Kualitas Fungi Mikoriza Arbuskula (FMA) yang Diproduksi dengan Teknik Fortifikasi dan Fertigasi Berbeda pada Pertumbuhan Indigofera zollingeriana
Abstract
Arbuscular mycorrhizal fungi (AMF) is a fungus that has a symbiotic impact on the plant at the root system level. The research objective was to evaluate the growth of Indigofera zollingeriana produced from inoculation of AMF under different fortification and fertigation techniques at the field scale. A completely randomized design with six treatments and five replication were applied for the study. The treatments were: FD1000, FD2000, FD3000 (AMF fortified with 1000, 2000, and 3000 ppm of AB mix at flat fertigation), FB1000, FB2000, and FB3000 (AMF fortified with 1000, 2000, 3000 ppm of AB mix at graded fertigation). The result shows that the AMF colonization level at the root of was similar (P>0.05) to the upper value of colonization (80.00‒99.00%). The entire products of AMF have similar favorable symbiotic effects on the plant with major growth traits (plant high, stem diameter, number of branches and twigs). A fortification of 2000 ppm of AB mix under graded fertigation technique has produced AMF that significantly (P<0.05) increased the number of leaves with higher green color level (7.5GY 4/6) compared with other treatments. In conclusion, the AMF produced by different fortification and fertigation techniques at the field scale has a similar result on root colonization effectivity and growth performance of I. zollingeriana. In addition, the AMF produced by 2000 ppm of AB mix with graded fertigation technique effectively increased the number of leaves with higher green color intensity.
Keywords: AMF, arbuscular mycorrhizal fungi quality, fertigation, fortification, Indigofera zollingeriana
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References
Abbott LK, Robson AD. 1984. The effect of mycorhizae on plant growth. Dalam: Powel CL, Bagyraj DJ (Ed). Vesicular arbuscular mycorhizae. Boca Raton (FL): CRC Press.
Abdullah L, Suharlina. 2010. Herbage yield and quality of two vegetative parts of Indigofera at different time of first regrowth defoliation. Media Peternakan. 33(1): 44-49.
Asmi A, Subaedah S, Saida. 2021. Perbanyakan mikoriza dengan penggunaan tanaman inang kedelai dengan berbagai dosis kompos. Jurnal Agrotekmas. 2(1): 7080. https://doi.org/10.5398/ medpet.2010.33.3.169
Baptista P, Tavares RM, Lino-Neto T. 2011. Signaling in Ectomycorrhizal Symbiosis Establishment. In: Rai M, Varma A. (eds) Diversity and Biotechnology of Ectomycorrhizae. Soil Biology. 25: 157175. https://doi.org/ 10.1007/978-3-642-15196-5_8
Basri AHH. 2018. Kajian peranan mikoriza dalam bidang pertanian. Agrica Ekstensia. 12(2): 7478
Brundrett M, Bougher N, Dell B, Grave T, Malajezuk N. 1996. Working with Mycorrhiza in Forestry and Agriculture. Australia Centre for International Agricultural Research (ACIAR). Canberra.
Cuenca G, De Andrade Z, Meneses E. 2001. The presence of aluminum in arbuscular mycorrhizas of Clusia multiflora exposed to increased acidity. Plant and Soil. 231: 233241. https://doi.org/ 10.1023/A:1010335013335
Fitria A. 2021. Evaluasi inokulum fungi mikoriza arbuskula (FMA) difortifikasi dengan fertigasi berbeda pada pembibitan Indigofera zollingeriana. [Tesis]. Bogor: Institut Pertanian Bogor.
Hadianur H, Syafruddin S, Kesumawati E. 2016. Pengaruh jenis fungi mikoriza arbuscular terhadap pertumbuhan dan hasil tanaman tomat (Lycopersicum esculentum Mill). Jurnal Agrista. 20(3): 126134.
