Pengaruh Penggunaan Effective Microorganism 4 (EM4) Pada Budidaya Jamur Merang (Volvariella volvaceae) Menggunakan Media Tandan Kosong Kelapa Sawit.

Andriyanto Andriyanto, Retni S Budiarti, Agus Subagyo

Abstract

Indonesia is the biggest producer of palm oil in the world. Palm oil empty fruit bunches is the biggest waste generated by the palm oil processing industry. However, utilization of the palm oil empty bunches has been not optimal. The palm oil empty fruit bunches have potential to be developed into a medium for growing mushroom because it has a high cellulose content. However, the high content of cellulose and lignin in palm oil empty fruit bunches is difficult to decompose into organic material that need for mushroom growth. The composting processes of empty fruit bunches can be increased by using Effective Microorganism (EM4). This study aims to understanding the role of Effective Microorganism 4 (EM4) on Volvariella volvaceae cultivation processes that used Empty Fruit Bunches compost. This research was conducted by composted the empty fruit bunch with different concentration of EM-4 there are 0%, 10%, 15%, 20% and 25%. Parameters observed were number of mushrooms, weight of mushrooms and C / N ratio of compost. The results showed that EM-4 had reduce C/N ratio of empty bunch palm oil compost, C/N ratio was not affected mushroom production and EM4 was affected mushroom production, the highest production reached by concentration of 15% that had not significant with concentration of 5%, 10% and 20%. At concentration of 25% mushroom production was decreased. It is probably there are several mechanisms by EM4 microorganisms containing that affected mushrooms production. 

Keywords

Empty Fruit Bunch, EM4, Volvariella volvaceae

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References

Andayanie, W.Y. 2013. Penambahan Em4 Dan Lama Pengomposan Media Tanam Terhadap Pertumbuhan Dan Hasil Jamur Tiram Putih (Pleurotus florida). Agri-tek 14(1): 33-41.

Busweell, J.A and Chen, M. 2005. Cultivation, Biochemical, Molecular Biological and Medical Aspect of the Culinary-Medicinal Straw Mushroom Volvariella volvaceae (Bull:Fr.) Singer (Agaricomycetideae). International Journal of Medicinal Mushrooms 7(1): 157-166.

Chang, S.C., and Steinkraus, K. H. 1982. Lignocellulolytic Enzymes Produced by Volvariella volvacea, the Edible Straw Mushroom. Applied And Environmental Microbiology 43(2): 440-446.

Chang, S.T and Miles, P.G. 1989. Edible Mushtooms and Their Cultivation. Boca Raton. CRC Press inc. Florida.

Chen, B., Gui, F., Xie, B., Deng, Y., Sun, X., Lin, M., tao, Y., and Li, S. 2013. Composition and Expression of Genes Encoding Carbohydrate-Active Enzymes in the Straw-Degrading Mushroom Volvariella volvacea. PLOS ONE 8(3): 1-9.

Cuppels, D.A., Higham, J., and Traquair, J.A. 2013. Efficacy of selected streptomycetes and a streptomycete + pseudomonad combination in the management of selected bacterial and fungal diseases of field tomatoes. Biological Control 67(3): 361-372.

Dahmardeh, M., Poodineh, Z., and Fakheri, B.A. 2015. Effects of Humic and Folic acid on Quantity and Quality Related Traits of Button Mushroom (Agaricus bisporus). Biological Forum – An International Journal 7(1): 823-828.

Dirjen Perkebunan. 2017 .Statistik Perkebunan Indonesia. Kementerian Pertanian. Jakarta.

Fadhilah, H. dan Budiyanto. 2018. Pengaruh Tandan Kosong Kelapa Sawit Sebagai Media Tumbuh Jamur Terhadap Produksi Dan Sifat Fisik Jamur Merang (Volvariella volvacea). Jurnal Agroindustri 8(1): 80-96.

