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研究生:許元俊
研究生(外文):Yuan-Chun Hsu
論文名稱:合歡山地區台灣高山田鼠(Microtus kikuchii)排遺對土壤氮的影響
論文名稱(外文):Effects of Taiwan voles (Microtus kikuchii) feces on soil nitrogen at the He-huan area
指導教授:林雨德林雨德引用關係
指導教授(外文):Yu-Teh Lin
口試委員:林登秋陳尊賢
口試日期:2010-12-30
學位類別:碩士
校院名稱:國立臺灣大學
系所名稱:生態學與演化生物學研究所
學門:生命科學學門
學類:生態學類
論文種類:學術論文
論文出版年:2011
畢業學年度:99
語文別:英文
論文頁數:76
中文關鍵詞:台灣高山田鼠排遺公廁氮循環分解
外文關鍵詞:decompositionfeceslatrineMicrotus kikuchiinitrogen cyclingTaiwan voles
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草食性動物取食植物,排出氮含量高且分解快的排遺,可以快速的將養分回歸到土壤,提供氮一個快速循環的途徑(fast cycle),進而影響植物的生長與群聚的組成。大型草食性動物在生態系營養循環的作用已經有相當多的研究,但小型哺乳動物所扮演的角色相關研究較少。台灣高山田鼠(Microtus kikuchii)為草食性小型囓齒動物,在玉山箭竹草原中,族群數量多而穩定,並有排遺集中形成「公廁」的習性。本研究想了田鼠排遺對高山草原土壤氮含量的影響,探討以下問題:(1)高山田鼠的氮輸出量;(2)高山田鼠公廁的分佈及動態;(3)高山田鼠公廁對土壤氮含量的影響;(4)田鼠排遺對植物凋落物分解的影響。我於2007年起在合歡山的玉山箭竹草原中進行田鼠族群及野外公廁調查,透過飼養來計算田鼠排遺量,並在實驗室與野外進行田鼠公廁的孵育實驗。結果顯示,田鼠的氮輸出量範圍在0.33 ~ 0.41 kg N ha-1 year-1;高山田鼠族群及公廁分佈具空間異質性,公廁數目大抵隨田鼠族群數目波動,對土壤氮時空分佈影響很大;公廁會增加土壤中可萃取性氮,尤其是植物可利用的無機態氮;公廁易分解的養分主要在一個月內釋出,對土壤的有效供應期限約為1個月;田鼠排遺提供土壤微生物較易取得的食物資源而使其活性增加,加速土壤有機質的分解,微生物扮演的角色尚須進一步的研究以了解。綜合而言,在土壤有機質含量很高,但是分解緩慢的高山生態系,田鼠公廁不僅提供養分,並能加速原來土壤中的有機質分解,對高山生態系而言,扮演相當重要的角色。

Herbivore returns nitrogen to soil by defecating high-nitrogen wastes. The fast decomposition rates of feces provide a “fast cycle” for returning plant nitrogen to soil. The temporal production and spatial distribution of feces can affect the dynamics of nutrient availability in soil, and change plant community structures. The effects of feces were well-documented for large herbivores, but not herbivorous small mammals. The Taiwan vole (Microtus kikuchii) is the dominant herbivorous rodent in alpine meadow in Taiwan. They deposit large amount of feces at latrine sites. I want to investigate the effects of latrines on soil nitrogen. This thesis is divided into four aspects: (1) Nitrogen output of vole; (2) The temporal dynamics of vole latrines; (3) The effects of latrines on soil nitrogen; (4) The effects of latrines on plant litter decomposition. I conducted vole and latrine survey starting in 2007 at an alpine meadow in He-huan Mountain. Nitrogen output was acquired by rearing voles in the laboratory. I also conducted two field and one laboratory incubation experiments with latrines. The results showed that, annual nitrogen output of voles was 0.33~0.41 kg N ha-1 year-1. Vole latrines increased the extractable nitrogen in soil, especially inorganic nitrogen. The release of nutrients from liable part of feces to soil occurred within one month. Latrines also provided liable carbon to microbes, increasing microbial activities and decomposition rates of soil organic matters. The spatial patterns of vole and latrine abundances were highly heterogeneous in alpine meadow. The temporal dynamics of voles and latrines further increased the spatial heterogeneity of soil nitrogen. Alpine meadows had high soil organic matters, yet decomposition rates were low. Vole latrines not only quickly return nutrients back to soil, but also enhance decomposition rates of soil organic matters, thus play a crucial role in alpine ecosystems.

