Populasi dan Keanekaragaman Fungi Mikoriza Arbuskular pada Rizosfir Tanaman Lada Monokultur dan Polikultur

Authors

  • Oktafia Sari Jurusan Agronomi dan Hortikultura Fakultas Pertanian Universitas Lampung
  • Maria Viva Rini Jurusan Agronomi dan Hortikultura Fakultas Pertanian Universitas Lampung
  • Rusdi Evizal Jurusan Agroteknologi Fakultas Pertanian Universitas Lampung
  • Agus Karyanto Jurusan Agroteknologi Fakultas Pertanian Universitas Lampung

DOI:

https://doi.org/10.23960/ja.v23i1.8593

Abstract

Arbuscular mycorrhizal fungi (AMF) is a type of fungus that comes from the endomycorrhizal group, these fungi have the ability to form symbiosis with almost 90% of higher plant species. Population and diversity of AMF are influenced by biotic factors and abiotic factors. This research aims to determine the differences in population, diversity and dominant types of AMF in the rhizosphere of pepper planted in monoculture and pepper in polyculture. The soil samples were taking from monoculture and polyculture pepper plantations in Air Naningan District, Tanggamus Regency. The AMF population was tested using the One way Annova test. Culture trapping was done using a factorial treatment with the first factor being the origin of the soil sample (K) and the second actor being the type of host plant (T). Treatments design used was randomize design (CRD). The results showed that the AMF population in polyculture pepper plantation soil samples was higher than monoculture pepper, based on the Shannon-Wiener Diversity Index, AMF diversity in monoculture pepper and coffee intercropping pepper plantations was higher than in cocoa intercropping pepper plantations, and the type of AMF was dominant. from the results of trapping culture with monoculture pepper garden soil samples, namely spores of the species code S7, in samples of coffee intercropping pepper plantations the code S7 is dominant, while in cocoa intercropping pepper plantations it is dominated by code S6.

 Keywords: Arbuscular mycorrhizal fungi, diversity, population.

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References

Akib, M. A., Nuddin, A., Prayudyaningsih, R., Kuswinanti, T., dan Andi, S. 2022. Keragaman Fungi Mikoriza Arbuskula pada Pola Tanam Paper Nigrum yang berbeda di Areal Sekitar Lahan Tambang Nikel. Jurnal Biologi Indonesia. 18(2): 183-192.

Aquino, S. d. S., M. H. Scabora, J. A. d. C. Andrade, S. M. G. da Costa, K. L. Maltoni, A. M. R. Cassiolato. 2015. Mycorrhizal colonization and diversity and corn genotype yield in soils of the Cerrado region, Brazil. Semina: Ciências Agrárias, Londrina. 36(6): 4107-4118.

Baylis, G. T. S. 1970. Root hairs and phycomcetous mychorrhizas in phosphorus deficient soil. Plant and Soil. 33: 713-716.

BPS (Badan Pusat Statistik) Provinsi Lampung. 2018. Lampung dalam Angka. 2018. Badan Pusat Statistik Provinsi Lampung. Bandar Lampung.

BPS Kabupaten Tanggamus. 2005-2015. Lampung Dalam Angka 1920-2017. Bandar Lampung.

Brundrett, M. C., Bougher, N., Dells, B., Grove, T., and Malajozuk N. 1996. Working with mycorrhizas in forestry and agriculture. Australian Centre for International Agricultural Research. Cannberra. 374 p.

Brundrett, M.C. 2004. Mycorrhizal in Natural Ecosystem. Adv. Ecol. Res. 21: 171-313.

Direktorat Jenderal Perkebunan 2020. Produksi Lada Menurut Provinsi di Indonesia, 2016-2020.

Departemen Pertanian. 1990. Teknologi Budidaya Sorgum. Jayapura (ID): Balai Informasi Pertanian Irian Jaya.

Ervayenri, Soetrisno, H., Setiadi, Y., Saeni, M. S., dan C. Kusmana. 1998. Arbucular Mycorrhiza Fungi (AMF) Diversity in Peat Soil Influenced by Land Vegetation Types. Proceeding. International Conference Mycorrhiza in Suitanable Tropical Agriculture and Forest Ecosystem. In Commenoration of 100 years the World Pioneering Studies on Tropical Mycorrhiza in Indonesia by Professor JM Janse. Bogor, pp 85-92.

Evizal, R., 2000. Pola budidaya lada sistem panjatan hidup di Propinsi Lampung. Jurnal Agrotropika. 5(2): 14-19.

Evizal, R. 2023. Pengelolaan Perkebunan Lada. Pusaka Media. Bandar Lampung. 194p.

Genre, A. and Bonfante, P. 2005. Building a mycorrhizal cell: how to reach compatibility between plants and arbuscular mycorrhizal fungi. Journal of Plant Interactions, 1(1), 3-13.

