Efek Fosfat Dan Cendawan Mikoriza Arbuskula Pada Jumlah Tunas, Berat Segar, Dan Berat Kering Alfalfa
Abstract
Penelitian ini bertujuan untuk mengetahui pengaruh cendawan mikoriza arbuskula dan pupuk fosfat terhadap jumlah tunas, berat segar, dan berat kering alfalfa.. Rancangan yang dipakai adalah rancangan acak lengkap pola faktorial 3 x 4, 4 ulangan. Faktor pertama terdiri dari 3 taraf pemberian pupuk fosfat (P) : 0, 60 dan 120 kg P2O5 ha-1 dan faktor kedua adalah penambahan CMA terdiri dari 4 taraf 0, 5, 10 dan 15 g pot-1. Variabel yang diamati berupa jumlah tunas, berat segar, dan berat kering alfalfa. Hasil penelitian ini menunjukkan bahwa Interaksi CMA dan pupuk P memberikan pengaruh berbeda tidak nyata pada semua parameter yang diuji. Berat segar tajuk dipengaruhi sangat nyata oleh masing-masing kontrol yang terpisah, yaitu pada Perlakuan pemberian CMA sebanyak 15 g pot-1 dan Perlakuan pemberian pupuk P sebanyak 60 kg P2O5 ha-1 . Jumlah tunas dan berat kering tajuk menunjukkan tidak adanya pengaruh antara perlakuan dan kontrol. Disimpulkan bahwa interaksi CMA dan pupuk P tidak bisa meningkatkan jumlah tunas, berat segar, dan berat kering alfalfa. Pemberian CMA sebanyak 15 g pot-1 dan pupuk P sebanyak 60 kg ha-1 dapat meningkatkan berat segar dan berat kering tajuk alfalfa.
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Balzergue C, Puech-Pags V, Bécard G, Rochange SF. 2011. The regulation of arbuscular mycorrhizal symbiosis by phosphate in pea involves early and systemic signalling events. J Exp Bot. 62(3):1049–1060.
Barrett G, Campbell CD, Fitter AH, Hodge A. 2011. The arbuscular mycorrhizal fungus Glomus hoi can capture and transfer nitrogen from organic patches to its associated host plant at low temperature. Appl Soil Ecol. 48(1):102–105.
Beauregard MS, Hamel C, Atul-Nayyar, St-Arnaud M. 2010. Long-term phosphorus fertilization impacts soil fungal and bacterial diversity but not AM fungal community in alfalfa. Microb Ecol. 59:379–389.
Cheng L, Booker FL, Tu C, Burkey KO, Zhou L, Shew HD, Rufty TW, Hu S. 2012. Arbuscular Mycorrhizal Fungi Increase Organic Carbon Decomposition Under Elevated CO2. Science (80- ). 337(6098):1084–1087.
Daynes CN, Field DJ, Saleeba JA, Cole MA, McGee PA. 2013. Development and stabilisation of soil structure via interactions between organic matter, arbuscular mycorrhizal fungi and plant roots. Soil Biol Biochem. 57:683–694.
Garrido E, Bennett AE, Fornoni J, Strauss SY. 2010. Variation in arbuscular mycorrhizal fungi colonization modifies the expression of tolerance to above-ground defoliation. J Ecol. 98(1):43–49.
Gianinazzi S, Gollotte A, Binet MN, van Tuinen D, Redecker D, Wipf D. 2010. Agroecology: The key role of arbuscular mycorrhizas in ecosystem services. Mycorrhiza. 20(8):519–530.
Hodge A, Fitter AH. 2010. Substantial nitrogen acquisition by arbuscular mycorrhizal fungi from organic material has implications for N cycling. Proc Natl Acad Sci U S A. 107(31):13754–13759.
Jayne B, Quigley M. 2014. Influence of arbuscular mycorrhiza on growth and reproductive response of plants under water deficit: a meta-analysis. Mycorrhiza [Internet]. 24(2):109–19. http://www.ncbi.nlm.nih.gov/pubmed/23917611
Jia S, Wang Z, Li X, Sun Y, Zhang X, Liang A. 2010. N fertilization affects on soil respiration, microbial biomass and root respiration in Larix gmelinii and Fraxinus mandshurica plantations in China. Plant Soil. 333(1):325–336.
