Aplikasi Mikoriza Arbuskula Untuk Meningkatkan Serapan Fosfat, Pertumbuhan Dan Produksi Tanaman Bawang Merah (Allium ascalonicum L.)
Abstract
One of the problems in phosphate nutrient fertilization is a low level of efficiency, so the application of arbuscular mycorrhiza is often done to increase phosphate uptake. In this study mycorrhizal was applied to shallots which were given P fertilizer to assess the effect of mycorrhizal applications on growth, yield, and phosphate uptake. This research was carried out at the Faculty of Agriculture's Greenhouse of the University of Lambung Mangkurat Banjarbaru from March to May 2016. The seed of shallot was grown on 5 kg of soil and quartz sand (3:1) fertilized by P (0, 50, 100, 150, 200 and 250 kg SP-36 ha-1) and applied with mycorrhiza (without and with 10 g of plant-1 mycorrhizal inoculum) at planting. The observations made after 75 days after planting showed that the application of arbuscular mycorrhiza was effected to improve several observation variables, namely plant dry weight, bulb dry weight, phosphate nutrient uptake, and phosphate efficiency. The application of mycorrhiza at phosphate doses of 250 kg SP-36 ha-1 can increase plant dry weight by 97% and bulb dry weight by 203% compared to without mycorrhiza. Whereas the application of mycorrhiza at a phosphate dose of 100 kg SP-36 ha-1 is the best and most efficient treatment to increase phosphate nutrient uptake and phosphate efficiency. The results of this study show that the application of mycorrhizal can increase nutrient uptake of phosphate which ultimately increases the growth and production of shallot plants.
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Abdelmoneim, T.S., Moussa, T.A., Almaghrabi, O.A., Alzahrani, H.S. and Abdelbagi, I., 2014. Increasing plant tolerance to drought stress by inoculation with arbuscular mycorrhizal fungi. Life Sci J, 11, pp.10-17.
Baptista, P., Tavares, R. M., & Lino-Neto, T. (2011). Signaling in ectomycorrhizal symbiosis establishment. In Diversity and Biotechnology of Ectomycorrhizae (pp. 157-175). Springer, Berlin, Heidelberg.
Bertham, Y. H. & E. Inoriah. 2009. Dampak inokulasi ganda cendawan mioriza arbuskula dan rhizobium indegenous pada tiga genotip kedelai di tanah ultisol. J. Akta Agrosia 12(2) : 155-166.
Charisma, A. M., S. R. Yuni & Isnawati. (2012). Pengaruh kombinasi kompos Trichoderma sp. dan mikoriza vesikular arbuskular (MVA) terhadap pertumbuhan tanaman kedelai (Glycine max. (L.) Merill) pada media tanam tanah kapur. J. Lentera Bio 1(3) : 111-116.
Distantph Kal-Sel. (2014). Produksi, luas panen dan produktivitas bawang merah. Dinas Pertanian Tanaman Pangan dan Hortikultura Provinsi Kalimantan Selatan. Banjarbaru. Diakses pada 17 Juli 2017.
Elias, K. S., & Safir, G. R. (1987). Hyphal elongation of Glomus fasciculatus in response to root exudates. Appl. Environ. Microbiol., 53(8), 1928-1933.
FAO. (2005). Analysis of the FAO-BioDeC data on non-GM biotechnologies. in Status of research and application of crop biotechnologies in developing countries. Preliminary assessment. Rome: Food and Agriculture Organization of The United Nations. Pp. 5-18.
Hamdani, S. J. (2008). Pertumbuhan dan hasil bawang merah kultivar Kuning pada status hara P total tanah dan dosis pupuk fosfat yang berbeda. Jurnal Agrikultura 19(1) : 42-49.
Hardjowigieno, S. (1995). Ilmu Tanah. Akademik Presindo. Jakarta.
Hartoyo, B., Ghulamahdi, M., Darusman, L. K., Aziz, S. A., & Mansur, I. (2011). Keanekaragaman fungi mikoriza arbuskula (FMA) pada rizosfer tanaman pegagan (Centella asiatica (L.) urban). Jurnal Penelitian Tanaman Industri (Industrial Crops Research Journal), 17(1), 32-40.
Jumin, B. H. (2008). Dasar-Dasar Agronomi. ed. revisi 6. Raja Grafindo Persada. Jakarta.
Kandowangko, Y. N. 2007. Respon tanaman jagung (Zea mays L.) yang tercekam kekeringan selama fase pembungaan sampai pengisian biji terhadap inokulasi Azospirillum sp. dan fungi mikoriza arbuskula. Prosiding Seminar Nasional Mikoriza II. Bogor. 76-81.
Kape, R., Wex, K., Parniske, M., Görge, E., Wetzel, A., & Werner, D. (1993). Legume root metabolites and VA-mycorrhiza development. Journal of plant physiology, 141(1), 54-60.
Khalil, S., Loynachan, T. E., & Tabatabai, M. A. (1994). Mycorrhizal dependency and nutrient uptake by improved and unimproved corn and soybean cultivars. Agronomy journal, 86(6), 949-958.
Koide, R., Li, M., Lewis, J., & Irby, C. (1988). Role of mycorrhizal infection in the growth and reproduction of wild vs. cultivated plants. Oecologia, 77(4), 537-543.
Lakitan, B. (2010). Dasar-Dasar Fisiologi Tumbuhan. Rajawali Pers. Jakarta.
Liperdi, R. P., & Darus-man, L. K. (2005). Perubahan karbohidrat dan nitrogen empat varietas rambutan. J. Hort, 16(2), 134-141.
Murniati. (2006). Efisiensi pupuk nitrogen pada tanaman bawang merah dengan penggunaan CMA. Disampaikan pada Semirata BKS-B PTN di Fakultas Pertanian Universitas Jambi, 26-28 April 2006.
