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dc.contributor.authorRahayu, Tuti
dc.contributor.authorHariyatmi
dc.contributor.authorDjumadi
dc.date.accessioned2013-01-21T06:21:53Z
dc.date.available2013-01-21T06:21:53Z
dc.date.issued2011-12
dc.identifier.citationAlexopoulos, CW Mims, and M Blackwell 1996. Introductory Mycology. 4th ed. John Wiley & Sons Inc. Singapore. Hal 153 Allen, Michael F. 2000. Mycorrhizae. In: Alexander, M., editor. Encyclopedia of Allen, Michael F.; Lansing, Jennifer; Allen, Edith B. 2002. The role of mycorrhizal fungi in composition and dynamics of plant communities: A scaling issue. Progress in Botany 63: 344-367. Almeida RT, Schenck NC. 1990. A revision of the genus Sclerosystis (Glomaceae, Glomales).Mycologia, 82, p 703-714 Almeida RT.1989. Scientific names in the endogonales, zygomycotina, Mycotaxon, 36, p 147-159. Anonimus. 2005a. Kabupaten Tuban Dalam Angka 2005. Badan Pusat Statistik Dan Bappeda Kabupaten Tuban.Publikasi Badn Pusat Statistik Kabupaten Tuban. Anonimus. 2005b. Prospek cerah lengkeng dataran rendah. Harian KOMPAS 15 Mei 2005 Anonimus. 2007. Pengembangan lengkeng dataran rendah. Direktorat Perbenihan dan Sarana Produksi. arbuscular mycorrhizal fungi (Glomales). Molecular Phylogenetics and Evolution 14: 276-284. Barbour MG, Burk JH, Pits D. 1987. Terestrial Plant Ecology, the Benyamin cunnings. Publ, Co California USA, p. 634 Barea J.M., Jeffries 2001. Arbuscular Mycorhhiza- a Key Component of Sustainable Plant-Soil Ecosystems. In The Mycota a Comprehensive Treatise on fungi as Experimental Systems for Basic and Applied Research, Fungal Associations, K Esser (Ed). hal 95 Bever, J.D., J.B. Morton, J. Antonovics and P.A. Schultz. 1996. Host-dependent sporulation and species diversity of arbuscular mycorrhizal fungi in a mown grassland. J. Ecology 84: 71-82. Brundrett MC, Melville L, Peterson L. 1994. Practical methods in mycorrhiza research. Mycology Publications, p 95-100. Chalimah S 2007. Perbanyakan Gigaspora margarita dan Acaulospora tuberculata dengan kultur pot diumah kaca J. Biodeversitas UNS vol 8: 1, 15-20 Clark, RB. 1997. Arbuscular mycorrhizal adaptation, spore germination, root colonization, and host plant growth and mineral acquisition at low pH. Plant Soil. 192, 15-22. Daily, Gretchen C.; Söderqvist, Tore; Aniyar, Sara; Arrow, Kenneth; Dasgupta, Partha; Ehrlich, Paul R.; Folke, Carl; Jansson, AnnMari; Jansson, Bengt-Owe; Kautsky, Nils; Levin, Simon; Lubchenco, Jane; Mäler, Karl-Göran; Simpson, David; Starrett, David; Tilman, David; Walker, Brian. 2000. Ecology: The value of nature and the nature of value. Science 289: 395-396. Egerton-Warburton, L.M.; Allen, E.B. 2000. Shifts in arbuscular mycorrhizal communities along an anthropogenic nitrogen deposition gradient. Ecological Applications 10:484-496 Fabig, B, K Vielhauer, AM Moawad & W Achtnich. 1989. Gas-chromatographic separation of organic acids and electrophoretic determination of phosphatases from VA mycorrhizal roots. Z. Pfanzenernahs Bodenk. 152, A1-265. Galvez, L., D.D. Douds, Jr., L.E. Drinkwater and P. Wagoner. 2001. Effect of tillage and farming system upon VAM fungus populations and mycorrhizas and nutrient uptake of maize. Plant Soil 228: 299-308. Graves, J.D., N.K. Watkins, A.H. Fitter, D. Robinson and C. Scrimgeour. 1997. Intraspecific transfer of carbon between plants linked by a common mycorrhizal networks. Plant Soil 192: 153-159. Guharja E. 2004. Keanekaragaman hayati belum dimanfaatkan. Purna Bakti. 24 Juni 2004. Harian Pikiran Rakyat. Bandung. Helgason, T., T.J. Daniell, R. Husband, A.H. Fitter and J.P.W. Young. 