water, P2 = addition of biogan probiotics 0,15 mL/l,5 L of water. The data obtained were then processed and calculated using ANOVA at a 95% confidence interval if a significant effect was found, then continued with Duncan's further test. This study indicates that the addition of probiotic to catfish culture media can affect body protein, body fat, and water quality environmental condition (ammonia, nitrite, nitrate, DO) of catfish. The addition of probiotics in the P1 (addition of bioprisma probiotics 0,15 mL/l ,5 L of water) gave the best effect in increasing the growth of  catfish, 18,70% body protein and 8,73% body fat. The integration of biofloc with aquaponics technologies can eliminate geographical limitations and accelerate the urbanization of aquaculture.

Author Biographies

  • Endah Rita Sulistya Dewi, Universitas PGRI Semarang

    Postgraduate, Universitas PGRI Semarang, Jl. Sidodadi-Timur No.24 Semarang, Central Java 50232, Indonesia

  • Ratna Mufidah, Universitas PGRI Semarang

    Faculty of Education, Mathematics, Natural Sciences and Information Technology, Universitas PGRI Semarang, Jl. Sidodadi-Timur No.24 Semarang, Central Java 50232

  • Reni Rakhmawati, Universitas PGRI Semarang

    Faculty of Education, Mathematics, Natural Sciences and Information Technology, Universitas PGRI Semarang, Jl. Sidodadi-Timur No.24 Semarang, Central Java 50232

  • Maria Ulfah, Universitas PGRI Semarang

    Faculty of Education, Mathematics, Natural Sciences and Information Technology, Universitas PGRI Semarang, Jl. Sidodadi-Timur No.24 Semarang, Central Java 50232

  • Nur Khoiri, Universitas PGRI Semarang

    Department Magister of Science, Postgraduate, Universitas PGRI Semarang, Jl. Sidodadi Timur No.24 Semarang, Central Java 50232, Indonesia

  • Angelica Tricia Wijaya, Universitas PGRI Semarang

    Department of Biology Education, Faculty of Education, Mathematics, Natural Sciences and Information Technology, Universitas PGRI Semarang, Jl. Sidodadi Timur No.24 Semarang, Central Java 50232, Indonesia

  • Noraine Salleh Hudin, Sultan Idris Education University Malaysia

    Department of Biology Education, Sultan Idris Education University Malaysia, Universiti Pendidikan Sultan Idris 35900, Tanjong Malim, Perak, Malaysia

References

[1] Anjar R, Yustiati A, Andriani Y. Teknik Pembenihan Ikan Patin (Pangasius Hypopthalmus) Sistem Corong Fishing Engineering Catfish (Pangasius hypopthalmus) Funnel System. Jurnal Akuatek. 2022;3(1):33–40.

[2] Hai NV. The use of probiotics in aquaculture. J Appl Microbiol. 2015 Oct;119(4):917–35.

[3] Singh S, Negi T, Sagar NA, Kumar Y, Tarafdar A, Sirohi R, et al. Sustainable processes for treatment and management of seafood solid waste. Science of The Total Environment. 2022 Apr;817:152951.

[4] Pinho SM, de Lima JP, David LH, Emerenciano MGC, Goddek S, Verdegem MCJ, et al. FLOCponics: The integration of biofloc technology with plant production. Rev Aquac. 2022 Mar 29;14(2):647–75.

[5] Abakari G, Wu X, He X, Fan L, Luo G. Bacteria in biofloc technology aquaculture systems: roles and mediating factors. Rev Aquac. 2022 Jun 18;14(3):1260–84.

[6] Robles‐Porchas GR, Gollas‐Galván T, Martínez‐Porchas M, Martínez‐Cordova LR, Miranda‐Baeza A, Vargas‐Albores F. The nitrification process for nitrogen removal in biofloc system aquaculture. Rev Aquac. 2020 Nov 20;12(4):2228–49.

[7] Monroy Dosta C, Alejandro Rodriguez G, Castro Mejía J, Becerril D, del Carmen Monroy Dosta M, Rodríguez Montes de Oca A, et al. Importance and function of microbial communities in aquaculture systems with no water exchange. Scientific Journal of Animal Science. 2015;4(9):103–10. Available from: www.Sjournals.com

[8] Crab R, Defoirdt T, Bossier P, Verstraete W. Biofloc technology in aquaculture: Beneficial effects and future challenges. Aquaculture. 2012 Aug;356–357:351–6.

