Skip navigation

DSpace

機構典藏 DSpace 系統致力於保存各式數位資料(如:文字、圖片、PDF)並使其易於取用。

點此認識 DSpace
DSpace logo
English
中文
  • 瀏覽論文
    • 校院系所
    • 出版年
    • 作者
    • 標題
    • 關鍵字
    • 指導教授
  • 搜尋 TDR
  • 授權 Q&A
    • 我的頁面
    • 接受 E-mail 通知
    • 編輯個人資料
  1. NTU Theses and Dissertations Repository
  2. 生物資源暨農學院
  3. 森林環境暨資源學系
請用此 Handle URI 來引用此文件: http://tdr.lib.ntu.edu.tw/jspui/handle/123456789/39309
完整後設資料紀錄
DC 欄位值語言
dc.contributor.advisor胡弘道
dc.contributor.authorChen-ming Linen
dc.contributor.author林健銘zh_TW
dc.date.accessioned2021-06-13T17:25:47Z-
dc.date.available2005-01-31
dc.date.copyright2005-01-31
dc.date.issued2005
dc.date.submitted2005-01-22
dc.identifier.citation弓明欽、陳應龍、仲崇祿 1997 菌根研究及應用 中國林業出版社。
王子定 1997 應用育林學(中卷) 正中書局。
王銀波、吳繼光、黃衍龍、趙震慶 1993 污染土壤中囊叢枝菌根菌族群數及對重金屬耐性之研究 中華農學會報 169: 55-68。
方正光 1987 青剛櫟菌根的研究 國立台灣大學森林研究所碩士論文。
衣川堅二郎 1988きのこの生物學ッリーズズ2きのこの實驗法培養を主として 築地書館。
呂斯文 1985 蘆筍菌根之生長反應、酵素組織化學及構造變化 國立台灣大學園藝研究所碩士論文。
李明仁 1996 彩色豆馬勃對松樹及相思樹幼苗生長抗猝倒病之效應 嘉義農專學報 49: 1-23。
李明仁、蘇碧華、王露儀 1998 接種囊叢枝菌根菌對台灣泡桐感染根瘤線蟲之影響 中華林學會87年年會及會員大會 p.70。
李衞宗 1999 蘭陽溪流域不同海拔青剛櫟遺傳變異之研究 國立台灣大學森林學系研究所博士論文。
林瑞進 2000 青剛櫟外生菌根苗在貧瘠地造林之研究 國立台灣大學森林學研究所碩士論文。
范光正 1985 台灣赤楊之內生菌根、外生菌根及根瘤之交互作用 國立台灣大學植物病蟲害學研究所碩士論文。
胡弘道 1986 大孢子菌(Gigaspora gigantean Gerd. and Trappe)之內生菌根合成及其在紅檜人工林與天然林之孢子產量 國立台灣大學農學院研究報告26 (2): 59-76。
胡弘道 1987 塊菇與林木共生關係之研究(I)菌根合成試驗 台大實驗林研究報告1(1):1-6。
胡弘道 1989 塊菇之培育 台灣區第七屆食用菌研討會報告pp:34- 40。
胡弘道 1990 林木菌根 千華出版社pp.666 台北,台灣。
胡弘道 1993a 外生菌根接種對台灣二葉松幼苗高山草生地土壤生長之效應 台大實驗林研究報告 7(2):41-50。
胡弘道 1993b 森林土壤學 (修訂版)國立編譯館pp.433。
胡弘道、劉啟福 1995 台灣二葉松與松茸共生關係之研究(二):pH及溫度對松茸菌落生長之效應 台大實驗林研究報告 9(3):21-27。
胡弘道、胡寶元、許碧如 1999 外生菌根接種青剛櫟幼苗在貧瘠土壤之生長效應 中華林學季刊 32(4):451-456。
唐盛林 1988 台灣赤楊共生固氮放線菌及外生菌根菌之分離及其效應 國立台灣大學森林學研究所碩士論文。
陳怡君 2004 義大利白塊菌之半無菌菌根合成與不同pH介質對其菌根形成與青剛櫟葉部大量養分元素之效應 國立台灣大學森林學研究所碩士論文。
陳家全、李家維、楊瑞森 1999 生物電子顯微鏡學 行政院國家科學委員會精密儀器發展中心。
陳應龍 2000 塊菌菌根合成及其形態研究 中國食用菌 20(3):20-21。
陳應龍、弓明欽 2000塊菌資源多樣性及其地理分布 中國食用菌19(5):5-7、25。
陳應龍 2002 黑孢塊菌的菌根合成及其超顯微結構研究 21(5):15-16。
許碧如 1987 溫度、pH值及葡萄糖濃度對夏塊菇生長之效應 國立台灣大學森林學研究所碩士論文。
曾顯雄 1985 菌根菌之最近研究發展 真菌學之最近發展 國科會生物科學研究中心專刊(12):45-70。
黃國展 2003 塊菇分離菌絲之培養與香味成份之研究 私立東海大學化學工程學研究所碩士論文
黃鏡諺 2002 印度塊菌及台灣塊菌與青剛櫟形成菌根形態之比較及光黑腹菌與鱗蓋紅菇之菌根純合成 國立台灣大學森林學研究所碩士論文。
劉棠瑞 1960 台灣木本植物圖誌上卷 國立台灣大學農學院pp.702。
劉棠瑞、蘇鴻傑 2000 森林植物生態學 台灣商務印書館。
廖大牛 2000 森林資源經營學 國立編譯館。
應紹舜 1996 台灣高等植物彩色圖誌第三卷(增訂一版) 應紹舜 pp.670。