1998. Ploughing up the wood-wide web? Nature 394: 431. Jansa, J., A. Mozafar, T. Anken, R. Ruh, I. Sanders and E. Frossard. 2002. Diversity and structure of AMF communities as affected by tillage in a temperate soil. Mycorrhiza 12: 225-234. Johnson, N.C., D. Tilman and D. Wedin. 1992. Plant and soil controls on mycorrhizal fungal communities. Ecology 73: 2034- 2042. Joner, EJ, & A Johansen. 2000. Phosphatase activity of external hyphae of two arbuscuiar mycorrhizal fungi. Mycol. Res. 104, 81-86. Klironomos, J.N., J. McCune, M. Hart and J. Neville. 2000. The influence of arbuscular mycorrhizae on the relationship between plant diversity and productivity. Ecol. Letters 3: 137-141. Lambais, MR & MC Mehdy. 1996. Soybean roots infected by Glorrius intraradices strains differing in infectivity exhibit differential chitinase and B 1,3-glucanase expression. New Phytol. 134, 531-538. Loubradou, Gabriel; Turcq, Béatrice. 2000. Vegetative incompatibility in filamentous fungi: A roundabout way of understanding the phenomenon. Research in Microbiology 151: 239-245. Microbiology. Second ed. San Diego: Academic Press; 328-336. Morton, J.B.; Redecker, D. 2001. Two new families of Glomales, Archaeosporaceae and Paraglomaceae, with two new genera, Archaeospora and Paraglomus, based on concordant molecular and morphological characters. Mycologia 93: 181-195. Myers, Norman; Mittermeier, Russell A.; Mittermeier, Cristina G.; da Fonseca, Gustavo A.B.;Kent, Jennifer. 2000. Biodiversity hotspots for conservation priorities. Nature 403: 853-858. Oehl F, Sieverding E, Ineichen K, Mader P, Boller T, Wiemken A. 2003. Impact of land use intensity on the species diversity of arbuscular mycorrhizal fungi in agroecosystems of Central Europe. Applied and Environmental Microbiology 69, 2816-2824. Rahayu t, dan Chalimah S 2009. Karakterisasi CMA didaerah kering alami dan budidaya . Laporan Penelitian Mandiri, (belum dipublikasikan) Read W. 1984. The structure and function of vegetative mycelium of mycorrhizal roots. In D. H. Jennings & A, D. M. Reyner (Ed.) Ecology and Physiology of the fungal mycelium, p. 215-240 London, Cambridge University Press. Redeker, Dirk; Morton, Joseph, B.; Bruns, Thomas D. 2000. Ancestral lineages of Rillig M.C.; Treseder, K.K.; Allen, M.F. 2002. Global change and mycorrhizal fungi. In: van der Heijden, M.G.A.; Sanders, I.R., editors. Ecological Studies. Mycorrhizal Ecology. Berlin, New York: Springer-Verlag; 135- 160. Rillig, Matthias C.; Wright, Sara E.; Allen, Michael F.; Field, Christopher B. 1999b. Rise in carbon dioxide changes soil structure. Nature 400: 628. Setiawati E. 2003. Teknik kutur jaringan Galdiol . Buletin Teknik Pertanian 8:1: 28-30 Sharples, J.M.; Chambers, S.M.; Meharg, A.A.; Cairney, J.W.G. 2000. Genetic diversity of Root-associated fungal endophytes from Calluna vulgaris at contrasting field sites. New Phytologist 148: 153-162. Simard SW, D.A. Perry, M.D. Jones, D.D. Myrold, D.M. Durall and R. Molina. 1997. Net transfer of carbon between ectomycorrhizal tree species in the field. Nature 388: 579-582. Smith SE, Smith FA, Jacobsen. 2003. Mycorrhizal fungi can dominate phosphate supply to pints irrespective of growth responses. Plant Physiol. 133, 16-20. Smith SE. and D.J. Read. 1997. Mycorrhizal Symbiosis, 2nd edition. Academic Press, London. Sukmadjaya D, Mariska I. 2003. Perbanyakan bibit jati melalui kultur jaringan. Balai Penelitian Bioteknologi dan Sumberdaya Genetik Pertanian. Tilman, David; Walker, Brian. 