謝誌 i
摘要 ii
Abstract iii
Introduction 1
Research objectives 5
Materials and Methods 5
Study Site 5
Nitrogen Output by Taiwan Voles 7
Taiwan vole population survey 7
Daily defecation rates of voles 8
Vole Latrine Survey 9
Field Incubation on Natural Soil 10
Field Incubation on Homogenized Soil 12
Preparing soil 12
Experimental setup 12
Chemical analyses 14
Laboratory Incubation on Homogenized Soil 14
Preparing soil, feces, & plant litter 14
Experimental setup 15
Chemical analysis 19
Soil microbial biomass, extractable nitrogen, extractable carbon 19
C and N content 20
Organic matter content of soil 20
CO2 evolution rate 21
Statistical Analyses 22
Results 23
Taiwan vole population survey 23
Daily defecation rates of voles 24
Nitrogen output of vole populations 25
Vole latrines survey 27
Field Incubation on Natural Soil 29
Field Incubation on Homogenized Soil 30
Laboratory Incubation on Homogenized Soil 39
Discussions 52
Taiwan vole population survey 52
Daily defecation rate 53
Nitrogen output of vole 55
Vole latrine survey 57
Field incubation on natural soil 58
Field incubation on homogeneity soil 58
Conclusion 66
Appendix 71

吳海音. 2004. 太魯閣國家公園高山地區動物資源及動態調查研究. 內政部營建屬太魯閣國家公園管理處委託研究報告.
Aerts, R. and F. S. Chapin. 2000. The mineral nutrition of wild plants revisited: A re-evaluation of processes and patterns. Pages 1-67 Advances in Ecological Research, Vol 30. Academic Press Inc, San Diego.
Afzal, M. and W. A. Adams. 1992. Heterogeneity of soil mineral nitrogen in pasture grazed by cattle. Soil Science Society of America Journal 56:1160-1166.
Bakker, E. S. and H. Olff. 2003. Impact of different-sized herbivores on recruitment opportunities for subordinate herbs in grasslands. Journal of Vegetation Science 14:465-474.
Bakker, E. S., H. Olff, M. Boekhoff, J. M. Gleichman, and F. Berendse. 2004. Impact of herbivores on nitrogen cycling: contrasting effects of small and large species. Oecologia 138:91-101.
Bardgett, R. D., D. A. Wardle, and G. W. Yeates. 1998. Linking above-ground and below-ground interactions How plant responses to foliar herbivory influence soil organisms. Soil Biology & Biochemistry 30:1867-1878.
Ben-David, M., G. M. Blundell, J. W. Kern, J. A. K. Maier, E. D. Brown, and S. C. Jewett. 2005. Communication in river otters: Creation of variable resource sheds for terrestrial communities. Ecology 86:1331-1345.
Ben-David, M., R. T. Bowyer, L. K. Duffy, D. D. Roby, and D. M. Schell. 1998. Social behavior and ecosystem processes: River otter latrines and nutrient dynamics of terrestrial vegetation. Ecology 79:2567-2571.
Brady, N. C. and R. R. Weil. 2004. Elements of the Nature and Properties of Soils. Elements of the Nature and Properties of Soils. Pearson prentice hall, New Jersey, USA.
Brookes, P. C., J. F. Kragt, D. S. Powlson, and D. S. Jenkinson. 1985. Chloroform fumigation and the release of soil-nitrogen - the effects of fumigation time and temperature. Soil Biology & Biochemistry 17:831-835.
Canals, R. M. and M. T. Sebastia. 2000. Soil nutrient fluxes and vegetation changes on molehills. Journal of Vegetation Science 11:23-30.
Cho, S. T., S. H. Tsai, A. Ravindran, A. Selvam, and S. S. Yang. 2008. Seasonal variation of microbial populations and biomass in Tatachia grassland soils of Taiwan. Environmental Geochemistry and Health 30:255-272.
Clark, J. E., E. C. Hellgren, J. L. Parsons, E. E. Jorgensen, D. M. Engle, and D. M. Leslie. 2005. Nitrogen outputs from fecal and urine deposition of small mammals implications for nitrogen cycling. Oecologia 144:447-455.