Muzar, A. (2006). Respons tanaman jagung (Zea mays L.) kultivar Arjuna dengan populasi tanaman bervariasi terhadap mikoriza vesikula-arbuskula (MVA) dan kapur pertanian superfosfat (KSP) pada Ultisol. Jurnal Akta Agrosia. 9(2) : 75-85.
Nurbaity, A., A. Setiawan & O. Mulyani. (2011). Efektivitas arang sekam sebagai bahan pembawa pupuk hayati mikoriza arbuskula pada produksi sorgum. J. Agrinimal 1(1): 1-6.
Orcutt, D.M. & E.T. Nielsen. (2000).The physiology of plants under stress: soil and biotic factors. John Wiley & Sons Inc. New York.
Pamuna, K., S. Darman & Y.S. Pata’dungan. (2013). Pengaruh pupuk SP-36 dan fungi mikoriza arbuskula terhadap serapan fosfat tanaman jagung (Zea mays L.) pada oxic distrudepts Lemban Tongoa. e-J. Agrotekbis 1(1) : 23-29.
Prihastuti. (2007). Isolasi dan karakterisasi mikoriza vesikular arbuskular di lahan kering masam Lampung Tengah. Berkala Penelitian Hayati 12 : 99-106.
Pulungan, A. S. S. (2013). Infeksi fungi mikoriza arbuskula pada akar tanaman tebu (Saccharum officinarum L.). Jurnal Biosains 1(1) : 43-46.
Nartea, R. N. (1990). Soil phosphorus: Basic soil fertility. Diliman-Quezon city: Univ. of the Philippines.
Noor, A., Khairudin & M. Yasin. (2014). Prospek dan kendala lahan kering di Kalimantan Selatan sebagai sumber produksi jagung. Prosiding Seminar Nasional “Inovasi Teknologi Pertanian Spesifik Lokasi.” hlm: 323-334.
Rahim, K. A. (2002). Biofertilizer in Malaysian agriculture: Perception, demand and promotion. Proc. FNCA Joint Workshop on Mutation Breeding and Biofertilizer, August 20-23. Beijing, China. 6 p.
Saleh, I., & Atmaja, I. S. W. (2017). Efektivitas Inokulasi Cendawan Mikoriza Arbuskula (CMA) terhadap Produksi Bawang Merah dengan Teknik Pengairan Berbeda. Jurnal Hortikultura Indonesia, 8(2), 120-127.
PURNOMO, J., WIGENA, I. G. P., & LEFROY, R. (2012). Management of Phosphorus and Organic Matter on an Acid Soil in Jambi, Indonesia. Jurnal Tanah dan Iklim, (18), 64-72.
Saputra, H., & Rizalinda, I. L. (2015). Jamur Mikoriza Vesikular Arbuskular (MVA) pada Perakaran Tanaman Bawang Mekah (Eleutherine americana Merr.). Protobiont, 4(1). 143-150.
Setiadi, Y. (2000). Status penelitian dan pemanfaatan CMA dan Rhizobium untuk merehebilitasi lahan terdegradasi. Dalam Prosiding Seminar Nasional Mikoriza I. Jakarta: Pusat Penelitian dan Pengembangan Hutan dan Konservasi Alam. Departemen Kehutanan dan Perkebunan.
Sumiati, E., & Gunawan, O. S. (2007). Aplikasi pupuk hayati mikoriza untuk meningkatkan efisiensi serapan unsur hara NPK serta pengaruhnya terhadap hasil dan kualitas umbi bawang merah. Jurnal Hortikultura, 17(1). 34-42.
Swift, C. E. (2004). Mycorrhiza and soil phophorus levels. Colorado State University, Cooperation Extention. 1-4.
Valentine, K., Herlina, N., & Aini, N. (2018). Pengaruh Pemberian Mikoriza dan Trichoderma sp. Terhadap Pertumbuhan dan Hasil Produksi Benih Melon Hibrida (Cucumis melo L.). Jurnal Produksi Tanaman, 5(7).1085-1092.
Wicaksono, M. I., Rahayu, M., & Samanhudi, S. (2014). Pengaruh Pemberian Mikoriza Dan Pupuk Organik Terhadap Pertumbuhan Bawang Putih. Caraka Tani: Journal of Sustainable Agriculture, 29(1), 35-44.
Agustin, W. (2017). Inokulasi Fungi Mikoriza Arbuskula (FMA) dan pemupukan P untuk meningkatkan hasil dan mutu benih cabai (Capsicum annuum L.). Jurnal Agronomi Indonesia (Indonesian Journal of Agronomy), 38(3).218-224.
Widiastuti, H., Guhardja, E., Soekarno, N., Darusman, L. K., Goenadi, D. H., & Smith, S. (2002). Optimasi simbiosis cendawan mikoriza arbuskula Acaulospora tuberculata dan Gigaspora margarita pada bibit kelapa sawit di tanah masam. Optimizing arbuscular mycorrhizal fungi symbiosis Acaulospora tuberculata and Gigaspora margarita with oil palm seedling in acid soil. E-Journal Menara Perkebunan, 70(2): 50-57. DOI: http://dx.doi.org/10.22302/iribb.jur.mp.v70i2.128
Wulandari, G., & Noli, Z. A. (2014). Kompatibilitas Spora Glomus Hasil Isolasi dari Rizosfer Macaranga triloba dengan Tiga Jenis Tanaman Inang. Jurnal Biologi Universitas Andalas, 3(2): 116-122.
Zamski, E. and AA Schaffer. (1996). Photoassimilate distribution in plants and crops. Marcel Dekker Inc. New York.
DOI: http://dx.doi.org/10.20527/es.v15i1.6323
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