Fernandes, T.A.R., da Silveira, W.B., Lopes Passos, F.M., Domingues Zucchi, T., 2014. Laccases from actinobacteria—what we have and what to expect. Advance Microbioliology 4(1), 285–296.

Firmansyah, A. M. 2011. Teknik Pembuatan Kompos. Kalimantan Tengah: Balai Pengkajian Teknologi Pertanian. P: 1-19.

Fuadi, A.M., dan Pranoto, H. 2016. Pemanfaatan Limbah Tandan Kosong Kelapa Sawit Sebagai Bahan Baku Pembuatan Glukosa. Chemica 3(1), 1-5.

Gapki. 2018. Refleksi Industri Kelapa Sawit. https://gapki.id/news/4140/refleksi-industri-kelapa-sawit-2017-dan-prospek-2018. 22 Maret 2019.

Gunawan, A.W. 2008. Usaha Pembibitan jamur. Penebar Swadaya. Jakarta.

Hayat, E. S., & Andayani, S. 2014. Pengelolaan limbah tandan kosong kelapa sawit dan aplikasi biomassa chromolaena odorata terhadap pertumbuhan dan hasil tanaman padi serta sifat tanah sulfaquent. Jurnal Teknologi Pengelolaan Limbah 17(22): 44-51.

Higa, T. and Kinjo, S. 1987. Effect of Lactid Acid Fermentation Bacteria on Plant Growth and Soil Humus Formation. University of Ryukyus. Okinawa Japan.

Ismayana, A., Indrastim N.S., Suprihatin, Maddu, A., and Fredy, A. 2012. Faktor Rasio C/N Awal Dan Laju Aerasi Pada Proses Co-Composting Bagasse Dan Blotong. Jurnal Teknologi Industri Pertanian 22(3):173-179.

Majumdar, S., Lukk, T., Solbiati, J.O., Bauer, S., Nair, S.K., Cronan, J.E., Gerlt, J.A., 2014. Roles of small laccases from Streptomyces in lignin degradation. Biocehemistry 53(1), 4047–4058.

Ngadi, N., and Lani, N. S. 2014. Extraction and Characterization of Cellulose Acetate from Empty Friut Bunch (EFB) Fiber. Jurnal Teknologi 68(5): 35-39.

Prakash, P., Aashish, B.S., Neil, J.K., and Sivasubramnian. 2010. Effect of Humic Acid on Pleurotus Ostreatus Mushroom Cultivation and Analysis of Their Nutrient Contents. Research Journal of Agriculture and Biological Sciences 6(6). 1067-1070.

Purindaswari, R., Udiantoro., dan Agustina, L. 2016. Pemanfaatan Tandan Kosong Kelapa Sawit Sebagai Media Pertumbuhan Jamur Merang (Volvariella Volvaceae) Dalam Upaya Diversifikasi Pangan. Prosiding Seminar Nasional Lahan Basah Jilid 3: 908-912.

Purnawanto, A.M. dan Nugroho, B. Efektifitas Kompos Limbah Media Tanam Jamur Tiram Sebagai Pupuk Organik Pada Budidaya Bawang Merah Di Tanah Ultisol. Agritech 17(2): 97-105.

Rahmawati, N., Hasanuddin, dan Rosmayati. 2016. ABDIMAS TALENTA. Budidaya dan Pengolahan Jamur Merang (Volvariella volvaceae) dengan media limbah jerami. 1 (1): 58-63.

Rochaeni, A., Rusmaya, D. dan Hartini, P. 2003. Pengaruh Agitasi Terhadap Proses Pengomposan Sampah Organik. Infomatek 5(4): 177-186.

Sakpirom, J., Kantachote, D., Siripattanakul-Ratpukdi, S., McEvoy, J., and Khan, E. 2019. Simultaneous bioprecipitation of cadmium to cadmium sulfide nanoparticles and nitrogen fixation by Rhodopseudomonas palustris TN110. Chemosphere 223(1): 455-464.