Cochran, V. L., J. A. Pugin, and S. D. Sparrow. 2000. Effects of migratory geese on nitrogen availability and primary productivity in subarctic barley fields. Biology and Fertility of Soils 32:340-346.
Cooch, E. and G. White. 2010. Program MARK. Pages 1-14 A Gentle Introduction.
Crait, J. R. and M. Ben-David. 2007. Effects of river otter activity on terrestrial plants in trophically altered Yellowstone Lake. Ecology 88:1040-1052.
Day, T. A. and J. K. Detling. 1990. Grassland patch dynamics and herbivore grazing prerence following urine deposition. Ecology 71:180-188.
De Mazancourt, C., M. Loreau, and L. Abbadie. 1998. Grazing optimization and nutrient cycling when do herbivores enhance plant production? Ecology 79:2242-2252.
Dubeux, J. C. B., L. E. Sollenberger, S. M. Interrante, J. M. B. Vendramini, and R. L. Stewart. 2006a. Litter decomposition and mineralization in bahiagrass pastures managed at different intensities. Crop Science 46:1305-1310.
Dubeux, J. C. B., L. E. Sollenberger, B. W. Mathews, J. M. Scholberg, and H. Q. Santos. 2007. Nutrient cycling in warm-climate grasslands. Crop Science 47:915-928.
Dubeux, J. C. B., L. E. Sollenberger, J. M. B. Vendramini, R. L. Stewart, and S. M. Interrante. 2006b. Litter mass, deposition rate, and chemical composition in bahiagrass pastures managed at different intensities. Crop Science 46:1299-1304.
Feeley, K. 2005. The role of clumped defecation in the spatial distribution of soil nutrients and the availability of nutrients for plant uptake. Journal of Tropical Ecology 21:99-102.
Fornara, D. A. and J. T. Du Toit. 2008. Browsing-induced effects on leaf litter quality and decomposition in a Southern African savanna. Ecosystems 11:238-249.
Frank, D. A. and R. D. Evans. 1997. Effects of native grazers on grassland N cycling in Yellowstone National Park. Ecology 78:2238-2248.
Frank, D. A., P. M. Groffman, R. D. Evans, and B. F. Tracy. 2000. Ungulate stimulation of nitrogen cycling and retention in Yellowstone Park grasslands. Oecologia 123:116-121.
Frost, C. J. and M. D. Hunter. 2007. Recycling of nitrogen in herbivore feces: plant recovery, herbivore assimilation, soil retention, and leaching losses. Oecologia 151:42-53.
Gibson, D. J. 1989. Effects of animal disturbance on tallgrass prairie vegetation. American Midland Naturalist 121:144-154.
Hatch, D. J., R. D. Lovell, R. S. Antil, S. C. Jarvis, and P. M. Owen. 2000. Nitrogen mineralization and microbial activity in permanent pastures amended with nitrogen fertilizer or dung. Biology and Fertility of Soils 30:288-293.
Haynes, R. J. and P. H. Williams. 1993. Nutrient cycling and soil fertility in the grazed pasture ecosystem. Pages 119-199 Advances in Agronomy, Vol 49. Academic Press Inc, San Diego.
Ho, H. C. 2009. The Interactions between Taiwan Vole (Microtus kikuchii) and Alpine Meadow Herbs at the Ho-huan Area: Effects of Nutrition and Abundance of Dominant Herbs. National Taiwan University, Taipei.
Holland, E. A. and J. K. Detling. 1990. Plant response to herbivory and belowground nitrogen cycling. Ecology 71:1040-1049.
Inouye, R. S., N. J. Huntly, D. Tilman, and J. R. Tester. 1987. Pocket gophers (Geomys bursarius), vegetation, and soil nitrogen along a successional sere in east central Minnesota. Oecologia 72:178-184.
Joergensen, R. G. 1996. The fumigation-extraction method to estimate soil microbial biomass: Calibration of the kEC value. Soil Biology and Biochemistry 28:25-31.
Joergensen, R. G. and T. Mueller. 1996. The fumigation-extraction method to estimate soil microbial biomass: Calibration of the kEN value. Soil Biology and Biochemistry 28:33-37.
Körner, C. 2003. Alpine plant life : functional plant ecology of high mountain ecosystems. 2nd edition. Springer, New York.