顏江河、林哲毅 2002 兩種土壤中接種菌根對大頭茶苗木的生長效應 林業研究季刊 24(1): 45-52。
Allen, M.F. 1992. Mycorrhizal functioning. Chapman and Hall pp. 534.
Altier, M. 2002. In Italy the lore and lure of slow food comes alive. Santa Cruz Sity
12(1): 20- 25.
Amaranthus, M.P.,D. Page-Dumroese,A. Harvey,E. Cazares and L.F. Bednar. 1996. Soil compaction and organic matter affect conifer seedling nonmycorrhizal and ectomycor-
rhizal root tip abundance and diversity. Pacific Northwest Research Station p.16.
Barbara, S. 2001. Erosion control-life underground. Subscribe- forester communications.
Bâ, A.M.,B. Balaji and Y. Piche. 1994. Effect of time of inoculation on in vitro ectomycorrhizal colonization and nodule initiation in Acacia holosericea seedling. Mycorrhiza 4(3): 109-119.
Berch, S.M. and A.L. Roth. 1993. Ectomycorrhizae and growth of Douglas-fir seedlings preinoculated with Rhizopogon vinicolor and outplanted on eastern Vancouver Islsnd. Canadian Journal of Forest Research 23 (1993):1711-1715.
Bidartondo, M.I.,T.D. Bruns,M. Weib,C. Sérgio and D.J. Read . 2003. Specialized cheating of the ectomycorrhizal symbiosis by an epiparasitic liverwort. The Royal Society 270: 835-842.
Bonkowski, M.,G. Jentschke and S. Scheu. 2001. Contrasting effects of micobial partners in the rhizosphere interactions between Norway spruce seedlings(Picea abies Karst.), mycorrhiza(Paxillus involutus (Batsch)Fr.) and naked amoebae (protozoa). Applied Soil Ecology 18: 193-204.
Cairmey, J.W.G. 1999. Intraspecific physiological variation: implications for understanding functional diversity in ectomycorrhizal fungi. Mycorrhizal 9: 125-135.
Castellano, M.A.,J.M. Trappe and R. Molna. 1985. Inoculation of container-grown Douglas-fir seedlings with basidiospores of Rhizopogon vinicolor and R. colossus : effects of fertility and spore application rate.
Ceccaroli, P.,R. Saltarelli,P. Cesari,R. Pierleoni,C. Sacconi,L. Vallorani,P. Rubini,V. Stocchi and F. Martin. 2003. Carbohydrate and amino acid metabolism in Tuber borchii mycelium during glucose utilization: a ¹³C NMR study. Fungal Genetics and Biology 39: 168-175.
Chevalier, G. and J. Grente. 1979. Application pratique de la symbiose ectomycorhizienne: production â grande échelle de plants mycorhizés par la truffe. Mushroom Sci, 10: 483-505.
