Potency of Trichoderma sp., antagonistic fungi derived from soil rhizospere, against two pathogens: Botryodiplodia theobromae Pat. and Fusarium sp. wilt in Vitro
DOI:
https://doi.org/10.21111/agrotech.v6i2.4020Keywords:
Inhibition, Trichoderma sp, Botryodiplodia theobromae Pat., Fusarium sp., In VitroAbstract
References
Referensi Agustina, D., Triasih, U., Dwiastuti, M. E., & Wicaksono, C. (2019). Potential of Antagonistic Fungi in Inhibiting the Growth of Botryodiplodia theobromae Fungi Causes Stem Rot Disease in Citrus, 5(April), 1–6. Benítez, T., Rincón, A. M., Limón, M. C., & Codón, A. C. (2004). Biocontrol mechanisms of Trichoderma strains. International Microbiology, 7(4), 249–260. https://doi.org/10.2436/im.v7i4.9480 Berlian, I., Setyawan, B., & Hadi, H. (2013). Mekanisme Antagonisme Trichoderma Spp. Terhadap Beberapa Patogen Tular Tanah. Warta Perkaretan, 32(2), 74. https://doi.org/10.22302/ppk.wp.v32i2.39 Evans, H. C., Holmes, K. A., & Thomas, S. E. (2003). Endophytes and mycoparasites associated with an indigenous forest tree, Theobroma gileri, in Ecuador and a preliminary assessment of their potential as biocontrol agents of cocoa diseases. Mycological Progress, 2(2), 149–160. https://doi.org/10.1007/s11557-006-0053-4 Gomes, E. V., Costa, M. D. N., De Paula, R. G., Ricci De Azevedo, R., Da Silva, F. L., Noronha, E. F., … Nascimento Silva, R. (2015). The Cerato-Platanin protein Epl-1 from Trichoderma harzianum is involved in mycoparasitism, plant resistance induction and self cell wall protection. Scientific Reports, 5(September), 1–13. https://doi.org/10.1038/srep17998 Gupta, V.K., SchMoll, M., Herrera-EStrella, A., Upadhyay, R.S., Druzhinina, I., & Tuohy, M. G. (2014). Biotechnology and Biology of Trichoderma. Amsterdam, Netherlands: Elsevier B.V. Haggag, W. M., & Nofal, M. A. (2006). Improving the biological control of Botryodiplodia disease on some Annona cultivars using single or multi-bioagents in Egypt. Biological Control, 38(3), 341–349. https://doi.org/10.1016/j.biocontrol.2006.02.010 Harman, G. E. (2000). Myths and Dogmas of Biocontrol Changes in perceptions perived from Research on Trichoderma harzinum T-22 Myths and Dogmas of Biocontrol Changes in Perceptions Derived from Research on Trichoderma harzinum T-22. Plant Disease, 84(4). Hidayat, T. N. (2016). Uji Antagonis Trichoderma sp . T 4 Terhadap Jamur yang Diisolasi dari Daun Bergejala Bercak Pada Bibit Kelapa Sawit ( Elaeis Guineensis Jacq .), 4, 8–13. Ismail, N. dan A. T. (2009). Ismail, N. dan Andi Tenrirawe. 2009. Potensi Agens Hayati Trichoderma spp. Sebagai Agens Pengendali Hayati. In Seminar Regional Inovasi Teknologi Pertanian mendukung program pembangunan pertanian Provinsi Sulawesi Utara. Juariyah, S., Tondok, E. T., & Sinaga, M. S. (2018). Trichoderma dan Gliocladium untuk Mengendalikan Penyakit Busuk Akar Fusarium pada Bibit Kelapa Sawit. Jurnal Fitopatologi Indonesia, 14(6), 196. https://doi.org/10.14692/jfi.14.6.196 Latifah, A., Kustantinah, ., & Soesanto, L. (2011). Pemanfaatan Beberapa Isolat Trichoderma Harzianum Sebagai Agensia Pengendali Hayati Penyakit Layu Fusarium Pada Bawang Merah In Planta. Eugenia, 17(2), 86–95. https://doi.org/10.35791/eug.17.2.2011.4105 Liza, E., Adrinal, A., & Trisno, J. (2015). Variability of Fungal Rhizosphere and Its Role as Antagonist Agents of Fusarium oxysporum Causing Wilt Disease in Crysanthenum sp. Jurnal Fitopatologi Indonesia, 11(2), 68–72. https://doi.org/10.14692/jfi.11.2.68 