King, H.-B. 1993. Genesis and classification of soils developed under Yushan cane (Yushania niitakayamensis) grassland in Ho-huan mountain area. Bulletin of Taiwan Forestry Research Institute 8:21-38.
Lovell, R. D. and S. C. Jarvis. 1996. Effect of cattle dung on soil microbial biomass C and N in a permanent pasture soil. Soil Biology and Biochemistry 28:291-299.
Ma, X. Z., L. J. Chen, Z. H. Chen, Z. J. Wu, L. L. Zhang, and Y. L. Zhang. 2010. SOIL GLYCOSIDASE ACTIVITIES AND WATER SOLUBLE ORGANIC CARBON UNDER DIFFERENT LAND USE TYPES. Revista De La Ciencia Del Suelo Y Nutricion Vegetal 10:93-101.
Matzner, E. and W. Borken. 2008. Do freeze-thaw events enhance C and N losses from soils of different ecosystems? A review. European Journal of Soil Science 59:274-284.
Moe, S. R. and P. Wegge. 2008. Effects of deposition of deer dung on nutrient redistribution and on soil and plant nutrients on intensively grazed grasslands in lowland Nepal. Ecological Research 23:227-234.
Pastor, J., B. Dewey, and D. P. Christian. 1996. Carbon and nutrient mineralization and fungal spore composition of fecal pellets from voles in Minnesota. Ecography 19:52-61.
Pastor, J., B. Dewey, R. J. Naiman, P. F. McInnes, and Y. Cohen. 1993. Moose browsing and soil fertility in the boreal forests of Isle Royale National Park. Ecology 74:467-480.
Questad, E. J. and B. L. Foster. 2007. Vole disturbances and plant diversity in a grassland metacommunity. Oecologia 153:341-351.
Schimel, D. S., W. J. Parton, F. J. Adamsen, R. G. Woodmansee, R. L. Senft, and M. A. Stillwell. 1986. The role of cattle in the volatile loss of nitrogen from a shortgrass steppe. Biogeochemistry 2:39-52.
Seagle, S. W., S. J. McNaughton, and R. W. Ruess. 1992. Simulated effects of grazing on soil nitrogen and mineralization in contrasting Serengeti grasslands. Ecology 73:1105-1123.
Semmartin, M., M. R. Aguiar, R. A. Distel, A. S. Moretto, and C. M. Ghersa. 2004. Litter quality and nutrient cycling affected by grazing-induced species replacements along a precipitation gradient. Oikos 107:148-160.
Shen, M. L. 2007. Practical nonparametric statistics. 2 edition. Jeou Chou Book Co,Ltd., Taipei, Taiwan.
Singer, F. J. and K. A. Schoenecker. 2003. Do ungulates accelerate or decelerate nitrogen cycling? Forest Ecology and Management 181:189-204.
Sirotnak, J. M. and N. J. Huntly. 2000. Direct and indirect effects of herbivores on nitrogen dynamics: Voles in riparian areas. Ecology 81:78-87.
Stark, S., R. Strommer, and J. Tuomi. 2002. Reindeer grazing and soil microbial processes in two suboceanic and two subcontinental tundra heaths. Oikos 97:69-78.
Taylor, B. R., D. Parkinson, and W. F. J. Parsons. 1989. Nitrogen and lignin content as predictors of litter decay rates: a microcosm test. Ecology 70:97-104.
Villarreal, D., K. L. Clark, L. C. Branch, J. L. Hierro, and M. Machicote. 2008. Alteration of ecosystem structure by a burrowing herbivore, the plains vizcacha (Lagostomus maximus). Journal of Mammalogy 89:700-711.
Williams, P. H. and R. J. Haynes. 1995. Effect of sheep, deer and cattle dung on herbage production and soil nutrient content. Grass and Forage Science 50:263-271.
Willott, S. J., A. J. Miller, L. D. Incoll, and S. G. Compton. 2000. The contribution of rabbits (Oryctolagus cuniculus L.) to soil fertility in semi arid Spain. Biology and Fertility of Soils 31:379-384.
Wu, J. S. 2007. Mating System of Taiwan Vole (Microtus kikuchii): Evidence From Field Data and Microsatellite DNA. Tunghai University, Taichung.
Yeh, S. H. 2010. Effects of Taiwan Vole (Microtus kikuchii) Herbivory on Yushan cane (Yushania niitakayamensis) Growth in Hehuan Alpine Meadows. National Taiwan University, Taipei.

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