Diédhiou, A.G.,A.M. Bâ,S.Nd. Sylla,B. Dreyfus,M. Neyra and I. Ndoye . 2003. The early-stage ectomycorrhizal Thelephoroid fungal sp. is competitive and effective on Afzelia aficana Sm. in nursery conditions in Senegal. Mycorrhiza Springer-Verlag .
Duñabeitia, M.K.,S. Hormilla,J.I. Garchia-Plazaola,K. Txarterina,U. Arteche and M. Becerril. 2003. Differential responses of three fungal species to environmental factors and their role in the mycorrhization of Pinus radiate D.Don. Mycorrhiza Springer (3).
Eissenstat, D. 2000. Root structure and function in an ecological context. New Phytol 148: 353-354.
Fidelibus, M.W.,C.A. Martin and J.C. Stutz. 2001. Geographic isolates of Glomus increase root growth and whole-plant transpiration of Citrus seedlings grown with high phosphorus. Mycorrhiza 10: 231-236.
Giomaro, G.,A. Zambonelli,D. Sisti,M. Cecchini,V. Evangelista and V. Stocchi. 2000. Anatomical and morphological characterization of mycorrhizas of five strains of Tuber borchiiVittad. Mycorriza 10: 107-114.
Giovannetti, D. and A. Fontana . 1982. Mycorrhizal synthesis between Cistus and Tuberaceae. New Phytol 92: 533- 537.
Gisela, D. and M. Honrubia. 1999. Factors affecting mycorrhizal infection of containerized Pinus halepensis by Suillus sp., Rhizopogon sp. and Pisolithus tinctorius in nursery conditions. ICOM II 3: 23-32.
Harrison, M.J. 1999. Molecular and cellular aspects of the arbuscular mycorrhizal symbiosis.An Plant Mol Biol 50:361-389.
Harvey, A.E.,D.S. Page-dumroese,M.F. Jurgensen,R.T. Graham and J.R. Tonn. 1996. Site preparation alters biomass, root and ectomycorrhizal development of outplanted western white pine and Douglas-fir. New Forests 11: 255-270.
Ingham, E. R. 1991. Interactions among mycorrhizal fungi, rhizosphere organisms, and plants. p. 169–197. In: P. Barbosa, V.A. Krischik and C.G. Jones (eds.) Microbial Mediation of Plant-Herbivore Interactions. John Wiley and Sons , Inc. 530 p.
John, P.D. 1998. Nitrate immobilization and the mycorrhizal network for control of exotic ruderals. A poster presented at the California Exotic Pest Plant Council Symposium 10: 2-4.
Mamoun, M. and J. Olivier. 1990. Dynamique des populations fongiques et bactériennes de la rhizosphère des noisetiers truffiers. III.Effet du régime hydrique sur la mycorhization et al microflore associée. Agronomie 10: 77-84.
Mamoun, M. and J. Olivier. 1992. Effect of soil Pseudomonads on colonization of hazel roots by the ectomycorrhization of hazel roots by the ectomycorrhizal species Tuber melanosporum and its competitors. Plant Soil 149:265-273.
Mamoun, M. and J. Olivier. 1993. Competition between Tuber melanosporum and other ectomycorrhizal fungi under two irrigation: I. Competition with Tuber brumale〔J〕.Plant and Soil (149):211- 218.
Mamoun, M. and J. Olivier. 1996. Receptivity of cloned hazels to artificial ectomycorrhizal infection by Tuber melanosporum and symbiotic competitors. Mycorrhiza 6: 15-19.
Mannozi-Torini, L. 1970. Manuale di Tartuficola. Edagricole, Bologna, Italy.pp. 20.
Marcel, G.A.,J.N.Klironomos,M.Ursic,P.Moutoglis,R.Streltwolf-Emgel,T.Boller,A.Wiemken and I.R.Sanders. 1988. Mycorrhizal fungal diversity determines plant biodiversity, ecosystem variability and productivity. Nature 396(5): 69-72.
Marcel, G.A. and V. D. Heijden. 2002. Foraging and resource allocation strategies of mycorrhizal fungi in a patchy environment. Mycorrhizal Ecology. Verlag Berlin Heidelberg.
Martin, F. 2001. Frontiers in molecular mycorrizal research-genes , loci, dots and spins. New Phytol 150: 499-505.
