UJI ANTAGONISME CENDAWAN Trichoderma sp TERHADAP Ganoderma Boninense (PATOGEN PADA TANAMAN KELAPA SAWIT) SECARA IN VITRO
DOI:
https://doi.org/10.37638/sinta.5.1.125-134Abstract
Stem Root Rot (BPB) is a disease caused by the fungus Ganoderma Boninense. BPB results in low production of oil palm plants. Biological control using the fungus Trichoderma sp is an alternative that is currently being widely researched to control plant diseases. This research aims to determine the potential inhibitory ability of Trichoderma sp on the growth of G. Boninense in vitro. The research method used was double culture with isolates of Trichoderma Asperellum (T1), Trichoderma Asperellum (T2), Trichoderma Harzianum (T3) against G. Boninense. The research results showed that Trichoderma Asperellum (T1) had an inhibitory power of 72.3%, Trichoderma Harzianum (T3) had an inhibitory power of 72.2% and Trichoderma Asperellum (T2) had the highest antagonistic power reaching 92.5%. the three isolates of antagonistic fungi can inhibit the fungus G. BoninenseReferences
Alfizar A, Marlina M, Susanti F. 2013. Kemampuan antagonis Trichoderma sp. terhadap beberapa jamur patogen in vitro. Jurnal Floratek. 8(1):45–51.
Agustining, D. 2012. Daya hambat saccharomyces cerevisiae terhadap pertumbuhan jamur fusarium oxysporum. Skripsi. Universitas Jember
Amaria W, E Taufiq, dan R Harrni. 2013. Seleksi dan Identifikasi Jamur Antagonis Sebagai Agens Hayati Jamur Akar Putih (Rigidoporus microporus) pada Tanaman Karet. Jurnal Buletin RISTRI. 4(1): 55-64.
Angraini, E. 2017. Uji Antagonisme Lentinus cladopus LC4 terhadap Ganoderma boninense Penyebab Penyakit Busuk Pangkal Batang Kelapa Sawit. JurnalBiosfera, 34(3), 144.
Asniah, Wahyuni. and Taufik, M., 2021. Daya Hamba Trichoderma sp. terhadap Patogen yang Berasosiasi dengan Daun Tanaman Tomat (Lycopersicum esculentum Mill.). Jurnal Ilmiah Membangun Desa dan Pertanian. 6(4), pp. 144-148.
Berlian, I., Setyawan,B, dan Hadi H. 2013. Mekanisme antagonisme Trichoderma spp. terhadap beberapa patogen tular tanah. JurnalWarta Perkaretan. 32 (2): 74-82.
Cook, R. J., & Baker, K. F. (1983). The nature and practice of biological control of plant pathogens. Minnesota: American Phytopathological Society.
Gusnawaty, H.S, Taufik.M, Triana.L, dan Asniah. 2014. Karakterisasi Morfologis Trichoderma spp. Indigenus Sulawesi Tenggara. Jurnal Agroteknos. 4(2):88-94
Harman GE, Björkman T, Ondik K, Shoresh M. 2008. Trichoderma spp. for Biocontrol. Changing paradigms on the mode of action and uses of Trichoderma spp. for biocontrol. Research Information. Cornell University, USA. DOI:10.1564/19feb00
He, M., Tian, Z., Liu, Q. and Guo, Y., 2021. Trichoderma asperellum Promotes Cadmium Accumulation within Maize Seedlings. Biotechnology & Biotechnological Equipment. 35(1), pp. 1546-1559.
Heni, S., Ika, A. N., & Doddy, S. W. 2021. Aktivitas Antibakteri Isolat Bakteri Endofit Asal Daun Ciplukan (Physalis angulata L.) Terhadap Bakteri Escherichia coli dan Staphylococcus aureus. JHeS (Journal of Health Studies), 5(1), 50–61.
Lone, M. A., Wani, M. R., Sheikh, S. A., Sahay, S., & Dar, M. S. 2012. Antagonistic Potentiality of Trichoderma harzianum Against Cladosporium spherospermum, Aspergillus niger and Fusarium oxysporum. Journal of Biology, Agriculture, and Healthcare 2(8): 72-76 Mahmud, Y., Cindy, R., dan Syukria, I., Z. (2020). Efektif Trichoderma virens Dalam Mengendalikan Ganoderma boninense di Pre Nursery Kelapa Sawit Pada Gambut. Jurnal Agroteknologi. Vol. 11. No. 1
Metz B, V. Seidl-Seiboth, Haarmann, T., Kopchinskiy, A., Lorenz, P., Seiboth, B. dan Kubicek, C. P. 2011. Expression of Biomass Degrading Enzymes is a Major Event During Conidium Development in Trichoderma reesei. Eukaryot Cell 10(11): 1527–1535
Molebila DY, A Rosmana, US Tresnaputa. 2020. Karakterisasi Morfologi dan Keefektifannya Menghambat Colletotrichum Penyebab Penyakit Antraknose Secara In vitro. Jurnal Fitopatologi 16 (2): 61-68.
Nurhayati, Y., Suryanti, S., & Wibowo, A. 2021. In Vitro Evaluation of Trichoderma asperellum Isolate UGM- LHAF against Rhizoctonia solani Causing Sheath Blight Disease of Rice. Jurnal Perlindungan Tanaman Indonesia, 25(1), 64.
Nurizal. F.S., H. Achmad., W. Herry. 2022. Identifikasi Jamur Endofit Pada Tanaman Kelapa Sawit Yang Terserang Busuk Pangkal Batang. Yogyakarta.
Purwanto, M. I., Lakani, I., dan Asrul. 2016. Uji efektitivitas Trichoderma spp. untuk menekan perkembangan jamur Ganoderma boninense pat. pada media pelepah kelapa sawit. Jurnal Agroteknologi Bisnis, 4(4), 403-411. Pulungan, V. H. 2018. Eksplorasi Jamur Trichoderma spp. Pada Beberapa Lahan Perkebunan dan Potensinya Dalam Mengendalikan Penyakit Fusicoccum Sp (Doctoral dissertation).
Salsabila, A,. Ramdan, E. P., Asnur, P., dan Hidayat, H, 2022. Survei Penyakit Busuk Pangkal Batang Kelapa Sawit di Kebun Cikasungka, PT Perkebunan NusantaraVIII, Bogor. Agrosains : Jurnal Penelitian Agronomi, 24(1),1
Syahputra, M. H., Anhar, A., dan Irdawati. 2017. Isolasi Trichoderma spp.dari beberapa Rizosfer Tanaman Padi Asal Solok.Jurnal Biosains.1(2):97–105.
Watanabe,T.2002. Pictorial Atlas of Soil and Seed Fungi Morphologies of Cultured Fungi and Key to Species. CRC Press LLC. U.S.A.
Wahyudi, Agus. (2018). Pengaruh Variasi Suhu Ruang Inkubasi Terhadap Waktu Pertumbuhan Rhizopus Oligosporus Pada Pembuatan Tempe Kedelai. Jurnal Teknik Kimia. 3 (1) : 37 – 44.
Yulia, E., Rahayu, A., dan Suganda, T. 2022. Antagonisme Jamur Rizosfer Tanaman Karet terhadap Rigidoporus microporus secara In Vitro dan In Planta. Jurnal Agro, 9 (1), 64–79.