[9] Sulistya Dewi ER, Nugroho AS, Ulfah M. Water Quality in the Maintenance of Oreochromis niloticus through Environmentally Friendly Biofloc Technology. IOP Conf Ser Mater Sci Eng. 2020 Apr 1;835(1):012008.

[10] Dewi ERS, Nugroho AS, Ulfah M. Development of combination of environmentally friendly biofloc and aquaponic systems in the maintenance of Oreochromis Niloticus. Innovative Science And Research Technology. 2020;5(5):2456–2165.

[11] Betlehemia B. enetapan Kadar Protein dan Lemak dari Berbagai Jenis Ikan Lele di Kecamatan Pancur Batu dengan Metode Kjeldahl dan Sokletasi. [Medan]: Universitas Sumatera Utara; 2016.

[12] Suryaningrum TD, Ikasari D, Supriyadi S, Mulya I, Purnomo AH. Karakteristik Kerupuk Panggang Ikan Lele (Clarias gariepinus) dari Beberapa Perbandingan Daging Ikan dan Tepung Tapioka. Jurnal Pascapanen dan Bioteknologi Kelautan dan Perikanan. 2016 Jun 1;11(1).

[13] Hashim RB, Jamil EF, Zulkipli FH, Daud JM. Fatty Acid Compositions of Silver Catfish, <i>Pangasius</i> sp. Farmed in Several Rivers of Pahang, Malaysia. J Oleo Sci. 2015;64(2):205–9.

[14] Orban E, Nevigato T, Lena G Di, Masci M, Casini I, Gambelli L, et al. New trends in the seafood market. Sutchi catfish (Pangasius hypophthalmus) fillets from Vietnam: Nutritional quality and safety aspects. Food Chem. 2008 Sep;110(2):383–9.

[15] Arfiati D, Lailiyah S, Pratiwi RK, Alvateha D, Aisyah FDD, Dina KF. Efforts to Reduce Organic Matter In Shrimp Aquaculture Wastewater With Various Bacterial Consortium Trademarks. Journal of Aquaculture Science. 2021 Jul 31;6(1IS):97–109.

[16] Aoudia N, Rieu A, Briandet R, Deschamps J, Chluba J, Jego G, et al. Biofilms of Lactobacillus plantarum and Lactobacillus fermentum: Effect on stress responses, antagonistic effects on pathogen growth and immunomodulatory properties. Food Microbiol. 2016 Feb;53:51–9.

[17] Sakana. Efektivitas Probiotik dengan Carrier Zeolit pada Media Pemeliharaan Udang Galah (Macrobrachium rosenbergii). Jurnal perikanan dan Ilmu kelautan. 2013;4(3):57–66.

[18] Tahapari E, Darmawan J. Kebutuhan Protein Pakan Untuk Performa Optimal Benih Ikan Patin Pasupati (Pangasiid). Jurnal Riset Akuakultur. 2018 Mar 1;13(1):47.

[19] Putra Wangni G, Prayogo S, Sumantriyadi S. Kelangsungan hidup dan pertumbuhan benih ikan patin Siam (pangasius hypophthalmus) pada suhu media Pemeliharaan yang berbeda. Jurnal Ilmu-ilmu Perikanan dan Budidaya Perairan. 2019 Dec 3;14(2).

[20] Saefudin Yuli, H. Harris, Indah Anggraini Yusanti. Tingkat Serangan Ektoparasit pada Ikan Patin (Pangasius Hypopthalmus) yang Dibudidayakan dalam Keramba Jaring Apung di Sungai Musi Palembang. Jurnal Perikanan Dan Kelautan. 2014;1(1).

[21] Tang UM, Aryani N, Masjudi H, Hidayat K. Pengaruh Suhu Terhadap Stres Pada Ikan Baung (Hemibagrus Nemurus) (Effect of Temperature on Stress on Malay Catfish (Hemibagrus Nemurus). Asian Journal of Environment. 2018;2(1):43–9.

[22] Wali JA, Ni D, Raubenheimer D, Simpson SJ. Macronutrient interactions and models of obesity: Insights from nutritional geometry. BioEssays. 2024 Nov 6;

[23] Putra AN. Metabolisme Basal Pada Ikan (Basal Metabolism in Fish). Jurnal Perikanan dan Kelautan. 2015;5(2):57–65.

[24] Suhenda N, Setijaningsih L, Suryanti Y. Penentuan rasio antara kadar karbohidrat dan lemak pada pakan benih ikan patin jambal (Pangasius djambal). Jurnal Penelitian Perikanan Indonesia. 2017 Mar 9;9(1):21.