Marx, D.H. 1969. The influence of enctotrophic mycorrhizal on the resistance of pine roots to pathogenic infections.I.Antagonism of mycorrhizal fungi to root pathogenic fungi and soil bacteria. Phytopathology 59: 153- 163.
Marx, D.H. and J.D. Artman. 1978. Growth and ectomycorrhizal development of loblolly pine seedling in nursery soil infested with Pisolithus tinctorius and Thelephora terrestris in virginia. Southeastern Forest Experiment Station-Asheville-North Carolina. U.S. Department of Agriculture Forest Service Research Note SE-256.
Marx, D.H.,W.G. Morris and J.G. Mexal. 1978. Growth and ectomycorrhizal development of loblolly pine seedlings in fumigated and nonfumigated nursery soil infested with different fungal symbionts. Forest Sci 24: 193-203.
Mason, P. A.,I. Kevin,C. M. Robert.,W. Julia and I. Kamal . 2000a. The effect of reducedt phosphorus concentration on mycorrhizal development and growth of Eucalyptus globulus Labill. seedling inoculated with 10 different fungi. Forest Ecology and Management 128: 249-258.
Mason, P.A.,K.Ibrahim,K. Ingleby,R.C. Munro and J. Wilson. 2000b. Mycorrhizal developmen and growth of inoculated Eucalyptus globules (Labill.) seedlings in wet and dry conditions in the glasshouse. Forest Ecology and Management 128: 269-277.
Mikhailova, L.A. and T.I. Prigorovskaya. 2000. Yellow leaf spot of wheat-Pyrenophora tritici-repens. Mycol. And phytopat. 34(1): 7-11.
Nara, K.,H. Nakaya and T. Hogetsu. 2003. Ectomycorrhizal sporocarp succession and production during early primary succession on Mount Fuji. New Phytologist 158: 193-206.
Newell, S.Y. and J.W. Fell .1997. Competition among mangrove oomycotes, and between oomycotes and other microbes. Aquatic Microbial Ecology:Aquatic Microbial Ecology 12: 21-28.
Neville, J.,J.L. Tessier,I. Morrison,J. Scarratt,B. Canning and J.N. Klironomos . 2002. Soil distribution of ecto- and arbuscular mycorrhizal fungi associated with Populus tremuloiloides within a 3-year-old boreal forest clear-cut. Applied Soil Ecology 19: 209-216.
Pedersen, C.T.,D.M. Syivia and D.G. Shilling. 1999. Pisolithus arhizus ectomycorrhiza affects plant competition for phosphorus between Pinus elliottii and Panicum chamaelonche. Mycorrhiza 9: 199-204.
Pierleoni, R.,L. Vallorani,C. Sacconi,D. Sisti,G. Giomaro and V. Stocchi . 2001. Evaluation of the enzymes involved in primary nitrogen metabolism in Tilia platyphyllos-Tuber borchii ectomycorrhizae. Plant Physiol. Biochem. 39: 1111-1114.
Piercey, M.M.,M.N. Thormann and R.S. Currah . 2002. Saprobic characteristics of three fungal taxa from ericalean roots and association with the roots of Rhododeneron groenlandicum and Picea mariana in culture. Mycorrhiza. 12 : 175-180.
Podila, G.K. and D.D. Dound. 2000. Current advances in mycorrhizae research. American Phytopathological Society.
Pyare, S. and W.S. Longland. 2001. Mechanisms of truffle detection by northern flying squirrels. Canadian Journal of Zoology 79(6):1007-1015.
Reid, C.P.P. 1978. Mycorrhizae and water stress. In: Reidacker A (ed) Root physiology and symbiosis. Nancy, New York, pp392-408.
Rojas, N.S.,D.A. Perry,C.Y. Li and L.M. Ganio . 2002. Interactions among soil biology, nutrition, and performance of actinorhizal plant species in the H.J.Andrews Experimental Forest of Oregon. Applied Soil Ecology 19 : 13-26 .
Ruenhle, J.L. and D.H. Marx . 1977. Developing ectomycorrhizae on containerized pine seedlings. Southeastern Forest Experiment Station-Asheville, North Carolina U.S.Department of Agriculture-Forest Service Note SE-242.
Ruenhle, J.L. 1985. Lateral-root development and spread of Pisolithus tinctorius ectomycorrizae on bare-root and container-grown loblolly pine seedlings after planting. Forest Science 31: 220-225.