Shinoj. S.P.S., Kochubabu, M., and Visvanathan, R. 2011. Oil palm fiber (OPF) and its composites: A review. Ind. Crops Productions 33(1). 7-22.

Subali, B dan Ellianawati. 2010. Pengaruh Waktu Pengomposan Terhadap Rasio Unsur C/N dan Jumlah Kadar Air dalam Kompos. Prosiding Pertemuan Ilmiah XXIV Jateng dan DIY. 49-53.

Suleman dan Eviati. 2007. Analisis Kimia Tanah, Tanaman, Air, dan Pupuk. Balai Penelitian Tanah. Bogor.

Sunandar, B. 2010. Budidaya Jamur Merang. BPTP Jawa Barat. Kemeterian Pertanian: Bandung.

Suriawiria, U. 1986. Pengantar Untuk Mengenal dan Menanam Jamur. Angkasa. Bandung.

Suwandi. 2016. Outlook Kelapa Sawit. Komoditas Pertanian Subsektor Perkebunan. Jakarta: Pusat Data dan Sistem Informasi Pertanian Sekretariat Jenderal - Kementerian Pertanian. P:1.

Suwastika, A. A. A. G dan Sutari, N. W. 2007. Perlakuan Aktivator dan Masa Inkubasi Terhadap Pelapukan Limbah Jerami Padi. Jurusan Tanah Fakultas Pertanian Universitas Udayana. Denpasar.

Thomas L., Crawford D.L. 1998. Cloning of Clustered Streptomyces viridosporus T7A Lignocellulose. Canadian Journal of Microbiology 44(4):12-23.

Tobing, Esther L. 2009. Studi tentang kandungan Nitrogen, Karbon C-organik dan C/N Dari Kompos Tumbuhan Kembang Bulan. Medan: Universitas Sumatera Utara

Wei, Y., Wu, D., Wei, D., Zhao, Y., Wu, J., Xie, X., Zhang, R., and Wei, Z. 2019. Improved lignocellulose-degrading performance during straw composting from diverse sources with actinomycetes inoculation by regulating the key enzyme activities. Bioresource Technology 271(1): 66-74.

Widodo, T. W dan Asari, A. 2009. Teori dan Konstruksi Instalasi Biogas. Balai Besar Pengembangan Mekanisasi Pertanian Badan Litbang Pertanian, Departemen Pertanian. Serpong.

Wijana, S., dan Mulyadi, A.F. 2013. Pengaruh Lama Pemeraman Terhadap Kadar Lignin Dan Selulosa Pulp (Kulit Buah Dan Pelepah Nipah) Menggunakan Biodegradator EM4. Jurnal Industria 2(1): 75-83.

Wulan, P.P.D.K., Gozan, M., Arby, B., dan Achmad, B. 2000. Penentuan rasio Optimum C:N:P sebagai nutrisi pada proses biodegradasi benzene-toluena dan scale up kolom bioregenerator. Departemen Teknik Kimia, Fakultas Teknik, Universitas Indonesia. Jakarta.

Yuliastrin, A. 2007. Pengaruh Penambahan Effective Microorganism-4 (EM-4) Pada Pengomposan Terhadap Produksi Jamur Merang. Jurnal Matematika, Sains & Teknologi 8(2): 140-145.

Yuniwati, M., Iskarima, F., dan Padulemba, A. Optimasi Kondisi Proses Pembuatan Kompos Dari Sampah Organik Dengan Cara Fermentasi Menggunakan EM4. Jurnal Teknologi 5(2): 172-182.

Zhao, Y., Zhao, Y., Zhang, Z., Wei, Y., Wang, H., Lu, Q., Li, Y., and Wei, Z. 2017. Effect of thermo-tolerant actinomycetes inoculation on cellulose degradation and the formation of humic substances during composting. Waste Management 68(1): 64-73

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