Jin HR, Liu Jie, Liu Jing, Huang XW. 2012. Forms of nitrogen uptake, translocation, and transfer via arbuscular mycorrhizal fungi: A review. Sci China Life Sci. 55(6):474–482.
Koller R, Rodriguez A, Robin C, Scheu S, Bonkowski M. 2013. Protozoa enhance foraging efficiency of arbuscular mycorrhizal fungi for mineral nitrogen from organic matter in soil to the benefit of host plants. New Phytol. 199(1):203–211.
Leifheit EF, Veresoglou SD, Lehmann A, Morris EK, Rillig MC. 2013. Multiple factors influence the role of arbuscular mycorrhizal fungi in soil aggregation—a meta-analysis. Plant Soil. 374(1–2):523–537.
Leigh J, Hodge A, Fitter AH. 2009. Arbuscular mycorrhizal fungi can transfer substantial amounts of nitrogen to their host plant from organic material. New Phytol. 181(1):199–207.
Lekberg Y, Koide RT. 2005. Is plant performance limited by abundance of arbuscular mycorrhizal fungi? A meta-analysis of studies published between 1988 and 2003. New Phytol. 168(1):189–204.
LIU J ling, LIAO W hua, ZHANG Z xin, ZHANG H tao, WANG X jun, MENG N. 2007. Effect of Phopshate Fertilizer and Manure on Crop Yield, Soil P Accumulation, and the Environmental Risk Assessment. Agric Sci China. 6(9):1107–1114.
Miransari M. 2011. Arbuscular mycorrhizal fungi and nitrogen uptake. Arch Microbiol. 193(2):77–81.
Nuccio EE, Hodge A, Pett-Ridge J, Herman DJ, Weber PK, Firestone MK. 2013. An arbuscular mycorrhizal fungus significantly modifies the soil bacterial community and nitrogen cycling during litter decomposition. Environ Microbiol. 15(6):1870–1881.
Putra B, Putra M dwi, Pedi Utama B. 2020. Pengaruh substitusi sebagian ransum komersil dengan tepung daun indigofera sp terhadap lemak abdomen ayam broiler. J Sains Peternak. 8(1).
Radovic J, Sokolovic D, Markovic J. 2009. Alfalfa-most important perennial forage legume in animal husbandry. Biotechnol Anim Husb. 25(5–6):467–475.
Shen J, Yuan L, Zhang J, Li H, Bai Z, Chen X. 2011. Phosphorus Dynamics : From Soil to Plant 1. 156(30821003):997–1005.
Sikes BA, Powell JR, Rillig MC. 2010. Deciphering the relative contributions of multiple functions within plant-microbe symbioses. Ecology. 91(6):1591–1597.
Smith SE, Read D. 2008. Mycorrhizal Symbiosis. [place unknown]. http://www.sciencedirect.com/science/article/pii/B9780123705266500192
Smith SE, Smith FA. 2011. Roles of arbuscular mycorrhizas in plant nutrition and growth: new paradigms from cellular to ecosystem scales. Annu Rev Plant Biol. 62:227–250.
Sunarni, Karno, Lukiwati DR. 2012. PENINGKATAN PRODUKSI DAN KECERNAAN BAHAN KERING ALFALFA DENGAN PEMUPUKAN FOSFAT. Pastura [Internet]. 2(1):8–11. ojs.unud.ac.id/index.php/pastura/article/download/9008/6785
Wahyuni RD, Kamaliyah SN. 2012. Studi tentang pola produksi alfalfa tropis ( M edicago sativa l .) Study on production pattern of tropical alfalfa ( Medicago sativa L .). J Ilmu-ilmu Peternak [Internet]. 19(1):20–27. http://jiip.ub.ac.id/index.php/jiip/article/view/107/113
Whiteside MD, Digman MA, Gratton E, Treseder KK. 2012. Organic nitrogen uptake by arbuscular mycorrhizal fungi in a boreal forest. Soil Biol Biochem [Internet]. 55:7–13. http://www.sciencedirect.com/science/article/pii/S0038071712002374
Zhang G-Y, Zhang L-P, Wei M-F, Liu Z, Fan Q-L, Shen Q-R, Xu G-H. 2011. Effect of arbuscular mycorrhizal fungi, organic fertilizer and soil sterilization on maize growth. Acta Ecol Sin. 31(4):192–196.
DOI: https://doi.org/10.36355/sptr.v3i1.610
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