[1] 李阜隶.当代土壤微生物学的活跃研究领域[J]. 土壤学报,1993,30(30):229~236. [2] 殷士华.土壤微生物量及其与养分循环的关系研究进展[J]. 土壤学进展,4:1~18. [3] Lisanework N,Michelsen N.Litterfall and nutrient release by decomposition in three plantations compared with a natural forest in the ethiopian highland[J]. Forest Ecology and Management,1994,65:149~164. [4] Cotrufo M F,Ineson P,Rowland A P.Decomposition of tree leaf litters grown under elevated CO2:Effect of litter quality[J]. Plant and Soil,1994,163:121~130. [5] Scheu S,Schauermann J.Decomposition of roots and twigs:Effects of wood type(beech and ash),diameter,site of exposure and macrofauna exclusion[J]. Plant and Soil,1994,163:13~24. [6] Koenig R T,Cochran V L.Decomposition and nitrogen mineralization from legume and nonlegume crop residues in a subarctic agricultural soil[J]. Biol.Fertil.Soils,1994,17:269~275. [7] Williams M W,Brooks P D,Seastedt T.Nitrogen and carbon soil dynamics on response to climate change in a high elevation ecosystem in the Rocky Mountains,U.S.A.[J]. Arctic and Alpine Research,1998,30(1):26~30. [8] O'Lear A,Seastedt T R.Landscape patterns of litter decomposition in alpine tundra[J]. Oecologia,1994,99:95~101. [9] 姜文波,王启兰,杨涛,耿博闻.高山草甸土纤维素分解的季节性动态[A]. 高寒草甸生态系统(第4集)[C]. 科学出版社,183~188. [10] Tietema A,Wessel W W.Microbial activity and leaching during initial oak leaf litter decomposition[J]. Biol.Fertil.Soil,1994,18:49~54. [11] 黄永清.真菌多样性与森林生态系统的维持与恢复.生物多样性研究的原理与方法[M]. 中国科学技术出版社,192~209. [12] Das P K,Nath S,Dhyay N M,Banerjee S K.Decomposition of litters and their effect on physicochemical and microbial properties of soil Proc.Indian Natn[J]. Sci.Acad.,1993,59(5):517~524. [13] Berendse F,Berg B,Bosatta E.The effect of lignin and nitrogen on the decomposition of litter in nutrientpoor ecosystem: A theoretical approach[J]. Can J.Bot,1987,65:1116~1120. [14] Trappe J M,Luoma D L.The ties that bind:Fungi in ecosystem[A]. In:Carroll G C,Wicklow D T.(eds)The fungal community,Its organization and role in the ecosystem(2nd ed)[C]. New York.Marcel Dekker,1992.17~27 |