2000. Ecology: The value of nature and the nature of Treseder, Kathleen K.; Allen, Michael F. 2000. The role of mycorrhizal fungi in soil carbon storage under elevated CO2 and nitrogen deposition. New Phytologist 147: 189-200. Treseder, Kathleen K.; Egerton-Warburton, Louise M.; Allen, Michael F.; Cheng, Yufu; Oechel, Walter, C. 2003. Alteration of soil carbon pools and communities of mycorrhizal fungi in chaparral exposed to elevated carbon dioxide. Ecosystems 6(8): 786-796. USDA Forest Service Gen. Tech. Rep. PSW-GTR-195. 2005. 55 Biodiversity of Mycorrhizal Fungi—M. Allen and others value. Science 289: 395-396. van der Heijden MGA., Klironomos JN, Ursic M., Moutoglis P., Streitwolf E.R., Boller T.,. Wiemken A, Sanders IR.. 1998. Mycorrhizal fungal diversity determines plant biodiversity, ecosystem variability and productivity. Nature 396: 69-72. Verheij E.W.M., Coronel R.E., 1997. Sumber Daya Nabati Asia Tenggara 2, Buahbuahan Yang Dapat Dimakan, Prosea, Gramedia Pustaka Utama, Walker C, Sanders FE. 1986. Taxonomic concepts in the Endogonaceae. The reparation of Scutellospora, gen. Nov. From Gigaspora Gerdeman and Trappe, Mycotaxon, 27, p169-182. Walker C. 1983. Taxonomic concepts in the Endogonaceae: spore wall characteristic in species description Mycotaxon. 18, p 443-455. Walker TS, Bais HP, Grotewold E, Vivanco JM. 2003. Root exudation and rhizosphere biology. Plant Physiol. 132, 44-51. Whittaker RH .1975. Communities and Ecosystems. Sec. Ed. McMillan Publishing Co, Collier-McMillan. Publ, New York, Lomdon, UK, 385 h.en_US
dc.identifier.urihttp://hdl.handle.net/11617/2556
dc.description.abstractThe diversity of arbuscular mycorrhizal (CMA) handled, and mapped potention cannot be exploited by excellence compared to other state. The diversity of arbuscular myorrhizal fungi (AM) was investigated by soil were collected from rhizosphere Singkong (Manihot utillissima ), Uwi (Dioscorea alata) dan Gembili (Dioscorea aculeata ) Plant. The aim of this work was to 1) determination of arbuscular mycorrhizal in calcareous at Wonoiri 2) Identivication CMA calcareous of morfologist at Wonogiri, Eks Karisidenan Surakarta Central of Java and 3). number of composition and distribution structure community of Mikoriza Arbuskula calcareous. Exploration Fungus Mikorhiza Arbuskula (CMA) regions calcareous Ex Karisidenan Surakarta, around the Wonogiri. Samples Collected from plants rhizosfir of Singkong (Manihot utillissima ), Uwi (Dioscorea alata) and Gembili (Dioscorea aculeata ), each of 500 g, so that triping and sieving action. Drawn sample of 100 g, that performed with sukrose 50% sieving (Brundrett et al 1996). Spores obtained in the identification with microscope binocular and stereo. Criteria CMA of color, shape, surface ornamentation of spores, the layer formed and the size of spores CMA. Result by counted 22 Type CMA from 4 Gender of Acaulospora, Gigaspora, Scutellospora And Glomus. Secies number of rhizosfir Singkong (Manihot utilisima)plants found 17 species, 15 species Uwi (Dioscorea hispida) and Gembili (Dioscorea esculenta)14 species. Highest species CMA from Calcareous area around the eks Karisidenan Surakarta Wonogiri has a diversity of species varied, with the total number of spores 1008/100 g. These results are higher than diversity of calcareous soil from the area Tuban in East Java (Chalimah et al 2008).en_US
dc.description.sponsorshipFUNDAMENTAL DIKTIen_US
dc.publisherLPPM-UMSen_US
dc.subjectMycorrhizaeen_US
dc.subjectcalcareous regionen_US
dc.subjectWonogiri Cityen_US
dc.subjectdiversityen_US
dc.subjectIdentifityen_US
dc.titleEksplorasi keanekaragaman Cendawan Mikoriza Arbuskula (CMA) daerah berkapur Wilayah Eks Karisidenan Surakarta dan uji potensi CMA terhadap tanaman obat, holtikultura dan tanaman hutan secara in vivoen_US
dc.typeThesisen_US


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