Sbrana, C.,M. Agnolucci,S. Bedini,A. Lepera,A. Toffanin,M. Giovannetti and M.P. Nuti . 2002. Diversity of culturable bacterial populations associated to Tuber borchii ectomycorrrhizas and activity on T. borchii mycelial growth. FEMS Microbiology Letter 211: 195-201 .
Sisti, D.,G. Giomaro,M. Cecchini,A. Faccio,M. Novero and P. Bonfante . 2003. Two genetically related strains of Tuber borchii produce Tilia mycorrhizas with different morphological traits. Mycorrhiza 13: 107-115.
Smith, S.E. and D.J. Read. 1997. Mycorrhizal symbiosis. Academic, London, 1- 605.
Stahle, P.P. and D. Ward. 1996. Evaluation of the potential of growing Tuber melanosporum as a crop on mainland Australia for export and domestic consumption. Rural Industries Research and Development Corporation Proiect No.DPS-1A: 260-281.
Sullivan, P. 2001. Sustainable management of soil-borne plant diseases. NCAT Agriculture Specialist. p. 258.
Tagu, D.,B. Palin,R. Balestrini,E. Gelhaye,F. Lapeyrie,J.P. Jacquot,P.E. Sanfante and F.Martin . 2003. Characterization of a symbiosis- and auxin-regulated glutathione-
S-transferse from Eucalyptus globules roots. Plant Physiology and Biochemistry 4: 611- 618.
Tiwari, P. and A. Adholeya. 2002. In vitro co-culture of two AMF isolates Gigaspora margarita and Glomus intraradices on Ri T-DNA transformed roots. FEMS Microbiology Letters 206: 39- 43.
Trappe, J.M. 1977. The selection of fungi for ectomycorrhizal was inoculation in nurseries. Ann Rev. Phytopathol. 15: 103- 222.
Vazquez, M.M.,R. Azcon and J.M. Barea. 2001. Compatibility of a wild type and its genetically modified Sinorhizobium strain with two mycorrhizal fungi on Medicago species as affected by drought stress. National Library of Medicine 161(2):347-358.
Vivienne, G.P. 1996. Current challenges in mycorrhizal research: getting to the cellular, molecular and genetic roots of the symbioses. Laboratoire de Phytoparasitologie INRA/CNRS, SGAP, INRA, BA 1540, 21034 Dijon C dex France.
Voigt, E.L.,V.L.D. Oliveira and Á.M. Randi . 2000. Mycorrhizal colonization and phenolic compounds accumulation on roots of Eucalyptus dunnii naiden inoculated with ectomycorrhizal fungi. Pesquisa Agropecuária Brasileira bras.vol.35 no:9.
Walker, J.F.,O.K. Miller Jr,T. Lei,S. Semones,E. Nilsen and B.D. Clinton .1999. Suppression of ectomycorrhizae on canopy tree seedlings in Rhododendron maximum L.(Ericaceae) thickets in the southern Appalachians. Mycorrhiza 9: 49-56.
Wenkart S.,N. Roth-Bejerano,D. Mills and V. Kagan-zur . 2001. Mycorrhizal associa-
tions between Tuber melanosporum mycelia and transformed roots of Cistus incanus. Plant Cell Reports. Springer-Verlag. p.p.10.
Worley, J.F. and E. Hacskaylo. 1959. The effect of available soil moisture on the mycorrhizal association of Virginia pine. Forest Soi(5). 267p.
Wu, B. , K.Nara and T. Hogetsu. 1999. Competition between ectomycorrhizal fungi colonizing Pinus densiflora. Mycorrhiza 9: 151-159.
Yano-Melo, A.M.,O.J.S. Júnior,J.M. Lima -Filho,N.F. Melo and L.C. Maia. 1999. Effect of arbuscular mycorrhizal fungi on the acclimatization of micropropagated banana plantlets. Mycorrhiza 9: 119-123.
Yin, S.K. 2003. The conservation of native Fagaceae species in Hong Kong using mycorrhizal techniques. The Hong Kong Polytechnic University Scoll.