Giovannetti, M., Sbrana, C., Avio, L., Citernesi, A. S., and Logi, C. 1993. Differential hyphal morphogenesis in arbuscular mychorrhizal fungi during preinfection stages. New Phytologist. 125(3): 587-593.

Hesti, L, Tata, M. 2009. Pengaruh Pemberian Berbagai MVA dan Pupuk Kandang Ayam pada Tanaman Tembakau Deli Terhadap Serapan P dan Pertanaman ditanah Inceptisol Sampali. Skripsi. Departemen Ilmu Tanah Fakultas Pertanian. Bogor

Lukiwati, D. R. dan Supriyanto. 1995. Performance of three VAM Spesies from India for Inoculum Production in Centro dan Puero. International Workshop on Biotechnology and Development Species for Industrial Timber Estate. Lipi Bogor. Bogor. p 257-265.

Oehl, F., Sieverding, E., Ineichen, K., Ris, Elisabeth-Anne, R., Boller, T., & Wiemken, A. 2005. Community structure of arbuscular mycorrhizal fungi at different soil depths in extensively and intensively managed agroecosystems. New Phytologist. 165: 273-283.

Powell, C. L. I. & Bagyaraj, D. J. 1984. VA Mycorrhiza. Florida (US): CRC Press.

Prasmatiwi, F. E. & R. Evizal. 2020. Keragaan dan Produktivitas kebun Lada Tumpang sari Kopi di Lampung Utara. Jurnal Agrotropika. 19(2): 110-117.

Reksohadiprodjo S. 1981. Produksi Tanaman Hijauan Makanan Ternak Tropik. Fakultas Peternakan. UGM. Yogyakarta.

Rini, M. V., Arif, M. A. S., & Ranchiano, M.G. 2019. Produksi Isolat Fungi Mikoriza Arbuskular pada Lahan Sayur dan Semak di Sumber Jaya Lampung Barat. Jurnal Wacana Pertanian. 14(2): 53-61.

Rini, M.V., Yelli, F., Tambunan, D.L. $ Damayanti I. 2021. Morphological and molecular identifications of three native arbuscular mycorrhizal fungi isolated from the rhizosphere of Elaeis guineensis and Jatropha curcas in Indonesia. Biodiversitas. 22 (11): 4940-4947.

Rini, M.V., Irvanto, D., & Ardiyanto, A. 2023. Study of Arbuscular mycorrhizal fungi population in the rhizosphere of oil palm planted on 4 different soil types in Central Kalimantan Indonesia. E3S Web of Conferences 373, 06005.

Rosendahl, S. 2008. Communities, populations and individuals of arbuskular mycorrhizal fungi. New Phytologist. 178: 253-266.

Sancayaningsih, R.P. 2005. The effects of single and dual inoculations of arbusscula mycorrhizal fungi on plant growth and the EST and MDH is zyme profiles of maize roots (Zea mays L) grown on limited growth media. Desertasi. UGM. Yogyakarta.

Setiadi, Y. 1992. Mengenal Mikoriza, Rhizobium, dan Aktinorizal untuk Tanaman Kehutanan. Bogor (ID): Fakultas Kehutanan. IPB.

Sieverding, E. 1991. Vesicular Arbuscular Mycorrizha Management in Tropical Agrosystem. Deutche Gessellsschaft fur Tecnosche Zusmmenourheit (GTZ) Gmbh, Federal Republic Germany.

Sofyan A., Y. Musa & H. Feranita. 2005. Perbanyakan Cendawan Mikoriza Arbuskular (CMA) pada berbagai Varietas Jagung (Zea mays L.) dan Pemanfaatannya pada Dua Varietas Tebu (Saccharum officinarum L). Jurnal Sains dan Teknologi. 5 (1): 12-20.

Struble, J.E. and Skipper, H.D. 1988. Vesicular Arbuscular Mychorrhizal Fungal Spore Production as Influenced by Plant Species. Plant Soil. 109(1): 277-280.

Tuheteru, F.D., Asrianti, A., Eka, W., Ninis, R. 2017. Serapan Logam Berat oleh Funggi Mikoriza Arbuskular Lokal pada Naucle orientalis L. dan potensial untuk fitoremediasi tanah serpentine. Jurnal Penelitian Hasil Hutan. 7(17): 30-40.

Yuni, S. R. & Santosa. 1995. Pembentukan Mikoriza Vesikular-Arbuskular pada Capsicum annum L. yang ditumbuhkan pada tanah asam ultisol. Jurnal Biologi. 1 (9): 371-379.

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Published

2024-03-24

How to Cite

Sari, O., Rini, M. V., Evizal, R., & Karyanto, A. (2024). Populasi dan Keanekaragaman Fungi Mikoriza Arbuskular pada Rizosfir Tanaman Lada Monokultur dan Polikultur. JURNAL AGROTROPIKA, 23(1), 8–18. https://doi.org/10.23960/ja.v23i1.8593