[25] Menurunkan Kadar BOD Air Limbah Domestik Cahyono Ikhsan U, Utomo B, Qomariyah S, Hari Wahyudi A, Yulianto B, Soeryodarundio K. Probiotik Multitalenta Pseudomonas Fluorescens (PMPF). AMMA : Jurnal Pengabdian Masyarakat. 2022;1(11).

[26] Isa M, Zalia Btb T, Harris A, Herrialfian dan. Proximate Analysis of Fat Content on Tilapia Fish Suplemented with Willow Leaf Combinated with Chromium in Feed after Exposured of Heat Stress. Jurnal Medika Veterinaria. 2015;9(1).

[27] Ahmadi H, Nia Kurniawati dan, Fakultas Perikanan dan Ilmu Kelautan Unpad A, Dosen Fakultas Perikanan dan Ilmu Kelautan Unpad S. Pengaruh Pemberian Probiotik dalam Pakan Terhadap Pertumbuhan Benih Ikan Bawal Air Tawar (Colossoma macropomum). Jurnal Perikanan dan Kelautan. 2012;3(4):99–107.

[28] Bharvi S. Patel, Bhanu R. Solanki, Archana U. Mankad. Effect of eco-enzymes prepared from selected organic waste on domestic waste water treatment. World Journal of Advanced Research and Reviews. 2021 Apr 30;10(1):323–33.

[29] Afdola. Pengaruh Pemberian Probiotik dalam Pakan Terhadap Pertumbuhan Benih Ikan Bawal Air Tawar (Colossoma macropomum). Jurnal Fakultas Perikanan dan Kelautan. 2018;3–8.

[30] Syaifariz A. Budikdamber Sebagai stategi penguatan ketahanan pangan dan perekonomian masyarakat kabupaten Brebes di tengah pandemi. Jurnal Abdidas [Internet]. 2020;2:41–7. Available from: http://jurnal.umj.ac.id/index.php/semnaskat

[31] Jufri NN, Wirjatmadi B, Adriani M. Combined Food (Bekatul dan Lemak) Menurunkan Kadar Kolesterol Total, Trigliserida, dan LDL pada Tikus Galur Wistar. Jurnal Kedokteran Brawijaya. 2015 Feb 13;28(3):208–12.

[32] Marlina E., Rakhmawati. Kajian Kandungan Amonia Pada Budidaya Ikan Nila (Oreochromis niloticus) Menggunakan Teknologi Akuaponik Tanaman Tomat (Solanum lycopersicum). In: Prosiding Seminar Nasional Tahunan Ke-V Hasil-Hasil Penelitian Perikanan dan Kelautan. 2016. p. 181–7.

[33] Narayana Y. Pengaruh Penambahan Probiotik pada Pakan dengan Dosis yang Berbeda Terhadap Pertumbuhan Ikan Nila (Oreochromis sp.). Jurnal Agrokompleks. 2019;6(1):1–5.

[34] Malwa F, Anggoro A, Johan Y. Pengujian Kualitas Air Pada Pembenihan Bawal Bintang. 2022. 226–230 p.

[35] Adi Kusuma M, Tang UM, Perikanan dan Kelautan F, Riau U. Jurnal Ilmu Perairan (Aquatic Science) Pengaruh Pemberian Probiotik dengan Dosis Berbeda pada Media Pemeliharaan Terhadap Pertumbuhan Ikan Patin (Pangasianodon hypophthalmus) dengan Sistem Resirkulasi Akuaponik. Ilmu Perairan (Aquatic Science). 2021;

[36] Mustofa A. Kandungan Nitrat dan Pospat Sebagai Faktor Tingkat Kesuburan Perairan Pantai. Jurnal DIPOSTEK. 2015;6(1).

[37] Ombong F, Salindeho IRN. Aplikasi teknologi bioflok (BFT) pada kultur ikan nila, Orechromis niloticus) (Application of biofloc technology (BFT) in the culture of Nile tilapia, Oreochromis niloticus). Vol. 4, Budidaya Perairan Mei. 2016.

[38] Shobihah HN, Yustiati A, Andriani Y. Produktivitas Budidaya Ikan dalam Berbagai Konstruksi Sistem Akuaponik (Review). Akuatika Indonesia. 2022 Mar 29;7(1):34.

[39] Nugroho RA, Pambudi LT, Chilmawati D, Herjuno A, Haditomo C, Program SP, et al. Apilkasi Teknologi Akuaponik pada Budidaya Ikan Air Tawar untuk Optimalisasi Kapasitas Produksi. Vol. 8, Jurnal Saintek Perikanan. 2012.

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Published

2025-04-30