Zambonelli, A. and M. Morara. 1984. Le specie di Tuberales dell'Emilia-
Romagna: ecologia e distribuzione. Estr Nat Mont 4: 9-32.
dc.identifier.urihttp://tdr.lib.ntu.edu.tw/jspui/handle/123456789/39309-
dc.description.abstract本研究目的為(1)確認青剛櫟(Cyclobalanopsis glauca (Thunb.) Oerst)幼苗接種塊菌(Tuber sp.)對生長效應之影響,(2)龜紋硬皮馬勃(Scleroderma areolatum Her.)對塊菌菌根形成之競爭作用及(3)比較龜紋硬皮馬勃與塊菌在YMT培養基中之競爭狀態。 青剛櫟幼苗經接種台灣塊菌(Tuber formosanum Hu)及印度塊菌(Tuber indicum Cooke & Massee )後,較未接種者可顯著的促進苗高生長、地際直徑、地上部乾重及地下部乾重及地下部之重量生長;且前者之T/R率亦明顯的低於後者。 龜紋硬皮馬勃接種至一年生已形成台灣塊菌及印度塊菌菌根之青剛櫟幼苗二個月後,龜紋硬皮馬勃能形成典型之白色外生菌根,並能自其菌根外形成菌索感染未形成菌根之短根,亦能感染已感染形成塊菌菌根之部分,最後並將其整個包覆。因此接種龜紋硬皮馬勃能減少及抑制台灣塊菌及印度塊菌之菌根形成。青剛櫟塊菌菌根苗接種龜紋硬皮馬勃後二個月,與單獨接種塊菌時類似,同樣可促進青剛櫟幼苗之生長。
由YMT洋菜培養基為介質,進行台灣塊菌與龜紋硬皮馬勃、印度塊菌與龜紋硬皮馬勃等相互間菌落競爭試驗。結果顯示以台灣塊菌及印度塊菌皆具有較佳之菌落生長,皆能使龜紋硬皮馬勃菌落生長受到影響;尤其菌落競爭勢力上,亦以印度塊菌菌落佔優勢。本試驗結束時,印度塊菌菌落會發生覆蓋龜紋硬皮馬勃菌落。台灣塊菌與龜紋硬皮馬勃之菌落菌絲至培養後期混和生存。試驗期間並未觀察到印度塊菌菌落與龜紋硬皮馬勃菌落及台灣塊菌與龜紋硬皮馬勃之菌絲有融合現象。
zh_TW
dc.description.abstractThe purposes of this study were to (1) confirm the effect of truffle inoculation on the seedlings growth of Cyclobalanopsis glauca, (2) observe the competition of Scleroderma areolatum to the mycorrhizae formed either by Tuber formosanom or T. indicum and (3) compare the competition of S. areolatum to the truffle cultured on YMT agar medium.
After the seedlings of C. glauca were inoculated with T. formosanum and T. indicum , the height growth, root collar diameter, top dry weight and root dry weight were much more significantly stimulated than those of non-inoculated seedlings. The T/R ratio of both Tuber-inoculated seedlings was significantly lower than those of non-inoculated seedlings.
S. areolatum could form typical white ectomycorrhizae , when it was inoculated to one year’s old C. glauca seedlings mycorrhized either with T. formosanum or T. indicum two months later after inoculation. The other uninoculated rootlets could be infected by the rhizomorph extended from white ectomycorrhiza.
The rhizomorph could also infect the Tuber-infected ectomycorrhizae and finally enveloped it. Therefore, the inoculation of S. areolatum could reduce or impede the mycorrhiza formation formed by T. formosanum or T. indicum . The Tuber- mycorrhized C. glauca seedlings inoculated with S. areolatum two months later could also stimulate seedlings growth, as the seedlings were inoculated with truffle only.
YMT agar medium was used to test the colony competition between T. formosanum and S. areolatum, T. formosanum and S. areolatum each other. The results showed that the colony growth of either T. formosanum or T. indicum grew much quicker than that of S. areolatum, and could impact the growth of S. areolatum. There was compete dominance for the colony growth of T. indicum , especially. The colony of T. indicum could cover the colony of S. areolatum at the end of the test. The colony of T. formosanum and S. areolatum grew mixedly each other at the late stage. Neither the hyphal anastomoses of T. indicum and S. areolatum, nor the hyphal anastomoses of T. formosanum and S. areolatum were observed.