Kochian LV. 1995. Cellular mechanisms of aluminum toxicity and resistance in plants. Annual Review of Plant Biology. 46(1): 237260. https://doi.org/ 10.1146/annurev.pp.46.060195.001321
Kumalasari NR, Wicaksono GP, Abdullah L. 2017. Plant growth pattern, forage yield, and quality of Indigofera zollingeriana influenced by row spacing. Media Peternakan. 40(1): 1419. https://doi.org/ 10.5398/medpet.2017.40.1.14
Laksono J, Karyono T. 2017. Pemberian pupuk fosfat dan fungi mikoriza arbuskular terhadap pertumbuhan tanaman legum pohon (Indigofera zollingeriana). Jurnal Sain Peternakan Indonesia. 12(2): 165170. https://doi.org/10.31186/jspi.id. 12.2.165-170
[LPT] Litbang Penelitian Tanah. 1983. Kriteria Penilaian Sifat Kimia Tanah. Bogor (ID): Balai Penelitian dan Pengembangan Pertanian Departemen Pertanian.
Lukman L. 2010. Efek pemberian fosfor terhadap pertumbuhan dan status hara pada bibit manggis. Jurnal Hortikultura. 20(1): 1826.
Mardhika LD, Sudradjat. 2015. Respons pertumbuhan tanaman kelapa sawit (Elaeis guineensis) belum menghasilkan umur dua tahun terhadap pemupukan kalsium. Buletin Agrohorti. 3(1): 110–118. https://doi.org/10.29244/agrob.v3i1.14834
Palupi R, Abdullah L, Astuti DA, Sumiati. 2014. Potensi dan pemanfaatan tepung pucuk Indigofera sp. sebagai bahan pakan substitusi bungkil kedelai dalam ransum ayam petelur. Jurnal Ilmu Ternak dan Veteriner. 19(3): 210219. https:// doi.org/10.14334/jitv.v19i3.1084
Pramono AA, Syamsuwida DIDA, Djam’an DF. 2017. Produksi buah dan benih mahoni (Swietenia macrophylla) di Parung Panjang dan Jonggol (Bogor, Jawa Barat) serta kaitannya dengan status kesuburan tanah. Dalam: Proceedings of International Conference society for Indonesian Biodiversity. 3(3): 381389. Bali, 810 December 2017.
Pulungan ASS. 2018. Tinjauan ekologi fungi mikoriza arbuskula. Journal of Biosciences. 4 (1): 1722. https://doi.org/10.24114/jbio.v4i1.9389
Romheld V. 2012. Diagnosis of deficiency and toxicity of nutrients. In Marschner's mineral nutrition of higher plants. Cambridge (MA): Academic Press. https://doi.org/10.1016/B978-0-12-384905-2.00011-X
Rosenstock N P, Berner C, Smits MM, Krám P, Wallander H. 2016. The role of phosphorus, magnesium and potassium availability in soil fungal exploration of mineral nutrient sources in Norway spruce forests. New Phytologist. 211(2): 542553. https://doi.org/10.1111/nph.13928
Schrire B D, Lavin M, Barker NP, Forest F. 2009. Phylogeny of the tribe Indigofereae (Leguminosae–Papilionoideae): Geographically structured more in succulent‐rich and temperate settings than in grass‐rich environments. American Journal of Botany. 96(4): 816852. https://doi.org/10.3732/ajb. 0800185
Selvaraj T, Chellappan P. 2006. Arbuscular mycorrhizae: a diverse personality. Journal of Central European Agriculture. 7(2): 349358.
Smith SE, Read DJ. 2010. Mycorrhizal Symbiosis. Cambridge (MA): Academic Press.
Solaiman MZ, Hirata H. 1995. Effects of indigenous arbuscular mycorrhizal fungi in paddy fields on rice growth and N, P, K nutrition under different water regimes. Soil Science and Plant Nutrition. 41(3): 505514. https://doi.org/10.1080/00380768. 1995.10419612
Sutedjo MM. 1999. Pupuk dan Cara Pemupukan. Jakarta (ID): Rineka Cipta.
Usuluddin, Burhanuddin, Muin A. 2018. Pertumbuhan tanaman gaharu (Aquilaria malaccensis Lamk) pada tanah aluvial dengan naungan dan tinggi bibit berbeda. Jurnal Hutan Lestari. 6(3): 605617.
von Tucher S, Horndl D, Schmidhalter U. 2018. Interaction of soil pH and phosphorus efficacy: Long-term effects of P fertilizer and lime applications on wheat, barley, and sugar beet. Ambio. 47(1): 4149. https://doi.org/10.1007/ s13280-017-0970-2
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