Lopes, F. A. C., Steindorff, A. S., Geraldine, A. M., Brandão, R. S., Monteiro, V. N., Júnior, M. L., … Silva, R. N. (2012). Biochemical and metabolic profiles of Trichoderma strains isolated from common bean crops in the Brazilian Cerrado, and potential antagonism against Sclerotinia sclerotiorum. Fungal Biology, 116(7), 815–824. https://doi.org/10.1016/j.funbio.2012.04.015 Mukherjee, P. K., Horwitz, B. A., & Kenerley, C. M. (2012). Secondary metabolism in Trichoderma - A genomic perspective. Microbiology, 158(1), 35–45. https://doi.org/10.1099/mic.0.053629-0 Nawrocka, J., & Małolepsza, U. (2013). Diversity in plant systemic resistance induced by Trichoderma. Biological Control, 67(2), 149–156. https://doi.org/10.1016/j.biocontrol.2013.07.005 Ningsih, H., Hastuti, U. S., & Listyorini, D. (2016). Kajian Antagonis Trichoderma Spp . terhadap Fusarium Solani Penyebab Penyakit Layu Pada Daun Cabai Rawit ( Capsicum frutescens ) Secara in Vitro. Universitas Negeri Malang, 13(1), 814–817. Otadoh, J. A., Okoth, S. A., Ochanda, J., & Kahindi, J. P. (2011). Assessment of Trichoderma isolates for virulence efficacy on Fusarium oxysporum F. sp. Phaseoli. Tropical and Subtropical Agroecosystems, 13(1), 99–107. Otten, W., Bailey, D. J., & Gilligan, C. A. (2004). Empirical evidence of spatial thresholds to control invasion of fungal parasites and saprotrophs. New Phytologist, 163(1), 125–132. https://doi.org/10.1111/j.1469-8137.2004.01086.x Patil, A., Laddha, A., Lunge, A., & Paikrao, H. (2012). in Vitro Antagonistic Properties of Selected Trichoderma Species Against Tomato Root Rot Causing Pythium Species. International Journal of Science, Environment and Technology, 1(4), 302–315. Purwantisari, S., & Hastuti, R. (2009). Uji Antagonisme Jamur Patogen Phytophthora infestans Penyebab Penyakit Busuk Daun dan Umbi Tanaman Kentang Dengan Menggunakan Trichoderma spp. Isolat Lokal. Bioma, 11(1), 24–32. Saravanakumar, K., Li, Y., Yu, C., Wang, Q. Q., Wang, M., Sun, J.,Chen, J. (2017). Effect of Trichoderma harzianum on maize rhizosphere microbiome and biocontrol of Fusarium Stalk rot. Scientific Reports, 7(1), 1–13. https://doi.org/10.1038/s41598-017-01680-w Seema, M., & Devaki, N. S. (2012). In vitro evaluation of biological control agents against Rhizoctonia solani. Journal of Agricultural Technology, 8(1), 233–240. Retrieved from http://www.ijat-aatsea.com Soesanto, L. (2009). Pengimbasan ketahanan bibit pisang ambon kuning terhadap penyakit layu fusarium dengan beberapa jamur antagonis, 130–140. Soesanto, L., Mugiastuti, E., Rahayuniati, R. F., & Dewi, R. S. (2013). Uji kesesuaian empat isolat Trichoderma spp. dan daya hambat in vitro terhadap beberapa patogen tanaman. Jurnal Hama Dan Penyakit Tumbuhan Tropika, 13(2), 117–123. Sundari, A., Khotimah, S., Linda, R., Biologi, P. S., Mipa, F., Tanjungpura, U. Nawawi, H. H. (2014). Daya Antagonis Jamur Trichoderma sp . Terhadap Jamur Diplodia sp . Penyebab Busuk Batang Jeruk Siam ( Citrus nobilis ), 3(2), 106–110. Sutarman. (2017). Potensi Trichoderma Harzianum Sebagai Pengendali Fusarium Oxysporum Penyebab Busuk Pangkal Batang Tanaman Cabai Merah (Capsicum annum L.). AGRITECH : Vol. XIX No. 2 : 144-155, XIX(2), 144–155. https://doi.org/10.1017/CBO9781107415324.004 Trigiano, R. N., Windham, M. T., & Windham, A. S. (2008). Plant pathology: Concepts and laboratory exercises (2nd ed.). New York: CRC Press.
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