en
dc.description.provenanceMade available in DSpace on 2021-06-13T17:25:47Z (GMT). No. of bitstreams: 1
ntu-94-R91625033-1.pdf: 582451 bytes, checksum: 2aa46207cfb0ac6354db8cd451ae4945 (MD5)
Previous issue date: 2005
en
dc.description.tableofcontents一. 前 言------------------------------------------------------------------------------1
二. 前 人 研 究----------------------------------------------------------------------5
三. 材 料 與 方 法-----------------------------------------------------------------9
(一) 塊菌菌根對青剛櫟幼苗生長之影響--------------------------------------9
(二) 龜紋硬皮馬勃對塊菌及菌根之競爭性---------------------------------11
1. 龜紋硬皮馬勃接種對已形成塊菌菌根之競爭性-----------------------11
2. 龜紋硬皮馬勃菌落與塊菌菌落在培養基之競爭性--------------------12
四. 結 果------------------------------------------------------------------------------14
(一) 塊菌菌根對青剛櫟幼苗生長之影響------------------------------------14
(二) 龜紋硬皮馬勃對塊菌及菌根之競爭性---------------------------------17
1. 龜紋硬皮馬勃接種對已形成塊菌菌根之競爭性-----------------------17
2. 龜紋硬皮馬勃菌落與塊菌菌落在培養基之競爭性--------------------21
五. 討 論------------------------------------------------------------------------------30
(一) 塊菌菌根對青剛櫟幼苗生長之影響------------------------------------30
(二) 龜紋硬皮馬勃對塊菌及菌根之競爭性---------------------------------34
1. 龜紋硬皮馬勃接種對已形成塊菌菌根之競爭性-----------------------35
2. 龜紋硬皮馬勃菌落與塊菌菌落在培養基之競爭性--------------------38
六. 結 論------------------------------------------------------------------------------42
七. 參 考 文 獻--------------------------------------------------------------------44
附 錄-----------------------------------------------------------------------------------53
dc.language.isozh-TW
dc.subject競爭作用zh_TW
dc.subject台灣塊菌zh_TW
dc.subject印度塊菌龜zh_TW
dc.subject紋硬皮馬勃zh_TW
dc.subject外生菌根zh_TW
dc.subject青剛櫟zh_TW
dc.subjectCyclobalanopsis glaucaen
dc.subjectcompetition.en
dc.subjectectomycorrhizaeen
dc.subjectScleroderma areolatumen
dc.subjectTuber formosanumen
dc.subjectTuber indicumen
dc.title青剛櫟接種塊菌對其生長之影響及龜紋硬皮馬勃對塊菌菌根之競爭力zh_TW
dc.titleEffects of Truffle Inoculation on the Growth of Cyclobalanopsis glauca (Thunb.) Oerst and the Competivity of Scleroderma areolatum Her. to the Truffle Mycorrhizaeen
dc.typeThesis
dc.date.schoolyear93-1
dc.description.degree碩士
dc.contributor.oralexamcommittee李?仁,顏江河,張焜標,張東柱
dc.subject.keyword台灣塊菌,青剛櫟,印度塊菌龜,紋硬皮馬勃,外生菌根,競爭作用,zh_TW
dc.subject.keywordTuber formosanum,Cyclobalanopsis glauca,Tuber indicum,Scleroderma areolatum,ectomycorrhizae,competition.,en
dc.relation.page64
dc.rights.note有償授權
dc.date.accepted2005-01-24
dc.contributor.author-college生物資源暨農學院zh_TW
dc.contributor.author-dept森林學研究所zh_TW
顯示於系所單位:森林環境暨資源學系

文件中的檔案:
檔案 大小格式 
ntu-94-1.pdf
  未授權公開取用
568.8 kBAdobe PDF
顯示文件簡單紀錄


系統中的文件,除了特別指名其著作權條款之外,均受到著作權保護,並且保留所有的權利。

社群連結
聯絡資訊
10617臺北市大安區羅斯福路四段1號
No.1 Sec.4, Roosevelt Rd., Taipei, Taiwan, R.O.C. 106
Tel: (02)33662353
Email: ntuetds@ntu.edu.tw
意見箱
相關連結
館藏目錄
國內圖書館整合查詢 MetaCat
臺大學術典藏 NTU Scholars
臺大圖書館數位典藏館
本站聲明
© NTU Library All Rights Reserved